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RH850/F1x Starter Kit V2 User`s Manual

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1. R20UT3451EDO110 August 2015 RENESAS Page 26 RH850 F1x StarterKit User Manual 6 2 2 Y ASK RH850F1H V2 Schematics pem Her AD INPUT RE Ethernet DIGITAL WAKE UP ACCESSORIES 9 sumperbag 24pe 9 Rubber Pads ape Compar RENESAS Starter Kit For RH850 F1X Variant FIH Renesas Berner She Number o A 20 Fiton m 40472 misaldorf Toft Gerard 2 Page 27 RENESAS R20UT3451ED0110 August 2015 RH850 F1x StarterKit User Manual 7 Revision History RH850 F1x StarterKit V2 User Manual Hardware Rev Description June 2015 OJ First edition issued 22nd June 2015 16 23 24 Replaced switch name S5 with correct name S1 August 2015 EN General update for F1H Starterkit R20UT3451ED0110 Page 28 August 2015 RENESAS RH850 F1x StarterKit V2 User Manual Hardware Publication Date Rev 1 00 August 2015 Published by Henesas Electronics Europe LENESAS SALES OFFICES Renesas Electronics Corporation Refer to http www renesas com for the latest and detailed information http www renesas com Renesas Electronics America Inc 2880 Scott Boulevard Santa Clara CA 95050 2554 U S A
2. Mode 1 LED1 and LED2 and HPLED1 and HPLED2 if J12 and J13 are closed will blink alternately in a specified frequency and intensity The frequency is determined by the analogue value of POT1 It is converted to a corresponding TAUJ interval time while the analogue value of POT2 is converted to a corresponding PWM duty cycle The PWM functionality is used to drive the HPLEDs with corresponding duty cycles the TAUJ and TAUB functionalities are used to drive the LEDs with corresponding duty cycles A short push on button S1 will switch to Mode 2 holding it pressed for 3s or more will switch to DEEPSTOP mode After 30s without user action the microcontroller will enter DEEPSTOP mode on its own R20UT3451ED0110 Page 23 August 2015 RENESAS RH850 F1x StarterKit User Manual Mode 1 is called in a 1ms cycle using the Operating System Timer Mode 2 LED1 and LED2 and HPLED1 and HPLED2 if J12 and J13 are closed will light in a specific intensity which can be separately set by both potentiometers POT1 and POT2 The PWM functionality is used to drive the HPLEDs with corresponding duty cycles the TAUJ and TAUB functionalities are used to drive the LEDs with corresponding duty cycles A short push on button S1 will switch to mode 1 holding it pressed for 3s or more will switch to DEEPSTOP mode After 30s without user action the microcontroller will enter DEEPSTOP mode on its own Mode 2 is called in a 1ms cycle using the Operatin
3. Function J3 J4 Signal Assignment Table 2 Page 7 RENESAS R20UT3451ED0110 August 2015 RH850 F1x StarterKit User Manual MCU power distribution CANO transceiver enable to MCU connector REGVDD supply Common VDD supply CANOEN amp P1 1 CAN1EN O P2 6 CANOTX O P1 3 CANORX O P1 2 CAN1TX O P1 13 CAN1RX O P1 12 FR RXD o P10 14 FR TXEZ o P10 11 FR TXD O P11 1 DIN e P8 1 SELDPO GPO 4 SELDP1 lt gt PO 5 SELDP2 PO 6 DPO o PO 0 Open jumper when VDD is supplied by E1 VBAT external 12V VBAT o 5V High Power LED IPD to MCU 12 PWM of HPLED1 lt gt PO 12 Sul 34 PWM of HPLED2 6 PO 13 56 A D Feedback of HPLED1 lt gt APO 1 J13 High Power LED Connector A D Feedback of HPLED26 APO 2 J14 Potentiometer to MCU Connector IPD PWM output 1 5 HPLED1 J15 Indication LED to MCU Connector IPD PWM output 2 gt HPLED2 J16 Interrupt Button to MCU connector POT1 APO 0 J17 LIN Transceiver to MCU connector J5 J6 J7 CANO 1 transceiver TX RX to MCU connector FLEXRAY transceiver TX RX to MCU connector RH850 F1M and F1H only c 00 Digital LPS input to MCU connector J J co co J10 Voltage regulator output to VDD 1 2 VBAT selector N J12 E T E oO POT2 o AP1 0 POT1 supply gt DPO LED1 e PO 11 LED2 e P8 5 Button gt PO 9 LIN RX PO 7 LIN TX o PO 8 R232 TX o P0 2 R232 RX o PO 3 J18 RS232 Transceiver to MCU connector Table 3 Jump
