TriBoard Manual TC3X2 V1.0

User Manual for TriBoard

TriBoard;, TriCore™;, AURIX™, 2G;, TC332;, TC322;, TQFP;, User, Manual

Holger Dienst

TriBoard Manual TC3X2 V1 - Infineon Technologies

A manual power on reset is executed by pressing the reset button. The Board has to be connected to a 3,5V to 40V DC power supply. The power consumption is not specified yet but a supply with 12V and 500mA is recommended. The pinout for the supply connector is shown in Figure 6-3. There can be used any standard power pack with a connector where

TriBoard Manual TC3X2 V1.0 - Infineon Technologies

The User Manual provide information about using, configuration and connecting the TriBoard with Infineon. AURIX™ TC3X2 TQFP device (0.4mm pitch).

A manual power on reset is executed by pressing the reset button. The Board has to be connected to a 3,5V to 40V DC power supply. The power consumption is not specified yet but a supply with 12V and 500mA is recommended.

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Infineon-TriBoardManual-TC3X2-UserManual-v01 00-EN "; size
TriBoard TC3X2
TriBoard Manual TC3X2
Hardware: TriBoard TC3X2 TH V1.0 and TriBoard TC3X2 V1.0
About this document
Scope and purpose The User Manual provide information about using, configuration and connecting the TriBoard with Infineon AURIXTM TC3X2 TQFP device (0.4mm pitch). The manual provide information for different hardware types. There exist different hardware with Through Hole socket (TriBoard TC3X2 TH) and soldered devices (TriBoard TC3X2). The schematic is identically for the all boards if not other mentioned in chapter schematic. The placing on the boards is the same, all components are on the same location.
Intended audience Design, verfication, test and software engineers will use this document to get an understanding of the functionality and connections of the TriBoard.

User Manual

Please read the Important Notice and Warnings at the end of this document

www.infineon.com

TriBoard TC3X2 TH V1.0 and TriBoard TC3X2 V1.0

V1.0 2020-05

TriBoard Manual TC3X2
Hardware: TriBoard TC3X2 TH V1.0 and TriBoard TC3X2 V1.0
Table of Contents
Table of Contents

About this document. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . Preface-1

Table of Contents . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . TOC-2

1

Introduction . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1-1

2 2.1 2.2 2.3
3 3.1 3.2 3.2.1 3.2.2 3.3 3.3.1 3.4 3.5 3.6 3.6.1 3.6.2 3.7 3.8 3.9 3.10 3.11 3.12 3.13 3.14 3.15 3.15.1 3.15.2 3.15.3 3.15.4 3.15.5 3.15.6
4 4.1 4.1.1 4.1.2 4.2 4.2.1 4.2.2
5 5.1 5.2 5.3 5.4

Features . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2-1 Summary of Features . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2-1 Block Diagram . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2-2 Placement . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2-3
TriBoard Information . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-1 Soldered board . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-1 Socketed board . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-1
Usable devices . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-1 Restricted usable devices . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-1 Power Supply . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-1 Failsafe handling . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-2 LEDs . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-2 Clock . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-3 USB Connector . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-3 Serial Connection to PC . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-3 miniWiggler JDS . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-4 FlexRayTM (E-RAY) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-4 Serial EEPROM . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-4 MultiCAN . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-4 LIN . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-4 ADC . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-5 Other peripherals . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-7 Toggle LED's . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-7 Buttons . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-7 Debug System . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-7 OCDS1 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-7 DAP . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-7 DAP_SCR . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-7 High speed with DAP . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-8 ETK connector (optional) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-8 EmW Power (optional) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-8
TriBoard Configuration . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 4-1 HW Boot Configuration . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 4-1
Default Pad State . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 4-1 Bootmode . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 4-1 Assembly Options . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 4-2 General optional resistors . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 4-2 Resistors for peripherals . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 4-4
Signal (on board used) Description . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 5-1 Power Signals . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 5-1 Reset Signals . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 5-1 Config Signals . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 5-2 Clock Signals . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 5-2

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5.5 5.6
6 6.1 6.2 6.3 6.4 6.5 6.6 6.7 6.8 6.9 6.10 6.11
7 7.1 7.1.1 7.1.2 7.2 7.3 7.4

Debug Signals . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 5-2 Peripheral Signals . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 5-2
Connector Pin Assignment . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 6-1 On Board only used signals . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 6-1 TC3X2 Connector / Top View . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 6-2 Power connector pinout . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 6-4 USB connector pinout . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 6-4 FlexRayTM (ERAY) connector pinout . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 6-4 CAN connector pinout . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 6-4 LIN connector pinout . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 6-5 OCDS1 connector pinout . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 6-5 DAP connector pinout . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 6-5 ETK connector pinout . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 6-6 Ethernet miniWiggler power connector pinout . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 6-6
Schematic and Layout . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7-1 Known problems . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7-1
Known problems on TriBoard TC3X2 TH V1.0 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7-1 Known problems on TriBoard TC3X2 V1.0 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7-1 Schematic . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7-1 Layout . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7-9 Layout with Dimensioning . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7-11

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Introduction

1

Introduction

We congratulate you on your purchase of the TriCoreTM Evaluation Board. This kit is a versatile tool, providing quick access to the capabilities of TriCoreTM's powerful architecture.
Applications can be developed easily. The Evaluation Board is equipped with a variety of memories and peripherals for connection to the environment. There is also an interface for the On Chip Debugging Features (OCDS1 and DAP).
The Evaluation Board allows easily the development of TriCoreTM applications with the corresponding tools.
Subsequently, the applications can be downloaded and can be tested with the powerful debugger software.
This TriBoard Hardware Manual familiarizes you with the TriCoreTM Evaluation Board and guides you through the initial configuration of the TriBoard.
For detailed technical information about the TC3X2 TQFP (e.g. TC332, TC322) please refer to the User Manual of the used device.

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2

Features

2.1

Summary of Features

­ Infineon's TC3X2 (TC332, TC322) AURIXTM 2G Controller in TQFP-80 Package (0.4mm pitch) ­ FlexRayTM 1) Transceivers ­ High Speed CAN Transceivers (CAN-FD capable) ­ USB to UART bridge ­ Serial Eeprom ­ LIN Transceiver ­ Crystal 20MHz (default) or External Clock ­ USB miniWiggler JDS for easy debugging ­ 8 Low Power Status LEDs ­ 8-DIP switches for configuration ­ access to all pins of controller ­ 100mm x 160mm (EURO-Board)

Connectors
The TC3X2 TriBoard offers a wide variety of connectors:
­ Standard power connector ­ Micro USB connector for ASC Interface (ASC0) and miniWiggler ­ 16-pin header for JTAG interface (OCDS) ­ 2 x 10-pin header for DAP and DAP_SCR ­ 10pin (2x5) Header for LIN Transceiver (LIN) ­ 2 x 10pin (2x5) Header for CAN High Speed Transceiver (CAN0 and CAN1) ­ 2 x 10pin (2x5) Header for FlexRayTM (ERAY-A and ERAY-B) ­ four 80-pin connectors (male) + four 80-pin connectors (female) with all I/O signals ­ optional ETK connector ­ optional 6pin (IEEE1394) Socket for HSCT

Components
­ Infineon's Multi Voltage Safety Micro Processor Supply TLF35584QV ­ Three LEDs to validate power supply (5Volt / 3,3 Volt / 1,25 Volt) ­ LED indicating safe state signal 2 from TLF35584 ­ LED indicating /HDRST (ESR0) active state ­ LED indicating activ miniWiggler JDS ­ LED switched via DAS software ­ 2 x Infineon's FlexRayTM Transceiver TLE9221SX ­ 2 x Infineon's High Speed CAN-Transceiver TLE9251VSJ ­ Infineon's LIN-Transceiver TLE 7259-3GE ­ USB to UART bridge FT2232HL (FTDI) ­ 8 general purpose LEDs ­ 2K SPI Bus Serial Eeprom (MICROCHIP) ­ Reset switch ­ Enable switch ­ Generic switch

1) FlexRayTM is a trademark of FlexRay Consortium.

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­ 4-pin Dip switch
Zero Ohm Bridges
Zero Ohm resistors give the flexibility to configure the systems functionality.

2.2

Block Diagram

XTAL

CAN0 CAN1

PLL TxCAN03 RxCAN03
Transceiver
TxCAN01 RxCAN01

TC3X2

Micro USB

USB

miniWiggler

OCDS1
TX0 RX0

(e.g. TC332, TC322)

LIN

LIN Transceiver

TX1 TriCoreTM
RX1
CPU

ERAY A

FlexRay Transceiver

ERAY B

QSPI1

8 LED s (P33.4 up to P33.7, P20.11 up to P20.14)

Serial EEPROM

Figure 2-1 TriBoard Block Schematic

WAKEUP

QSPI1

Multi Voltage Safety Micro Processor Supply TLF35584QV

ENA

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2.3

Placement

X604

BU401

Y401

U401

D401 D402 T301

X404

X301

U305 S201

U201

X303

X401

X304

T302

X302

L502 S501

U502

C303

C502

U501

D504

D507

D506

D508 D505

S502

L501 R501

X603

X305

X501

C501

Figure 2-2 TriBoard TC3X2 (TH) V1.0 Placement

D30 2 D30 3 D30 4 D30 5 D30 6 D30 7 D30 8 D30 9

Y201

X601 S202
X402 X502
X406 X602

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TriBoard Information

3

TriBoard Information

3.1

Soldered board

TriBoard TC3X2 V1.0 is the soldered board and will be available only with usable devices. Please see also chapter Usable devices.

3.2

Socketed board

TriBoard TC3X2 TH V1.0 is the socketed board.

3.2.1 Usable devices

Note:

Note: Please check always the latest manual for complete list of usable/tested devices.

The board can be used with the following devices:
· TC332 · TC322 (planned, not yet tested)

3.2.2 Restricted usable devices
· None

3.3

Power Supply

All needed voltages are generated via Infineon's Multi Voltage Safety Micro Processor Supply TLF35584QV and via the microcontroller itself (+1,25V).

The supply device is available as two different devices:

TLF35584QVVS1 -> +5V standby voltage, +5V TriCoreTM supply (V_UC)

TLF35584QVVS2 -> +3,3V standby voltage, +3,3V TriCoreTM supply (V_UC)

Dependent of the assembled device the board works with 5V or 3,3V IO.

The TLF35584QV provide the following voltages:

+3,3V or +5V for standby (connected to VEVRSB)

+3,3V or +5V for TriCoreTM (connected to VEXT)

+5V communcation supply (used by CAN and FlexRayTM transceivers)

+5V voltage reference (connected to VDDM and VAREFx)

+3,3V via LDO directly from pre regulator

Applying a stable supply voltage causes the power on reset after a short period. The three LED's (V_UC, +3.3V, VDD) indicate the status of the on board generated voltages.

A manual power on reset is executed by pressing the reset button.

The Board has to be connected to a +3,5V to +40V DC power supply.

The power consumption is not specified yet but a supply with 12V and 500mA is recommended. The pinout for the supply connector is shown in Figure 6-3. There can be used any standard power pack with a connector where the positive line is surrounded by the ground line.

