Renesas Electronics America G1D Bluetooth Low Energy Module User Manual
Renesas Electronics America, Inc Bluetooth Low Energy Module Users Manual
Users Manual
APPLICATION NOTE RL78/G1D RL78/G1D Solution Kit – PMOD Module Hardware R01AN2919EU0100_RL78G1D Rev. 1.00 Sept. 15, 2015 Manual Introduction This document represents RL78/G1D Solution Kit’s PMOD module. The document describes hardware platform information such as PMOD™ peripheral connection, RL78/G1D-SK Bluetooth® module interface and its Bluetooth® connectivity, bill of materials, and schematics. Target Device RL78/G1D, G13 Group (R5F11AGJ) This Solution Kit’s PMOD module includes Renesas’ Intelligent Bluetooth® Smart device with part number starting with R5F11A (256 KB program flash memory, 20 KB RAM and 8 KB data flash memory). R01AN2919EU0100_RL78G1D Rev. 1.00 Sept. 15, 2015 Page 1 of 4 RL78/G1D RL78/G1D Solution Kit – PMOD Module Hardware Manual Contents 1. 1.1 Overview ......................................................................................................................... 3 Specification Outline .................................................................................................................. 3 2. RL78/G1D-SK PMOD module interface ......................................................................... 4 3. RL78/G1D-SK Bluetooth module Pin Configuration .................................................... 5 4. RL78/G1D-SK PMOD Module Design Bill of Material ................................................... 6 5. Circuit Diagrams ............................................................................................................. 7 Appendix A - References ...................................................................................................... 8 Appendix B - Conformity Assessment ................................................................................. 9 R01AN2919EU0100_RL78G1D Rev. 1.00 Sept. 15, 2015 Page 2 of 4 RL78/G1D 1. RL78/G1D Solution Kit – PMOD Module Hardware Manual Overview RL78/G1D-SK PMOD module has two sections: Bluetooth® module (RL78/G1D-SK) and PMOD™ connector (PMOD) with power consumption measurement. This module allows you to measure current consumption for RF section and microcontroller (MCU) section using R1 and R4 respectively. To measure current, remove the resistor and attach current probe to the resistor pads. Read the current value from the meter. The PMOD and RL78/G1D-SK sections are divided by breakaway groove at bottom side. Figure 1 shows top and bottom view of the module including breakaway groove marking. After breaking the board, you get small Bluetooth® Smart module (RL78/G1D-SK) which has 30 solder pads at bottom side for power supply, debug/program interface, and I/O interface. Once broken into two pieces, the PMOD™ section is of no use. Figure 1 RL78/G1D-SK PMOD module 1.1 Specification Outline The specification of RL78/G1D-SK PMOD module is described as below Table 1. Table 1 RL78/G1D-SK PMOD module Specification Item Dimension Operation Power Supply Voltage Maximum Power Supply Voltage Average Operation Current Maximum Total Output Current Operating Ambient Temperature/Humidity Storage Temperature Content 22.86 mm x 15.24 mm ( 0.9 inch x 0.6 inch) 3.0 V 3.6 V 10 µA Note1 150 mA Note2 0°C to +60°C, 10% to 80% RH (non condensing) −15°C to +60°C, 10% to 80% RH (non condensing) Note 1: One-second interval with keeping Bluetooth® connection Note 2: Refer Electrical Specifications of RL78/G1D User’s Manual: Hardware, R01UH0515EJ0100 [1] R01AN2919EU0100_RL78G1D Rev. 1.00 Sept. 15, 2015 Page 3 of 4 RL78/G1D RL78/G1D Solution Kit – PMOD Module Hardware Manual 2. RL78/G1D-SK PMOD module interface For interface connection, the RL78/G1D-SK PMOD module has 2x6 pin, standard 0.1-inch pitch right angle male connector. Using this connector, you can program or debug RL78/G1D-SK Bluetooth® module. If you program firmware in Modem configuration, the module can be used for Bluetooth® communication by plugging into one of the PMOD connectors on the Renesas RDK board like YRDKRL78-G14. The PMOD connector pin number and pin orientation are shown in Figure 2, and Table 2 shows the pin configuration. Figure 2 PMOD