Laird Connectivity 60SIPT 802.11 ac/a/b/g/n + Bluetooth 4.2 module / 802.11 ac/a/b/g/n M.2 2230 + Bluetooth 4.2 module User Manual CS DS 60 2230C PRELIMINARY

Laird Technologies 802.11 ac/a/b/g/n + Bluetooth 4.2 module / 802.11 ac/a/b/g/n M.2 2230 + Bluetooth 4.2 module CS DS 60 2230C PRELIMINARY

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Users Manual_60-2230C_SQG-60SIPT

Download: Laird Connectivity 60SIPT 802.11 ac/a/b/g/n + Bluetooth 4.2 module / 802.11 ac/a/b/g/n M.2 2230 + Bluetooth 4.2 module User Manual CS DS 60 2230C PRELIMINARY
Mirror Download [FCC.gov]Laird Connectivity 60SIPT 802.11 ac/a/b/g/n + Bluetooth 4.2 module / 802.11 ac/a/b/g/n M.2 2230 + Bluetooth 4.2 module User Manual CS DS 60 2230C PRELIMINARY
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Datasheet
60-2230C
Version 1.0
60-2230C
Datasheet
REVISION HISTORY
Version
1.0
Date
TBD
Notes
Initial Version
Embedded Wireless Solutions Support Center:
http://ews-support.lairdtech.com
www.lairdtech.com/wireless
Approver
Andrew Chen
© Copyright 2017 Laird. All Rights Reserved
Americas: +1-800-492-2320
Europe: +44-1628-858-940
Hong Kong: +852 2923 0610
60-2230C
Datasheet
CONTENTS
1.
Scope
2.
Introduction
2.1
General Description 5
3.
60-2230C Features Summary
4.
Specifications
5.
WLAN Functional Description
6.
Bluetooth Functional Description 16
7.
Block Diagram
8.
Electrical Characteristics
13
17
18
8.1
Absolute Maximum Ratings
18
8.2
Recommended Operating Conditions 18
8.3
DC Electrical Characteristics
8.4
WLAN Radio Receiver Characteristics 19
8.5
WLAN Transmitter Characteristics
18
9.
Bluetooth Radio Characteristics
22
10.
SDIO Timing Requirements
24
20
10.1
SDR12, SDR25, SDR50 Mode (up to 100MHz) (1.8V)
10.2
SDR104 Mode (208MHz) (1.8V)
10.3
DDR50 Mode (50MHz) (1.8V) 26
24
25
11. USB Specifications 27
11.1
USB LS Driver and Receiver Parameters
27
11.2
USB FS Driver and Receiver Parameters
29
11.3
USB HS Driver and Receiver Parameters
30
12.
PCM interface specifications
13.
Pin Definitions 32
14.
Mechanical Specifications
15.
MOUNTING
16.
RF Layout Design Guidelines / Precautions
17.
Regulatory
17.1
18.
18.1
31
35
35
37
37
Certified Antennas
FCC and IC Regulatory
37
38
FCC 38
Embedded Wireless Solutions Support Center:
http://ews-support.lairdtech.com
www.lairdtech.com/wireless
© Copyright 2017 Laird. All Rights Reserved
Americas: +1-800-492-2320
Europe: +44-1628-858-940
Hong Kong: +852 2923 0610
60-2230C
Datasheet
18.1.1
Federal Communication Commission Interference Statement ....................................................... 38
18.1.2
FCC Caution ..................................................................................................................................... 38
18.1.3
Important Note ................................................................................................................................ 39
18.1.4
End Product Labeling ....................................................................................................................... 39
18.1.5Manual Information to the End User .................................................................................................... 39
18.2
Industry Canada
40
18.2.1Industry Canada Statement ................................................................................................................... 40
18.2.2
Antenna Information ....................................................................................................................... 40
18.2.3
Caution: ........................................................................................................................................... 41
18.2.4
Avertissement:................................................................................................................................. 41
18.2.5
Radiation Exposure Statement ........................................................................................................ 41
18.2.6
Déclaration d'exposition aux radiations .......................................................................................... 41
18.2.7
Important Note ................................................................................................................................ 42
18.2.8
Note Important ................................................................................................................................ 42
18.2.9
End Product Labeling ....................................................................................................................... 42
18.2.10 Plaque signalétique du produit final................................................................................................. 42
18.2.11 Manual Information to the End User................................................................................................ 42
18.2.12 Manuel d'information à l'utilisateur final ......................................................................................... 42
19.
European Union Regulatory
19.1EU Declarations of Conformity
20.
Ordering Information
44
20.1
General Comments
44
20.2
Labeling Requirements
Embedded Wireless Solutions Support Center:
http://ews-support.lairdtech.com
www.lairdtech.com/wireless
42
43
45
© Copyright 2017 Laird. All Rights Reserved
Americas: +1-800-492-2320
Europe: +44-1628-858-940
Hong Kong: +852 2923 0610
60-2230C
Datasheet
1. SCOPE
This document describes key hardware aspects of the Laird 60-2230C M.2 module providing either SDIO or
USB2.0 bus interface for WLAN connection and UART/SDIO/USB2.0 for Bluetooth® (including Low Energy or LE)
connection. This document is intended to assist device manufacturers and related parties with the integration of
this module into their host devices. Data in this document is drawn from the Marvell 88W8997 datasheet issued
in April 25, 2016.
Note that the information in this document is subject to change. Please contact Laird to obtain the most recent
version of this document.
Comment [JW1]: Do we really want
this sentence in there?
2. INTRODUCTION
2.1
General Description
The 60-2230C module is a dual band 2x2 802.11ac WLAN plus Bluetooth 4.2 dual mode adapter; it complies with
M.2 key-E standard. The module provides both simultaneous and independent operation of the following:
IEEE 802.11ac (Wave 2), 2x2 receive Multi-User MIMO spatial stream multiplexing
with data rates up to MCS9 (866.7 Mbps)
Bluetooth (Class 1 and Class 2)
Bluetooth 4.2 (with Low Energy or LE)
Bluetooth Smart Ready operation
Three-way coexistence for WLAN and Bluetooth
Note:
Comment [JW3]: We should
probably add that the 60 series is
“Bluetooth 5 Ready”.
The Bluetooth® word mark and logos are registered trademarks owned by
Bluetooth SIG, Inc. and any use of such marks by Laird is under license. Other
trademarks and trade names are those of their respective owners.
Internal coexistence arbitration and a Mobile Wireless System (MWS) serial transport interface provide the
functionality for connecting an external Long Term Evolution (LTE).
The module integrates all WLAN and Bluetooth functionality into a single package which supports low-cost and
simple implementation along with flexibility for platform-specific customization. In addition, it has low power
consumption radio architecture and proprietary power save technologies to extended battery life.
On the DFS engine, the module supports 802.11h Dynamic Frequency Selection to detect the presence of radar
signals; support is extended to 80 MHz mode under the 802.11ac channelization modes. In addition, the E-DFS
(Enhanced DFS) scheme is designed to increase pulse detection rates for shorter (0.5 us, 0.8 us, 1 us), in-band
DFS pulses. The scheme is designed to minimize the false-alarm rate for out-of-band DFS pulse.
There are two interfaces for WLAN function:
SDIO 3.0 – Supports both 1-bit SDIO and 4-bit SDIO transfer modes at full clock range up to 208 MHz
USB 2.0
In addition, there are three interfaces for Bluetooth function:
SDIO
USB 2.0
High-Speed UART
Embedded Wireless Solutions Support Center:
http://ews-support.lairdtech.com
www.lairdtech.com/wireless
© Copyright 2017 Laird. All Rights Reserved
Comment [JW2]: We should add
the “2230” reference. So, the radio
“complies with the M.2 2230 E-Key
Standard”
Americas: +1-800-492-2320
Europe: +44-1628-858-940
Hong Kong: +852 2923 0610
60-2230C
Datasheet
The 60-2230C module also provides a PCM interface for master or slave mode; with the option of an 8-bit or 16bit width size.
Pins CON[0], CON[1], and CON[2] are configuration pins (operation mode). Currently, the default mode for the
SDIO/UART (WLAN/Bluetooth) interface is 000.
3. FEATURES SUMMARY
The Laird 60-2230C device features are described in Table 1.
Table 1: 60-2230C of features
Feature
Description
Radio Front End
Integrates the complete transmit/receive RF paths including band pass filter, diplexer, switches,
reference crystal oscillator, and power manage unit (PMU)
Supports 20/40/80 MHz channel bandwidth
WLAN/Bluetooth share one antenna
Coexistence
Coexistence arbitration for WLAN, Bluetooth, and LTE operation
Power Management
Dynamic Voltage Scaling (DVS) and Adaptive Voltage Scaling (AVS) feature supports the latest
Marvell SoC and processor power control scheme.
Pre-Calibration
RF system-tested and calibrated in production.
Sleep Clock
An external sleep clock of 32.768 KHz is required during power save mode.
 SDIO 3.0 (4-bit and 1-bit), SDR 12/25/50 mode (up to 100MHz), USB 2.0 or PCIe for WLAN
 SDIO 3.0, USB 2.0, HS-UART for Bluetooth HCI (compatible with any upper layer Bluetooth stack)
 PCM digital audio interface for Bluetooth audio application.
Host Interface
Reference Frequency
Advanced WLAN
Strap Value
Bluetooth/
WLAN
ROM Notes
CONFIG_HOST[2-0]
BLE
000
SDIO
UART
001
SDIO
SDIO
010
PCIe
USB 2.0
Initial USB 2.0 PHY and COM PHY PCIe portion
011
PCIe
UART
Initial COM PHY PCIe portion only
100
USB 2.0
UART
Initial USB 2.0 PHY and COM PHY PCIe USB 3.0
101
USB 2.0
USB 2.0
Initial USB 2.0 PHY only
 Incorporates a 40 MHz reference frequency source in package
 An external sleep clock is recommended for minimal current consumption. If no sleep clock
input is provided, an internal sleep clock (derived from the reference clock) is used. An
approximate 50 uA current increase on the 3.3V rail.