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TriBoard Information
3.3.1 Failsafe handling
In case that the device don't contains a program which disable or service the window watchdog and error pin monitor of the TLF35584 then the TLF35584 is going to a FAILSAFE state where all supplies are switched off. This state can be left via reconnect the power plug or via the ENA button (S502). In this case you must connect a debugger which is able to disable the window watchdog and error pin monitor to reprogram the microcontroller. In the default state of the board the switching to FAILSAFE state is switched off via resistor R508. If you will use/evaluate all safety features of the TLF35584 make sure that R509 is assembled and R508 is not assembled. Make sure that you have a proper initialization of TLF35584 in your softare. Resistor R508 and R509 are red marked in the following Figure 3-1:

CB401

BU401

X303 L401

X604

Y401

R402 R403

U401

R390 X404

R399

S202

R256

D30 8 D30 9

D30 7

D30 6

D30 4 D30 5

D30 2 D30 3

R255

R439 R391

R392 R393 R394 R395 R396 R397 R398

CB309

R346

S2 01 R525

U404 CB40 8
CB416 CB4 18

U3 05

CB405

C402

R4 01

R335

R337

T301

CB402 D401 D402 U407

U408

R411

R456

CB417 R4 28
R446

R427

C B41 9 R455

CB415

CB414 U 406

X301

R348 U201

R423 R451 R454 R444

C301 R336

X401

C504 L502
C5 03 C B5 02
C509 C508 R5 08

R324

T302

C505

R354 R344
U502

C303 R361

D301

C502

U501

R424

S501

R426 R425 R532
R53 1

R202 R201
D504 D507 D506
D508 D505 R509

CB511 C208 C207
R246
R245

C507 R507

S502 R244

R222

X302 CB205

R233 R2 32 R23 4 R235

R524

R237

R241

R236

CB512

R240 R430
R429 R216 R213

X402

R212

R452

R215 R214

C202

R206 R205
R204

R2 07 Y201

C201 R203

X406

X502

R457

R357 R355 C302 R356

R248 R249

CB501

L501 R501

X603

X601 X602

X30 4

X305 R359

X501

C501

Figure 3-1 Resistors for TLF35584 Safety feature handling with switch on

3.4

LEDs

There are 15 LEDs on board:

­ D302 up to D305 (blue) -> toogle LEDs connected to P33.4 ... P33.7 ­ D306 up to D309 (blue) -> toogle LEDs connected to P20.11 ... P20.14 ­ D504 RST (red) -> RESET LED indicate the reset state of the board (/ESR0) ­ D505 VDD (green) ->VDD (+1,25V) power supply indication ­ D506 +3V3 (green) -> +3,3V power supply indication ­ D507 V_UC (green) -> +5V/+3,3V power supply indication ­ D508 SS2 (green) -> safe state signal 2 indication ­ D402 ACT (green) -> on board miniWiggler JDS is ACTIV ­ D401 RUN (blue) -> Debug RUN mode (switched by DAS Server)

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3.5

Clock

On the board is a fixed crystal with 20MHz assembled. You can change this by replacing Y101 (soldered).

3.6

USB Connector

The USB connector is used for connection to a PC. Via the USB it is possible to power the board, using the ASCLIN0 as serial connection via USB and Debugging via DAS. For the pinout of USB socket see Figure 6-4.

NOTE: Before connecting the board to the PC, make sure that the actual DAS software is installed on the PC. For actual DAS software please contact your local FAE.

The software can also be found on:

DAS website

3.6.1 Serial Connection to PC
After the first connection of USB to a PC the needed driver will be installed automatically. During this there will be created a new COM port on PC. This COM port can be used to communicate with the board via ASCLIN0 of the device. Per default the ASCLIN0 is used on P14.0 and P14.1 (e.g. Generic Bootstrap Loader) . In case you will use the Generic Bootstrap Loader via CAN or ASCLIN0 via P15.2 and P15.3 you must:
­ remove R436 and R437 (this disconnect the serial connection from P14.0 and P14.1) ­ remove R301 and R302 (this disconnect the CAN0 transceiver from P11.10 and P11.12) ­ assemble R438 and R440 with 0R resistor (size 0603) to connect P15.2 and P15.3 to serial connection ­ assemble R303 and R304 with 0R resistor (size 0603) to connect P14.0 and P14.1 to CAN0 transceiver

The mentioned resistors are red marked in Figure 3-2.

X701

X704

CB413 CB412

X702

R535

C519

CB516
CB201
CB202 R209

CB518 C517

CB517 CB510

R208 C5 16
C518

C203

R520

C B5 20 CB515

CB204 C205 C204

C406 CB409

C404 C405

C4 03 CB410 C401

R414 CB404

R433

R436
R304 R302

R449 R422

R438

R448 R447

R307

R3 09 CB407

R4 31

R419

R440 R420 R437

Q403 R418
R417 Q402 R416 R443

R413 R421 R410

U403

Q401

R409

R445 R415

CB403 R406

R412 R450

L402 CB411
R442
R405

R404
U405 R441

U402 CB406
R407

R334

CB301 R308

U30 1

R303

R521

R301

R306

R305

D403

R323

R330

R320

R321

CB305

R350 R338

CB302 R318

R312

R317

U302

R311 R513 R512

R31 9

R408

R322

R331

R316 R315 C515

R340 Q502
R341

R343

R342

CB308

R533 R538 Q503

R358 R351

R537

R364 R365

U304

U303

CB304 R333 CB303 R332
CB307 R353 CB306
R352 R362
R363

Q5 04

R510 R221 R220

R511
R503 R505

R504 C5 10 C512 C511

D501 Q501

R360

U306 C304
CB310 D503

Q505 R50 2 R534

R 50 6

X703

D502

Figure 3-2 Resistors for ASC connection (ASC0)

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3.6.2 miniWiggler JDS
The miniWiggler JDS is a low cost debug tool which allows you access to the JTAG of the device. Make sure that you have the latest DAS release. Debugging is possible via the DAS Server `UDAS`. Please contact your prefered debug vendor for support of DAS.
If you have connected the board to the PC and there runs the DAS server, then a working connection is visible via the green ACTIV LED.
The status RUN LED is switched on/off through the DAS Server, depending on the used debugger (client).
IMPORTANT: Make sure that there is no or a tristated connection on X401 (OCDS1) and X402 (DAP) if the ACTIV LED is on.
Per default the miniWiggler is connected to the DAP. If resistors R214, R215 and R216 assembled (default) then the standard DAP is connected to miniWiggler. If all this resistors are not assembled then the miniWiggler can't be used. In this case only the DAP connectors X402 and X406 can be used. See Figure 3-6.

3.7

FlexRayTM (E-RAY)

The board has 2 IDC10 plugs for FlexRayTM Communication (channel A and B) with up to 10 Mbit/s. For the pinout of the plugs see Figure 6-5. You can use a IDC female connector with crimpconnector, flat cable and SUB-D 9 plug with crimpconnector to have a 1:1 adapter to SUB-D 9.

The transceiver are connected to the TriCoreTM device via zero ohm resistors (R320 up to R324 and R340 up to R344) which must be removed to use the ports outside.

ERAY-A can be connected to P02.0, P02.1 and P02.4. Transceiver for channel A can be enabled/disabled via P20.8. The error state of transceiver channel A can be read out via P20.9.

ERAY-B is connected to P02.2, P02.3 and P02.5. Transceiver for channel B can be enabled/disabled via P02.6. The error state of transceiver channel A can be read out via P02.7.

For more information look in the user manual for TC3X2 TQFP.

3.8

Serial EEPROM

The QSPI1 of the TC3X2 TQFP is connected to a serial EEPROM with a size of 2KBit (256 x 8). As chip select for this EEPROM is used the port pin P23.1. P23.1 has no chip select functionality of QSPI. Therefore the software must generate the chip select manual via bit banging. To disconnect (disable) the EEPROM remove resistor R348.

3.9

MultiCAN

On the board are two CAN transceiver connected to the CAN0 and CAN1 of TC3X2 TQFP. The transceivers are connected to two IDC10 plug. For the pinout of IDC10 plug see Figure 6-6. You can use a IDC female connector with crimpconnector, flat cable and SUB-D 9 plug with crimpconnector to have a 1:1 adapter to SUB-D 9.

The transceiver are connected to the TriCoreTM device via zero ohm resistors (R301 up to R304 and R311 up to R314) which must be removed to use the ports outside.

CAN0 can be used via P11.10 and P11.12 (CAN0 node 3, default) or P14.0 and P14.1 (CAN0 node 1). CAN1 can be used via P15.2 and P15.3 (CAN0 node 1, default).

3.10 LIN
On the board is one LIN transceiver connected to the ASCLIN1 on TC3X2 TQFP (P15.0 and P15.1). The transceiver are connected to one IDC10 plug. For the pinout of IDC10 plug see Figure 6-7. You can use a IDC female connector with crimpconnector, flat cable and SUB-D 9 plug with crimpconnector to have a 1:1 adapter to SUB-D 9. To disconnect the LIN remove resistor R364 and R365.

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The LIN can be used in master and in slave mode. For the master mode there is per default a pull-up of 1K (R360) and a capacitor of 1nF (C304) on the BUS assembled. For using the LIN in slave mode the pull-up resistor R360 must be removed and maybe the capacitor changed to a smaller value (e.g. 220pF). The mentioned resistor and capacitor are red marked in Figure 3-3

X701

X704

CB413 CB412

X702

R535

C519

CB516
CB201
CB202 R209

CB518 C517

CB517 CB510

R208 C5 16
C518

C203

R520

C B5 20 CB515

CB204 C205 C204

C406 CB409

C404 C405

C4 03 CB410 C401

R414 CB404

R433

R436
R304 R302

R449 R422

R438

R448 R447

R307

R3 09 CB407

R4 31

R419

R440 R420 R437

Q403 R418
R417 Q402 R416 R443

R413 R421 R410

U403

Q401

R409

R445 R415

CB403 R406

R412 R450

L402 CB411
R442
R405

R404
U405 R441

U402 CB406
R407

R334

CB301 R308

U30 1

R303

R521

R301

R306

R305

D403

R323

R330

R320

R321

CB305

R350 R338

CB302 R318

R312

R317

U302

R311 R513 R512

R31 9

R408

R322

R331

R316 R315 C515

R340 Q502
R341

R343

R342

CB308

R533 R538 Q503

R358 R351

R537

R364 R365

U304

U303

CB304 R333 CB303 R332
CB307 R353 CB306
R352 R362
R363

Q5 04

R510 R221 R220

R511
R503 R505

R504 C5 10 C512 C511

D501 Q501

R360

U306 C304
CB310 D503

Q505 R50 2 R534

R 50 6

X703

D502

Figure 3-3 Components for LIN Master Mode
3.11 ADC
On this boards are 5 ADC channels prepared with a low pass filter. On pin AN5, AN11, AN12, AN32 and AN33 is assembled a capacitor of 47nF and a serial resistor of 4,7K. The filter components are red marked in the following figures (Figure 3-4 and Figure 3-5).

