Renesas RH850/D1x Hardware User Manual
Renesas RH850/D1x Hardware User Manual

Renesas RH850/D1x Hardware User Manual

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RH850/D1x Evaluation Boards
the D1x Dashboard MCU Series
D1M2H Mango Adapter Board (SBEV-RH850-D1M2H),
Please use this manual together with the respective
main board manual.
Preliminary Hardware User's Manual
Adapter Board D1M2H
All information contained in these materials, including products and product
specifications, represents information on the product at the time of publication and is
subject to change by Renesas Electronics Corp. without notice. Please review the latest
information published by Renesas Electronics Corp. through various means, including
the Renesas Electronics Corp. website (http://www.renesas.com).
Renesas Electronics
www.renesas.com
©2017 Renesas Electronics Corporation. All rights reserved.
Evaluation Boards for
AIB3-H-14-0053 Rev. 1.01
Restricted use only
Release Date: 2017-Jun-06
1

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Summary of Contents for Renesas RH850/D1x

  • Page 1 All information contained in these materials, including products and product specifications, represents information on the product at the time of publication and is subject to change by Renesas Electronics Corp. without notice. Please review the latest information published by Renesas Electronics Corp. through various means, including the Renesas Electronics Corp.
  • Page 2 Renesas Electronics. Renesas Electronics shall not be in any way liable for any damages or losses incurred by you or third parties arising from the use of any Renesas Electronics product for an application categorized as “Specific” or for which the product is not intended where you have failed to obtain the prior written consent of Renesas Electronics.
  • Page 3 Because the evaluation of microcomputer software alone is very difficult, please evaluate the safety of the final products or system manufactured by you. 10. Please contact a Renesas Electronics sales office for details as to environmental matters such as the environmental compatibility of each Renesas Electronics product.
  • Page 4: Table Of Contents

    【CONFIDENTIAL】 D1M2H Mango Adapter Board Manual Contents Introduction ................................6 Board Overview ............................... 7 Mounting devices ............................7 Power supply ................................8 Power supply structure ..........................8 3.1.1 Current Measurement Jumpers ......................8 3.1.2 Voltage regulators and DC-DC converters ..................9 3.1.3 Power Supply Selection Matrix ......................
  • Page 5 【CONFIDENTIAL】 D1M2H Mango Adapter Board Manual Table list Table 3-1: Current measuements jumpers (excluding I/O ports supply).............. 8 Table 3-2: Current measurement jumpres for I/O port supply ................8 Table 3-3: Main Power supply Source IC output voltage (from Main board) ............9 Table 3-4: Main Power supply Source IC output voltage ..................
  • Page 6: Introduction

    D1M2H Mango Adapter Board Manual 1 Introduction The RH850/D1x Application Board is part of the RH850 Evaluation Platform and serves as a simple and easy to use platform for evaluating the features and performance of Renesas Electronics 32-bit RH850/D1x microcontrollers.
  • Page 7: Board Overview

    【CONFIDENTIAL】 D1M2H Mango Adapter Board Manual 2 Board Overview The figure below depicts the D1M2H Mango Adapter Board. Functional blocks are highlighted. SDRAM SOCKET CURRENT SERIALFLASH MUX-SWITCH TESTPOINTS MUX-SWITCH OSCILLATOR CURRENT RSDS TESTPOINTS Figure 2-1: Adapter board for RH850/D1M2H Mounting devices The board is designed for reference use with the following device: RH850/D1M2H-484pin...
  • Page 8: Power Supply

    【CONFIDENTIAL】 D1M2H Mango Adapter Board Manual 3 Power supply Power supply structure 3.1.1 Current Measurement Jumpers Each power supply of the MCU is routed through a single Jumper before connecting it to the MCU. This makes it possible to measure the current consumption of the MCU for each power supply domain in separate. Table 3-1: Current measuements jumpers (excluding I/O ports supply) Name Jumper...
  • Page 9: Voltage Regulators And Dc-Dc Converters