 A-MPDU RX (de-aggregation) and TX (aggregation) supports 802.11ac single-MPDU A-MPDU
 Multi-BSS/Station
 Transmit rate adaption, transmit power control
 Modulation and coding scheme (MCS):
– 802.11ac—MCS0-9 Nsts=1 and 2
– 802.11n—MCS0-15
 Dynamic frequency selection (DFS) – Radar detection
 20/40/80 MHz channel bandwidths support
 On-chip gain selectable LNA with optimized noise figure and power consumption
 Internal PA with optimized gain distribution for linearity and noise performance
 Support Wild variety of WLAN encryption: TKIP/WEP/AES
Embedded Wireless Solutions Support Center:
http://ews-support.lairdtech.com
www.lairdtech.com/wireless
© Copyright 2017 Laird. All Rights Reserved
Americas: +1-800-492-2320
Europe: +44-1628-858-940
Hong Kong: +852 2923 0610
Comment [JW4]: We need to
remove references to PCIE as the
M.2 module does not support PCIE
60-2230C
Datasheet
Feature
Advanced Bluetooth
Description
Bluetooth 4.2 (BDR/EDR/LE), Bluetooth Class 1
Supports the following data rates: 1 Mbps (GFSK), 2 Mbps ( /4-DQPSK), 3 Mbps (8-DPSK)
Digital audio interface with PCM/TDM interface for voice application
Adaptive Frequency Hopping (AFH) using Package Error Rate (PER)
Standard SDIO or UART HCI transport layer
WLAN/Bluetooth coexistence protocol support
Shared LNA with WLAN/Bluetooth
Encryption (AES) support
π
Comment [JW5]: Please Addd
“Bluetooth 5 Ready” in there
somewhere. It’s an important
value-add for this radio
4. SPECIFICATIONS
Table 2: Specifications
Feature
Description
Physical Interface
Wi-Fi Interface
Bluetooth/
BLE Interface
84-pin LGA package (including 16 thermal ground pad under the package)
1-bit or 4-bit Secure Digital I/O; PCIe v3.0 Gen1/Gen2 (2.5/5 Gbps); USB 2.0
Host Controller Interface (HCI) using High Speed UART, SDIO, USB 2.0
Strap Value
Bluetooth
WLAN
ROM Notes
CONFIG_HOST[2-0]
/BLE
000
SDIO
UART
001
SDIO
SDIO
010
PCIe
USB 2.0
Initial USB 2.0 PHY and COM PHY PCIe portion
011
PCIe
UART
Initial COM PHY PCIe portion only
100
USB 2.0
UART
Initial USB 2.0 PHY and COM PHY PCIe USB 3.0
101
USB 2.0
USB 2.0
Initial USB 2.0 PHY only
Marvell 88W8997 (WLAN/BT); Marvell 88PG823 (PMU)
Main Chip
Input Voltage
Requirements
I/O Signalling
Voltage
Peak Current
consumption,
VCC=VIO = 3.3 volts
(At maximum
transmit power
setting)
Note: Reset refers
to the radio are in
reset, both Wi-fi and
BT reset are
asserted.
Comment [JW6]: No PCIE
DC 3.3 V ±10%
DC 3.3 V ± 10% or DC 1.8 V ± 10%
MIMO 2x 2 operations.
802.11b (with BT in standby) @ 18 dBm 1 Mbps
Transmit: XX mA Receive: XX mA
802.11g (with BT in standby) @ 18 dBm 6 Mbps
Transmit: XX mA Receive: XX mA
802.11a (with BT in standby) @ 18 dBm 6 Mbps
Transmit: XX mA Receive: XX mA
802.11n (2.4 GHz/40MHz) (with BT in standby) @ 16 dBm MCS0
Transmit: XX mA Receive: XX mA
802.11n (5.0 GH/40MHz) (with BT in standby) @ 16 dBm MCS0
Transmit: XX mA Receive: XX mA
802.11ac (5.0 GH/80MHz) (with BT in standby) @ 14 dBm MCS0
Transmit: XX mA Receive: XX mA
Bluetooth (with Wi-Fi in standby)
Transmit: XX mA Receive: XX mA
Reset:
XXX mA
Embedded Wireless Solutions Support Center:
http://ews-support.lairdtech.com
www.lairdtech.com/wireless
© Copyright 2017 Laird. All Rights Reserved
Comment [JW7]: Andrew, do we
have these numbers?
Americas: +1-800-492-2320
Europe: +44-1628-858-940
Hong Kong: +852 2923 0610
60-2230C
Datasheet
Feature
Description
Operating
Temperature
-30° to 85°C (-22° to 185°F)
Operating Humidity
10 to 90% (non-condensing)
Storage
Temperature
-40° to 85°C (-40° to 185°F)
Storage Humidity
10 to 90% (non-condensing)
Maximum
Electrostatic
Discharge
Conductive 4KV; Air coupled 8KV follow EN61000-4-2
Size
13 mm (length) x 14 mm (width) x 1.87 mm (thickness)
Weight
TBD g
Wi-Fi Media
Direct Sequence-Spread Spectrum (DSSS)
Complementary Code Keying (CCK)
Orthogonal Frequency Divisional Multiplexing (OFDM)
Bluetooth Media
Frequency Hopping Spread Spectrum (FHSS)
Wi-Fi Media Access
Protocol
Carrier sense multiple access with collision avoidance (CSMA/CA)
A-MPDU Rx (De-aggregation) and Tx (aggregation) (802.11ac single-MPDU A-MPDU)
Network
Architecture Types
Infrastructure and ad-hoc
Wi-Fi Standards
IEEE 802.11a, 802.11b, 802.11d, 802.11e, 802.11g, 802.11h, 802.11i, 802.11n, 802.11r, 802.11ac
Bluetooth
Standards
Bluetooth version 2.1 with Enhanced Data Rate
Bluetooth 4.2 (Bluetooth Low Energy or BLE)
Wi-Fi Data Rates
Supported
Support 802.11 ac/a/b/g/n 2X2 MIMO
802.11b (DSSS, CCK) 1, 2, 5.5, 11 Mbps
802.11a/g (OFDM) 6, 9, 12, 18, 24, 36, 48, 54 Mbps
802.11n (OFDM, HT20/HT40, MCS 0-15)
802.11ac (OFDM, HT20, MCS0-8; OFDM HT40/HT80, MCS 0-9)
Embedded Wireless Solutions Support Center:
http://ews-support.lairdtech.com
www.lairdtech.com/wireless
© Copyright 2017 Laird. All Rights Reserved
Comment [JW8]: “Bluetooth 5
(Coming Soon)”
Comment [JW9]: “MU-MIMO” or
“802.11ac Wave 2”
Americas: +1-800-492-2320
Europe: +44-1628-858-940
Hong Kong: +852 2923 0610
60-2230C
Datasheet
Feature
Description
Modulation Table
802.11ac
802.11n
BPSK, QPSK, CCK, 16-QAM, 64-QAM, and 256-QAM.
HT
MCS
Index
VHT
MCS
Index
Spatial
Streams
Modulation
BPSK
1/2
QPSK
QPSK
20 MHz
40 MHz
80 MHz
Coding
No SGI
SGI
No SGI
SGI
No SGI
SGI
6.5
7.2
13.5
15
29.3
32.5
1/2
13
14.4
27
30
58.5
65
3/4
19.5
21.7
40.5
45
87.8
97.5
16-QAM
1/2
26
28.9
54
60
117
130
16-QAM
3/4
39
43.3
81
90
175.5
195
64-QAM
2/3
52
57.8
108
120
234
260
64-QAM
3/4
58.5
65
121.5
135
263.3
292.5
64-QAM
5/6
65
72.2
135
150
292.5
325
256-QAM
3/4
78
86.7
162
180
351
390
256-QAM
5/6
N/A
N/A
180
200
390
433.3
BPSK
1/2
13
14.4
27
30
58.5
65
QPSK
1/2
26
28.9
54
60
117
130
10
QPSK
3/4
39
43.3
81
90
175.5
195
11
16-QAM
1/2
52
57.8
108
120
234
260
12
16-QAM
3/4
78
86.7
162
180
351
390
13
64-QAM
2/3
104
115.6
216
240
468
520
14
64-QAM
3/4
117
130.3
243
270
526.5
585
15
64-QAM
5/6
130
144.4
270
300
585
650
256-QAM
3/4
156
173.3
324
360
702
180
256-QAM
5/6
N/A
N/A
360
400
780
866.7
802.11ac/n
Spatial Streams
2 (2x2 MIMO)
Bluetooth Data
Rates Supported
1, 2, 3 Mbps
Bluetooth
Modulation
GFSK@ 1 Mbps
Pi/4-DQPSK@ 2 Mbps
8-DPSK@ 3 Mbps
Regulatory Domain
Support
FCC (Americas, Parts of Asia, and Middle East)
ETSI (Europe, Middle East, Africa, and Parts of Asia)
IC (Industry Canada)
MIC (Japan) (formerly TELEC) – Option
KC (Korea) (formerly KCC) – Option
2.4 GHz Frequency
Bands
ETSI: 2.4 GHz to 2.483 GHz
FCC: 2.4 GHz to 2.473 GHz
MIC: 2.4 GHz to 2.495 GHz
KC: 2.4 GHz to 2.483 GHz
2.4 GHz Operating
Channels
(Wi-Fi)
ETSI: 13 (3 non-overlapping)
FCC: 11 (3 non-overlapping)
MIC: 14 (4 non-overlapping)
KC: 13 (3 non-overlapping)
Embedded Wireless Solutions Support Center:
http://ews-support.lairdtech.com
www.lairdtech.com/wireless
© Copyright 2017 Laird. All Rights Reserved
Americas: +1-800-492-2320
Europe: +44-1628-858-940
Hong Kong: +852 2923 0610
60-2230C
Datasheet
Feature
Description
5 GHz Frequency
Bands
ETSI
5.15 GHz to 5.35 GHz (Ch 36/40/44/48/52/56/60/64)
5.47 GHz to 5.725 GHz (Ch 100/104/108/112/116/120/124/128/132/136/140/144)
FCC
5.15 GHz to 5.35 GHz (Ch 36/40/44/48/52/56/60/64)
5.47 GHz to 5.725 GHz (Ch 100/104/108/112/116/120/124/128/132/136/140/144
5.725 GHz to 5.825 GHz(Ch 149/153/157/161/165)
MIC (Japan)
5.15 GHz to 5.35 GHz (Ch 36/40/44/48/52/56/60/64)
5.47 GHz to 5.725 GHz (Ch 100/104/108/112/116/120/124/128/132/136/140/144)
KC
5.15 GHz to 5.35 GHz (Ch 36/40/44/48/52/56/60/64)
5.47 GHz to 5.725 GHz (Ch 100/104/108/112/116/120/124)
5.725 GHz to 5.825 GHz (Ch 149/153/157/161)
5 GHz Operating
Channels (Wi-Fi)
ETSI: 19 non-overlapping; FCC: 24 non-overlapping
MIC (Japan): 19 non-overlapping; KC: 19 non-overlapping
Transmit Power
802.11a
6 Mbps
54 Mbps
802.11b
1 Mbps
11 Mbps
802.11g
6 Mbps
54 Mbps
802.11n (2.4/5 GHz)
6.5 Mbps (MCS0-5/MCS8-13;HT20)
65 Mbps (MCS6-7/MCS14-15;HT20)
13.5Mbps(MCS0-5/MCS8-13;HT40)
135Mbps (MCS6-7/MCS14-15;HT40)
802.11ac (5 GHz)
6.5/13 Mbps (MCS0-6;Ntst=1,2;HT20)
78/156 Mbps (MCS7-8;Ntst=1,2;HT20)
13.5/27Mbps (MCS0-6;Ntst=1,2;HT40)
180/360Mbps (MCS7-9;Ntst=1,2;HT40)
29.3/58.5 Mbps (MCS0-5;Ntst=1,2;HT80)
263.3/526.5 Mbps (MCS6-8;Ntst=1,2;HT80)
390/780 Mbps (MCS9;Ntst=1,2;HT80)
Bluetooth
1 Mbps (1DH5)
2 Mbps
3 Mbps
BLE (1 Mbps)
Note: Transmit
power on each
channel varies
according to
individual country
regulations. All
values are nominal
with +/-2 dBm
tolerance at room
temperature.
Tolerance could be
up to +/-2.5 dBm
across operating
temperature.