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TriBoard Information

CB401

BU401

L401 C402
R4 01 CB405

X303 R335
T301

X604

Y401

R402 R403

U401

R390 X404

R399

S202

R256

D30 7 D30 8 D30 9

D30 6

D30 4 D30 5

D30 2 D30 3

R255

R439 R391

R392 R393 R394 R395 R396 R397 R398

CB309

R346

S2 01 R525

U404 CB40 8
CB416 CB4 18

U3 05

R337

CB402 D401 D402 U407

U408

R411

R456

CB417 R4 28
R446

R427

C B41 9 R455

CB415

CB414 U 406

X301

R348 U201

R423 R451 R454 R444

C301 R336

X401

C504 L502
C5 03 C B5 02
C509 C508 R5 08

R324

C505

R354

R344

U502

C303 R361

D301

C502

U501

R424

S501

R426 R425 R532
R53 1

R202 R201

D504 D507

D506

D508 R509

D505

CB511 C208 C207
R246
R245

C507 R507

S502 R244

R222

X302 CB205

R233 R2 32 R23 4 R235

R524

R237

R241

R236

CB512

R240 R430
R429 R216 R213

X402

R212

R215 R214
C202

R452

R206 R205
R204

R2 07 Y201

C201 R203

X406

X502

R457

R248 R249

CB501

L501 R501

X603

X601 X602

X30 4 R357 R355
T302 C302 R356

X305 R359

X501

C501

Figure 3-4 Filter components of ADC channels on Top Side

X701

X704

CB413 CB412

X702

R535

C519

CB516
CB201
CB202 R209

CB518 C517

CB517 CB510

R208 C5 16
C518

C203

R520

C B5 20 CB515

CB204 C205 C204

C406 CB409

C404 C405

C4 03 CB410
C401

R414 CB404

R433

R436
R304 R302

R449 R422

R438

R448 R447

R307

R3 09 CB407

R4 31

R419

R440 R420 R437

Q403 R418
R417 Q402 R416 R443

R413 R421 R410

U403

Q401

R409

R445 R415

CB403 R406

R412 R450

L402 CB411
R442
R405
U402

R404 U405 R441
CB406 R407

R334

CB301 R308

U30 1

R303

R521

R301

R306

R305

D403

R323

R330

R320

R321

CB305

R350 R338

CB302 R318

R312

R317

U302

R311 R513 R512

R31 9

R408

R322

R331

R316 R315 C515

R340 Q502
R341

R343

R342

CB308

R533 R538 Q503

R358 R351

R537

R364 R365

U304

U303

CB304 R333 CB303 R332
CB307 R353 CB306
R352 R362
R363

Q5 04

R510 R221 R220

R511
R503 R505

R504 C5 10 C512 C511

D501 Q501

R360

U306 C304
CB310 D503

Q505 R50 2 R534

R 50 6

X703

D502

Figure 3-5 Filter components of ADC channels on Bottom Side

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TriBoard Information
3.12 Other peripherals
For all other peripherals there are no special plugs on the board. The peripheral signals are available on the different connectors. See "Connector Pin Assignment" on Page 6-1.
3.13 Toggle LED's
The status LED's are low active and can be controlled by Software. Port 20 pin 11 up to pin 14 are connected to single LED's (D306... D309) and powered by the normal microcontroller voltage. Port 33 pin 4 up to pin 7 are connected to single LED's (D302... D305) and powered by the standby voltage. This means that this LED's can be are activ also when the board is in standby mode and only the standby voltage available (port 33 is powered by VEVRSB pin which is connected to standby supply of TLF35584). In this case the port pins are controlled by the standby controller if available.
3.14 Buttons
On the board are three buttons. The reset button (S501) will apply a warm power on reset to the device. The ENA button (S502) will be used to enable/wakeup the TLF35584. The P33.9 button (S202) can be used by software as input. Also can this button used by the standby controller to react on an event when only standby supply is available (e.g. wakeup the TLF35584 via P33.10).
3.15 Debug System
3.15.1 OCDS1
The OCDS1 signals are connected to the IDC16 plug (X401). They work with the port supply of Microcontroller (+5V default or +3,3V). For pinout of the connector see Figure 6-8. You can connect any debugger to this connector. The signals /BRKIN and /BRKOUT are not connected per default. If you need this signals in the connector then assemble R424 and R425 or R426 with a 0R resistor. If you connect a debug hardware make sure that the miniWiggler JDS (see "miniWiggler JDS" on Page 3-4) is not activ (ACTIV LED is off) and on the DAP connector (X402) is no hardware connected or the hardware is tristated. If the ACTIV LED is on, then stop the active DAS Server 'UDAS' and/or remove the USB connection to the PC. If R214 up to R216 not assembled then the connector is not usable.
3.15.2 DAP
The board comes with a DAP connector (X402). For pinout of this connector see Figure 6-9. You can connect a DAP hardware here. If you use this connector make sure that the miniWiggler JDS is not activ (ACTIV LED is off) and a connected OCDS1 hardware is disconnected or tristated.
3.15.3 DAP_SCR
Additional DAP connector (X406) is connected to DAP_SCR. This DAP can be used as private DAP connection to the standby controller. For pinout of this connector see Figure 6-9. You can connect a DAP hardware here. This DAP use P33.6 and P33.7 which are connected to LED on the board. Maybe it is necessary to remove R393 and R394 if the speed of the connection is not fast enough.

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3.15.4 High speed with DAP
For use the DAP connection with 160 MHz you need to remove 3 resistors to have a very short connection between device and connector. On the TC3X2 Triboard this 3 resistors are R214, R215 and R216 for DAP (red marked in Figure 3-6). This resistors needs to be removed. Important: When the resistors are removed then only the DAP connector on the board can be used. The on board wiggler and the OCDS1 connector couldn't be use (are disconnected) in this case, also the DAP/JTAG part of the ETK connector couldn't be used. All resistors are red marked in the following figure:

CB401

BU401

L401 C402
R401 CB405

X303 R335
T301

X604

Y401

R402 R403

U401

R390 X404

R399

S202

R256

D30 8 D30 9

D30 7

D30 6

D30 4 D30 5

D30 2 D30 3

R2 55

R439 R39 1

R392 R393 R394 R395 R396 R397 R398

CB309

R346

S2 01 R525

U404 C B40 8
CB416 C B4 18

U305

R337

CB402 U407
D401 D402

U408

R411

R456

CB41 7 R428
R446

R427

CB419 R455

CB415

CB414 U406

X301

R348 U201

R423 R451 R454 R444

C301 R336

X401

C504 L502
C503 CB502
C509 C508 R508

R324

C505

R354

R344

U502

C303 R361

D301

C502

U501

R424

S501

R426 R425 R532
R531

R202 R201

D504 D507

D506

D508 R509

D505

CB511 C208 C207
R246
R245

C507 R507

S502 R244

R222

X302 CB205

R233 R2 32 R234 R235

R524

R23 7

R241

R236

CB512

R240 R430
R429 R216 R213

X402

R212

R215 R214
C202

R452

R206 R205 R204

R207 Y201

C201 R203

X406

X502

R457

R248 R249

CB501

L501 R501

X603

X601 X602

X304 R357 R355
T302 C302 R356

X305 R359

X501

C501

Figure 3-6 Location of DAP resistors on Top Side

3.15.5 ETK connector (optional)
The TriBoard provide a 10 pin samtec connector (X404) for connecting to an ETK. This connector should be assembled by your self if needed. For the pinout of connector see Figure 6-10. The needed Samtec connector is: TFM-105-02-A.

3.15.6 EmW Power (optional)
The TriBoard provide the 4 pin power connector (X502) for the Ethernet miniWiggler (EmW). This connector should be assembled by your self if needed. For the pinout of connector see Figure 6-11. The needed Samtec connector is the JST B4B-PH-K. The connector provide the input voltage to the Ethernet miniWiggler and an enable/wakeup signal connected to TLF35584.

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Because the device don't have a VDDSB pin the 1,25V standby supply pin of the connector is not connected on this board.

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TriBoard Configuration

4

TriBoard Configuration

4.1

HW Boot Configuration

P10.5 P10.6 P14.3 on

1

2

3

4

Figure 4-1 HW Configuration DIP-Switches

The picture above shows the definition of the boot HW configuration switch. The meaning of the switches will be described in the following table (Table 4-1).
Note: The ON position of the switch is equal to a logical LOW at the dedicated pin.

4.1.1 Default Pad State
P14.4 / HWCFG6 is used to select the Default Pad State. Dipswitch 1 used to select this.
In case that dispswitch1 is set to ON then all I/O pins are in tristate otherwise the internal pull-up devices are enabled on the I/O pins. Please note that after change Dipswitch 1 you must make a power cycle (switch off -> switch on) to use the new configuration.
In case that TriState is selected (Dipswitch 1 is set to ON) then the I/O pins are floating. If you need a specific level on different pins during startup (e.g. driver pins) then you must add the needed pull device (up or down). Some pins (especially the HWCFG pins) haven always the needed external pull-up and/or pull-down resistor assembled on the board.

4.1.2 Bootmode

Table 4-1 User Startup Modes 1)2)3)

HWCFG[5...3] Type of Boot

XX1

Start-up mode is selected by Boot Mode Index

110

Internal Start from Flash

100

Alternate Boot Mode, Generic Bootstrap Loader on fail (P14.0/P14.1)

010

Alternate Boot Mode, ASC Bootstrap Loader on fail (P15.2/P15.3)

000

Generic Bootstrap Loader (P14.0/P14.1)

1) The shadowed line indicates the default setting.

2) 'x' represents the don't care state.

3) 2 to 4 are the Dip Switch numbers.

234 X X OFF OFF OFF ON ON OFF ON OFF ON ON ON ON ON

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TriBoard Configuration

4.2

Assembly Options

4.2.1 General optional resistors

Table 4-2 General optional resistors (default assembly in brackets)

Component

Description

R202

Connect P20.2 (/TESTMODE) to GND (not assembled)

R203

XTAL1 Rload (50 Ohm) (not assembled)

R206

XTAL Rparallel (not assembled)

R207

XTAL2 Rserial (assembled)

R238

Switch off EVRC (not assembled)

R240

Switch off EVR33 (not assembled)

R390

Connect V_STBY to toggle LEDs D302...D305 (assembled)

R399

Connect V_UC to toggle LEDs D306...D309 (assembled)

R423

Connect P20.0 with miniWiggler JDS (not assembled)

R424

Connect P20.0 with OCDS1 connector (not assembled)

R425

Connect P21.7 with OCDS1 connector (not assembled)

R426

Connect P20.2 with OCDS1 connector (not assembled)

R427

Connect P21.7 with USR1 of miniWiggler JDS (not assembled)

R428

Connect P20.2 with USR1 of miniWiggler JDS (not assembled)

R429

Connect P21.6 (DAP3) with USR1 of DAP (assembled)

R430

Connect P20.2 with USR1 of DAP (not assembled)

R433

Connect P21.7 with ETK connector (not assembled)

R439

Connect P21.7 with ETK connector (not assembled)

R508

Connect pin MPS of TLF35584 to V_CO (not assembled)

R509

Connect pin MPS of TLF35584 to Ground (assembled)

R524

Connect VDDP3 to V_UC (not assembled)

R525

Connect VDDP3 to +3V3 (not assembled)

Note:

All resistors are red marked in the following figures

User Manual

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Hardware: TriBoard TC3X2 TH V1.0 and TriBoard TC3X2 V1.0
TriBoard Configuration

CB401

BU401

X303 L401

X604

Y401

R402 R403

U401

R390 X404

R399

S202

R256

D30 8 D30 9

D30 7

D30 6

D30 4 D30 5

D30 2 D30 3

R255

R439 R391

R392 R393 R394 R395 R396 R397 R398

CB309

R346

S2 01 R525

U404 CB40 8
CB416 CB4 18

U3 05

C402 CB405

R4 01 T301

R335

R337

CB402 D401 D402 U407

U408

R411

R456

CB417 R4 28
R446

R427

C B41 9 R455

CB415

CB414 U406

X301

R348 U201

R423 R451 R454 R444

C301 R336

X401

C504 L502
C5 03 C B5 02
C509 C508 R5 08

R324

C505

R354 R344
U502

C303 R361

D301

C502

U501

R424

S501

R426 R425 R532
R53 1

R202 R201

D504 D507

D506

D508 R509

D505

CB511 C208 C207
R246
R245

C507 R507

S502 R244

R222

X302 CB205

R233 R2 32 R23 4 R235

R524

R237

R241

R236

CB512

R240
R430 R429 R216 R213
R212

R207 Y201

X402

R215 R214
C202

R452

R206 R205
R204

C201 R203

X502 X406

R457

R248 R249

CB501

L501 R501

X603

X601 X602

X30 4 R357 R355
T302 C302 R356

X305 R359

X501

C501

Figure 4-2 Location of general optional resistors on Top Side

X701

X704

CB413 CB412

X702

R535

C519

CB516
CB201
CB202 R209

CB518 C517

CB517 CB510

R208 C5 16
C518

C203

R520

C B5 20 CB515

CB204 C205 C204

C406 CB409

C404 C405

C4 03 CB410 C401

R414 CB404

R433

R436
R304 R302

R449 R422

R438

R448 R447

R307

R3 09 CB407

R4 31

R419

R440 R420 R437

Q403 R418
R417 Q402 R416 R443

R413 R421 R410

U403

Q401

R409

R445 R415

CB403 R406

R412 R450

L402 CB411
R442
R405

R404
U405 R441

U402 CB406
R407

R334

CB301 R308

U30 1

R303

R521

R301

R306

R305

D403

R323

R330

R320

R321

CB305

R350 R338

CB302 R318

R317 R312
R311 R513 R512

U302

R31 9

R408

R322 R331

R316 R315 C515

R340 Q502
R341

R343

R342

CB308

R533 R538 Q503

R358 R351

R537

R364 R365

U304

U303

CB304 R333 CB303 R332
CB307 R353 CB306
R352 R362
R363

Q5 04

R510 R221 R220

R511
R503 R505

R504 C5 10 C512 C511

D501 Q501

R360

U306 C304
CB310 D503

Q505 R50 2 R534

R 50 6

X703

D502

Figure 4-3 Location of general optional resistors on Bottom Side

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TriBoard Configuration

4.2.2 Resistors for peripherals

Table 4-3 Resistors for peripherals (default assembly in brackets)

Component

Description

R220

Connect V_VR with VDDM (assembled)

R221

Connect +3V3 with VDDM (not assembled)

R222

Connect VAREF1 with VDDM (assembled)

R301

Connect P11.10 with RXD of CAN0 transceiver (assembled)

R302

Connect P11.12 with TXD of CAN0 transceiver (assembled)

R303

Connect P14.1 with RXD of CAN0 transceiver (not assembled)

R304

Connect P14.0 with TXD of CAN0 transceiver (not assembled)

R311

Connect P15.3 with RXD of CAN1 transceiver (assembled)

R312

Connect P15.2 with TXD of CAN1 transceiver (assembled)

R320

Connect P02.0 with TXD of ERAY-A transceiver (assembled)