    【CONFIDENTIAL】 D1M2H Mango Adapter Board Manual 3.1.2 Voltage regulators and DC-DC converters The power domains on the adapter board are supplied by the main board. The following voltages are generated on the main board. Table 3-3: Main Power supply Source IC output voltage (from Main board) Input voltage Voltage Net name...
  • Page 10: Clock Source

    【CONFIDENTIAL】 D1M2H Mango Adapter Board Manual 4 Clock source Overview There are 3 options for main clock input to target MCU. ・ Crystal (8MHz) ・ Crystal oscillator (8MHz) ・ Clock input from pulse generator The default option is to use the soldered crystals for the high speed and the low speed oscillator. Oscillator circuit This figure shows schematic of oscillator block.
  • Page 11: Function Specification

    【CONFIDENTIAL】 D1M2H Mango Adapter Board Manual Function specification  Main oscillator Terminals: X1/X2 clock selection Crystal (8MHz) Ceralock (8MHz) Direct clock input from external pulse generator Table 4-1: Sub-Selection of external oscillator Function External oscillator sub-selection 1-2 select Use BNC connector (CN14). 2-3 select Use crystal oscillator Y1 Table 4-2: Selection of crystal or external oscillator...
  • Page 12: External Memory Function

    【CONFIDENTIAL】 D1M2H Mango Adapter Board Manual 5 External Memory function Serial NOR Flash 2x 512Mbit with total density of 1Gbit (128MB) 2x Flash devices MX25L51245G (Macronix) 8bit, DDR@80MHz Device in SO-16W package A compatilbe Product is S25FL512S (Spansion). DDR2-SDRAM 1 x 16bit or 1x 32bit DDR2-SDRAM of the density 2Gbit Type MT47H128M16 of Micron in BGA package 16/32bit, DDR@240MHz 512MB...
  • Page 13 【CONFIDENTIAL】 D1M2H Mango Adapter Board Manual ・DDR2-SDRAM memory Figure 5-1 DDR2-SDRAM memory block diagram ・Serial Flash Memory Figure 5-2 Serial Flash memory block diagram...
  • Page 14: Multiplex Control

    【CONFIDENTIAL】 D1M2H Mango Adapter Board Manual 6 Multiplex Control Overview Multiplexers (mainly for Video I/O and Ethernet) shall be manually controlled by the user themselves via DIP switches (DSW1 and DSW2). Thus the user has responsibility to avoid misconfiguration of the multiplexers that might destroy the device.
  • Page 15 【CONFIDENTIAL】 D1M2H Mango Adapter Board Manual The following tables show the signal assignment of the multiplexers with respect to the switch positions. Table and Table 6-4 are multiplexers that route the MCU signals either to the Main Board or to the Adapter Board according to the switch position.
  • Page 16 【CONFIDENTIAL】 D1M2H Mango Adapter Board Manual For the following interfaces, the function blocks and connectors are on the main board. All multiplexed signals are routed through dedicated lines on the main/adapter board connector. Table 6-5: Multiplex control table (U9) MD_ETHER_SEL (DSW1.4) MD_ETHER_SEL:OFF MD_ETHER_SEL:ON SEL_P47_6...
  • Page 17 【CONFIDENTIAL】 D1M2H Mango Adapter Board Manual Table 6-8: Multiplex control table (U5) P467_ETHER_SEL (DSW2.3) P467_ETHER_SEL:OFF P467_ETHER_SEL:ON SEL_P46_6 P467_ETNB0TXD3 P46_6 SEL_P46_7 P467_ETNB0TXD2 P46_7 SEL_P46_8 P467_ETNB0TXD1 P46_8 SEL_P46_9 P467_ETNB0TXD0 P46_9 SEL_P46_10 P467_ETNB0TXEN P46_10 SEL_P46_11 P467_ETNB0TXER P46_11 SEL_P46_12 P467_ETNB0COL P46_12 SEL_P46_13 P467_ETNB0CRSDV P46_13 SEL_P46_14 P467_ETNB0TXCLK P46_14...
  • Page 18: Socket