Note:
HT20 – 20 MHzwide channels
HT40 – 40 Mhz-wide
channels
HT80 – 80 MHzwide channels
Embedded Wireless Solutions Support Center:
http://ews-support.lairdtech.com
www.lairdtech.com/wireless
18 dBm (63 mW)
16 dBm (40 mW)
18 dBm (63 mW)
18 dBm (63 mW)
18 dBm (63 mW)
16 dBm (40 mW)
18 dBm (63 mW)
16 dBm (40 mW)
16 dBm (40 mW)
14 dBm (25 mW)
18 dBm (63 mW)
16 dBm (40 mW)
16 dBm (40 mW)
14 dBm (25 mW)
14 dBm (25 mW)
12 dBm (15.8 mW)
10 dBm (10 mW)
10 dBm (12.5 mW)
7 dBm (6.3 mW)
7 dBm (6.3 mW)
7 dBm (6.3 mW)
10
© Copyright 2017 Laird. All Rights Reserved
Americas: +1-800-492-2320
Europe: +44-1628-858-940
Hong Kong: +852 2923 0610
60-2230C
Datasheet
Feature
Description
Typical Receiver
Sensitivity
(PER <= 10%)
Note: All values
nominal, +/-3 dBm.
Sensitivity on CH13
(WLAN)/CH78 (BT)
will decade up to 46dB.
802.11a:
6 Mbps
54 Mbps
-89 dBm
-74 dBm
802.11b:
1 Mbps
11 Mbps
-95 dBm
-90 dBm
(PER<8%)
802.11g:
6 Mbps
54 Mbps
802.11n (2.4 GHz)
-91 dBm
-75 dBm
6.5 Mbps (MCS0;HT20)
-91 dBm
65 Mbps (MCS7;HT20)
13.5Mbps(MCS0;HT40)
135Mbps (MCS7;HT40)
-73 dBm
-85 dBm
-70 dBm
802.11n (5 GHz)
6.5 Mbps (MCS0;HT20)
65 Mbps (MCS7;HT20)
13.5Mbps(MCS0;HT40)
135Mbps (MCS7;HT40)
-89 dBm
-70 dBm
-86 dBm
-69 dBm
802.11ac (5 GHz)
6.5 Mbps (MCS0;HT20)
78 Mbps (MCS8;HT20)
13.5 Mbps (MCS0;HT40)
180 Mbps (MCS9;HT40)
29.3 Mbps (MCS0;HT80)
390/780 Mbps (MCS9;HT80)
-89 dBm
-67 dBm
-86 dBm
-63 dBm
-81 dBm
-60 dBm
Bluetooth:
1 Mbps (1DH5)
2Mbps (2DH5)
3 Mbps (3DH5)
BLE
Operating Systems
Supported
-95 dBm
-94 dBm
-88 dBm
-95 dBm
Windows Mobile 5.0, 6.0, 6.1, 6.5
Windows Embedded Compact (CE) 5.0, 6.0, 7.0, 2013
Linux 2.6.x, 3.x.x, 4.0.x kernel
Android 4.1.2 (Jellybean) and forward
Embedded Wireless Solutions Support Center:
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Comment [JW10]: No Windows
support on the 60 Series
Comment [JW11]: Linux Kernel 3.x
and newer
Android 5.x and newer
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60-2230C
Datasheet
Feature
Description
Security
Standards
Wireless Equivalent Privacy (WEP)
Wi-Fi Protected Access (WPA)
IEEE 802.11i (WPA2)
Encryption
Wireless Equivalent Privacy (WEP, RC4 Algorithm)
Temporal Key Integrity Protocol (TKIP, RC4 Algorithm)
Advanced Encryption Standard (AES, Rijndael Algorithm)
Encryption Key Provisioning
Static (40-bit and 128-bit lengths)
Pre-Shared (PSK)
Dynamic
802.1X Extensible Authentication Protocol Types
EAP-FAST
PEAP-MSCHAPv2
EAP-TLS
PEAP-TLS
EAP-TTLS
LEAP
PEAP-GTC
Compliance
Note: All regulatory
certifications
are currently
pending.
ETSI Regulatory Domain
EN 300 328
EN 301 489-1
EN 301 489-17
EN 301 893
EN 60950-1
EU 2002/95/EC (RoHS)
FCC Regulatory Domain
FCC 15.247 DTS – 802.11b/g (Wi-Fi) – 2.4 GHz
FCC 15.407 UNII – 802.11a (Wi-Fi) – 5 GHz
FCC 15.247 DSS – BT 2.1
Industry Canada
RSS-247 – 802.11a/b/g/n (Wi-Fi) – 2.4 GHz, 5.8 GHz, 5.2 GHz, and 5.4 GHz
RSS-247 – BT 2.1
Certifications
Wi-Fi Alliance
802.11a, 802.11b, 802.11g , 802.11n, 802.11ac
WPA Enterprise
WPA2 Enterprise
Cisco Compatible Extensions (Version 4)
Bluetooth® SIG Qualification
Warranty
Comment [JW12]: We should list
that EAP types are “supplicant
software dependent”. Since we are
supporting various software builds
with the 60 Series, some of the
features will rely on the software
Comment [JW13]: We will have
more Wi-Fi Alliance certs. I’m not
exactly sure which ones yet, but we
will have more.
Comment [JW14]: We won’t have
CCX certification on the 60 Series.
At least, that’s not the plan at this
moment
Three Year Warranty
All specifications are subject to change without notice
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60-2230C
Datasheet
5. WLAN FUNCTIONAL DESCRIPTION
The 60-2230C M2 module is designed based on the 60-SIPT SiP. It is optimized for high-speed, reliable, and lowpower embedded applications. It is integrated with dual-band WLAN (2.4 GHz/5 GHz) and Bluetooth 4.2. Its
functionality includes the following:
Improved throughput on the link due to frame aggregation, RIFS (reduced inter-frame spacing), and halfguard intervals.
Support for STBC (Space Time Block Codes) and LDPC (Low Density Parity Check) codes.
Improved 11n performance due to features such as 11n frame aggregation (A-MPDU and A-MSDU) and
low-overhead host-assisted buffering (RX A-MSDU and RX A-MPDU). These techniques can improve
performance and efficiency of applications involving large bulk data transfers such as file transfers or highresolution video streaming.
IEEE 802.11 ac (Wave 2), 2X2 receive Multi-User MIMIO (MU-MIMO) spatial stream multiplexing with data
rate up to MCS9 (866.7 Mbps).
Additional functionality is listed in Table 3.
Table 3: WLAN functions
Feature
WLAN MAC
Description
 Frame Exchange at the MAC level to deliver data
 Received frame filtering and validation (Cyclic Redundancy Check (CRC))
 Generation of MAC header and trailer information (MAC protocol Data Units (MPDUs))
 Fragmentation of data frames (MAC Service Data Units (MSDUs)
 Access Mechanism support for fair access to shared wireless medium through (DCF and EDCA)
 A-MPDU Aggregation/Deaggregation (support 802.11ac single –MPDU A-MPDU)
 20/40/80 MHz channel Coexistence
 RIFS Burst Receive
 Management Information Base
 Radio Resource Measurement
 Quality of Service
 Block Acknowledgement
 802.11ac Downlink MU-MIMO (receive)
 Dynamic Frequency Selection
 Beamforming
 TIM Frame TX and RX
 Multi-BSS/Station
 Transmit Rate Adaptation.
 Transmit Power Control
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60-2230C
Datasheet
Feature
WLAN Base Band
WLAN Security
Description
 802.11ac 2x2 MU-MIMO (with on-chip Marvell RF radio)
 Backward compatibility with legacy 802.11 n/a/b/g technology
 WLAN/Bluetooth LNA sharing
 PHY rate up to 866.7Mbps
 20MHz bandwidth/channel, 40MHz bandwidth/channel, upper/lower 20MHz packets in 40MHz
channel, 20MHz duplicate legacy packets in 40MHz channel operation
 80MHz bandwidth/channel, 4 positions of 20MHz packets in 80MHz channel, upper/lower
40MHz packets in 80MHz channel, 20MHz quadruplicate legacy packets in 80MHz channel mode
operation
 Modulation and Coding Scheme (MCS): 802.11 ac (MCS0-9. Nsts=1/2); 802.11n (MCS0-15)
 Dynamic Frequency Selection (DFS) (Radar detection)
– Enhanced radar detection for long and short pulse radar
– Enhanced AGC scheme for DFS channel
– Japan DFS requirements for W53 and W56
 802.11 K Radio Resource Measurement
 802.11ac /802.11n optional MIMO features:
– 20/40/80 MHz Coexistence with middle-packaged detection (GI detection) for enhanced CCA.
– 1 spatial stream STBC reception and transmission
– LDPC transmission and reception for 802.11ac and 802.11n
– 256 QAM (MCS8-9) modulations supported
– Short guard interval
– RIFS on receive path for 802.11n packets
– 802.11n Greenfield TX/RX
 Power Save Feature
WLAN Encryption features supported include:
 Temporal Key Integrity Protocol (TKIP)/Wired Equivalent Privacy (WEP)
 Advanced Encryption Standard (AES)/Counter-Mode/CBC-MAC Protocol (CCMP)
 Advanced Encryption Standard (AES)/Cipher-Based Message Authentication Code (CMAC)
 Advanced Encryption Standard (AES)/Galois/Counter Mode Protocol (GCMP)
 WLAN Authentication and Private Infrastructure (WPAI)
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60-2230C
Datasheet
Feature
WLAN Channel
Description
Channel frequency supported.
Channel
10
11
12
13
20 MHz
Freq.
Channel
(MHz)
2412
36
2417
40
2422
44
2427
48
2432
52
2437
56
2422
60
2447
64
2452
100
2457
104
2462
108
2467
112
2472
116
120
124
128
132
136
140
144
149
153
157
161
165
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Freq.
(MHz)
5180
5200
5220
5240
5260
5280
5300
5320
5500
5520
5540
5560
5580
5600
5620
5640
5660
5680
5700
5720
5745
5765
5785
5805
5825
40 MHz
Freq.
Channel
(MHz)
1-5
2422
2-6
2427
3-7
2432
4-8
2437
5-9
2422
6-10
2447
7-11
2452
36-40
5190
44-48
5230
52-56
5270
60-64
5310
68-72
5350
76-80
5390
84-88
5430
92-96
5470
100-104
5510
108-112
5550
116-120
5590
124-128
5630
132-136
5670
140-144
5710
149-153
5755
157-161
5795
15
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80 MHz
Freq.
Channel
(MHz)
42
5210
58
5290
74
5370
90
5410
106
5530
122
5610
138
5690
155
5775
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60-2230C
Datasheet
6. BLUETOOTH FUNCTIONAL DESCRIPTION
The 60-2230C Bluetooth (BT) block is based on the 60-SIPT SiP that already has fully-integrated Bluetooth
baseband and radio. Several features and functions are listed in Table 4.
Table 4: Bluetooth functions
Feature
Bluetooth Interface
Bluetooth Core
functionality
Bluetooth Low Energy
(BLE) Core functionality
Description
Voice interface:
 Hardware support for continual PCM data transmission/reception without processor
overhead.