R321

Connect P02.4 with TXDEN of ERAY-A transceiver (assembled)

R322

Connect P02.1 with RXD of ERAY-A transceiver (assembled)

R323

Connect P20.8 with EN of ERAY-A transceiver (assembled)

R324

Connect P20.9 with ERRN of ERAY-A transceiver (assembled)

R340

Connect P02.2 with TXD of ERAY-B transceiver (assembled)

R341

Connect P02.5 with TXDEN of ERAY-B transceiver (assembled)

R342

Connect P02.3 with RXD of ERAY-B transceiver (assembled)

R343

Connect P02.6 with EN of ERAY-B transceiver (assembled)

R344

Connect P02.7 with ERRN of ERAY-B transceiver (assembled)

R348

Connect P23.1 with CS of SPI Eeprom (assembled)

R364

Connect P15.1 with RXD of LIN1 transceiver (assembled)

R365

Connect P15.0 with TXD of LIN1 transceiver (assembled)

R436

Connect P14.0 with RXD of USB to UART (assembled)

R437

Connect P14.1 with TXD of USB to UART (assembled)

R438

Connect P15.2 with RXD of USB to UART (not assembled)

R440

Connect P15.3 with TXD of USB to UART (not assembled)

Note:

All resistors are red marked in the following figures

User Manual

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Hardware: TriBoard TC3X2 TH V1.0 and TriBoard TC3X2 V1.0
TriBoard Configuration

CB401

BU401

X303 L401

X604

Y401

R402 R403

U401

R390 X404

R399

S202

R256

D30 8 D30 9

D30 7

D30 6

D30 4 D30 5

D30 2 D30 3

R255

R439 R391

R392 R393 R394 R395 R396 R397 R398

CB309

R346

S2 01 R525

U404 CB40 8
CB416 CB4 18

U3 05

C402 CB405

R4 01 T301

R335

R337

CB402 D401 D402 U407

U408

R411

R456

CB417 R4 28
R446

R427

C B41 9 R455

CB415

CB414 U406

X301

R348 U201

R423 R451 R454 R444

C301 R336

X401

C504 L502
C5 03 C B5 02
C509 C508 R5 08

R324

C505

R354 R344
U502

C303 R361

D301

C502

U501

R424

S501

R426 R425 R532
R53 1

R202 R201

D504 D507

D506

D508 R509

D505

CB511 C208 C207
R246
R245

C507 R507

S502 R244

R222

X302 CB205

R233 R2 32 R23 4 R235

R524

R237

R241

R236

CB512

R240 R430
R429 R216 R213

X402

R212

R215 R214
C202

R452

R206 R205
R204

R2 07 Y201

C201 R203

X502 X406

R457

R248 R249

CB501

L501 R501

X603

X601 X602

X30 4 R357 R355
T302 C302 R356

X305 R359

X501

C501

Figure 4-4 Location of peripheral resistors on Top Side

X701

X704

CB413 CB412

X702

R535

C519

CB516
CB201
CB202 R209

CB518 C517

CB517 CB510

R208 C5 16
C518

C203

R520

C B5 20 CB515

CB204 C205 C204

C406 CB409

C404 C405

C4 03 CB410 C401

R414 CB404

R433

R436
R304 R302

R449 R422

R438

R448 R447

R307

R3 09 CB407

R4 31

R419

R440 R420 R437

Q403 R418
R417 Q402 R416 R443

R413 R421 R410

U403

Q401

R409

R445 R415

CB403 R406

R412 R450

L402 CB411
R442
R405

R404
U405 R441

U402 CB406
R407

R334

CB301 R308

U30 1

R303

R521

R301

R306

R305

D403

R323

R330

R320

R321

CB305

R350 R338

CB302 R318

R317 R312
R311 R513 R512

U302

R31 9

R408

R322 R331

R316 R315 C515

R340 Q502
R341

R343

R342

CB308

R533 R538 Q503

R358 R351

R537

R364 R365

U304

U303

CB304 R333 CB303 R332
CB307 R353 CB306
R352 R362
R363

Q5 04

R510 R221 R220

R511
R503 R505

R504 C5 10 C512 C511

D501 Q501

R360

U306 C304
CB310 D503

Q505 R50 2 R534

R 50 6

X703

D502

Figure 4-5 Location of peripheral resistors on Bottom Side

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Signal (on board used) Description

5

Signal (on board used) Description

For more information about the signals please see the user manual/datasheet for TC3X2 and/or the schematics of the board.
All not mentioned signals are not used on the board and can be used outside. Optional marked signals are used only if they are connected (default is that they are not used on the board).

5.1

Power Signals

Table 5-1 Power Signals

Short name

Description

VCC_IN

Supply Input (3,5V...40V)

VIN

Input Voltage of Power Supply Device

GND

Ground

V_PREPEG

Pre Regulator Voltage (~5,8V)

V_UC

Microcontroller Supply Voltage (5V or 3,3V depends on assembled TLF35584)

V_CO

Communication Supply Voltage (5V)

V_VR

Reference Supply Voltage (5V)

V_STBY

Standby Supply Voltage (5V or 3,3V depends on assembled TLF35584)

VDD

Core Supply Voltage (1,25V)

VDDSB

Emulation Stand-by SRAM Supply Voltage (1,25V)

VDDP3

Flash Power Supply Voltage (3,3V)

VFLEX

Flexport Supply Voltage (3,3V)

VEXTOSC

Oscillator Port Supply Voltage (5V or 3,3V depends on assembled TLF35584)

VDDOSC

Oscillator Core Supply Voltage (1,25V)

VSSOSC

Oscillator Ground

VDDM

ADC Analog Part Supply Voltage (5V or 3,3V selectable via 0R resistors)

VAREF1

ADC Reference Voltage 1 (VDDM)

VDD_USB

Supply Voltage from USB (5V)

VDD_FT

Supply Voltage FT2232HL device (3,3V)

5.2

Reset Signals

Table 5-2 Reset Signals

Short name

Description

/PORST

Power On Reset

/DBG_PORST

Power On Reset from debug connectors

/ESR0

External Service Request 0 (Hardware Reset)

/ESR1

External Service Request 1 (Non Maskable Interrupt)

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Signal (on board used) Description

5.3

Config Signals

Table 5-3 Config Signals

Short name

Description

P14.5

HWCFG1 (EVR33OFF / EVR33ON)

P14.3

HWCFG3 (Boot from pins / Boot from Flash BMI)

P10.5

HWCFG4 (see boot configuration Table 4-1)

P10.6

HWCFG5 (see boot configuration Table 4-1)

5.4

Clock Signals

Table 5-4 Clock Signals

Short name

Description

XTAL1

Crystal Oscillator Input

XTAL2

Crystal Oscillator Output

5.5

Debug Signals

Table 5-5 Debug Signals

Short name

Description

/TRST

Test Reset

DAP0

Device Access Port Line 0 / Test Data Clock (TCK)

DAP1

Device Access Port Line 1 / Test Data Select (TMS)

DAP2

Device Access Port Line 2 / Test Data Output (TDO)

P21.6

Test Data Input (TDI)

DAP0_A

DAP0 / TCK from debug connectors

DAP1_A

DAP1 / TMS from debug connectors

P21.7

DAP2 / TDO from debug connectors / TriCoreTM Breakpoint Input

P20.2

Test Mode Select Input

P20.0

TriCoreTM Breakpoint Output

5.6

Peripheral Signals

Table 5-6 Peripheral Signals

Short name

Description

P14.1

ASCLIN0 Receive Input A CAN01 Receive Input B (optional)

P14.0

ASCLIN0 Transmit Output CAN01 Transmit Output (optional)

P15.3

CAN01 Receive Input A ASCLIN0 Receive Input B (optional)

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Signal (on board used) Description

Table 5-6 Peripheral Signals (continued)

Short name

Description

P15.2

CAN01 Transmit Output ASCLIN0 Transmit Output (optional)

P15.1

ASCLIN1 Receive Input A

P15.0

ASCLIN1 Transmit Output

P11.10

CAN03 Receive Input D

P11.12

CAN03 Transmit Output

P02.0

E-Ray Channel A Transmit Data Output

P02.4

E-Ray Channel A Transmit Data Output enable

P02.1

E-Ray Channel A Receive Data Input 2

P20.8

E-Ray Channel A Enable Output

P20.9

E-Ray Channel A Error Input

P02.2

E-Ray Channel B Transmit Data Output

P02.5

E-Ray Channel B Transmit Data Output enable

P02.3

E-Ray Channel B Receive Data Input 2

P02.6

E-Ray Channel B Enable Output

P02.7

E-Ray Channel B Error Input

P23.1

Slave Select Output for CS of eeprom 25LC020A

P11.6

QSPI1 Master Clock Output for SCL of TLF35584 and SCK of eeprom 25LC020A

P11.9

QSPI1 Master Transmit Output for SDI of TLF35584 and SI of eeprom 25LC020A

P11.3

QSPI1 Master Receive Input B for SDO from TLF35584 and SO of eeprom 25LC020A

P11.11

QSPI1 Slave Select Output 4 for SCS of TLF35584

P11.2

Output for Watchdog Input of TLF35584

P33.8

SMU_FSP0 Output for Error Signal Input of TLF35584

P02.8

Input for Safe State Signal 1 from TLF35584

P33.10

Output for Wake/Inhibit Input of TLF35584

P20.0

HSCT System Clock

P21.2

HSCT Data Negative Input

P21.3

HSCT Data Positive Input

P21.4

HSCT Data Negative Output

P21.5

HSCT Data Positive Output

P20[11...14]

On board LED's

P33[4...7]

On board LED's (standby voltage supplied)

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Connector Pin Assignment

6

Connector Pin Assignment

The TriBoard will be shipped with four male (plug) connectors on top layer and four female (socket) connectors on bottom layer. The default connectors are 80-pol. Board to Board connectors from Samtec:

http://www.samtec.com

Plug: FTSH-140-02-L-DV-ES-A

Socket: FLE-140-01-G-DV-A

6.1

On Board only used signals

Following port pins are only used on board and are not connected to any connector also not via resistor:

Table 6-1 On Board only used Signals

Short name

Description

VCAP0

Used as VCAP0 for EVRC

VCAP1

Used as VCAP1 for EVRC

P14.5

Used as HWCFG1

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Hardware: TriBoard TC3X2 TH V1.0 and TriBoard TC3X2 V1.0
Connector Pin Assignment

6.2

TC3X2 Connector / Top View

BUS EXPANSION (X601,X701)

GND GND

12 34 56 78 9 10

GND GND P21.6 P21.7

11 12

13 14

15 16

17 18

19 20

21 22

23 24

25 26

27 28

29 30

31 32

33 34

35 36

37 38

39 40

41 42

43 44

45 46

47 48

49 50

51 52

53 54

55 56

57 58

59 60

61 62

63 64

65 66

67 68

69 70

71 72

73 74

75 76

77 78

79 80

Figure 6-1 Connector for TC3X2 - Pinout (Part I, Top View)

PERIPHERALS (X602,X702)

GND GND VCC_IN VCC_IN

12 34 56 78 9 10

GND GND VCC_IN VCC_IN

11 12

13 14

/ESR1

15 16 17 18

/ESR0

GND P10.5

19 20 21 22 23 24 25 26

GND /PORST

27 28

P23.1

29 30

31 32

33 34

35 36

P20.9 P20.13 P33.5

37 38 39 40 41 42 43 44

P20.2

P00.0

45 46 47 48

GND XTAL1 XTAL2 P15.3 P15.2 P14.1

49 50 51 52 53 54 55 56 57 58 59 60

GND P15.1

P14.0 P20.11 P20.14 P20.12

61 62 63 64 65 66 67 68 69 70 71 72

P15.0 P20.8

73 74

75 76

GND

VEXT

77 78

+3V3

VEXT

79 80

+3V3

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Hardware: TriBoard TC3X2 TH V1.0 and TriBoard TC3X2 V1.0
Connector Pin Assignment

GND GND
AN4 AN5
GND VDDM GND GND AN32 AN33 AN34
GND
VEXT P02.6 P02.7 P02.8 P33.7

ADC (X603, X703)

12

GND

34

GND

56

78

AN8

9 10

11 12

13 14

AN9

15 16

17 18

19 20

21 22

AN11

23 24

AN12

25 26

AN13

27 28

AN14

29 30

AN15

31 32

33 34

35 36

37 38

GND

39 40

VAREF1

41 42

43 44

GND

45 46

47 48

49 50

51 52

53 54

55 56

57 58

59 60

61 62

GND

63 64

P33.6

65 66

67 68

69 70

+3V3

71 72

73 74

75 76

77 78

P14.3

79 80

Figure 6-2 Connector for TC3X2 - Pinout (Part II, Top View)