4. e Green Hills MULTI IDE e IAR Embedded Workbench for Renesas RH850 e iSYSTEM winIDEA with E1 support More information about the usage of these software tools is shown in the Quick Start Guide which is also part of the StarterKit package Page 21 RH850 F1x StarterKit User Manual 5 RH850 F1x StarterKit Example Software The included demo software provides the following functions R20UT3451ED0110 August 2015 Basic MCU Initialization PWM Generation for High Power LEDs PWM Diagnostic Function for High Power LEDs A D Converter for PVVM Diagnostics and Potentiometers Standby modes including Low Power Sampler LPS Push Button Function CAN Frame Transmission LIN Frame Transmission UART Transmission with DMA support Operating System Timer Timer Array Unit J Timer Array Unit B RENESAS Page 22 RH850 F 1x StarterKit User Manual Device Reset Startup Test DeepStop Figure 4 Software flow The software contains a test function executed at the start and two run modes For live documentation of the RH850 actions connect your computer via the COM Port to the UART connector CN4 of the board Note Use a 1 1 RS232 computer cable and a baud rate of 9600 StartUp Test Once started the clock will be initialized and a start up test is performed LED1 and LED2 and HPLED1 and HPLED2 if J12 and J13 are closed will light for 500ms and the CAN LIN macros are checked After this the SW continues with Mode 1
5. Transceiver IC5 RS232 IC4 LIN 3 2 7 2 CAN Interfaces RS232 TX RS232 RX Ground VBAT 12V DC Table 17 S10 Serial Communications Interfaces Signals Controller Area Network CAN transceivers IC1 and IC3 are supplied to provide two CAN bus interfaces Each transceiver can be connected to one of the microcontroller s CAN interfaces CAN3 CANA The CAN bus interfaces are connected to the DB9 connectors CN1 and CN2 The CANO transceiver is enabled by default and can optionally be disabled by a dedicated Microcontroller GPIO pin P1 1 P2 6 DIP switch S4 provides additional CAN bus interface configuration options including the ability to selectively interconnect CAN bus interfaces on board Please use the following jumper configuration to connect the CANO transceiver IC1 to the microcontroller J7 CANO transceiver TX RX to MCU optional R20UT3451ED0110 August 2015 connector NES CANORX e P1 2 J6 CANO transceiver enable to MCU KEE 2 close CANOEN gt P1 1 optional connector Table 18 CANO Transceiver Jumper Configuration RENESAS Page 18 RH850 F1x StarterKit User Manual Please use the following jumper configuration to connect the CAN1 transceiver IC3 to the microcontroller CANI transceiver TX RX to MCU CAN1TX e P1 13 CAN1 transceiver enable to MCU close CANOEN o P1 6 connector optional Table 19 CAN Transceiver Jumper Configuration The on board CAN bus and th
6. Manual 2 3 Board Overview RH850 F1H Version Y ASK RH850F1H V2 Figure 2 provides a top level view of the RH850 F1H Version of the RH850 F1x StarterKit The jumpers and DIP switches are set to default configuration In this configuration the StarterKit is powered by the E1 Debugger no external power supply needed RH850 Fix StarterKit V2 ASK RH8SOF1L Hass RH850F1M ASK RH850F1H as TIU ID Dr Er amp LUJ YS vla a la I Le L 7 dz j ES 12 UDD J Gea 3 3U E o LE sau SIS ES DM b bibibi Ne 393 6666 556565 44 s Ne G N 393 a Ne N Release Version CSM FEAS 0401 001 02 itt HH t i i RoHS Compliant L ses T7 ee poe papa sees erea o poe A mo ja E E M Len Tape B eat banan malt W tusizzo zi L ART z JS e ME AN pein pen 0 598 550 She N i ML pra 5 ane E Che i54 ER AA 308 o Su LI ZI i cn2 CANO 6 R2 UDE S OTI sumi C12 Er TR Ta UNA Digitial Input a ci sia r INT TT enesas com ASK XM Figure 2 StarterKit top view in default configuration RH850 F1H version R20UT3451ED0110 Page 10 August 2015 RENESAS RH850 F1x StarterKit User Manual 3 StarterKit Hardyvare 3 1 Power Supply The StarterKit provides two options for powering the board s integrated c