 Standard PCM clock rates from 64 kHz to 2.048 MHz with multi-slot handshake and
synchronization.
 A-law, U-law, and linear voice PCM encoding/decoding.
 SDIO interface
 High-Speed UART interface
 USB 2.0
 Bluetooth 4.2
 Bluetooth Class 2/Bluetooth class 1
 WLAN and Bluetooth share same LNA and antenna
 Digital audio interfaces with PCM/TDM interface for voice application
 Baseband and radio BDR and EDR package type: 1Mbps, 2Mbps, 3Mbps
 Fully functional Bluetooth baseband: AFH, forward error correction, header error control,
access code correction, CRC, encryption bit stream generation, and whitening
 Adaptive Frequency Hopping (AFH) using Packet Error Rate (PER)
 Interlaced scan for faster connection setup
 Simultaneous active ACL connection setup
 Automatic ACL package type selection
 Full master and slave piconet support
 Scatter net support
 SCO/eSCO links with hardware accelerated audio signal processing and hardware supported
PPEC algorithm for speech quality improvement
 All standard SCO/eSCO voice coding
 All standard pairing, authentication, link key, and encryption operations
 Encryption (AES) support
 Advertiser, Scanner, Initiator, Master, and Slave roles support (connects up to 16 links)
 WLAN/Bluetooth Coexistence (BCA) protocol support
 Shared RF with BDR/EDR
 Encryption (AES) support
 Intelligent Adaptive Frequency Hopping (AFH)
 LE privacy 1.2
 LE Secure Connection
 LE Data Length Extension
 LE Advertising Length Extension
 2 Mbps LE
 Direction Finding – Connectionless Angle of Departure (AoD)
 Direction Finding – Connectionless Angle of Arrival (AoA)
Embedded Wireless Solutions Support Center:
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Comment [JW15]: We will need to
add the BT5 features to this list
when we get the BT5 certification
60-2230C
Datasheet
7. BLOCK DIAGRAM
Figure 1: 60-2230C
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60-2230C
Datasheet
8. ELECTRICAL CHARACTERISTICS
8.1 Absolute Maximum Ratings
Table 5 summarizes the absolute maximum ratings and Table 6 lists the recommended operating conditions for
the 60-2230C. Absolute maximum ratings are those values beyond which damage to the device can occur.
Functional operation under these conditions, or at any other condition beyond those indicated in the
operational sections of this document, is not recommended.
Note: Maximum rating for signals follows the supply domain of the signals.
Table 5: Absolute maximum ratings
Symbol (Domain)
VIO_SD
VIO
3V3
Storage
ANT0; ANT1
ESD
Parameter
WLAN host SDIO interface I/O supply (1.8V system)
I/O configuration power supply (1.8V system)
External 3.3V power supply
Storage Temperature
Maximum RF input (reference to 50-Ω input)
Electrostatic discharge tolerance
Max Rating
2.2
2.2
4.0
-40 to +85
+10
2000
Unit
°C
dBm
8.2Recommended Operating Conditions
Table 6: Recommended Operating Conditions
Symbol (Domain)
VIO_SD
VIO
3V3
T-ambient
Parameter
WLAN host interface I/O supply
WLAN and BT GPIO I/O power supply
External 3.3V power supply
Ambient temperature
Min
1.62
1.62
2.97
-30
Typ
1.8
1.8
3.30
25
Max
1.98
1.98
3.63
85
Unit
°C
8.3 DC Electrical Characteristics
Table 7 list the general DC electrical characteristics over recommended operating conditions (unless otherwise
specified).
Table 7: General DC electrical characteristics (For 1.8V operation VIO_SD;VIO)
Symbol
VIH
VIL
VHYS
VOH
VOL
Parameter
High Level Input Voltage
Low Level Input Voltage
Input Hysteresis
Output high Voltage
Output low Voltage
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Conditions
------
Min
0.7 x 1V8
-0.4
100
1V8-0.4
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Typ
Max
1V8+0.4
0.3 x 1V8
0.4
Unit
mV
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60-2230C
Datasheet
8.4
WLAN Radio Receiver Characteristics
Table 8 and Table 9 summarize the WLAN 60-2230C receiver characteristics.
Table 8: WLAN receiver characteristics for 2.4 GHz signal chain operation
Symbol
Frx
Srf
Radj
Parameter
Receive input frequency range
Sensitivity
CCK, 1 Mbps
CCK, 11 Mbps
OFDM, 6 Mbps
OFDM, 54 Mbps
HT20, MCS0
HT20, MCS7
Adjacent channel rejection
OFDM, 6 Mbps
OFDM, 54 Mbps
HT20, MCS0
HT20, MCS7
Conditions
Min
2.412
Typ
Max
2.484
Unit
GHz
See Note3
-95
-90
-91
-75
-91
-73
dBm
See Note4
TBD
TBD
TBD
TBD
dB
Performance data are measured under signal chain operation.
Performance data are measured under signal chain operation.
Table 9: WLAN receiver characteristics for 5 GHz dual chain operation
Symbol
Frx
Srf
Radj
Parameter
Receive input frequency
range
Sensitivity
OFDM, 6 Mbps
OFDM, 54 Mbps
HT20, MCS0
HT20, MCS7
HT40, MCS0
HT40, MCS7
Adjacent channel rejection
OFDM, 6 Mbps
OFDM, 54 Mbps
HT20, MCS0
HT20, MCS7
Conditions
Min
5.15
Typ
Max
5.825
Unit
GHz
See Note5
-89
-74
-89
-70
-86
-69
dBm
See Note6
TBD
TBD
TBD
TBD
dB
Performance data are measured under signal chain operation
Performance data are measured under signal chain operation.
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60-2230C
Datasheet
8.5
WLAN Transmitter Characteristics
Table 10: WLAN transmitter characteristics for 2.4 GHz per chain operation
Symbol
Ftx
Pout
ATx
Freq.
2412 MHz
2442 MHz
2472 MHz
Parameter
Conditions
Transmit output frequency range
Output power
11b mask compliant
11g mask compliant
11g EVM compliant
11n HT20 mask compliant
11n HT20 EVM compliant
11n HT40 mask compliant
11n HT40 EVM compliant
Transmit power accuracy at 25
Mode/Rate (Mbps)
1 Mbps
54 Mbps
HT20 MCS7
1 Mbps
54 Mbps
HT20 MCS7
1 Mbps
54 Mbps
HT20 MCS7
Min
2.412
See Note7
1-11Mbps
6-36Mbps
48-54Mbps
MCS0-5/MCS8-13
MCS6-7/MCS14-15
MCS0-5/MCS8-13
MCS6-7/MCS14-15
℃
Typ
18
18
16
18
16
16
14
+ 2.0
Typical Current
Consumption Single
Chain (mA)8
340
280
280
340
280
280
340
280
280
Output Power Per
Chain (dBm)
18dBm
16dBm
16dBm
18dBm
16dBm
16dBm
18dBm
16dBm
16dBm
Max
2.484
Unit
GHz
dBm
dB
Max. Current
Consumption Single
Chain (mA)8
620
500
510
620
500
510
620
500
510
Table 11: WLAN transmitter characteristics for 5 GHz per chain operation
Symbol
Ftx
Pout
Parameter
Transmit output frequency range
Output power
11a mask compliant
11a EVM compliant
11n HT20 mask compliant
11n HT20 EVM compliant
11n HT40 mask compliant
11n HT40 EVM compliant
11ac HT20 mask compliant
11ac HT20 EVM compliant
11ac HT40 mask compliant
11ac HT40 EVM compliant
11ac HT80 mask compliant
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Conditions
Min
5.15
See Note3
6-36Mbps
48-54Mbps
MCS0-5/MCS8-13
MCS6-7/MCS14-15
MCS0-5/MCS8-13
MCS6-7/MCS14-15
MCS0-6 (Ntst=1,2)
MCS7-8(Ntst=1,2)
MCS0-5 (Ntst=1,2)
MCS6-9(Ntst=1,2)
MCS0-5 (Ntst=1,2)
20
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Typ
18
16
18
16
16
16
18
16
16
14
14
Max
5.925
Unit
GHz
dBm
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60-2230C
Datasheet
Symbol
ATx
Parameter
11ac HT80 EVM compliant
11ac HT80 EVM compliant
Transmit power accuracy at 25
℃
Conditions
MCS6-8(Ntst=1,2)
MCS9(Ntst=1,2)
Min
Typ
12
10
+ 2.0
Max
Unit
dB
18 dBm
16 dBm
18 dBm
16 dBm
Typical Current
Consumption Single
Chain (mA)8
400
330
400
360
Max. Current
Consumption Single
Chain (mA)8
710
610
720
620
HT40 MCS7
14 dBm
320
550
5500 MHz
6 Mbps
54 Mbps
HT20 MCS0
HT20 MCS7
18 dBm
16 dBm
18 dBm
16 dBm
380
330
370
320
680
600
690
600
5510 MHz
HT40 MCS7
14 dBm
300
530
5825 MHz
6 Mbps
54 Mbps
HT20 MCS0
HT20 MCS7
18 dBm
16 dBm
18 dBm
16 dBm
380
310
360
340
690
600
710
550
5795 MHz
HT40 MCS7
14 dBm
300
530
Freq.
Mode/Rate
[Mbps]
Output Power Per
Chain [dBm]
5180 MHz
6 Mbps
54 Mbps
HT20 MCS0
HT20 MCS7
5190 MHz
Performance data are measured under single chain operation.
Note:
Final TX power values on each channel are limited by the regulatory certification test limit.
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60-2230C
Datasheet
9. BLUETOOTH RADIO CHARACTERISTICS
Table 11 through Table 14 describe the basic rate transmitter performance, enhanced data transmitter
performance, basic rate receiver performance, enhanced rate receiver performance, and current consumption
conditions at 25°C.
Table 11: Basic rate transmitter performance temperature at 25°C (1.8V)
Test Parameter
Maximum RF Output Power
Frequency Range
20 dB Bandwidth
Min
2.4
—
Typ
10
—
919.5
Max
11
2.4835
—
Δf1avg Maximum Modulation
140
165
175
Δf2max Minimum Modulation
Δf2avg/Δf1avg
Initial Carrier Frequency
Drift Rate (DH1 package)
Drift (DH3 packet)
Drift (DH5 packet)
F≥ ± 3MHz
Adjacent Channel Power
F = ± 2MHz
F = ± 1MHz
—
—
—
—
—
—
—
—
—
135
0.9
+/-5
–50
-46
-15
—
—
—
—
—
—
—
—
—
BT Spec.
0 ~ +20
2.4 ≤ f ≤ 2.4835
≤ 1000
140 < Δf1avg <
175
≥ 115
≥ 0.80
≤±75
≤ 20
≤25
≤ 40
< –40
≤ –20
N/A
Unit
dBm
GHz
KHz
KHz
KHz
—
KHz
KHz/50 µs
KHz
KHz
dBm
dBm
dBm
Table 12: Enhanced data rate transmitter performance 25°C (1.8V)
Test Parameter
Relative Transmit Power
Max Carrier Frequency
Stability |wo|
2-DH5
3-DH5
Min
—
—
Max Carrier Frequency
Stability |wi|
2-DH5
—
—
3-DH5
—
—
2-DH5
—
—
3-DH5
—
—
2-DH5
—
—
3-DH5
—
—
≤13
2-DH5
—
—
≤ 35
Max Carrier Frequency
Stability |w0+wi|
RMS DEVM
Peak DEVM
99% DEVM
Max
—
—
BT Spec.