    【CONFIDENTIAL】 D1M2H Mango Adapter Board Manual 7 Socket This chapter lists all connectors of the D1M2H adapter board. There are mainly three groups of connectors. Overview Adapter boards of MCU block cosists of below components. ・ IC socket ・ Test pin area and external connectors ・...
  • Page 19: Mounting Socket

    【CONFIDENTIAL】 D1M2H Mango Adapter Board Manual Mounting socket This board will be fitted with one of the socket types as shown below. Table 7-1: IC socket Option 1 (For the BGA484 Adaptor Board) Manufacturer Product name Note TOKYO ELETECH CORP. BSSOCKET484Z2627RE21N BGA to Pin adapter.
  • Page 20: Connectors Of The D1M2H Adapter Board

    【CONFIDENTIAL】 D1M2H Mango Adapter Board Manual 8 Connectors of the D1M2H adapter board Connection to each pin of the device is possible via the connectors CN1 to CN12 and CN15. Main Board to Adapter Board connectors Signal names that are highlighted in dark grey, are not used by the D1M2H adapter board. Table 8-1: Pin assignment of connector (CN1) Function / Port Function / Port...
  • Page 21 【CONFIDENTIAL】 D1M2H Mango Adapter Board Manual Function / Port Function / Port P1_8 102 P2_3 P1_7 P2_2 P1_6 P2_1 P1_5 P2_0 P1_4 P1_3 P0_9 P1_2 P0_8 P1_1 P0_7 P1_0 P0_6 P0_5 P3_13 P0_4 P3_12 P0_3 P3_11 P0_2 P3_10 P0_1 P3_9 P0_0 P3_8 P3_7...
  • Page 22 【CONFIDENTIAL】 D1M2H Mango Adapter Board Manual Table 8-2: Pin assignment of connector (CN2) Function / Port Function / Port P47_X2 P47_X1 R0_RESERVE P47_10 R1_RESERVE P47_9 G0_RESERVE P47_8 G1_RESERVE P47_7 B0_RESERVE P47_6 B1_RESERVE P47_5 P47_4 P42_15 P47_3 P42_14 P47_2 P42_13 P47_1 P42_12 P47_0 P42_11...
  • Page 23: Test Pin Connectors

    【CONFIDENTIAL】 D1M2H Mango Adapter Board Manual Function / Port Function / Port 119 P10_0 120 P44_4 121 P10_1 122 P44_3 123 P10_2 124 P44_2 125 P10_3 126 P44_1 127 P10_4 128 P44_0 129 P10_5 131 P10_6 132 P11_0 133 P10_7 134 P11_1 135 P10_8 136 P11_2...
  • Page 24 【CONFIDENTIAL】 D1M2H Mango Adapter Board Manual Table 8-5: Pin assignment of connector (CN5) JP0 Power Domain Port Power Domain Port EVCC JP0_0 EVCC JP0_1 EVCC JP0_2 EVCC JP0_3 EVCC JP0_4 EVCC JP0_5 Table 8-6: Pin assignment of connector (CN6) System Function Pins Power Port Power...
  • Page 25: Connectors For External Components

    【CONFIDENTIAL】 D1M2H Mango Adapter Board Manual Table 8-12: Pin assignment of connector (CN12) P3 Power Domain Port Power Domain Port B1VCC P3_0 B1VCC P3_1 B1VCC P3_2 B1VCC P3_3 B1VCC P3_4 B1VCC P3_5 B1VCC P3_6 B1VCC P3_7 B1VCC P3_8 B1VCC P3_9 B1VCC P3_10 B1VCC...
  • Page 26: Adapter Board Encoding Address