GTM / PORTS (X604,X704)

GND

12

GND

GND

34

GND

56

78

P02.0

9 10

P02.1

11 12

P02.2

13 14

P02.3

15 16

P02.4

17 18

P02.5

19 20

21 22

23 24

25 26

27 28

29 30

31 32

33 34

P10.6

35 36

37 38

39 40

41 42

43 44

P11.2

45 46

P11.3

47 48

49 50

51 52

P11.6

53 54

55 56

P33.8

57 58

P33.9

P11.9

59 60

P33.10

P11.10

61 62

P11.11

63 64

P11.12

65 66

67 68

69 70

71 72

73 74

VEXT

75 76

VEXT

77 78

+3V3

VEXT

79 80

+3V3

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Connector Pin Assignment

6.3

Power connector pinout

+3,5V...40V

Figure 6-3 Power connector pinout (Roka 520 2550

6.4

USB connector pinout

GND

VCC DD+ ID GND

Figure 6-4 USB connector pinout (Micro USB B-type)

6.5

FlexRayTM (ERAY) connector pinout

2

4

6

8

1 0

13579

BP BM GND

Figure 6-5 FlexRayTM (ERAY) connector pinout (IDC10)

6.6

CAN connector pinout

2

4

6

8

1 0

13579

GND CANH CANL
GND

Figure 6-6 CAN connector pinout (IDC10)

User Manual

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Hardware: TriBoard TC3X2 TH V1.0 and TriBoard TC3X2 V1.0
Connector Pin Assignment

6.7

LIN connector pinout

2

4

6

8

1 0

13579

GND BUS GND VIN opt

Figure 6-7 LIN connector pinout (IDC10)

6.8

OCDS1 connector pinout

V_UC GND GND /PORST /BRKOUT GND

2 4 6 8 10 12 14 16 1 3 5 7 9 11 13 15

TMS TDO TDI /TRST TCK /BRKIN

Figure 6-8 OCDS1 connector pinout (IDC16)

6.9

DAP connector pinout

DAP1 DAP0 USR0_IO USR1_IO /PORST

2 4 6 8 10 13579

V_UC GND GND Key GND

Figure 6-9 DAP connector pinout (Samtec FTSH10)

User Manual

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TriBoard Manual TC3X2
Hardware: TriBoard TC3X2 TH V1.0 and TriBoard TC3X2 V1.0
Connector Pin Assignment
6.10 ETK connector pinout
2 4 6 8 10 13579
Figure 6-10 ETK connector pinout (Samtec TFM-105)
6.11 Ethernet miniWiggler power connector pinout

GND /TRST TMS / DAP1 BRKIO /ESR0

VCC_IN GND WAKEUP VDDSB

1

2

3

4

Figure 6-11 Ethernet miniWiggler connector pinout (JST B4B-PH)

User Manual

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Hardware: TriBoard TC3X2 TH V1.0 and TriBoard TC3X2 V1.0
Schematic and Layout

7

Schematic and Layout

7.1

Known problems

7.1.1 Known problems on TriBoard TC3X2 TH V1.0
No problems known.

7.1.2 Known problems on TriBoard TC3X2 V1.0
No problems known.

7.2

Schematic

User Manual

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7-2

User Manual

Figure 7-1 Schematic - Project

1 A
B
C
D 1

2

3

4

5

/ESR1 /PORST

wiggler_Dbg_con.sch
miniWiggler and Debug Connectors
DEBUG..
PORT[00..34]
/PORST

DEBUG..

XTAL[1..2]

AN[0..34]

Clk_Cfg_Dbg_Ports_Adc.sch
Clock, Config, Debug, Ports and ADC
AN[0..34]

XTAL[1..2]

PORT[00..34]

DEBUG..

Peripherals.sch
On Board Peripherals
PORT[00..34]

Supply.sch
Power Supply
/PORST
PORT[00..34]
/ESR1

2

3

4

5

PORT[00..34] NC1[5..80] NC2[5..80] NC3[5..80] NC4[5..80]

6

7

8

A

Connectm.sch

Connector Plug

PORT[00..34]

AN[0..34]

NC1[5..80]

XTAL[1..2]

B

NC2[5..80]

NC3[5..80] NC4[5..80]

/PORST /ESR1

Connectf.sch
Connector Socket
AN[0..34] NC4[5..80]
C

NC3[5..80]

XTAL[1..2]

NC2[5..80]

NC1[5..80] PORT[00..34]

/PORST /ESR1

D

TriBoard TC3X2 Project

Sheet: 1 of 7

Infineon Technologies AG ATV MC ACE ATV CES

Number:

Am Campeon 1-12

Revision: 1.0

D-85579 Neubiberg

Date: 15.11.2019

Tel.: +49-89-234-0

File: G:\Technical_Support\TriCore\TriBoard\EDA_DXP\TriBoard AURIX 2G\TriBoard TC3X2\TriBoard TC3X2 V1.X\TriBoard_TC3X2_V10.prj

6

7

8

TriBoard Manual TC3X2
Hardware: TriBoard TC3X2 TH V1.0 and TriBoard TC3X2 V1.0
Schematic and Layout

TriBoard Manual TC3X2
Hardware: TriBoard TC3X2 TH V1.0 and TriBoard TC3X2 V1.0
Schematic and Layout

Figure 7-2 Schematic - Clock, Config, Debug, Ports and ADC

User Manual

TriBoard TC3X2 TH V1.0 and TriBoard TC3X2 V1.0

1

2

3

4

5

6

7

8

V_UC

A

AN[0..34]
R244 AN5 4K7

AN4 AN5_I

U201E

EVADC

27 26

AN4 AN5

VDDM 24

VDDM

FOR 5V ADC V_VR
R220 1R2
FOR 3,3V ADC

XTAL[1..2]

XTAL[1..2]

R203

VSSOSC 50R_opt

XTAL1 XTAL2

R204
0R R205 0R

R206 opt

2

1

R202 GND opt

P20.2

R201 10K

Y201 20MHz

R207 0R

U201B CLOCK & TESTMODE
51 P20.2 / TESTMODE VEXT(OSC)

43 XTAL1

VDD(OSC)

44 XTAL2 JTAG / DAP / OCDS1

45

VEXTOSC R209 V_UC

VDDOSC 42

R208 VDD

CB201 0R 330n

CB202 0R 330n

VSSOSC

VSSOSC GND

A

C203 47nF
GND
R245 AN11 4K7

AN8 AN9
AN11_I AN12_I AN13 AN14 AN15

22 21

AN8 AN9

20 19 18 17 16

AN11 AN12 AN13 AN14 AN15

VSSM 25

CB204 470n
GND

+3V3 R221 1R2_opt

VAREF1 VAREF1 23

VDDM R222

C201 10pF

C202 10pF

VSSOSC VSSOSC

DAP0
R214 0R
DAP0_A

/TRST DAP0 DAP1

R212 33R

49 50 47 46

TRST TCK / DAP0 TMS / DAP1 P21.6 / TDI

P21.7 / TDO / DAP2

48

TC3X2

R213 33R

C204 47nF
GND

AN32_I AN33_I AN34

15 14 13

AN32 / P40.4 AN33 / P40.5 AN34

TC3X2

CB205 6R8 2,2F
GND

DAP1
R215 0R

DAP2

V_STBY

DAP1_A

R246
4K7 C205 47nF

AN12

GND
B R248 AN32 4K7

C207 47nF
GND

R249
4K7 C208 47nF

AN33

GND

AN[0..34]

S202 P33.9 GND

R256 1K5

R255 47K

P33.9

P00.0

U201D

PORTS

10 P00.0

P23.1 41

TC3X2

P23.1

P14.1 P15.1 P11.10 P15.3 P11.11 P11.3 P02.8

DAP2 P20.2 P21.6

R216 P21.7 0R

U201C

ON BOARD USED PERIPHERALS / PINS

66 P14.1 / ARX0A

P14.0 / ATX0 65

62

ASCLIN P15.1 / ARX1A

P15.0 / ATX1 61

76 P11.10 / CAN03_RXDD P11.12 / CAN03_TXD 78

64

CAN P15.3 / CAN01_RXDA P15.2 / CAN01_TXD

63

77 73
9

P11.11 / SLSO14 P11.3 / MRST1B
QSPI / TLF35584 P02.8

P11.6 / SCLK1 P11.9 / MTSR1
P11.2 P33.8 / SMU_FSP0
P33.10

74 75 72 34 36

P14.0
P15.0
P11.12
P15.2
P11.6 P11.9 P11.2 P33.8 P33.10

DEBUG..

DEBUG..

PORT[00..34]

PORT[00..34]

B

V_UC

P02.1 P02.4 P02.0 P20.9 P20.8

2 5 1 56 55

P02.1 / RXD0A

P02.4 / TXEN0A

P02.0 / TXD0A

P20.9 / REQ7_0

P20.8

ERAY

P02.3 / RXD0B P02.5 / TXEN0B
P02.2 / TXD0B P02.7 P02.6

4 6 3 8 7

P02.3 P02.5 P02.2 P02.7 P02.6

C

R240

R241 47K P14.5

P14.5 P14.3 P10.5 P10.6

68 67 79 80

P14.5 / HWCFG1 HWCFG P14.3 / HWCFG3 P10.5 / HWCFG4 P10.6 / HWCFG5

C

1K5_opt GND

P33.9

35 P33.9

BUTTON

V_UC

P20.11 P20.12 P20.13 P20.14

57 58 59 60

P20.11 P20.12 P20.13 P20.14

TC3X2

LEDs

P33.4 P33.5 P33.6 P33.7

30 31 32 33

P33.4 P33.5 P33.6 P33.7

S201

1

8

1

7

2

6

3

5

4

DIPSW-4 GND

HWCFG4 R232 1K5
HWCFG5 R234 1K5

R233 47K
V_UC

P10.5

R235 47K
V_UC

P10.6

NOTE: S201 is for device configuration (about configuration see the manual of assembled device) Switch ON means the corresponding signal is low. Switch OFF means the corresponding signal is high.

HWCFG3 R236 1K5

R237 47K P14.3

D

D

7-3

TriBoard TC3X2 Clock, Config, Debug, Ports, ADC

Sheet: 2 of 7

Infineon Technologies AG ATV MC ACE ATV CES

Number:

Am Campeon 1-12

Revision: 1.0

D-85579 Neubiberg

Date: 15.11.2019

Tel.: +49-89-234-0

File: G:\Technical_Support\TriCore\TriBoard\EDA_DXP\TriBoard AURIX 2G\TriBoard TC3X2\TriBoard TC3X2 V1.X\Clk_Cfg_Dbg_Ports_Adc.sch

1

2

3

4

5

6

7

8

V1.0 2020-05

TriBoard Manual TC3X2
Hardware: TriBoard TC3X2 TH V1.0 and TriBoard TC3X2 V1.0
Schematic and Layout

Figure 7-3 Schematic - On Board Peripherals

User Manual

TriBoard TC3X2 TH V1.0 and TriBoard TC3X2 V1.0

1

2

3

4

5

6

7

8

PORT[00..34]

PORT[00..34]