Unit
dBm
≤ ±10
KHz
≤ ±75
KHz
≤ ±75
KHz
≤ 20
3-DH5
—
—
≤ 25
2-DH5
—
12
—
≤ 30
—
—
—
—
12
99
TBD
TBD
—
—
—
—
≤ 20
≥ 99
< –40
≤ –20
dBm
dBm
3-DH5
EDR Differential Phase Encoding
F≥ ± 3MHz
Adjacent Channel Power
F = ± 2MHz
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Typ
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60-2230C
Datasheet
Table 13: Basic rate receiver performance at 1.8V
Test Parameter
Sensitivity (1DH5)
Maximum Input
Carrier-to-Interferer Ratio
(C/I)
BER ≤ 0.1%
Min
—
Typ
–95
Max
-92
BT Spec.
≤ –70
Unit
dBm
dBm
BER ≤ 0.1%
–20
-10
—
≥ –20
Co-Channel
—
10
11
11
C/I (± 1 MHz)
—
-4
dB
C/I (± 2 MHz)
—
-45
—
–30
dB
C/I (± 3 MHz)
—
-49
—
–40
dB
–39
-30
≥ –39
dBm
Maximum Level of Intermodulation Interferers
Table 14: Enhanced data rate receiver performance 1.8V
Min
Typ
Max
Bluetooth
Specification
Unit
π/4 DQPSK
—
-94
-91
≤ –70
dBm
8 DPSK
—
-88
-85
≤ –70
dBm
π/4 DQPSK
8 DPSK
π/4 DQPSK
8 DPSK
π/4 DQPSK
8 DPSK
π/4 DQPSK
8 DPSK
π/4 DQPSK
8 DPSK
30-2000MHz
2-2.399GHz
2.484-3GHz
3-12.75GHz
–20
–20
—
—
—
—
—
—
—
—
—
—
—
—
—
—
10
16
-9
-6
-47
-42
-51
-48
-12.5
-12.4
-18
-2.6
—
—
13
20
–30
–25
–40
–33
—
—
—
—
≥ –20
≥ –20
≤ ±13
≤ ±20
≤0
≤5
≤ –30
≤ –25
≤ –40
≤ –33
—
—
—
—
dBm
dBm
dB
dB
dB
dB
dB
dB
dB
dB
dBm
dBm
dBm
dBm
Test Parameter
Sensitivity (BER ≤0.01%)
Maximum Input (BER ≤0.1%)
Co-Channel C/I (BER ≤0.1%)
Adjacent Channel C/I (1 MHz)
Second Adjacent Channel C/I
(2 MHz)
Third Adjacent Channel C/I
(3 MHz)
Out-of-band blocking
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60-2230C
Datasheet
10. SDIO TIMING REQUIREMENTS
The 60-2230C SDIO host interface pins are powered from the VIO_SD voltage supply. The SDIO electrical
specifications are identical for the 1-bit SDIO and 4-bit SDIO modes.
10.1
SDR12, SDR25, SDR50 Mode (up to 100MHz) (1.8V)
Figure 2:SDIO protocol timing Diagram--- SDR12, SDR25, SDR50 modes (up to 100 MHz) (1.8V)
Table 16: SDIO timing requirements--- SDR12, SDR25, SDR50 modes (up to 100 MHz) (1.8V)
Note:
Over full range of values specified in the Recommended Operating Conditions unless otherwise
specified.
Symbol
fPP
TISU
TIH
TCLK
Parameter
Clock Frequency
Input setup time
Input Hold time
Clock Time
Raise time, Fall time
TCR,TCF <2ns (max) at 100 MHz
CCARD=10pF
TCR,TCF
TODLY
TOH
Output delay time
CL 30pF
Output hold time
CL=15pF
≦
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Condition
SDR12/25/50
SDR12/25/50
SDR12/25/50
SDR12/25/50
Min.
25
0.8
10
Typ.
--
Max.
100
40
Unit
MHz
ns
ns
ns
SDR12/25/50
0.2*TCLK
ns
SDR12/25/50
7.5
ns
SDR12/25/50
1.5
ns
24
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Datasheet
10.2 SDR104 Mode (208MHz) (1.8V)
Figure 3: SDIO protocol timing Diagram--- SDR104 modes (up to 208 MHz) (1.8V)
Table 17: SDIO timing requirements--- SDR104 modes (up to 208MHz) (1.8V)
Note:
Over full range of values specified in the Recommended Operating Conditions unless otherwise
specified.
Symbol
fPP
TISU
TIH
TCLK
Parameter
Clock Frequency
Input setup time
Input Hold time
Clock Time
Raise time, Fall time
TCR,TCF <0.96ns (max) at 208 MHz
CCARD=10 pF
Card Output phase
Output timing pf variable data
window
TCR,TCF
TOP
TODW
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Condition
SDR104
SDR104
SDR104
SDR104
SDR104
SDR104
SDR12/25/50
Min.
1.4
0.8
4.8
Typ.
--
Max.
208
Unit
MHz
ns
ns
ns
0.2*TCLK
ns
10
ns
2.88
ns
25
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60-2230C
Datasheet
10.3 DDR50 Mode (50MHz) (1.8V)
Figure 4: SDIO CMD timing Diagram--- DDR50 modes (50 MHz) (1.8V)
Figure 5: SDIO DAT[3:0] timing Diagram--- DDR50 modes (50 MHz) (1.8V)
Note: In DDR50 mode, DAT[3:0] lines are samples on both edges pF the clock (not applicable for CMD line)
Table 18: SDIO timing requirements--- DDR50 modes (50MHz)
Symbol
Clock
Parameter
Clock time
50MHz (max) between rising edge
Rise time, fall time
TCR, TCF <4.00ns (max) at 50MHz.
TCR, TCF
CCARD=10pF
Clock Duty
-CMD Input (referenced to clock rising edge)
TIS
Input setup time
TCLK
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Condition
Min.
Typ.
Max.
Unit
DDR50
20
--
--
ns
DDR50
--
--
0.2*TCLK
ns
DDR50
45
--
55
DDR50
--
--
ns
26
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60-2230C
Datasheet
Symbol
Parameter
Condition
CCARD
Input hold time
TIH
DDR50
CCARD
CMD Output (referenced to clock rising and failing edge)
Output delay time during data transfer
mode
DDR50
TODLY
CL 30pF (1card)
Output hold time
TOHLD
DDR50
CL≥15pF (1 card)
DAT[3:0] Input (referenced to clock rising and failing edges)
≦10pF (1 card)
≦10pF (1 card)
≦
Input setup time
DDR50
CCARD
Input hold time
TIH2X
DDR50
CCARD
DAT[3:0] Output (referenced to clock rising and failing edges)
Output delay time during data transfer
TODLY2X (max) mode
DDR50
CL 25pF (1card)
≦10pF (1 card)
≦10pF (1 card)
TIS2X
≦
TODLY2X (min)
Output hold time
CL≥15pF (1 card))
DDR50
Min.
Typ.
Max.
Unit
0.8
--
--
ns
--
--
13.7
ns
1.5
--
--
ns
--
--
ns
0.8
--
--
ns
--
--
7.0
ns
1.5
--
--
ns
11. USB SPECIFICATIONS
11.1 USB LS Driver and Receiver Parameters
Table 19:
Notes:
Over full range of values specified in the Recommended Operating Conditions unless otherwise
specified.
The load is 100Ω differential for these parameters, unless other specified.
Table 15: USB LS Driver and Receiver Specifications
Symbol
Parameter
BR
Baud rate
BRPPM
Baud rate tolerance
Driver Specifications
Output signal ended high
VOH
Defined with 1.425KΩ pull-up resistor to 3.6V
Output signal ended low
VOL
Defined with 1.425KΩ pull-up resistor to ground
VCRS
Output signal crossover voltage
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Min.
-15000
Typ.
1.5
Max.
15000
Unit
Mbps
ppm
2.8
3.6
0.0
0.3
2.0
1.3
27
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60-2230C
Datasheet
Symbol
Parameter
Data fall time
TLR
Defined from 10% to 90% for raise time and 90% to 10%
for fall time
Data risel time
TLF
Defined from 10% to 90% for raise time and 90% to 10%
for fall time
TLRFM
Rise and fall time matching
Source jitter total: to next transition
*Including frequency tolerance. Timing difference
TUDJ1
between the differential data signals.
*Defined at crossover point of differential signals
Source jitter total: for paired transitions
*Including frequency tolerance. Timing difference
TUDJ2
between the differential data signals.
*Defined at crossover point of differential signals
Receiver Specifications
VIH
Input signal ended high
VIL
Input signal ended low
VDI
Differential input sensitivity
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Min.
Typ.
Max.
Unit
75.0
300.0
ns
75.0
300.0
ns
80.0
125.0
-95
95
ns
-150
150
ns
2.0
0.2
0.8
28
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60-2230C
Datasheet
11.2 USB FS Driver and Receiver Parameters
Notes:
Over full range of values specified in the Recommended Operating Conditions unless otherwise
specified.
The load is 100Ω differential for these parameters, unless other specified.
Table 16: USB FS Driver and Receiver Specifications
Symbol
Parameter
BR
Baud rate
BRPPM
Baud rate tolerance
Driver Specifications
Output signal ended high
VOH
Defined with 1.425KΩ pull-up resistor to 3.6V
Output signal ended low
VOL
Defined with 1.425KΩ pull-up resistor to ground
VCRS
Output signal crossover voltage
Output raise time
TFR
Defined from 10% to 90% for raise time and 90% to 10%
for fall time
Output fall time
TFL
Defined from 10% to 90% for raise time and 90% to 10%
for fall time
Source jitter total: to next transition
*Including frequency tolerance. Timing difference
TDJ1
between the differential data signals.
*Defined at crossover point of differential signals
Source jitter total: for paired transitions
*Including frequency tolerance. Timing difference
TDJ2
between the differential data signals.
*Defined at crossover point of differential signals
TFDEOP
Source jitter for differential transition to SE0 transition.
Defined at crossover point of differential signals
Receiver Specifications
VIH
Input signal ended high
VIL
Input signal ended low
VDI
Differential input sensitivity
Receiver jitter: to next transition
TJR1
Defined at crossover point of differential data signals
Receiver jitter: for paired transitions
TJR2
Defined at crossover point of differential data signals
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Min.
-2500
Typ.
12.0
Max.
2500
Unit
Mbps
ppm
2.8
3.6
0.0
0.3
2.0
1.3
-4.0
20.0
ns
-4.0
20.0
ns
-3.5
3.5
ns
-4.0
4.0
ns
-2.0
5.0
ns
2.0
0.2
0.8
-18.5
18.5
ns
-9.0
9.0
ns
29
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60-2230C
Datasheet
11.3 USB HS Driver and Receiver Parameters
Notes:
Over full range of values specified in the Recommended Operating Conditions unless otherwise
specified.
The load is 100Ω differential for these parameters, unless other specified.