    【CONFIDENTIAL】 D1M2H Mango Adapter Board Manual 9 Adapter board Encoding Address As also mentioned in chapter 6, three pins of the MCU ports are populated with weak PU/PD resistors that encode the adapter board type. These PU/PD resistors can be unconnected with the DIP switch DSW1 The Adapter Board Encoding Address can be used by the MCU software in order to allow Adapter-Board specific setup (e.g.
  • Page 27: Appendix

    C195, C194 GRM1552C1H200JZ01D 20p/50V/1005/CH MURATA C201, C202 GRM1552C1H100JZ01D 10p/50V/1005/CH MURATA DSW1, DSW2 218-4LPST D1, D2, D3, D6, HSU-83 RENESAS D4, D5, D8, D9 * HSU-83 RENESAS JP1, JP2, JP3, JP4, JP5, JP7, XJ8C-0211 OMRON JP11, JP12, JP13, JP14, JP15, JP16, JP18, JP19, JP20, JP21,...
  • Page 28 R27, R28, R29, R30, R31, R32, RK73H1ETTD1000F 100ohm/1005/1% R33, R34, R35, R36, R39, R41, *10K/1005/1% TP1, TP2, TP3, TP4 HK-5-G-Black MAC8 UM1, UM2 MT47H128M16RT-25E IT MICRON RH850/D1M2H RENESAS U2, U5, U8 IDTQS3VH16233PAG8 U6, U7 FST16233MTDX FAIRCHILD U3, U4 MX25L51245GMI-10G MACRONIX U9, U10 FSA4159P6X FAIRCHILD NC-206 32.768KHz...
  • Page 29: Schematics Of The D1X Mango D1M2H Adapter Board