7. Tel 1 408 588 6000 Fax 1 408 588 6130 Renesas Electronics Canada Limited 1101 Nicholson Road Newmarket Ontario L3Y 9C3 Canada Tel 1 905 898 5441 Fax 1 905 898 3220 Renesas Electronics Europe Limited Dukes Meadow Millboard Road Bourne End Buckinghamshire SL8 5FH U K Tel 44 1628 585 100 Fax 44 1628 585 900 Renesas Electronics Europe GmbH Arcadiastrasse 10 40472 D sseldorf Germany Tel 49 211 65030 Fax 49 211 6503 1327 Renesas Electronics China Co Ltd 7th Floor Quantum Plaza No 27 ZhiChunLu Haidian District Beijing 100083 P R China Tel 86 10 8235 1155 Fax 86 10 8235 7679 Renesas Electronics Shanghai Co Ltd Unit 204 205 AZIA Center No 1233 Lujiazui Ring Rd Pudong District Shanghai 200120 China Tel 86 21 5877 1818 Fax 86 21 6887 7858 7898 Renesas Electronics Hong Kong Limited Unit 1601 1613 16 F Tower 2 Grand Century Place 193 Prince Edward Road West Mongkok Kowloon Hong Kong Tel 852 2886 9318 Fax 852 2886 9022 9044 Renesas Electronics Taiwan Co Ltd 7F No 363 Fu Shing North Road Taipei Taiwan Tel 886 2 8175 9600 Fax 886 2 8175 9670 Renesas Electronics Singapore Pte Ltd 1 harbourFront Avenue 406 10 keppel Bay Tower Singapore 098632 Tel 65 6213 0200 Fax 65 6278 8001 Renesas Electronics Malaysia Sdn Bhd Unit 906 Block B Menara Amcorp Amcorp Trade Centre No 18 Jin Persiaran Barat 46050 Petaling Jaya Selangor Darul Ehsan Malaysia
8. Tel 60 3 7955 9390 Fax 60 3 7955 9510 Renesas Electronics Korea Co Ltd 11F Samik Lavied or Bldg 720 2 Yeoksam Dong Kangnam Ku Seoul 135 080 Korea Tel 82 2 558 3737 Fax 82 2 558 5141 O 2015 Renesas Electronics Corporation All rights reserved Colophon 1 0 RH850 F1x StarterKit V2 LENESAS Renesas Electronics Corporation RH850
9. 0 F1x StarterKit U2 ASK RH850F1L E1 ASK RH850F1M Debug ASK RH850F1H SI ae Sei di Eres SU agge 8 se gg THE TM FE E R28 Release Version FEJE Yi 4 CI SEMI FrAs 0401 001 02 GND3 APL i 5 20 2 iaj Vi E R18 op ko q pa o BBD Ci E p u2 mmps 000000 q I o o 203 a qne am R4 RI3 CI RE Ig APO 1 gt 2m LI PEL m mess HIR37 2 C30 C20 URRTRX N a R44 J e TP11 ces m m 3m m e cm b 3 ccr CAN rd ER CM INTERCOM ES Cm cm R31 R22 R23 x X XT m m nu FRO PU TP1 O R25 Z Z 2 ue RI ele MEN cis TETT nm cn2 CANO OO O O nz x nuk LPS mmjn24 A Digitial In ci EI m mjr2 p WWW renesas com SK RH850F1X O siuo G Page 25 RENESAS R20UT3451ED0110 August 2015 RH850 F1x StarterKit User Manual 6 2 Schematics 6 2 1 Y ASK RH850F1L V2 Schematics Eu TED PIN1 PIN44 tee TEKO i ien ME ME PIN45 PIN88 gg 24 PIN89 PIN132 a y Ethernet DIGITAL WAKE UP ACCESSORIES Q Jumperiag 34pc G mubber Pads 4pe RENESAS Starter Kit For RH850 F1X FIL i i Th Bogen Ty
10. E U D S S Q D RH850 F1x StarterKit V2 User Manual Hardware RENESAS MCU RH850 F Series Y ASK RH850F 1L V2 Y ASK RH850F 1M V2 Y ASK RH850F1H V2 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 For updates of the StarterKit software and documentation please check http www renesas com ASK RH850F 1X Renesas Electronics www renesas com August 2015 RH850 F1x StarterKit User Manual Notice 1 All information included in this document is current as of the date this document is issued Such information however is subject to change without any prior notice Before purchasing or using any Renesas Electronics products listed herein please confirm the latest product information with a Renesas Electronics sales office Also please pay regular and careful attention to additional and different information to be disclosed by Renesas Electronics such as that disclosed through our website 2 Renesas Electronics does not assume any liability for infringement of patents copyrights or other intellectual property rights of third parties by or arising from the use of Rene
11. amming Connector sauna aaa aaa aa ann n aaa nene ee enen eee vene eee ven n 21 4 Development NN en P entente ae tee one tr de 21 4 1 E1 On Chip Debug Emulator ROE000010KCEX00 nenen enen 21 4 2 Compiler and Debugger Software sssss ss sssssssssssssssssssssssnnsununsssssssnnnnnnns 21 5 RH850 F1x StarterKit Example Software s s sssssssssssssssssssnuussnununns 22 6 Component Placement and Schematics s s s s ssssssssss ssssssssusssssnunusnnss 25 6 1 Component pla COMO veven 25 6 2 o SS A 26 6 2 1 Y ASK RH850F1L V2 Schematics ss 26 6 2 2 Y ASK RH850F1H V2 Schematics uu cccssccsssssecessseeesseeeecsssesecessasecesseseesssasessssaeees 27 7 REVISION MISTON as sss dh nd d 28 R20UT3451ED0110 Page 3 August 2015 RENESAS RH850 F1x StarterKit User Manual 1 Introduction The RH850 F1x StarterKit serves as a simple and easy to use platform for evaluating the features and performance of Renesas Electronics 32 bit RH850 F1x microcontrollers Features Connections for on chip debugging and flash memory programming Access to all microcontroller I O pins User interaction through potentiometer buttons and LEDs Serial interface connections for RS232 LIN CAN FLEXRAY F1M F1H only and Ethernet F1H only Power supply by RENESAS E1 On Chip deb