V_UC

P33.4 P33.5 P33.6 P33.7 P20.11 P20.12 P20.13 P20.14

R391 R392 R393 R394 R395 R396 R397 R398 470R 470R 470R 470R 470R 470R 470R 470R

D302 LB T673
D303 LB T673
D304 LB T673
D305 LB T673
D306 LB T673
D307 LB T673
D308 LB T673
D309 LB T673

A

V_STBY R390 0R

V_UC R399 0R

P11.10

R301

CB301 V_CO

GND

100n

U301

3 4

VCC VIO RXD CANH

5 7

R306 0R

R308

R307 0R

X301

V_UC

P11.12 P14.1 P14.0

R302 0R 0R R303 R304 0R_opt 0R_opt

1 2

TXD CANL GND STB

6 8

120R R309 0R

1

2

3

4

5

6

A

TLE9251VSJ

7

8

9 10

R305

CAN0

R346

0R

V_UC

U305

6
CB309 100n 2

VDD CS SCK SI
VSS SO

5 1 3 4

GND

25LC020AT-E/OT

10K

R348

P23.1

0R P11.6

P11.9

P11.3

P15.3 P15.2

R311 R312 0R 0R

GND

V_UC

CB302 V_CO

GND

100n

U302

3 4

VCC VIO RXD CANH

5 7

1 2

TXD CANL GND STB

6 8

R316 0R

R318

R317 0R 120R R319

0R

GND

X302

1

2

3

4

5

6

TLE9251VSJ

7

8

9 10

VIN D301

R315

1 3
2
BAT54-04

C303 22F/50V

CB310 100n

U306 7 VS
8 INH

GND 5 WK 3

GND VIN
R361

V_UC R363 10K

0R GND

B

GND

X305

1

2

3

4

5

6

7

8

9 10

GND

R360 1K

R359 VIN
0R_opt

GND
C304 1n

GND

6 BUS

RXD TXD

1 4

EN 2

TLE7259-3GE

10K
V_UC R362 0R

R364 0R R365 0R

P15.1 P15.0

V_UC

LIN1

GND

P02.0

R320

CAN1

GND

B

P02.4 P02.1 P20.8

0R R321
0R R322
0R R323
0R

P20.9

R324 0R

R338 4K7

V_UC

TXDA TXENA RXDA BGEA ENA
R330

R331 4K7

4K7

U303

4 5 6 7

TXD TXDEN RXD BGE

2 EN 8 STBN

ERRNA 10 9
R332 opt

ERRN RXEN
TLE9221SX

BP BM

15 14

BPA BMA

VBAT VDD VIO

11 16 3

T301

1

2

4

3

VIN B82789-C0104 V_CO V_UC

GND 13

GND

INH WAKE

1 12

INHA

CB303 100n
CB304 100n
CB305 100n

R333 R334 GND GND GND opt opt

R335 51R

GND R336 51R

R337 0R

C301 10nF
GND

X303

1

2

3

4

5

6

7

8

9 10

ERAY-A

C

GND

C

GND GND

P02.2

R340

V_UC

P02.5 P02.3 P02.6

0R R341 0R R342 0R
R343 0R

P02.7

R344 0R

R358 4K7

V_UC

TXDB TXENB RXDB BGEB ENB
R350

R351 4K7

4K7

U304

4 5 6 7

TXD TXDEN RXD BGE

2 EN 8 STBN

ERRNB 10 9
R352 opt

ERRN RXEN
TLE9221SX

BP BM

15 14

BPB BMB

VBAT VDD VIO

11 16 3

T302

1

2

4

3

VIN B82789-C0104 V_CO V_UC

GND 13

GND

INH WAKE

1 12

INHB

CB306 100n
CB307 100n
CB308 100n

R353 opt

R354 opt

GND

GND

GND

R355 51R

GND R356 51R

R357 0R

C302 10nF
GND

X304

1

2

3

4

5

6

7

8

9 10

ERAY-B

GND

GND GND

D

D

7-4

TriBoard TC3X2 On Board Peripherals

Sheet: 3 of 7

Infineon Technologies AG ATV MC ACE ATV CES

Number:

Am Campeon 1-12

Revision: 1.0

D-85579 Neubiberg

Date: 15.11.2019

Tel.: +49-89-234-0

File: G:\Technical_Support\TriCore\TriBoard\EDA_DXP\TriBoard AURIX 2G\TriBoard TC3X2\TriBoard TC3X2 V1.X\Peripherals.sch

1

2

3

4

5

6

7

8

V1.0 2020-05

TriBoard Manual TC3X2
Hardware: TriBoard TC3X2 TH V1.0 and TriBoard TC3X2 V1.0
Schematic and Layout

Figure 7-4 Schematic - miniWiggler JDS and Debug connectors

User Manual

TriBoard TC3X2 TH V1.0 and TriBoard TC3X2 V1.0

1

2

3

4

5

6

7

8

VDD_FT L401

VDD_FT

L402

VDD_FT

VDD_FT

V_UC V_UC

MMZ1608R300A C402 CB405 4u7/6V 100n

CB412 100n

VDD_FT CB402

100n

CB413 100n

C403 MMZ1608R300A 4u7/6V
VDD_FT

D402 LP T67K

R410 10K

R415 R409 10K 10K

V_UC

FOR USING WIGGLER WITH JTAG: Assemble R447-R451

GND GND

CB411

100n

U405

GND

CB410 100n

A

VDD_USB

TLE4274GSV33 VDD_FT 1 IN OUT 3

+1V8

2 GND

CB401 100n

C401 10/6V

GND

GND GND

C406

49 VREGOUT

GND

3,3uF VDD_FT

50 VREGIN

BU401
VBUS DD+ ID
GND

1 2 3 4 5 GND

R402 27R R403 27R

7 DM 8 DP

Micro USB

C404 8pF
C405 8pF

3

1

GND

R404 12K/1%

Y401 NX3225SA-12MHz

6 REF 2 OSCI 3 OSCO

GND

VDD_FT R401

14 RESET

B

1K VDD_FT

R441
10K R442

63 62 61

EECS EECLK EEDATA

VDD_FT
CB406 100n GND

U402

8 5
7 4

VCC CS GND CLK
D DNC Q ORG

1 2 3
6

93LC46B-I/SN

R406

10K R405
10K

GND

VDD_FT R407 opt

13 TEST
36 SUSPEND 60 PWREN

2K2

1 5 11 15 25 35 47 51

GND GND GND GND GND GND GND GND

VCORE VCORE VCORE

12 37 64

VPLL VPHY

9 4

GND

10 AGND

VCCIO VCCIO VCCIO VCCIO

20 31 42 56

CB403 CB404 CB409

100n 100n

GND GND

GND

R411 100R

2 5

R412

680R ADBUS4 1

6

Q401A

3

4

Q401B

U403

1 19

G G

VCC GND

20 10

CB407 100n

Remove R455-R456

100n U401 GND

R450 1K_opt

ADBUS0 ADBUS1 ADBUS2 ADBUS3 ADBUS4 ADBUS5 ADBUS6 ADBUS7

16 17 18 19 21 22 23 24

ADBUS0 ADBUS1 ADBUS2 ADBUS3 ADBUS4 ADBUS5 ADBUS6 ADBUS7

D401 LB T673

BSD235N ADBUS0 ADBUS1 ADBUS3 ADBUS6 ACBUS0 ACBUS1
ACBUS5
VDD_FT

BSD235N 2 4 6 8
11 13 15 17
R413

GND

1A1 1A2 1A3 1A4 2A1 2A2 2A3 2A4

1Y1 1Y2 1Y3 1Y4 2Y1 2Y2 2Y3 2Y4

18 DAP0_A 16 TDI 14 TMS 12 USR0 9 /TRST_J 7 /RESET 5 3 USR8

SN74AHC244PW

R421 opt

R422 opt

R447 R448 R449

0R_opt 0R_opt 0R_opt

DAP0_A P21.6 DAP1_A /TRST

D403

3

1 /PORST

BAT54 R454 5K1

DAP1_A

ACBUS0 ACBUS1 ACBUS2 ACBUS3 ACBUS4 ACBUS5 ACBUS6 ACBUS7

26 27 28 29 30 32 33 34

BDBUS0 BDBUS1 BDBUS2 BDBUS3 BDBUS4 BDBUS5 BDBUS6 BDBUS7

38 39 40 41 43 44 45 46

BCBUS0 BCBUS1 BCBUS2 BCBUS3 BCBUS4 BCBUS5 BCBUS6 BCBUS7

48 52 53 54 55 57 58 59

FT2232HL

ACBUS0 ACBUS1 ACBUS2 ACBUS3 ACBUS4 ACBUS5 ACBUS6 ACBUS7

BDBUS0 BDBUS1

VDD_FT

R416 10K

2

BDBUS0 1

6

Q402A

BSD235N

VDD_FT

R414

R418

2

4K7

10K

BDBUS1 1

6

Q403A BSD235N

R443

10K

10K ACBUS4 1

2

U404
/OE A

4Y

VCC GND

VDD_FT 5

CB408

3

100n

GND GND

ADBUS1 ADBUS2 ACBUS5 ACBUS3 ACBUS7 ACBUS2 ACBUS6
V_UC

SN74LVC1G125

GND

VDD_FT

GND

CB414

U406

1 VCCA VCCB

ADBUS2 100n 3 A

B

V_UC 6 4

ACBUS5
R444 4K7

5 DIR GND 2 SN74LVC1T45DBV GND

R417 10K

5

3

4

Q402B BSD235N
R419

V_UC

V_UC
R420 4K7
R437 R440 0R 0R_opt

VDD_FT

GND GND

CB416

U407

1 VCCA VCCB

ACBUS3 100n 3 A

B

V_UC 6 4

ACBUS7
R445 4K7

5 DIR GND 2 SN74LVC1T45DBV GND

5

10K

3

4

Q403B BSD235N
R436 R438

VDD_FT

GND GND

CB418

U408

1 VCCA VCCB

ACBUS2 100n 3 A

B

ACBUS6

5 DIR GND

V_UC 6 4 2

CB415 GND
100n R455 DAP1_A 0R R451 P21.7 0R_opt
CB417 GND
100n R456 P21.7
0R R423 P21.6
0R_opt V_UC
CB419 GND R431
100n USR1 100K
R427 P21.7

0R 0R_opt

R446 4K7

SN74LVC1T45DBV GND

0R_opt R428 P20.2

DEBUG.. P21.6
P21.7 P21.7 P21.6 P21.7 P20.2

DEBUG..

A B

GND

0R_opt

7-5

P21.6 P20.2 P33.6 P33.7
P14.0 P15.2 P14.1 P15.3

P21.7 P21.6 P21.7 P20.2

P21.6

C
D PORT[00..34]

PORT[00..34]

R424 0R_opt

V_UC

GND
/DBG_PORST /BRKOUT
GND

X401

2 4 6 8 10 12 14 16

VCC

TMS

GND

TDO

GND CPUCLOCK

PORST

TDI

BRKOUT

TRST

GND

TCK

OCDSE

BRKIN

KEY

N.C.

OCDS1

1 3 5 7 9 11 13 /BRKIN 15

R425 0R_opt

R426 0R_opt
DAP1_A
/TRST DAP0_A

/DBG_PORST

DAP0_A

X404

P21.7 P21.6

R439

DAP0_A 2 4

22R_opt

6

/DBG_PORSTV_UC

8 10

TCK / DAP0 GND

TDO / DAP2 /TRST

TDI / - TMS / DAP1

VDDsense BRKIO

/PORST

ESR0

1 3 5 7 9

P21.7

R433

ETK_CON_opt

0R_opt

GND

/TRST DAP1_A

R429 0R

R430 0R_opt

X406

2 4 6 8 10

DAP1 DAP0 USER0 USER1 RESET

VREF GND GND KEY GND

1 3 5 7 9

DAP_SCR

X402

DAP1

2

DAP0

4

DAP2

6

DAP3_USR1 8

/DBG_PORST 10

DAP1 DAP0 USER0 USER1 RESET

VREF GND GND KEY GND

1 3 5 7 9

DAP

V_STBY R457 0R
GND V_UC
R452 0R
GND

/DBG_PORST

1

2

3

4

5

C

R408 0R

/PORST

D

TriBoard TC3X2 miniWiggler and Debug connectors

Sheet: 4 of 8

Infineon Technologies AG ATV MC ACE ATV CES

Number:

Am Campeon 1-12

Revision: 1.0

D-85579 Neubiberg

Date: 15.11.2019

Tel.: +49-89-234-0

File: G:\Technical_Support\TriCore\TriBoard\EDA_DXP\TriBoard AURIX 2G\TriBoard TC3X2\TriBoard TC3X2 V1.X\Wiggler_Dbg_con.sch

6

7

8

V1.0 2020-05

TriBoard Manual TC3X2
Hardware: TriBoard TC3X2 TH V1.0 and TriBoard TC3X2 V1.0
Schematic and Layout