    【CONFIDENTIAL】 D1M2H Mango Adapter Board Manual 10.2 Schematics of the D1x Mango D1M2H Adapter Board The following pages contain the full schematics of the Mango D1M2H Adapter Board. For the schematics of the Main Board, please see the dedicated Main Board manual.
  • Page 30 RH850(mango) D1M2H Adapter Board Rev1.5 Revision History PAGE SCHEMATIC PAGE TITLE Page DATE DESCRIPTION TABLE of CONTENTS(This Page) 2014.3.20 release version BLOCK DIAGRAM 2014.4.28 wire add CN1.60pin <--> U3,U4.3pin pattern cut CN1.138pin(RESETZ) <--> U3,U4.3pin CPU CONNECTOR 2014.5.7 CN14,JP6,JP8,JP9 -> NoMount TEST POINT 2014.12.18 U2,U5,U8,U9,U10 Model number change DDR2...
  • Page 31 RH850(mango) D1M2H Adapter Board Block Diagram 180mm LIN,CSI,TIMER,RTC CSI,TIMER,ADC ETHER ETHER CSI,TIMER,PWM,IIC SERIAL FLASH TIMER,PWM,PCM,ETHER,SG,SSIF,IIC,ADC DDR2 TIMER,ADC (16bit) 512M x2 TIMER,ADC VI1 ITU TIMER,PCM,MOTOR,ZPD 1G x2 TIMER,PCM,MOTOR,ZPD,ADC TIMER,SFLASH,MLB VDCE0(MIPI) CSI,TIMER,ADC,PWM,IIC,ETHER,SG,VDCE0 +3.3V VDCE0,VDCE1,TIMER,LCD DDR2SDR LIN,CSI,TIMER,VDCE0,PWM,LCD +12V CSI,TIMER,ADC,VDCE0,PWM,LCD ISOVDD VDCE0,VDCE1,ETHER REG0VCC VDCE1,ETHER REG1VCC LIN,TIMER,RTC,JTAG OSCVCC...
  • Page 32 P47_X2 P0_0 P21_10 JP0_0 P0_0 P21_10 JP0_0 +3.3V VR+12V P0_1 P21_11 JP0_1 P47_X1 R0_RESERVE P0_1 P21_11 JP0_1 P0_2 P21_12 JP0_2 P47_10 R1_RESERVE +12V P0_2 P21_12 JP0_2 G0_RESERVE P0_3 JP0_3 P47_9 P0_3 JP0_3 P0_4 P40_0 JP0_4 P47_8 G1_RESERVE P0_4 P40_0 JP0_4 P0_5 P40_1 JP0_5...
  • Page 33 P0_0 P0_1 P10_0 P10_1 JP0_0 JP0_1 P0_0 P0_1 P10_0 P10_1 JP0_0 JP0_1 P0_2 P0_3 P10_2 P10_3 JP0_2 JP0_3 P0_2 P0_3 P10_2 P10_3 JP0_2 JP0_3 P0_4 P0_5 P10_4 P10_5 JP0_4 JP0_5 P0_4 P0_5 P10_4 P10_5 JP0_4 JP0_5 P0_6 P0_7 P10_6 P10_7 P0_6 P0_7 P10_6...
  • Page 34 SDRBVCC 1K/1005/1% 1K/1005/1% 0.1u/16V/1005/B DDR2_DQ31 DDR2_A0 DDR2_DQ12 DDR2_A0 DDR2_DQ20 SDRBVREF SDRBDQ31 SDRBVCC DDR2_DQ30 DDR2_A1 DDR2_DQ11 DDR2_A1 DDR2_DQ23 SDRBVCKVSS SDRBDQ30 DDR2_DQ29 DDR2_A2 DDR2_DQ13 DDR2_A2 DDR2_DQ16 SDRBDQ29 DDR2_DQ28 DDR2_A3 DDR2_DQ14 DDR2_A3 DDR2_DQ17 SDRBVCC SDRBDQ28 DDR2_DQ27 DDR2_A4 DDR2_DQ10 DDR2_A4 DDR2_DQ18 SDRBVSS SDRBDQ27 DDR2_DQ26 DDR2_A5 DDR2_DQ15 DDR2_A5...