Table 17: USB HS Driver and Receiver Specifications
Symbol
Parameter
BR
Baud rate
BRPPM
Baud rate tolerance
Driver Specifications
VHSOH
Data signal high
VHSOL
Data signal low
Data rise time
THSR
Defined from 10% to 90% for raise time and 90% to 10%
for fall time
Data fall time
THSF
Defined from 10% to 90% for raise time and 90% to 10%
for fall time
Receiver Specifications
VHSCM
Input signal ended low
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Min.
-500
Typ.
480
Max.
500
Unit
Mbps
ppm
360
-10
440
10
mV
mV
500
ns
-500
ns
-50
500
mV
30
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60-2230C
Datasheet
12. PCM INTERFACE SPECIFICATIONS
Figure 6: PCM Timing Specification – Master Mode
Table 18:PCM Timing Specification – Master Mode
Symbol
FBCLK
Duty CycleBCLK
TBCLK rise/fall
TDO
TDISU
TDIHO
TBF
Parameter
Min.
0.4
20
15
Typ.
2/2.048
0.5
Max.
0.6
15
15
Unit
MHz
ns
ns
ns
ns
ns
Figure 7: PCM Timing Specification – Slave Mode
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Datasheet
Table 19: PCM Timing Specification – Slave Mode
Symbol
FBCLK
Duty CycleBCLK
TBCLK rise/fall
TDO
TDISU
TDIHO
TBFSU
TBFHO
Parameter
Min.
0.4
15
10
15
10
Typ.
2/2.048
0.5
Max.
0.6
30
Unit
MHz
ns
ns
ns
ns
ns
ns
13. PIN DEFINITIONS
Table 20: Pin definitions
Name
Type
GND
3.3V
USB_D+
3.3V
USB_DLED1#
GND
Power
I/O
Power
I/O
O,PU
Voltage
Ref.
3.3V
3.3V
3.3V
PCM_CLK
I/O
1.8V
SDIO CLK
I,PU
1.8V
10
PCM_SYNC
I/O
1.8V
11
12
13
14
15
16
17
18
19
20
21
22
SDIO CMD
PCM_IN
SDIO DATA0
PCM_OUT
SDIO DATA1
LED2#
SDIO DATA2
GND
SDIO DATA3
UART WAKE#
SDIO WAKE#
UART TXD
I/O
I/O,PU
I/O,PU
O,PU
I/O,PU
I/O,PU
N/C
N/C
1.8V
1.8V
1.8V
1.8V
1.8V
3.3V
1.8V
1.8V
N/C
N/C
1.8V
Pin #
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Description
Ground
3.3V module power supply
USB Differential Data-Positive
3.3V module power supply
USB Differential Data-Negative
LED indicator for WLAN with 10mA drive capability
Ground
PCM Clock Signal (Optimal)
Optimal clock used for some codecs.
Output if Master mode; Input if Slave mode.
SDIO 4-bit Mode Clock Input
PCM Sync Pulse Signal
Output if Master mode; Input if Slave mode.
SDIO 4-bit Mode Command/Response
PCM Data
SDIO 4-bit Mode DATA line Bit[0]
PCM Data
SDIO 4-bit Mode DATA line Bit[1]
LED indicator for BT with 10mA drive capability.
SDIO 4-bit Mode DATA line Bit[2]
Ground
SDIO 4-bit Mode DATA line Bit[3]
N/C
N/C
UART Serial Data Output
32
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If Not
Used
GND
N/C
N/C
N/C
GND
N/C
N/C
N/C
N/C
N/C
N/C
N/C
N/C
N/C
N/C
GND
N/C
N/C
N/C
N/C
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Datasheet
N/C
O,WPU
I, PU
Voltage
Ref.
N/C
1.8V
1.8V
1.8V
1.8V
1.8V
N/C
UART Serial Data Input
Ground
UART Request To Send (Active low)
PCIe Receive Data-Positive
UART Clear To Send (Active low)
PCIe Receive Data-Negative
If Not
Used
N/C
N/C
GND
N/C
N/C
N/C
N/C
N/C
N/C
N/C
N/C
Ground
GND
N/C
N/C
N/C
N/C
1.8V
PCIe Transmit Data-Positive
N/C
N/C
N/C
N/C
N/C
I/O
O,PD
I,PD
1.8V
1.8V
1.8V
1.8V
1.8V
1.8V
N/C
N/C
GND
N/C
N/C
N/C
N/C
SUSCLK(32KHz)
I,PU
3.3V
51
GND
52
PERST0#
I,PD
3.3V
53
CLKREQ0#
I/O
3.3V
54
W_DISABLE2#
3.3V
55
PEWAKE0#
W_DISABLE1#
(O)(0/3.3V)
GND
I2C DATA
(I/O)(0/3.3V)
RESERVED/PETp1
I2C CLK
(O)(0/3.3V)
I/O
3.3V
I,PU
3.3V
PCIe Transmit Data-Negative
General purpose I/O pin.
Ground
Serial data to external LTE device/
PCIe Differential Clock input-Positive
Serial data from external LTE device/
PCIe Differential Clock input-Negative
Sleep Clock Input
An external sleep clock of 32.768KHz with
minimum +/-250ppm is required for power saving
mode
Ground
PCIe host indication to reset the device (input)
(active low)
PCIe clock request (input/output) (active low)
Enable input for all Regulators inside the 60-SIPT.
Note: DO NOT float this pin. Pull-up to 3.3V with
100K for normal operation.
PCIe wake signal (input/output) (active low)
PCIe host indication to disable the WLAN function
of the device (input) (active low)
Ground
N/C
N/C
N/C
N/C
N/C
N/C
N/C
N/C
N/C
N/C
N/C
N/C
Pin #
Name
Type
43
44
45
46
47
48
49
SDIO RESET#
UART RXD
GND
UART RTS
PERp0
UART CTS
PERn0
VENDOR
DEFINED38
GND
VENDOR
DEFINED40
PETp0
VENDOR
DEFINED42
PETn0
COEX3
GND
COEX2
REFCLKp0
COEX1
REFCLKn0
50
23
32
33
34
35
36
37
38
39
40
41
42
56
57
58
59
60
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Description
33
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GND
N/C
GND
100K,
PU
N/C
N/C
GND
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60-2230C
Datasheet
Pin #
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
N/C
Voltage
Ref.
N/C
N/C
If Not
Used
N/C
N/C
N/C
N/C
N/C
N/C
N/C
N/C
N/C
Ground
N/C
N/C
GND
N/C
N/C
N/C
N/C
N/C
N/C
N/C
N/C
N/C
N/C
N/C
N/C
N/C
N/C
Ground
GND
N/C
N/C
N/C
N/C
N/C
N/C
N/C
N/C
Power
3.3V module power supply
N/C
N/C
N/C
N/C
Power
3.3V module power supply
Ground
Ground
Ground
GND
GND
GND
Name
Type
RESERVED/PETn1
ALERT#
(I)(0/3.3V)
GND
RESERVED
RESERVED/PERp1
UIM_SWP/PERST
1#
RESERVED/PERn1
UIM_POWER_SN
K/CLKREQ1#
GND
UIM_POWER_SRC
/GPIO1/PEWAKE1
RESERVED/REFCL
Kp1
3.3V
RESERVED/REFCL
Kn1
3.3V
GND
GND
GND
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Description
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60-2230C
Datasheet
14. MECHANICAL SPECIFICATIONS
Module dimensions of 60-2230C are 22mm x 30mm x 3.3mm. Detail drawings are shown in Error! Reference
source not found..
Figure 8: Module dimension of 60-2230C
Note:
The Wi-Fi MAC address is located on the product label. The BT MAC address is always numerically
subsequent to the Wi-Fi MAC address. Therefore, the BT MAC address is the Wi-Fi MAC address
plus one.
15. MOUNTING
The 60-2230C connects to the host via a standard PCI EXPRESS M2 connector. The Kyocera’s (www.Kyoceraconnector.com) 6411 series provide 1.8 mm, 2.3 mm and 3.2 mm connector heights.
Because the 60-2230C is a single-side component module, we recommend the following part number (which has
a 2.3 mm connector height):
24-6411-067-101-897E
The stand-off mating to the recommend 2.3 mm connector from EMI STOP (www.EMISTOP.com) is part number
F50M16-041525P1D4M. Detail layout and stencil opening are show in Figure 9.
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60-2230C
Datasheet
Figure 9: Mounting information of the 60-2230C and recommended layout pattern for the stand-off
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60-2230C
Datasheet
16. RF LAYOUT DESIGN GUIDELINES / PRECAUTIONS
The following is a list of RF layout design guidelines and recommendation when installing a Laird radio into your
device.
Do not run antenna cables directly above or directly below the radio.
Do not place any parts or run any high speed digital lines below the radio.
If there are other radios or transmitters located on the device (such as a Bluetooth radio), place the
devices as far apart from each other as possible. Also, make sure there is at least 25 dB isolation between
the Bluetooth antenna and the Wi-Fi antenna.
Ensure that there is the maximum allowable spacing separating the antenna connectors on the Laird radio
from the antenna. In addition, do not place antennas directly above or directly below the radio.
Laird recommends the use of a double-shielded cable for the connection between the radio and the
antenna elements.
Be sure to put the capacitor on the power pin as close as possible to reduce the radiation issue.
Use proper electro-static-discharge (ESD) procedures when installing the Laird radio module.
To get maximum throughput when operate at MIMO 2x2, two antennas with at least 25 dB isolation are
recommended.
To avoid negatively impacting Tx power and receiver sensitivity, do not cover the antennas with metallic
objects or components.
Opening/handing/removing must be done on an anti-ESD treated workbench. All workers must be also
have undergone anti-ESD treatment.
The devices should be mounted within one year of the date of delivery.
17. REGULATORY
17.1 Certified Antennas
Type
Connector
2400~2483.5MHz
5150~5250MHz 5250~5350MHz
5470~5725MHz 5725~5850MHz
Laird MAF94051
Dipole
RP-SMA
2.1 dBi (2.4-2.5 GHz), 2.4 dBi (4.9 GHz)
2.6 dBi (5.25 GHz), 3.4 dBi (5.875 GHz)
Laird/NanoBlade-IP04
PCB
Dipole
IPEX MHF
2 dBi (2.4-2.5 GHz),
3.9 dBi (5.15-5.35 GHz), 4 dBi (5.6 GHz)
Laird/MAF95310 Mini Nano Blade
Flex
PCB
Dipole
IPEX MHF
2.79 dBi (2.4 GHz), 3.38 dBi (5 GHz)
Laird/NanoBlue-IP04
PCB
Dipole
IPEX MHF
2 dBi (2.4 GHz only)
Isolated
Magnetic
Dipole
IPEX MHF
2.5 dBi (2.390-2.490 GHz),
3.5 dBi (4.900-5.100, 5.150-5.350,
5.70-5.900 GHz)
Model
Ethertronics/WLAN_1000146
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60-2230C
Datasheet
18. FCC AND IC REGULATORY
Model
60-2230C
US/FCC
SQG-602230C
CANADA/IC
3147A-602230C
The 60-2230C has been designed to pass certification with the antenna listed below. The required antenna
impedance is 50 ohms.