12. e power supply area includes a DC jack type connector for providing external power supply to the StarterKit and its components The external supply is reversibly protected against overload and overvoltage Nevertheless please always observe the right polarity and voltage R20UT3451ED0110 p Page 13 August 2015 RENESAS RH850 F1x StarterKit User Manual Caution Damage may occur if a voltage greater than described in Table 6 is supplied Connector Description Input Voltage Range DC Power Jack ID 2 0mm center positive 10V to 15V Table 6 Power Supply Connector Specification The two indicator LEDs D3 and D4 are showing which power supply voltages are available In the F1H version of the board a 3 3V regulator is supplied to provide the required voltage for the Ethernet transceiver This voltage is supplied to the BVDD Pin Group Power Supply and will affect the ports P10 P11 P12 and P18 3 2 3 LEDs 3 2 3 1 High Power LEDs High Brightness Two white High Power LEDs HPLED1 and HPLED2 are provided to allow visual observation of microcontroller output port state and to show the functionality of the PWM Diagnostic Macro The High Power LEDs are driven by a Renesas Intelligent Power Device IPD This is an N channel high side switch with charge pump voltage controlled input diagnostic feedback with proportional load current sense and embedded protection function The diagnostic sense feedback of the IPD is connected to
13. e terminal resistors of each CAN channel can be activated by DIP switch S4 CANO Enable termination resistor CANI Enable TETT All All Connect to on board CAN bus Connect to on board CAN bus Table 20 DIP Switch S4 CAN Interfaces Signals 3 2 7 3 FLEXRAY Interface RH850 F1M and RH850 F1H only FLEXRAY transceiver IC7 is supplied to provide a FLEXRAY bus interface The transceiver can be connected to the microcontrollers FLEXRAY interface FLXA The FR bus interface is connected to the DB9 connector CN5 The FR transceiver is enabled by default DIP switch S7 provides additional FR bus interface configuration options including the ability to selectively interconnect FR bus interfaces on board Please use the following jumper configuration to connect the FR transceiver IC7 to the microcontroller FLEXRAY transceiver TX RX to FR RXD e P10 14 Table 21 FH Transceiver Jumper Configuration R20UT3451ED0110 Page 19 August 2015 RENESAS RH850 F1x StarterKit User Manual The on board FR bus and the terminal resistors of each FR channel can be activated by DIP switch S7 c7 Enable termination resistor Enable termination resistor Table 22 Dip Switch S7 FR Interfaces Signals 3 2 7 4 Ethernet Interface RH850 F1H only Ethernet transceiver IC6 is supplied to provide an Ethernet bus interface The transceiver can be connected to the microcontroller s Ethernet interface ETNB via the DIP switches ETH1 ETH3 P
14. e the following jumper configuration to connect the DIP Switch and multiplexer to the microcontroller Digital LPS input PEJ e DIN e P8 1 to MCU SELDPO GPO 4 connector Table 10 LPS Jumper Configuration R20UT3451ED0110 p Page 15 August 2015 RENESAS RH850 F1x StarterKit User Manual 3 2 5 Pushbutton Switches Two pushbutton switches Stand S2 are provided to allow the switching of microcontroller input port states The switches are active low and normally open Active Level Inactive State PO 9 INTP12 RESET Table 11 Pushbutton Switch Signals Please use the following jumper configuration to connect the interrupt pushbutton switch