  • Page 35 default=close PLLVCC XJ8C-0211 PLLVCC PLLVSS PLLVCC ISOVSS PLLVSS default=close ISOVSS ISOVSS REG1VCC REG1VCC ISOVSS REG1VSS XJ8C-0211 ISOVSS ISOVSS REG1VCC ISOVSS REG1VSS ISOVSS ISOVSS ISOVDD ISOVSS ISOVSS ISOVSS ISOVSS ISOVDD ISOVSS ISOVSS ISOVSS default=close ISOVSS ISOVDD ISOVSS ISOVSS ISOVDD ISOVSS XJ8C-0211 ISOVSS ISOVDD ISOVSS...
  • Page 36 P0_0/NMI/RLIN31TX/CSIH0SSI/CSIH0CSS0/TAUJ0I0/TAUJ0O0/INTP5/OSTM0TTOUT/MODE0 P0_0 P0_1/RLIN31RX/INTP0/CSIH0DCS/CSIH0SO/TAUJ0I1/TAUJ0O1/nERROROUT/FLMD1 P0_1 P0_2/INTP1/RLIN32TX/CSIH0SI/TAUJ0I3/TAUJ0O3/FSGD0OUT/MODE1 P0_2 P0_3/RLIN32RX/INTP2/CSIH0SC/TAUJ0I2/TAUJ0O2 P0_3 P0_4/INTP5/OSTM1TTOUT/TAUB1O3/TAUB1I3/CSCXFOUT/CAN0TX P0_4 P0_5/TAUJ0I1/TAUJ0O1/TAUB1O5/TAUB1I5/RTCA0OUT/CAN0RX/INTP6 P0_5 P0_6/INTP7/RLIN30TX/TAUB1O7/TAUB1I7/CAN1TX P0_6 C191 P0_7/RLIN30RX/INTP8/TAUB1O9/TAUJ0I0/TAUJ0O0/CAN1RX/INTP8 P0_7 10u/16V/2012/B P0_8/INTP9/RLIN30TX/TAUJ0I1/TAUJ0O1/CAN2TX P0_8 P0_9/RLIN30RX/INTP10/TAUJ0I0/TAUJ0O0/CAN2RX/INTP10 P0_9 default=close AD13 JP0_0/INTP0/TAUB2I8/TAUB2O8/FLSCI3RXD/FLSCI3TXD/DCUDI/LPDIO/LPDI JP0_0 EVCC AE12 JP0_1/INTP9/TAUB1I6/TAUB1O6/FLSCI3TXD/DCUTDO/LPDO JP0_1 XJ8C-0211 AC13 JP0_2/INTP7/TAUB1I12/TAUB1O12/nERROROUT/FLSCI3SCKI/DCUTCK/LPDCLK JP0_2 AB13 AD12 REG0C JP0_3/INTP3/RLIN33TX/TAUJ0I2/TAUJ0O2/CSCXFOUT/DCUTMS JP0_3 AC10 JP0_4/nDCUTRST JP0_4 JP0_5/RLIN33RX/INTP4/TAUJ0I3/TAUJ0O3/RTCA0OUT/nDCURDY/LPDCLKOUT...
  • Page 37 B0VCC *470K/1005/1% 470K/1005/1% 470K/1005/1% *470K/1005/1% *470K/1005/1% 470K/1005/1% +3.3V default=all on This is the Adapter Board DSW1 218-4LPST Encoding Address 10K/1005/1% default=close MD_ETHER_SEL 12 B0VCC JP11 XJ8C-0211 B0VCC P1_0/TAUB1I2/TAUB1O2/CSIG1DCS/CSIH1SO/CSIG2RYI/CSIG2RYO P1_0 P1_1/TAUB1I4/TAUB1O4/CSIH1SI/nCSIG2SSI/nCSIH0SSI/CSIH0CSS0 P1_1 B0VSS P1_2/TAUB1I8/TAUB1O8/CSIH1SC/CSIH0RYI/CSIH0RYO P1_2 P1_3/CSIG1DCS/CSIG1SO/CSIH0SO/ADCE0TRIGI4 P1_3 P1_4/CSIG1SI/CSIH0SI/nCSIG0SSI/nCSIH1SSI/CSIH1CSS0 P1_4 P1_5/CSIG1SC/CSIH0SC/CSIG0RYI/CSIG0RYO/CSIH1RYI/CSIH1RYO P1_5 B0VCC P1_6/CSIG2DCS/CSIG2SO/TAUB0I1/TAUB0O1 P1_6...
  • Page 38 default=close Equal Length Wiring MVCC Differential 100ohm JP13 XJ8C-0211 AB17 AD14 MVCC P40_0/MIPI0_VI_DATA0P P40_0 AC17 AD15 MVCC P40_1/MIPI0_VI_DATA0N P40_1 AE14 P40_2/MIPI0_VI_DATA1P P40_2 AB16 AF14 MVSS P40_3/MIPI0_VI_DATA1N P40_3 AC16 AE15 MVSS P40_4/MIPI0_VI_CLKP P40_4 AF15 P40_5/MIPI0_VI_CLKN P40_5 AD21 P10_0/TAUB0I1/TAUB0O1/TAUB2I1/TAUB2O1/ADCE0I0 P10_0 default=close AC21 P10_1/TAUB0I2/TAUB0O2/TAUB2I2/TAUB2O2/ADCE0I1 P10_1 AE21...