Table 21: FCC antenna information
Peak gain ( dBi )
Model
Type
Connector
Laird
MAF94051
Dipole
RP-SMA
Laird
NanoBlade-IP04
PCB Dipole
IPEX MHF
2 dBi
Laird
MAF95310 Mini
NanoBlade Flex
PCB Dipole
IPEX MHF
2.79 dBi
3.38 dBi
Laird
NanoBlue-IP04
PCB Dipole
IPEX MHF
2dBi
Ethertronics
WLAN_1000146
Isolated
Magnetic
Dipole
IPEX MHF
2.5dBi
4.5 dBi
2400~2483.5 5150~5250
MHz
MHz
2.1 dBi
2.4 dBi
5250~5350 5470~5725 5725~5850
MHz
MHz
MHz
2.6 dBi
3.4 dBi
3.9 dBi
4 dBi
18.1 FCC
18.1.1 Federal Communication Commission Interference Statement
This equipment has been tested and found to comply with the limits for a Class B digital device, pursuant to Part
15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference in a
residential installation. This equipment generates, uses and can radiate radio frequency energy and, if not
installed and used in accordance with the instructions, may cause harmful interference to radio communications.
However, there is no guarantee that interference will not occur in a particular installation. If this equipment
does cause harmful interference to radio or television reception, which can be determined by turning the
equipment off and on, the user is encouraged to try to correct the interference by one of the following
measures:
Reorient or relocate the receiving antenna.
Increase the separation between the equipment and receiver.
Connect the equipment into an outlet on a circuit different from that to which the receiver is connected.
Consult the dealer or an experienced radio/TV technician for help.
18.1.2 FCC Caution
Any changes or modifications not expressly approved by the party responsible for compliance could void the
user's authority to operate this equipment.
Embedded Wireless Solutions Support Center:
http://ews-support.lairdtech.com
www.lairdtech.com/wireless
38
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Europe: +44-1628-858-940
Hong Kong: +852 2923 0610
60-2230C
Datasheet
This device complies with Part 15 of the FCC Rules. Operation is subject to the following two conditions: (1) This
device may not cause harmful interference, and (2) this device must accept any interference received, including
interference that may cause undesired operation.
18.1.3 Important Note
Radiation Exposure Statement
This equipment complies with FCC radiation exposure limits set forth for an uncontrolled environment. This
equipment should be installed and operated with minimum distance 20cm between the radiator and your body.
This transmitter must not be co-located or operating in conjunction with any other antenna or transmitter.
Country Code selection feature to be disabled for products marketed to the US/Canada.
This device is intended only for OEM integrators under the following conditions:
1. The antenna must be installed such that 20 cm is maintained between the antenna and users, and
2. The transmitter module may not be co-located with any other transmitter or antenna,
3. For all products market in US, OEM has to limit the operation channels in CH1 to CH11 for 2.4G band
by supplied firmware programming tool. OEM shall not supply any tool or info to the end-user
regarding to Regulatory Domain change.
As long as the three conditions above are met, further transmitter testing will not be required. However, the
OEM integrator is still responsible for testing their end-product for any additional compliance requirements
required with this module installed.
Important Note
In the event that these conditions cannot be met (for example certain laptop configurations or co-location with
another transmitter), then the FCC authorization is no longer considered valid and the FCC ID cannot be used on
the final product. In these circumstances, the OEM integrator will be responsible for re-evaluating the end
product (including the transmitter) and obtaining a separate FCC authorization.
18.1.4 End Product Labeling
This transmitter module is authorized only for use in device where the antenna may be installed such that 20 cm
may be maintained between the antenna and users. The final end product must be labeled in a visible area with
the following: Contains FCC ID: SQG-602230C.
18.1.5
Manual Information to the End User
The OEM integrator has to be aware not to provide information to the end user regarding how to install or
remove this RF module in the user’s manual of the end product which integrates this module.
The end user manual shall include all required regulatory information/warning as show in this manual.
Embedded Wireless Solutions Support Center:
http://ews-support.lairdtech.com
www.lairdtech.com/wireless
39
© Copyright 2017 Laird. All Rights Reserved
Americas: +1-800-492-2320
Europe: +44-1628-858-940
Hong Kong: +852 2923 0610
60-2230C
Datasheet
18.2 Industry Canada
18.2.1 Industry Canada Statement
This device complies with Industry Canada’s license-exempt RSSs. Operation is subject to the following two
conditions:
This device may not cause interference; and
This device must accept any interference, including interference that may cause undesired operation of
the device.
Le présent appareil est conforme aux CNR d’Industrie Canada applicables aux appareils radio exempts de licence.
L’exploitation est autorisée aux deux conditions suivantes:
l’appareil ne doit pas produire de brouillage;
l’utilisateur de l’appareil doit accepter tout brouillage radioélectrique subi, même si le brouillage est
susceptible d’en compromettre le fonctionnement.
This radio transmitter (IC: 3147A-602230C) has been approved by Industry Canada to operate with the antenna
types listed below with the maximum permissible gain indicated. Antenna types not included in this list, having a
gain greater than the maximum gain indicated for that type, are strictly prohibited for use with this device.
Le présent émetteur radio (IC: 3147A-602230C) a été approuvé par Industrie Canada pour fonctionner avec les
types d'antenne énumérés ci-dessous et ayant un gain admissible maximal. Les types d'antenne non inclus dans
cette liste, et dont le gain est supérieur au gain maximal indiqué, sont strictement interdits pour l'exploitation de
l'émetteur.
18.2.2 Antenna Information
Table 22: Antenna information
Peak gain ( dBi )
Model
Type
Connector
Laird
MAF94051
Dipole
RP-SMA
Laird
NanoBlade-IP04
PCB Dipole
IPEX MHF
2 dBi
Laird
MAF95310 Mini
NanoBlade Flex
PCB Dipole
IPEX MHF
2.79 dBi
3.38 dBi
Laird
NanoBlue-IP04
PCB Dipole
IPEX MHF
2dBi
Ethertronics
WLAN_1000146
Isolated
Magnetic
Dipole
IPEX MHF
2.5dBi
Embedded Wireless Solutions Support Center:
http://ews-support.lairdtech.com
www.lairdtech.com/wireless
2400~2483.5 5150~5250
MHz
MHz
2.1 dBi
2.4 dBi
5250~5350 5470~5725 5725~5850
MHz
MHz
MHz
2.6 dBi
3.4 dBi
3.9 dBi
4 dBi
3.5 dBi
40
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Europe: +44-1628-858-940
Hong Kong: +852 2923 0610
60-2230C
Datasheet
18.2.3 Caution:
(i) The device for operation in the band 5150–5250 MHz is only for indoor use to reduce the potential for
harmful interference to co-channel mobile satellite systems;
(ii) For devices with detachable antenna(s), the maximum antenna gain permitted for devices in the bands 52505350 MHz and 5470-5725 MHz shall be such that the equipment still complies with EIRP limit;
(iii) For devices with detachable antenna(s), the maximum antenna gain permitted for devices in the band 57255850 MHz shall be such that the equipment still complies with the EIRP limits specified for point-to-point and
non-point-to-point operation as appropriate; and
Operations in the 5.25-5.35GHz band are restricted to indoor usage only.
18.2.4 Avertissement:
(i) les dispositifs fonctionnant dans la bande de 5150 à 5250MHz sont réservés uniquement pour une utilisation
à l'intérieur afin de réduire les risques de brouillage préjudiciable aux systèmes de satellites mobiles utilisant les
mêmes canaux;
(ii) pour les dispositifs munis d'antennes amovibles, le gain maximal d'antenne permis pour les dispositifs
utilisant les bandes de 5250 à 5350MHz et de 5470 à 5725 MHz doit être conforme à la limite de la p.i.r.e;
(iii) pour les dispositifs munis d'antennes amovibles, le gain maximal d'antenne permis (pour les dispositifs
utilisant la bande de 5725 à 5850 MHz) doit être conforme à la limite de la p.i.r.e. spécifiée pour l'exploitation
point à point et l'exploitation non point à point, selon le cas;
Les opérations dans la bande de 5.25-5.35GHz sont limités à un usage intérieur seulement.
18.2.5 Radiation Exposure Statement
This equipment complies with Canada radiation exposure limits set forth for an uncontrolled environment. This
equipment should be installed and operated with minimum distance 20cm between the radiator and your body.
18.2.6 Déclaration d'exposition aux radiations
Cet équipement est conforme Canada limites d'exposition aux radiations dans un environnement non contrôlé.
Cet équipement doit être installé et utilisé à distance minimum de 20cm entre le radiateur et votre corps.
This device is intended only for OEM integrators under the following condition:
The transmitter module may not be co-located with any other transmitter or antenna.
As long as the condition above is met, further transmitter test will not be required. However, the OEM
integrator is still responsible for testing their end-product for any additional compliance requirements required
with this module installed.
Cet appareil est conçu uniquement pour les intégrateurs OEM dans les conditions suivantes:
Le module émetteur peut ne pas être coïmplanté avec un autre émetteur ou antenne.
Tant que les 1 condition ci-dessus sont remplies, des essais supplémentaires sur l'émetteur ne seront pas
nécessaires. Toutefois, l'intégrateur OEM est toujours responsable des essais sur son produit final pour toutes
exigences de conformité supplémentaires requis pour ce module installé.
Embedded Wireless Solutions Support Center:
http://ews-support.lairdtech.com
www.lairdtech.com/wireless
41
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Americas: +1-800-492-2320
Europe: +44-1628-858-940
Hong Kong: +852 2923 0610
60-2230C
Datasheet
18.2.7 Important Note
In the event that these conditions cannot be met (for example certain laptop configurations or co-location with
another transmitter), then the Canada authorization is no longer considered valid and the IC ID cannot be used
on the final product. In these circumstances, the OEM integrator will be responsible for re-evaluating the end
product (including the transmitter) and obtaining a separate Canada authorization.
18.2.8 Note Important
Dans le cas où ces conditions ne peuvent être satisfaites (par exemple pour certaines configurations
d'ordinateur portable ou de certaines co-localisation avec un autre émetteur), l'autorisation du Canada n'est
plus considéré comme valide et l'ID IC ne peut pas être utilisé sur le produit final. Dans ces circonstances,
l'intégrateur OEM sera chargé de réévaluer le produit final (y compris l'émetteur) et l'obtention d'une
autorisation distincte au Canada.
18.2.9 End Product Labeling
The final end product must be labeled in a visible area with the following: Contains IC: 3147A-602230C.
18.2.10 Plaque signalétique du produit final
Le produit final doit être étiqueté dans un endroit visible avec l'inscription suivante: Contient des IC: 3147A602230C.
18.2.11 Manual Information to the End User
The OEM integrator has to be aware not to provide information to the end user regarding how to install or
remove this RF module in the user’s manual of the end product which integrates this module.
The end user manual shall include all required regulatory information/warning as show in this manual.
18.2.12 Manuel d'information à l'utilisateur final
L'intégrateur OEM doit être conscient de ne pas fournir des informations à l'utilisateur final quant à la façon
d'installer ou de supprimer ce module RF dans le manuel de l'utilisateur du produit final qui intègre ce module.
Le manuel de l'utilisateur final doit inclure toutes les informations réglementaires requises et avertissements
comme indiqué dans ce manuel.