Figure 7-5 Schematic - Power Supply

User Manual

TriBoard TC3X2 TH V1.0 and TriBoard TC3X2 V1.0

1

2

3

4

5

6

7

8

7-6

V_STBY C507

GND

1F/10V U501

U502

POWER 2 4
1,2,5,6
QST 5

A

X501 VCC_IN D502 1 SS26
GND VDD_USB D503

VIN

L501

D501

XAL5050-223MEB

MSS2P2

C501

C502

47F/40V

GND

2 VST

45 44

VS1 VS2

100F/40V CB501

SSTWWL12F355448324QVVSX1A/2L4L053002-472MEC

V_PREREG

TLS205B0EJV33

8 IN

Q

C503

V_UC

SENSE/ADJ

1 2

PG1 PG2

41 40

CB502

22F/10V GND

5 EN

GND GND

BYP 4

+3V3

C504

C505 10F

10nF

GND

A

GND SS22_opt
/PORST

Q501 BSL606SN
3
R501 250mR

100n 25
46
47 48
1

STU
DRG
RSH RSL BSG

GND 17 ROT

FB1 FB2 FB3 FB4 FB5

34 35 36 37 38

SYN EVC VCI SEC

19 21 26 23

100n GND

6 HS

GND

+3V3

+3V3

V_UC

/ESR1
P11.11 P11.6 P11.9 P11.3

18 INT

15 14 12 13

SCS SCL SDI SDO

QUC 30 QCO 31

V_UC C508
V_CO 4,7F C509
V_VR 4,7F

GND GND

R511 620R

R512 680R

R513 1K5

VDD

Q504

R510

1

3

D505 LP T67K

D506 LP T67K

D507 LP T67K

GND

GND

P11.2

16 WDI

QVR 29

C510 GND

82K

BC848C

2

B

P33.8 P02.8

R503

D508

1K R504

GND LP T67K VCC_IN

470R V_STBY R507 100K

20 11 10

ERR SS1 SS2

24 3 4

FRE ENA WAK

GND AG1 AG2 AG3 AG4 AG5 AGS

QT1 33

QT2 32

TM GST

22 27

QT1 4,7F C511 GND
QT2 4,7F C512 GND
4,7F
V_CO

GND

GND

GND

V_STBY

CB510

GND R520 0R

C516 10F

VDD

CB515
100n CB516

B

PORT[00..34]

3

X502 1

Q505

HS 6 7 8 28 39 9

R508

100n

2 3

GND

4

1BSS138N GND
R502

0R R509

V_UC

R521

100n CB517

2

10K

20K

EmW_Pwr_opt

GND

0R

100n

P33.10

GND

C517

CB518

PORT[00..34]

S502 VIN
ENA

R505
10K R506 100K

V_UC

GND +3V3

CB511 4,7F CB512 100n

100n GND

GND

V_UC

S501 RESET

R531 4K7

R532

3

1 C515

Q502 BC848C

R533 0R

100n R524 R525 VDDP3 0R_opt 0R_opt

2

10K

4,7F

71 54 29 11

69 12 37

C

C519 CB520

C

V_UC

2,2F 100n

U201A

VDD VDD VDD VDD

VDDO 40

VEVRSB 28

VEXT VEXT VEXT

VDDP3 70

/PORST

/PORST

/PORST

R534 2K2

GND GND /PORST

GND

GND

GND /PORST

53 PORST

TC3X2

V_UC

/ESR1

/ESR1

R535 4K7

/ESR1

V_UC

2

R537 1 10K

3

Q503 BC858C
R538
120R

D504 GND
LS T67K

/ESR1 VCAP1
C518 1F VCAP0

52 ESR1
38 VCAP1 39 VCAP0

POWER

HS VSS

GND

V_UC

5V

3,3V

U501

TLF35584QVVS1 TLF35584QVVS2

R524

opt

0R

R240

opt

1K5

D

R241

47K

opt

D

R513

1K5

680R

R391-398

470R

100R

TriBoard TC3X2 Power supply

Sheet: 5 of 7

Infineon Technologies AG ATV MC ACE ATV CES

Number:

Am Campeon 1-12

Revision: 1.0

D-85579 Neubiberg

Date: 15.11.2019

Tel.: +49-89-234-0

File: G:\Technical_Support\TriCore\TriBoard\EDA_DXP\TriBoard AURIX 2G\TriBoard TC3X2\TriBoard TC3X2 V1.X\Supply.sch

1

2

3

4

5

6

7

8

V1.0 2020-05

V1.0 2020-05

TriBoard TC3X2 TH V1.0 and TriBoard TC3X2 V1.0

7-7

User Manual

Figure 7-6 Schematic - Connectors (Plug)

1

2

3

NC1[5..80] NC1[5..80]

X601

GND

1 PLUG2

A B

NC1.5 NC1.7 NC1.9 NC1.11 NC1.13 NC1.15 NC1.17 NC1.19 NC1.21 NC1.23 NC1.25 NC1.27 NC1.29 NC1.31 NC1.33 NC1.35 NC1.37 NC1.39 NC1.41 NC1.43 NC1.45 NC1.47 NC1.49 NC1.51 NC1.53 NC1.55 NC1.57 NC1.59 NC1.61 NC1.63 NC1.65 NC1.67 NC1.69 NC1.71 NC1.73 NC1.75 NC1.77 NC1.79

3

4

5

6

7

8

9 10

11 12

13 14

15 16

17 18

19 20

21 22

23 24

25 26

27 28

29 30

31 32

33 34

35 36

37 38

39 40

41 42

43 44

45 46

47 48

49 50

51 52

53 54

55 56

57 58

59 60

61 62

63 64

65 66

67 68

69 70

71 72

73 74

75 76

77 78

79 80

P21.6 P21.7 NC1.10 NC1.12 NC1.14 NC1.16 NC1.18 NC1.20 NC1.22 NC1.24 NC1.26 NC1.28 NC1.30 NC1.32 NC1.34 NC1.36 NC1.38 NC1.40 NC1.42 NC1.44 NC1.46 NC1.48 NC1.50 NC1.52 NC1.54 NC1.56 NC1.58 NC1.60 NC1.62 NC1.64 NC1.66 NC1.68 NC1.70 NC1.72 NC1.74 NC1.76 NC1.78 NC1.80

FTSH-140-02-L-DV-ES-A

4

/ESR1

XTAL[1..2]

XTAL[1..2]

AN[0..34]

AN[0..34]

NC3[5..80] NC3[5..80] C
ADC
D

NC3.5 NC3.7 NC3.9 NC3.11 AN4 AN5 NC3.17 NC3.19 NC3.21 NC3.23 NC3.25 NC3.27 NC3.29 NC3.31 NC3.33 NC3.35
GND VDDM
GND AN32 GND AN33 AN34 NC3.51 NC3.53 NC3.55 NC3.57 NC3.59
NC3.63GND NC3.65 NC3.67
P02.6 V_UC P02.7 P02.8 P33.7 NC3.79

X603

1 PLUG2

3

4

5

6

7

8

9 10

11 12

13 14

15 16

17 18

19 20

21 22

23 24

25 26

27 28

29 30

31 32

33 34

35 36

37 38

39 40

41 42

43 44

45 46

47 48

49 50

51 52

53 54

55 56

57 58

59 60

61 62

63 64

65 66

67 68

69 70

71 72

73 74

75 76

77 78

79 80

GND

NC3.6 AN8 NC3.10 NC3.12 AN9 NC3.16 NC3.18 NC3.20 AN11 AN12 AN13 AN14 AN15 NC3.32 NC3.34 NC3.36

GND VAREF1 NC3.42

GND

NC3.46 NC3.48 NC3.50 NC3.52 NC3.54 NC3.56 NC3.58 NC3.60

GND P33.6 NC3.66 NC3.68

+3V3 NC3.72 NC3.74 NC3.76 P14.3 NC3.80

FTSH-140-02-L-DV-ES-A

PORT[00..34]

PORT[00..34]

1

2

3

4

5

6

VCC_IN
NC2.9 NC2.11 NC2.13 /ESR1 NC2.17
NC2.21GND P10.5 NC2.25 NC2.27 NC2.29 NC2.31 NC2.33 NC2.35 P20.9 P20.13 P33.5 NC2.43 P00.0 NC2.47
XTAL1GND XTAL2 P15.3 P15.2 P14.1 P14.0 P20.11 P20.14 P20.12 NC2.69 NC2.71 NC2.73 NC2.75
V_UC

X602

1 PLUG2

3

4

5

6

7

8

9 10

11 12

13 14

15 16

17 18

19 20

21 22

23 24

25 26

27 28

29 30

31 32

33 34

35 36

37 38

39 40

41 42

43 44

45 46

47 48

49 50

51 52

53 54

55 56

57 58

59 60

61 62

63 64

65 66

67 68

69 70

71 72

73 74

75 76

77 78

79 80

GND VCC_IN

NC2.10 NC2.12 NC2.14 NC2.16 NC2.18

GND

/PORST NC2.24 NC2.26 P23.1 NC2.30 NC2.32 NC2.34 NC2.36 NC2.38 NC2.40 NC2.42 P20.2 NC2.46 NC2.48

GND

NC2.52 NC2.54 NC2.56 NC2.58 P15.1 P15.0 NC2.64 NC2.66 NC2.68 P20.8 NC2.72 NC2.74

GND

+3V3

FTSH-140-02-L-DV-ES-A

NC4.5 NC4.7 P02.0 P02.1 P02.2 P02.3 P02.4 P02.5 NC4.21 NC4.23 NC4.25 NC4.27 NC4.29 NC4.31 NC4.33 P10.6 NC4.37 NC4.39 NC4.41 NC4.43 P11.2 P11.3 NC4.49 NC4.51 P11.6 NC4.55 NC4.57 P11.9 P11.10 P11.11 P11.12 NC4.67 NC4.69 NC4.71 NC4.73
V_UC
V_UC

X604

1 PLUG2

3

4

5

6

7

8

9 10

11 12

13 14

15 16

17 18

19 20

21 22

23 24

25 26

27 28

29 30

31 32

33 34

35 36

37 38

39 40

41 42

43 44

45 46

47 48

49 50

51 52

53 54

55 56

57 58

59 60

61 62

63 64

65 66

67 68

69 70

71 72

73 74

75 76

77 78

79 80

GND
NC4.6 NC4.8 NC4.10 NC4.12 NC4.14 NC4.16 NC4.18 NC4.20 NC4.22 NC4.24 NC4.26 NC4.28 NC4.30 NC4.32 NC4.34 NC4.36 NC4.38 NC4.40 NC4.42 NC4.44 NC4.46 NC4.48 NC4.50 NC4.52 NC4.54 P33.8 P33.9 P33.10 NC4.62 NC4.64 NC4.66 NC4.68 NC4.70 NC4.72 NC4.74 NC4.76
+3V3

FTSH-140-02-L-DV-ES-A

5

6

7 NC2[5..80] NC2[5..80]
/PORST

8
TOP
A

PERIPHERALS

B NC4[5..80] NC4[5..80]

C
PORTS

D

TriBoard TC3X2 Connectors plug

Sheet: 6 of 7

Infineon Technologies AG ATV MC ACE ATV CES

Number:

Am Campeon 1-12

Revision: 1.0

D-85579 Neubiberg

Date: 15.11.2019

Tel.: +49-89-234-0

File: G:\Technical_Support\TriCore\TriBoard\EDA_DXP\TriBoard AURIX 2G\TriBoard TC3X2\TriBoard TC3X2 V1.X\Connectm.sch

7

8

TriBoard Manual TC3X2
Hardware: TriBoard TC3X2 TH V1.0 and TriBoard TC3X2 V1.0
Schematic and Layout

V1.0 2020-05

TriBoard TC3X2 TH V1.0 and TriBoard TC3X2 V1.0

7-8

User Manual

Figure 7-7 Schematic - Connectors (Socket)

1

2

3

NC1[5..80] NC1[5..80]

X701

GND

1SOCKE2T

A B

NC1.5 NC1.7 NC1.9 NC1.11 NC1.13 NC1.15 NC1.17 NC1.19 NC1.21 NC1.23 NC1.25 NC1.27 NC1.29 NC1.31 NC1.33 NC1.35 NC1.37 NC1.39 NC1.41 NC1.43 NC1.45 NC1.47 NC1.49 NC1.51 NC1.53 NC1.55 NC1.57 NC1.59 NC1.61 NC1.63 NC1.65 NC1.67 NC1.69 NC1.71 NC1.73 NC1.75 NC1.77 NC1.79