  • Page 39 default=close ISMVCC JP16 XJ8C-0211 ISMVCC P16_0/TAUB0I1/ISM11/PWGA16O/TAUB0O1/TAUB0I0/TAUB0O0/ZPD11 P16_0 ISMVCC P16_1/TAUB0I3/ISM12/PWGA17O/TAUB0O3/TAUB1I0/TAUB1O0/ZPD12 P16_1 P16_2/TAUB0I5/ISM13/PWGA18O/TAUB0O5/ TAUB2I0/TAUB2O0/ZPD13 P16_2 ISMVSS P16_3/TAUB0I7/ISM14/PWGA19O/TAUB0O7/ZPD14 P16_3 P16_4/TAUB0I9/ISM21/PWGA20O/TAUB0O9/ZPD21 P16_4 P16_5/TAUB0I11/ISM22/PWGA21O/TAUB0O11/ZPD22 P16_5 ISMVCC P16_6/TAUB0I13/ISM23/PWGA22O/TAUB0O13/ZPD23 P16_6 P16_7/TAUB0I15/ISM24/PWGA23O/TAUB1O1/TAUB1I1/TAUB0O15/ZPD24 P16_7 ISMVSS P16_8/TAUB2I0/ISM31/TAUB1O11/PCMP0AP0/ZPD31 P16_8 P16_9 ISMVSS P16_9/TAUB2I1/ISM32/TAUB1O13/PCMP0AN0/ZPD32 P16_10/TAUB2I2/ISM33/TAUB1O14/PCMP0AP1/ZPD33 P16_10 ZPDVCC JP17 default=2-3 P16_11/TAUB2I3/ISM34/TAUB1O15/PCMP0AN1/ZPD34 P16_11 XJ8D-0311 P17_0/TAUB2I4/ISM41/TAUB2O1/PCMP0BP0/ZPD41 P17_0 P17_1/TAUB2I5/ISM42/ADCE0TRIGI1/TAUB2O2/PCMP0BN0/ZPD42 P17_1...
  • Page 40 default=close SFVCC JP19 XJ8C-0211 SFMA0CLK SFVCC P21_0/SFMA0CLK/TAUB0I13/TAUB0O13 SFMA0SSL P21_1/SFMA0SSL/TAUB0I11/TAUB0O11 SFMA0IO00 SFVSS P21_2/SFMA0I00/SFMA0O00/TAUB0I10/TAUB0O10 SFMA0IO10 P21_3/SFMA0I10/SFMA0O10/TAUB0I9/TAUB0O9 SFMA0IO20 SFVCC P21_4/SFMA0I20/SFMA0O20/TAUB0I7/TAUB0O7 SFMA0IO30 P21_5/SFMA0I30/SFMA0O30/TAUB0I6/TAUB0O6 SFMA0IO01 SFVSS P21_6/SFMA0I01/SFMA0O01/TAUB0I5/TAUB0O5 SFMA0IO11 P21_7/SFMA0I11/SFMA0O11/TAUB0I3/TAUB0O3 default=close SFMA0IO21 B4VCC P21_8/SFMA0I21/SFMA0O21/TAUB0I2/TAUB0O2 SFMA0IO31 P21_9/SFMA0I31/SFMA0O31/TAUB0I1/TAUB0O1 B4VCC JP20 B4VSS P21_10/MLBB0CLK/TAUB0I4/TAUB0O4/TAUB0I0/TAUB0O0 P21_10 XJ8C-0211 P21_11/MLBB0DAT/TAUB0I14/TAUB0O14 P21_11 B4VCC P21_12/MLBB0SIG/TAUB0I15/TAUB0O15 P21_12 SEL_P42_0 B4VSS...
  • Page 41 B3VCC JP21 XJ8C-0211 B3VCC P43_0/VDCE0_VO_TCON2/VDCE0_VO_TCON3/nLCBI0HSYNC/nLCBI0CS P43_0 P43_1/VDCE0_VO_TCON0/nLCBI0VSYNC/nLCBI0WRRW P43_1 default=close B3VSS P43_2/VDCE0_VO_TCON3/VDCE1_VI_DATA7 P43_2 P43_3/VDCE0_VO_TCON1/VDCE1_VI_DATA6 P43_3 P43_4/VDCE0_VO_TCON4/VDCE1_VI_DATA5 P43_4 P43_5/VDCE0_VO_TCON5/VDCE1_VI_DATA4 P43_5 Rev 1.3 B3VCC P43_6/VDCE0_VO_TCON6/VDCE1_VI_DATA3 P43_6 SEL_P43_7 D9 -> 0ohm P43_7/VDCE1_VI_DATA23/VDCE1_VI_DATA2/VDCE0_VI_DATA2/TAUB0I9/TAUB0O9 SEL_P43_8 B3VSS