19. EUROPEAN UNION REGULATORY
The 60-2230C has been tested for compliance with relevant standards for the EU market. 60-2230C module was
tested with antennas listed below.
Table 23: EU antenna information
Type
Connector
2400~2483.5MHz
5150~5250MHz 5250~5350MHz
5470~5725MHz 5725~5850MHz
Laird MAF94051
Dipole
RP-SMA
2.1 dBi (2.4-2.5 GHz), 2.4 dBi (4.9 GHz)
2.6 dBi (5.25 GHz), 3.4 dBi (5.875 GHz)
Laird/NanoBlade-IP04
PCB
Dipole
IPEX MHF
2 dBi (2.4-2.5 GHz),
3.9 dBi (5.15-5.35 GHz), 4 dBi (5.6 GHz)
Model
Embedded Wireless Solutions Support Center:
http://ews-support.lairdtech.com
www.lairdtech.com/wireless
42
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Europe: +44-1628-858-940
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60-2230C
Datasheet
Type
Connector
2400~2483.5MHz
5150~5250MHz 5250~5350MHz
5470~5725MHz 5725~5850MHz
Laird/MAF95310 Mini Nano Blade
Flex
PCB
Dipole
IPEX MHF
2.79 dBi (2.4 GHz), 3.38 dBi (5 GHz)
Laird/NanoBlue-IP04
PCB
Dipole
IPEX MHF
2 dBi (2.4 GHz only)
Isolated
Magnetic
Dipole
IPEX MHF
2.5 dBi (2.390-2.490 GHz),
3.5 dBi (4.900-5.100, 5.150-5.350,
5.70-5.900 GHz)
Model
Ethertronics/WLAN_1000146
The OEM should consult with a qualified test house before entering their device into an EU member country to
make sure all regulatory requirements have been met for their complete device.
Reference the Declaration of Conformities listed below for a full list of the standards that the modules were
tested to. Test reports are available upon request.
19.1 EU Declarations of Conformity
This device complies with the essential requirements of the Radio Equipment directive: 2014/53/EU. The
following test methods have been applied to prove presumption of conformity with the essential requirements
of the Radio Equipment directive 2014/53/EU:
Manufacturer:
Laird
Products:
60-2230C
EU Directives:
2014/53/EU – Radio Equipment Directive (RED)
Reference standards used for presumption of conformity:
Article Number Requirement
Low voltage equipment safety
3.1a
RF Exposure
3.1b
3.2
Protection requirements with respect
to electromagnetic compatibility
Means of the efficient use of the
radio frequency spectrum
Reference standard(s)
EN 60950-1:2006+A11+A1:2010+A12:2011+A2 2013
EN 62311:2008
EN 50385:2002
EN 301 489-1 v2.2.0 (Draft)
EN 301 489-17 v3.2.0 (Draft)
EN 300 328 v2.1.1 (2015-02)
EN 301 893 v2.1.0 (Final Draft)
Declaration:
We, Laird, declare under our sole responsibility that the essential radio test suites have been carried out and
that the above product to which this declaration relates is in conformity with all the applicable essential
requirements of Article 3 of the EU Directive 1999/5/EC, when used for its intended purpose.
Place of Issue:
Date of Issue:
Name of Authorized Person:
Signature of Authorized Person:
Embedded Wireless Solutions Support Center:
http://ews-support.lairdtech.com
www.lairdtech.com/wireless
Laird
W66N220 Commerce Court, Cedarburg, WI 53012 USA
tel: +1-262-375-4400 fax: +1-262-364-2649
May 2017
Thomas T Smith, Director of EMC Compliance
43
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Europe: +44-1628-858-940
Hong Kong: +852 2923 0610
60-2230C
Datasheet
Maximum Output Power for Each Frequency
TBD
Software Version for Testing
SW version: P95
20.5 dBm, 5.15-5.25 GHz
20.5 dBm, 5.25-5.35 GHz
20.5 dBm, 5.47-5.725 GHz
The minimum distance between the user and/or any bystander and the radiating structure of the transmitter
is 20 cm.
5150 ~ 5350 MHz is limited to indoor used in the following countries:
BE
DK
IE
FR
CY
BG
CZ
LU
NL
PT
DE
EL
HR
EE
ES
IT
SK
UK
NO
LV
HU
AT
RO
FI
LI
TR
LT
MT
PL
SI
SE
IS
CH
20. ORDERING INFORMATION
Part Number
60-2230C
Description
2X2 802.11 a/b/g/n with BT4.2 dual mode module.
20.1 General Comments
This is a preliminary datasheet. Please check with Laird for the latest information before commencing a design. If
in doubt, ask.
Česky
[Czech]
[Jméno výrobce] tímto prohlašuje, že tento [typ zařízení] je ve shodě se základními požadavky
a dalšími příslušnými ustanoveními směrnice 1999/5/ES.
Dansk
[Danish]
Undertegnede [fabrikantens navn] erklærer herved, at følgende udstyr [udstyrets
typebetegnelse] overholder de væsentlige krav og øvrige relevante krav i direktiv 1999/5/EF.
Deutsch
[German]
Hiermit erklärt [Name des Herstellers], dass sich das Gerät [Gerätetyp] in Übereinstimmung
mit den grundlegenden Anforderungen und den übrigen einschlägigen Bestimmungen der
Richtlinie 1999/5/EG befindet.
Eesti
[Estonian]
Käesolevaga kinnitab [tootja nimi = name of manufacturer] seadme [seadme tüüp = type of
equipment] vastavust direktiivi 1999/5/EÜ põhinõuetele ja nimetatud direktiivist tulenevatele
teistele asjakohastele sätetele.
English
Hereby, [name of manufacturer], declares that this [type of equipment] is in compliance with
the essential requirements and other relevant provisions of Directive 1999/5/EC.
Español
[Spanish]
Por medio de la presente [nombre del fabricante] declara que el [clase de equipo] cumple con
los requisitos esenciales y cualesquiera otras disposiciones aplicables o exigibles de la Directiva
1999/5/CE.
Ελληνική
[Greek]
ΜΕ ΤΗΝ ΠΑΡΟΥΣΑ [name of manufacturer] ∆ΗΛΩΝΕΙ ΟΤΙ [type of equipment]
ΣΥΜΜΟΡΦΩΝΕΤΑΙ ΠΡΟΣ ΤΙΣ ΟΥΣΙΩ∆ΕΙΣ ΑΠΑΙΤΗΣΕΙΣ ΚΑΙ ΤΙΣ ΛΟΙΠΕΣ ΣΧΕΤΙΚΕΣ
∆ΙΑΤΑΞΕΙΣ ΤΗΣ Ο∆ΗΓΙΑΣ 1999/5/ΕΚ.
Français
[French]
Par la présente [nom du fabricant] déclare que l'appareil [type d'appareil] est conforme aux
exigences essentielles et aux autres dispositions pertinentes de la directive 1999/5/CE.
Embedded Wireless Solutions Support Center:
http://ews-support.lairdtech.com
www.lairdtech.com/wireless
44
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Europe: +44-1628-858-940
Hong Kong: +852 2923 0610
60-2230C
Datasheet
Italiano
[Italian]
Con la presente [nome del costruttore] dichiara che questo [tipo di apparecchio] è conforme ai
requisiti essenziali ed alle altre disposizioni pertinenti stabilite dalla direttiva 1999/5/CE.
Latviski
[Latvian]
Aršo[name of manufacturer /izgatavotājanosaukums] deklarē, ka[type of equipment / iekārtas
tips]atbilstDirektīvas 1999/5/EK būtiskajāmprasībām un citiemar to saistītajiemnoteikumiem.
Lietuvių
[Lithuanian]
Šiuo [manufacturer name] deklaruoja, kad šis [equipment type] atitinka esminius reikalavimus
ir kitas 1999/5/EB Direktyvos nuostatas.
Nederlands
[Dutch]
Hierbij verklaart [naam van de fabrikant] dat het toestel [type van toestel] in overeenstemming
is met de essentiële eisen en de andere relevante bepalingen van richtlijn 1999/5/EG.
Malti
[Maltese]
Hawnhekk, [isem tal-manifattur], jiddikjara li dan [il-mudel tal-prodott] jikkonforma malħtiġijiet essenzjali u ma provvedimenti oħrajn relevanti li hemm fid-Dirrettiva 1999/5/EC.
Magyar
[Hungarian]
Alulírott, [gyártó neve] nyilatkozom, hogy a [... típus]megfelel a vonatkozó alapvetõ
követelményeknek és az 1999/5/EC irányelv egyéb elõírásainak.
Polski
[Polish]
Niniejszym [nazwa producenta] oświadcza, że [nazwa wyrobu] jest zgodny z zasadniczymi
wymogami oraz pozostałymi stosownymi postanowieniami Dyrektywy 1999/5/EC.
Português
[Portuguese]
[Nome do fabricante] declara que este [tipo de equipamento] está conforme com os requisitos
essenciais e outras disposições da Directiva 1999/5/CE.
Slovensko
[Slovenian]
[Ime proizvajalca] izjavlja, da je ta [tip opreme] v skladu z bistvenimi zahtevami in ostalimi
relevantnimi določili direktive 1999/5/ES.
Slovensky
[Slovak]
[Menovýrobcu]týmtovyhlasuje, že[typzariadenia]spĺňazákladnépožiadavky a
všetkypríslušnéustanoveniaSmernice 1999/5/ES.
Suomi
[Finnish]
[Valmistaja = manufacturer] vakuuttaa täten että [type of equipment = laitteen tyyppimerkintä]
tyyppinen laite on direktiivin 1999/5/EY oleellisten vaatimusten ja sitä koskevien direktiivin
muiden ehtojen mukainen.
Svenska
[Swedish]
Härmed intygar [företag] att denna [utrustningstyp] står I överensstämmelse med de väsentliga
egenskapskrav och övriga relevanta bestämmelser som framgår av direktiv 1999/5/EG.
20.2 Labeling Requirements
The final end product must be labeled in a visible area with the following notice:
© Copyright 2017 Laird. All Rights Reserved. Any information furnished by Laird and its agents is believed to be accurate and reliable. All specifications are
subject to change without notice. Responsibility for the use and application of Laird materials or products rests with the end user since Laird and its agents
cannot be aware of all potential uses. Laird makes no warranties as to non-infringement nor as to the fitness, merchantability, or sustainability of any Laird
materials or products for any specific or general uses. Laird, Laird Technologies, Inc., or any of its affiliates or agents shall not be liable for incidental or
consequential damages of any kind. All Laird products are sold pursuant to the Laird Terms and Conditions of Sale in effect from time to time, a copy of
which will be furnished upon request. When used as a tradename herein, Laird means Laird PLC or one or more subsidiaries of Laird PLC. Laird™, Laird
Technologies™, corresponding logos, and other marks are trademarks or registered trademarks of Laird. Other marks may be the property of third parties.
Nothing herein provides a license under any Laird or any third party intellectual property right.
Embedded Wireless Solutions Support Center:
http://ews-support.lairdtech.com
www.lairdtech.com/wireless
45
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Americas: +1-800-492-2320
Europe: +44-1628-858-940
Hong Kong: +852 2923 0610

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