connector pin assignment for RL78/G1D-SK PMOD module Table 2 Interface between Host and Peripheral PMOD PMOD Pin Number Solution Kit (Host) RL78/G1D-SK PMOD (Peripheral) PMOD Signal PMOD-WAKEUP P30 PMOD_CS PMOD-TxD P11 (RxD0/SI00) PMOD_MOSI PMOD-RxD P12 (TxD0/SO00) PMOD_MISO PMOD-SCK P10 (SCK00) PMOD-SCK GND GND GND VDD (3.3 V) VDD (via R1 and R4) VDD PMOD-SDIR (INTP) P21 PMOD_PIN7 PMOD-GPIO nRESET PMOD_PIN8 PMOD-GPIO P16 PMOD_PIN9 10 PMOD-GPIO TOOL0 PMOD_PIN10 11 GND GND GND 12 VDD (3.3 V) VDD (via R1 and R4) VDD The PMOD connector has flexible interface to communicate either UART or CSI mode. The RL78/G1D-SK PMOD module can support five communication modes based on programmed firmware as below. Refer document R01UW0095EJ0117 [2] for detail. 2-Wire UART 3-Wire UART 2-Wire UART with branch 4-Wire CSI 5-Wire CSI R01AN2919EU0100_RL78G1D Rev. 1.00 Sept. 15, 2015 Page 4 of 4 RL78/G1D RL78/G1D Solution Kit – PMOD Module Hardware Manual 3. RL78/G1D-SK Bluetooth module Pin Configuration After breaking away the PMOD connector of the PMOD module, you get Bluetooth® module, with dimensions 12.7x12.7 mm (½ inch square). The module has 30 gold plated pads at bottom layer and their respective functions are described in Table 3 . Refer MCU device detail in RL78/G1D User’s Manual: Hardware, R01UH0515EJ0100 [1]. GND VDD_RF P30 P16 GPIO0 BOTTOM VIEW P15 GPIO1 GND TOOL0 nRESET P00 VDD_IO P01 P02 P03 P120 P20 P121 P10 P21 P137 P11 P22 P60 P12 P23 P61 P13 P147 P14 Figure 3 RL78/G1D-SK module pin configuration Table 3 RL78/G1D-SK module Pin Function Pin Number Designator GND VDD_RF P30 P16 P15 P14 P13 P12 P11 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 P10 P147 P23 P22 P21 P20 P03 P02 P01 P00 VDD_IO nRESET TOOL0 GND P120 P121 P137 P60 P61 PGPIO1 PGPIO0 Description Ground RF +3.0 volt power supply GPIO/External Interrupt Input 3 / Real-time clock (1 Hz) Output GPIO/ Timer01 Input, Output / External Interrupt Input 5 GPIO/ CSI20 clock/ I2C 20 clock Output/ Timer02 Input, Output GPIO/ CSI20 Input/ I2C 20 Data/IIC0A clock Output/ Timer03 Input, Output GPIO/ CSI20 Output/ I2C 0A Data/ Timer04 Input, Output GPIO/ CSI00 Output / UART 0 Transmit Output / Timer05 Input, Output GPIO/ CSI00 Input/ UART 0 Receive Input/ I2C00 Data/ Timer06 Input, Output GPIO/ CSI00 clock / I2C00 clock Output / Timer07 Input, Output GPIO/ Analog Input 18 GPIO/ Analog Input 3 GPIO/ Analog Input 2 GPIO/ Analog Input 1/ Analog Reference Minus GPIO/ Analog Input 0/ Analog Reference Plus GPIO/ Analog Input 16/ UART 1 Receive Input GPIO/ Analog Input 17/ UART 1 Transmit Output GPIO/ Timer00 Input GPIO/ Timer00 Output MCU +3.0 volt power supply Reset Input General purpose Input/ Debug, Programming Ground GPIO/ Analog Input 19 General purpose Input GPIO/ External Interrupt Input 0 GPIO/ I2C 0A clock Output GPIO/ I2C 0A Data RF transmission output for external power amplifier control RF transmission output for external power amplifier control Remark I2C 20: Simplified I2C I2C 20: Simplified I2C Input only Active High Active Low Note: General Purpose Input Output (GPIO) R01AN2919EU0100_RL78G1D Rev. 1.00 Sept. 15, 2015 Page 5 of 4 RL78/G1D 4. RL78/G1D Solution Kit – PMOD Module Hardware Manual RL78/G1D-SK PMOD Module Design Bill of Material Table 4 shows the bill of material for RL78/G1D-SK PMOD module. Table 4 Bill of material for RL78/G1D-SK PMOD module Item Qty Reference Part Footprint C1,C2,C10 0.1uF 402 C3 0.47uF 402 C11 10uF 603 C9 2.2uF 402 C5,C6 8pF 402 C7,C8 9pF 402 C4 NLC 402 E1 W3008 J2 CON12B 10 L1 10uH 603 11 402 12 R1,R4,R5, R6,R7,R10 R2,R8,R9 10K 402 13 R3 1K 402 14 R11 6.8 M 402 15 SH1 SHIELD 16 U1 R5F11AGJ 17 Y1 32MHz QFN-48, 6x6 mm 1.2x1.6 18 Y2 32.768kHz 1.0x1.6 R01AN2919EU0100_RL78G1D Rev. 1.00 Sept. 15, 2015 Description Manufacturer CAP CER 0.1UF 16V 10% X5R 0402 CAP CER 0.47UF 6.3V 10% X5R 0402 CAP CER 10UF 6.3V 20% X5R 0603 CAP CER 2.2UF 6.3V 10% X6S 0402 CAP CER 8PF 50V NP0 0402 CAP CER 9PF 50V NP0 0402 No load capacitor Murata GRM155R61A104KA01D Taiyo Yuden JMK105BJ474KV-F Murata GRM188R60J106ME47J Murata GRM155C80J225KE95D Murata GRM1555C1H8R0DA01D Murata GRM1555C1H9R0DA01D ANTENNA BT/WLAN/WIFI CER CONN HEADER .100" DUAL R/A 12POS FIXED IND 10UH 50MA 900 MOHM SMD RES 0.0 OHM 