P43_8/VDCE1_VI_DATA22/VDCE1_VI_DATA1/VDCE0_VI_DATA1/TAUB0I10/TAUB0O10 SEL_P43_9 P43_9/VDCE1_VI_DATA21/VDCE1_VI_DATA0/VDCE0_VI_DATA0/TAUB0I11/TAUB0O11 ETHER_P SEL_P43_10 P43_10/VDCE1_VI_DATA20/VDCE1_VI_CLK/VDCE0_VI_CLK/TAUB0I13/TAUB0O13 *HSU-83 SEL_P43_11 P43_11/VDCE1_VI_DATA19/VDCE1_VI_HSYNC/VDCE0_VI_HSYNC/TAUB0I14/TAUB0O14 SEL_P43_12 P43_12/VDCE1_VI_DATA18/VDCE1_VI_VSYNC/VDCE0_VI_VSYNC/TAUB0I15/TAUB0O15 SEL_P46_0 P46_0/VDCE1_VI_DATA23/VDCE1_VO_DATA23/VDCE1_VI_DATA7/VDCE1_VO_TCON3/VDCE0_VI_DATA7...
  • Page 42 default=close RVCC/B5VCC JP22 XJ8C-0211 SEL_P44_0 AA22 AF22 RVCC P44_0/VDCE0_VO_DATA23/CSIG2RYI/CSIG2RYO SEL_P44_1 AE22 P44_1/TAUB1I10/VDCE0_VO_DATA22/VDCE0_VI_DATA1/LCBI0RDE/nCSIG2SSI/TAUB1O10 SEL_P44_2 AF23 RVSS P44_2/VDCE0_VO_DATA21/RIIC0SDA/VDCE0_VI_DATA0/LCBI0A0DE/CSIG2DCS/CSIG2SO SEL_P44_3 AE23 P44_3/TAUB1I11/VDCE0_VO_DATA20/RIIC0SCL/VDCE0_VI_CLK/nLCBI0CS/CSIG2SI/TAUB1O11 SEL_P44_4 AA23 AD22 RVCC P44_4/VDCE0_VO_DATA19/PWGA14O/VDCE0_VI_HSYNC/nLCBI0WRRW/CSIG2SC SEL_P44_5 AD23 P44_5/VDCE0_VO_DATA18/PWGA15O/VDCE0_VI_VSYNC SEL_P44_6 AF24 RVSS P44_6/VDCE0_VO_DATA17/INTP3/PWGA0O/LCBI0D0/nCSIG3SSI/RLIN33TX SEL_P44_7 AC23 AE24 RVSS P44_7/VDCE0_VO_DATA16/RLIN33RX/INTP4/PWGA1O/LCBI0D1/CSIG3DCS/CSIG3SO SEL_P44_8 AE26 AE25 RVSS P44_8/VDCE0_VO_DATA15/NMI/PWGA2O/LCBI0D2/CSIG3SI/TAUB2O4 SEL_P44_9 AF25...
  • Page 43: Revision History

    【RENESAS Group CONFIDENTIAL】 D1M2H Mango Adapter Board Manual 11 Revision history Revised contents Rev. Release date Page Subject Rev.0.01 2014-April Draft version created Rev.0.02 2014-April-30 Full review of document. Some open points to be corrected Rev.0.03 2014-May-06 Fixed typos and changed chapters/pages: Multiplexers, Schematics Rev.0.04...
  • Page 44 General Precautions in the Handling of MPU/MCU Products The following usage notes are applicable to all MPU/MCU products from Renesas. For detailed usage notes on the products covered by this manual, refer to the relevant sections of the manual. If the descriptions under General Precautions in the Handling of MPU/MCU Products and in the body of the manual differ from each other, the description in the body of the manual takes precedence.
  • Page 45 【RENESAS Group CONFIDENTIAL】 D1M2H Mango Adapter Board Manual...

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