3

4

5

6

7

8

9 10

11 12

13 14

15 16

17 18

19 20

21 22

23 24

25 26

27 28

29 30

31 32

33 34

35 36

37 38

39 40

41 42

43 44

45 46

47 48

49 50

51 52

53 54

55 56

57 58

59 60

61 62

63 64

65 66

67 68

69 70

71 72

73 74

75 76

77 78

79 80

P21.6 P21.7 NC1.10 NC1.12 NC1.14 NC1.16 NC1.18 NC1.20 NC1.22 NC1.24 NC1.26 NC1.28 NC1.30 NC1.32 NC1.34 NC1.36 NC1.38 NC1.40 NC1.42 NC1.44 NC1.46 NC1.48 NC1.50 NC1.52 NC1.54 NC1.56 NC1.58 NC1.60 NC1.62 NC1.64 NC1.66 NC1.68 NC1.70 NC1.72 NC1.74 NC1.76 NC1.78 NC1.80

FLE-140-01-G-DV-A

4

/ESR1

XTAL[1..2]

XTAL[1..2]

AN[0..34]

AN[0..34]

NC3[5..80] NC3[5..80] C
ADC
D

NC3.5 NC3.7 NC3.9 NC3.11 AN4 AN5 NC3.17 NC3.19 NC3.21 NC3.23 NC3.25 NC3.27 NC3.29 NC3.31 NC3.33 NC3.35
GND VDDM
GND AN32 GND AN33 AN34 NC3.51 NC3.53 NC3.55 NC3.57 NC3.59
NC3.63GND NC3.65 NC3.67
P02.6 V_UC P02.7 P02.8 P33.7 NC3.79

X703

1SOCKE2T

3

4

5

6

7

8

9 10

11 12

13 14

15 16

17 18

19 20

21 22

23 24

25 26

27 28

29 30

31 32

33 34

35 36

37 38

39 40

41 42

43 44

45 46

47 48

49 50

51 52

53 54

55 56

57 58

59 60

61 62

63 64

65 66

67 68

69 70

71 72

73 74

75 76

77 78

79 80

GND

NC3.6 AN8 NC3.10 NC3.12 AN9 NC3.16 NC3.18 NC3.20 AN11 AN12 AN13 AN14 AN15 NC3.32 NC3.34 NC3.36

GND VAREF1 NC3.42

GND

NC3.46 NC3.48 NC3.50 NC3.52 NC3.54 NC3.56 NC3.58 NC3.60

GND P33.6 NC3.66 NC3.68

+3V3 NC3.72 NC3.74 NC3.76 P14.3 NC3.80

FLE-140-01-G-DV-A

PORT[00..34]

PORT[00..34]

1

2

3

4

5

6

VCC_IN
NC2.9 NC2.11 NC2.13 /ESR1 NC2.17
NC2.21GND P10.5 NC2.25 NC2.27 NC2.29 NC2.31 NC2.33 NC2.35 P20.9 P20.13 P33.5 NC2.43 P00.0 NC2.47
XTAL1GND XTAL2 P15.3 P15.2 P14.1 P14.0 P20.11 P20.14 P20.12 NC2.69 NC2.71 NC2.73 NC2.75
V_UC

X702

1SOCKE2T

3

4

5

6

7

8

9 10

11 12

13 14

15 16

17 18

19 20

21 22

23 24

25 26

27 28

29 30

31 32

33 34

35 36

37 38

39 40

41 42

43 44

45 46

47 48

49 50

51 52

53 54

55 56

57 58

59 60

61 62

63 64

65 66

67 68

69 70

71 72

73 74

75 76

77 78

79 80

GND VCC_IN

NC2.10 NC2.12 NC2.14 NC2.16 NC2.18

GND

/PORST NC2.24 NC2.26 P23.1 NC2.30 NC2.32 NC2.34 NC2.36 NC2.38 NC2.40 NC2.42 P20.2 NC2.46 NC2.48

GND

NC2.52 NC2.54 NC2.56 NC2.58 P15.1 P15.0 NC2.64 NC2.66 NC2.68 P20.8 NC2.72 NC2.74

GND

+3V3

FLE-140-01-G-DV-A

NC4.5 NC4.7 P02.0 P02.1 P02.2 P02.3 P02.4 P02.5 NC4.21 NC4.23 NC4.25 NC4.27 NC4.29 NC4.31 NC4.33 P10.6 NC4.37 NC4.39 NC4.41 NC4.43 P11.2 P11.3 NC4.49 NC4.51 P11.6 NC4.55 NC4.57 P11.9 P11.10 P11.11 P11.12 NC4.67 NC4.69 NC4.71 NC4.73
V_UC
V_UC

X704

1SOCKE2T

3

4

5

6

7

8

9 10

11 12

13 14

15 16

17 18

19 20

21 22

23 24

25 26

27 28

29 30

31 32

33 34

35 36

37 38

39 40

41 42

43 44

45 46

47 48

49 50

51 52

53 54

55 56

57 58

59 60

61 62

63 64

65 66

67 68

69 70

71 72

73 74

75 76

77 78

79 80

FLE-140-01-G-DV-A

GND
NC4.6 NC4.8 NC4.10 NC4.12 NC4.14 NC4.16 NC4.18 NC4.20 NC4.22 NC4.24 NC4.26 NC4.28 NC4.30 NC4.32 NC4.34 NC4.36 NC4.38 NC4.40 NC4.42 NC4.44 NC4.46 NC4.48 NC4.50 NC4.52 NC4.54 P33.8 P33.9 P33.10 NC4.62 NC4.64 NC4.66 NC4.68 NC4.70 NC4.72 NC4.74 NC4.76
+3V3

5

6

7 NC2[5..80] NC2[5..80]

8
BOTTOM

A /PORST

PERIPHERALS

B NC4[5..80] NC4[5..80]

C
PORTS

D

TriBoard TC3X2 Connectors socket

Sheet: 7 of 7

Infineon Technologies AG ATV MC ACE ATV CES

Number:

Am Campeon 1-12

Revision: 1.0

D-85579 Neubiberg

Date: 15.11.2019

Tel.: +49-89-234-0

File: G:\Technical_Support\TriCore\TriBoard\EDA_DXP\TriBoard AURIX 2G\TriBoard TC3X2\TriBoard TC3X2 V1.X\Connectf.sch

7

8

TriBoard Manual TC3X2
Hardware: TriBoard TC3X2 TH V1.0 and TriBoard TC3X2 V1.0
Schematic and Layout

TriBoard TC3X2 TH V1.0 and TriBoard TC3X2 V1.0

V1.0 2020-05

User Manual

7-9

Figure 7-8 Component Plot Top Layer

R390 X404

Y401 R402 R403

X 501

X305 R359

C 303 R3 61

D301

C501

L501 R501
CB 501

U501

C507 R507

C502

C504 L502
C503 CB502
C 509
C508 R508

C505

X304

R357

R355

C 302

R356

T302

R324

R337 C301

X303
R335 T301
R 336

L401

C402

R401

CB405

BU401 CB401

U401

CB402 D401
R411

R354 R344

D402 R456

U 502

S501

R426 R425 R532
R531

R202 R201

X401

R424

U408

R427

CB 417 R428
R446

R423

R451

R454

R444

CB415

CB419 R455

CB414 U406

U407

U 404 CB416

CB408

CB418

D504
D508 R509

X603

R248 R249

S502 R244

R222

D507 D506 D505

CB511 C208 C207
R246
R245

X302 CB205

X301

R439 R391
U305

R346 CB309

R348 U 201

CB 512

R233 R232
R234 R235
R237

R241

R524 R236

S201 R525

R255

R398

R397

R396

R395

R394

R 393

R392

D302 D303 D304 D305 D306 D307 D308 D309
R256

X604

R399

R457

R2 40

S202

R429 R216 R213

R212

X406

R 430

R207 Y201

X402

R215 R214
C202

R206

C201 R203

R205 R204

R452

X502

X601 X602

7.3

Layout

TriBoard Manual TC3X2
Hardware: TriBoard TC3X2 TH V1.0 and TriBoard TC3X2 V1.0
Schematic and Layout

V1.0 2020-05

TriBoard TC3X2 TH V1.0 and TriBoard TC3X2 V1.0

7-10

User Manual

Figure 7-9 Component Plot Bottom Layer

X701 X702

X704

CB413 CB 412

R535

CB51 6
C B201 CB202 R 209

C51 9

CB518

C517

R 208 C 516
C518

C 203

R520

CB 517 CB 510 CB 204 C205 C204

CB520 CB 515

C406 CB409

C404

C 405

C401

R414 CB404

R433

R436 R304 R 302

R308

R 449 R43 8
R 307

R422 R 448 R 447

R309 CB 407

R431

R419

R440 R420 R437

Q403

R418

R417

Q 402

R 416 R44 3

R413 R421
R410

U403

Q401

R409

R445

R41 5

CB403

R412 R450

L 402 CB411
R442
R40 5

C403

CB 410

R404 U405
R441

R 406

U402

CB40 6 R407

R334

U301

CB 301

R303

R521

R301 R 312

R306 R 317

CB302 R 318
U 302

R311 R5 13 R512

R319

R 305

D403

R320 R 321

R323 R330
CB305

R 338

R408

R322

R331

R315 C515

Q50 2

R340

R341

R342

R350

R343 CB30 8

R316

R538

R 533 Q 503

R358 R351

R 537

R3 64 R365

U304

U303

CB 304 R333 CB 303 R332
CB307 R353 CB 306
R3 52 R362
R3 63

Q504

R510

R221

R220

R502

R511
R5 03 R 505

R534

R504 C510 C512 C511

D501 Q5 01

R360

U306

C304

CB 310 D503

R506

Q505

X703

D502

TriBoard Manual TC3X2
Hardware: TriBoard TC3X2 TH V1.0 and TriBoard TC3X2 V1.0
Schematic and Layout

TriBoard Manual TC3X2
Hardware: TriBoard TC3X2 TH V1.0 and TriBoard TC3X2 V1.0
Schematic and Layout

7.4

Layout with Dimensioning

The following dimensions should be used for development of extension boards.

Figure 7-10 Dimensioning (mm)

User Manual

7-11

TriBoard TC3X2 TH V1.0 and TriBoard TC3X2 V1.0

V1.0 2020-05

TriBoard Manual TC3X2
Hardware: TriBoard TC3X2 TH V1.0 and TriBoard TC3X2 V1.0
Schematic and Layout

Figure 7-11 Dimensioning (mil)

The dimensioning is valid for all TriBoards.

User Manual

7-12

TriBoard TC3X2 TH V1.0 and TriBoard TC3X2 V1.0

V1.0 2020-05

TriBoard Manual TC3X2
Hardware: TriBoard TC3X2 TH V1.0 and TriBoard TC3X2 V1.0
Revision History Page or Item Subjects (major changes since previous revision) V1.0, 2020-05
First version

User Manual TriBoard TC3X2 TH V1.0 and TriBoard TC3X2 V1.0

RevisionHistory-1

V1.0 2020-05

Please read the Important Notice and Warnings at the end of this document

Trademarks of Infineon Technologies AG µHVICTM, µIPMTM, µPFCTM, AU-ConvertIRTM, AURIXTM, C166TM, CanPAKTM, CIPOSTM, CIPURSETM, CoolDPTM, CoolGaNTM, COOLiRTM, CoolMOSTM, CoolSETTM, CoolSiCTM, DAVETM, DI-POLTM, DirectFETTM, DrBladeTM, EasyPIMTM, EconoBRIDGETM, EconoDUALTM, EconoPACKTM, EconoPIMTM, EiceDRIVERTM, eupecTM, FCOSTM, GaNpowIRTM, HEXFETTM, HITFETTM, HybridPACKTM, iMOTIONTM, IRAMTM, ISOFACETM, IsoPACKTM, LEDrivIRTM, LITIXTM, MIPAQTM, ModSTACKTM, my-dTM, NovalithICTM, OPTIGATM, OptiMOSTM, ORIGATM, PowIRaudioTM, PowIRStageTM, PrimePACKTM, PrimeSTACKTM, PROFETTM, PRO-SILTM, RASICTM, REAL3TM, SmartLEWISTM, SOLID FLASHTM, SPOCTM, StrongIRFETTM, SupIRBuckTM, TEMPFETTM, TRENCHSTOPTM, TriCoreTM, UHVICTM, XHPTM, XMCTM.
Trademarks updated November 2015
Other Trademarks All referenced product or service names and trademarks are the property of their respective owners.

Edition 2020-05 Published by Infineon Technologies AG 81726 Munich, Germany
© 2020 Infineon Technologies AG. All Rights Reserved.
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Document reference Doc_Number

IMPORTANT NOTICE
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In addition, any information given in this document is subject to customer's compliance with its obligations stated in this document and any applicable legal requirements, norms and standards concerning customer's products and any use of the product of Infineon Technologies in customer's applications.
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