1/16W 0402 SMD RES 10.0K OHM 1/16W 5% 0402 SMD RES 1.00K OHM 1/16W 5% 0402 SMD RES 6.8 M OHM 1/16W 5% 0402 SMD Shield, metal can Pulse W3008 Sullins PRPC006DBAN-M71RC Murata LQM18FN100M00D Stackpole RMCF0402ZT0R00 Yageo RC0402JR-0710KL Stackpole RMCF0402JT1K00 Yageo RC0402JR-076M8L CPU,BLE,256K,RL78 /G1D Crystal,32MHz (8pF,20ppm,1.2x1.6) Crystal,32.768kHz (9pf,20ppm,1.0x1.6) Mfg PN Custom N/A Renesas R5F11AGJANA Abracon ABM12-32.000MHZ-B2X-T3 Abracon ABS05-32.768KHZ-9-T Page 6 of 4 RL78/G1D RL78/G1D Solution Kit – PMOD Module Hardware Manual Appendix A - References [1] RL78/G1D User’s Manual: Hardware, R01UH0515EJ0100 Rev.1.00, April 24, 2015 [2] Bluetooth® Low Energy Protocol Stack User’s Manual, R01UW0095EJ0117 Rev.1.17, Apr 17, 2015 R01AN2919EU0100_RL78G1D Rev. 1.00 Sept. 15, 2015 Page 8 of 4 RL78/G1D RL78/G1D Solution Kit – PMOD Module Hardware Manual Appendix B - Conformity Assessment FCC/IC Regulatory Since this module is not sold to general end users directly, there is no user manual of module. For the details about this module, please refer to the specification sheet of module. This module should be installed in the host device according to the interface specification (installation procedure). The following information must be indicated on the host device of this module; Contains FCC ID: 2AFST-G1D 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. Contains IC: 20519-G1D The following statements must be described on the user manual of the host device of this module; [for FCC] FCC CAUTION Changes or modifications not expressly approved by the party responsible for compliance could void the user’s authority to operate the equipment. This transmitter must not be co-located or operated in conjunction with any other antenna or transmitter. This equipment complies with FCC radiation exposure limits set forth for an uncontrolled environment and meets the FCC radio frequency (RF) Exposure Guidelines. This equipment has very low levels of RF energy that it deemed to comply without maximum permissive exposure evaluation (MPE). But it is desirable that it should be installed and operated keeping the radiator at least 20cm or more away from person's body. [for IC] This device complies with Industry Canada's licence-exempt RSSs. Operation is subject to the following two conditions: (1) This device may not cause interference; and (2) 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 : 1) l’appareil ne doit pas produire de brouillage; 2) l’utilisateur de l’appareil doit accepter tout brouillage radioélectrique subi, même si le brouillage est susceptible d’en compromettre le fonctionnement. This equipment complies with IC radiation exposure limits set forth for an uncontrolled environment and meets RSS102 of the IC radio frequency (RF) Exposure rules. This equipment has very low levels of RF energy that it deemed to comply without maximum permissive exposure evaluation (MPE). But it is desirable that it should be installed and operated keeping the radiator at least 20cm or more away from person's body. Cet équipement est conforme aux limites d’exposition aux rayonnements énoncées pour un environnement non contrôlé et respecte les règles d’exposition aux fréquences radioélectriques (RF) CNR-102 de l’IC. Cet équipement émet une énergie RF très faible qui est considérée conforme sans évaluation de l’exposition maximale autorisée. Cependant, il est souhaitable qu'il devrait être installé et utilisé en gardant une distance de 20 cm ou plus entre le radiateur et le corps humain. R01AN2919EU0100_RL78G1D Rev. 1.00 Sept. 15, 2015 Page 9 of 4 RL78/G1D RL78/G1D Solution Kit – PMOD Module Hardware Manual R&TTE Directive We hereby declare that this product is in compliance with the essential requirements and other EC relevant provisions of Directive 1999/5/EC. Declaration of Conformity (DoC) can be available upon request. Contact to local Renesas Sale office. Korea Radio Regulations MSIP-CRM-R5E-G1D 해당 무선설비는 전파혼신 가능성이 있으므로 인명안전과 관련된 서비스는 할 수 없습니다. R01AN2919EU0100_RL78G1D Rev. 1.00 Sept. 15, 2015 Page 10 of 4 RL78/G1D RL78/G1D Solution Kit – PMOD Module Hardware Manual Website and Support Renesas Electronics Website http://www.renesas.com/ Inquiries http://www.renesas.com/contact/ All trademarks and registered trademarks are the property of their respective owners. R01AN2919EU0100_RL78G1D Rev. 1.00 Sept. 15, 2015 Page 11 of 4 Revision History Rev. 1.00 Date Sept. 15, 2015 Description Page Summary — First edition issued A-1 General Precautions in the Handling of Microprocessing Unit and Microcontroller Unit Products The following usage notes are applicable to all Microprocessing unit and Microcontroller unit products from Renesas. For detailed usage notes on the products covered by this document, refer to the relevant sections of the document as well as any technical updates that have been issued for the products. 1. Handling of Unused Pins Handle unused pins in accordance with the directions given under Handling of Unused Pins in the manual. The input pins of CMOS products are generally in the high-impedance state. In operation with an unused pin in the open-circuit state, extra electromagnetic noise is induced in the vicinity of LSI, an associated shoot-through current flows internally, and malfunctions occur due to the false recognition of the pin state as an input signal become possible. Unused pins should be handled as described under Handling of Unused Pins in the manual. 2. Processing at Power-on The state of the product is undefined at the moment when power is supplied. The states of internal circuits in the LSI are indeterminate and the states of register settings and pins are undefined at the moment when power is supplied. In a finished product where the reset signal is applied to the external reset pin, the states of pins are not guaranteed from the moment when power is supplied until the reset process is completed. In a similar way, the states of pins in a product that is reset by an on-chip power-on reset function are not guaranteed from the moment when power is supplied until the power reaches the level at which resetting has been specified. 3. Prohibition of Access to Reserved Addresses Access to reserved addresses is prohibited. The reserved addresses are provided for the possible future expansion of functions. Do not access these addresses; the correct operation of LSI is not guaranteed if they are accessed. 4. Clock Signals After applying a reset, only release the reset line after the operating clock signal has become stable. When switching the clock signal during program execution, wait until the target clock signal has stabilized. When the clock signal is generated with an external resonator (or from an external oscillator) during a reset, ensure that the reset line is only released after full stabilization of the clock signal. Moreover, when switching to a clock signal produced with an external resonator (or by an external oscillator) while program execution is in progress, wait until the target clock signal is stable. 5. Differences between Products Before changing from one product to another, i.e. to a product with a different part number, confirm that the change will not lead to problems. The characteristics of Microprocessing unit or Microcontroller unit products in the same group but having a different part number may differ in terms of the internal memory capacity, layout pattern, and other factors, which can affect the ranges of electrical characteristics, such as characteristic values, operating margins, immunity to noise, and amount of radiated noise. When changing to a product with a different part number, implement a system-evaluation test for the given product. Notice 1. Descriptions of circuits, software and other related information in this document are provided only to illustrate the operation of semiconductor products and application examples. You are fully responsible for the incorporation of these circuits, software, and information in the design of your equipment. Renesas Electronics assumes no responsibility for any losses incurred by you or third parties arising from the use of these circuits, software, or information. 2. Renesas Electronics has used reasonable care in preparing the information included in this document, but Renesas Electronics does not warrant that such information is error free. Renesas Electronics 3. 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