S1 to the microcontroller Interrupt Button to MCU connector close Button gt PO 9 Table 12 Interrupt Pushbutton Jumper Configuration 3 2 6 Analog Input Potentiometers Two potentiometers POT1 and POT2 are provided to generate analog voltages to the microcontroller s analog inputs By turning the potentiometer POT1 a voltage derived from the MCU output signal APO PO 1 can be adjusted The APO signal is generated by the Low Power Sampler LPS macro If the LPS macro is not used APO has to be set to high manually use PO 1 as general purpose digital output By turning the potentiometer POT2 a voltage between GND and VDD can be agjusted Potentiometer Analog Input MCU POT1 APO 0 POT2 AP1 0 Table 13 Analog Input Signals Please use the following jumper confi
15. er Connector Settings Overview Note Default jumper settings Power Supply by E1 Debugger are indicated by bold font R20UT3451ED0110 August 2015 RENESAS Page 8 RH850 F 1x StarterKit User Manual 2 2 Board Overview RH850 F1L Version Y ASK RH850F1L V2 Figure 1 provides a top level view of the RH850 F1L Version of the RH850 F1x Starterkit The jumpers and DIP switches are set to default configuration In this configuration the Starterkit is powered by the E1 Debugger no external power supply needed HAGA r i ES EHI mm FTH L M L3 9 SETE og e o LEZ 349 uy NE dd LE je 233233173 a x LI z s 2 2 I FLXRX POS n FLXEN P05 FLXTX Po 9 ip RH850 F1x StarterKit V2 n SS RH850F1L ASK RHESOFIH Release Vers cies EEAS 0401 061 02 Lii ipi Hp d nina T s cdd O i imm C34 lt N 7 1 rm uj UJN iil CAN mus INTERCONL e E man n xem SY uae oj Figure 1 R20UT3451ED0110 August 2015 R31 p u a e TAT poz R23 cuz CANO RENESAS IPB6 z z L tema R33 RIM Pt 3 am Ld 183 wom CUDD Q 3 34 n x2 Mc Pip RoHS Compliant iJ C26 ua C16 wat Cis Sl APOJO r APO12 n APO14 i GND un YDD P812 YDD e P810 StarterKit top view in default configuration RH850 F1L version Page 9 RH850 F 1x StarterKit User
16. foreign laws or regulations 6 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 assumes no liability whatsoever for any damages incurred by you resulting from errors in or omissions from the information included herein 7 Renesas Electronics products are classified according to the following three quality grades Standard High Quality and Specific The recommended applications for each Renesas Electronics product depends on the product s quality grade as indicated below You must check the quality grade of each Renesas Electronics product before using it in a particular application You may not use any Renesas Electronics product for any application categorized as Specific without the prior written consent of Renesas Electronics Further you may not use any Renesas Electronics product for any application for which it is not intended without the prior written consent of 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 The quality grade of each Renesas Electronics product is Standard unle
17. g System Timer During both modes the PWM diagnostic function is performed The load current through the HPLEDs is evaluated by converting feedback sense signal of HPLED driver IPD into digital values and applying conversion result upper lower limit check function of ADC In case the measured current is either too high or too low a High Power LED fault is assumed and in turn the PWM is switched OFF By switching between Mode1 and 2 or vice versa the PWM diagnostic is started again Standby Entering standby mode will turn off all unnecessary functions and switch the controller into DEEPSTOP for low power consumption This is indicated by a 2s interval of LED2 generated by the Timer Array Unit J A wake up can be performed by a short push the button S1 changing the configuration of the DIP switch S3 or turning potentiometer POT1 more than 2596 of the actual state DIP switch and POT1 related wake up events are generated by using the Low Power Sampler triggered by Timer Array Unit J in a 500ms interval Performing a wake up will resume the last mode the SW was in before standby was entered R20UT3451ED0110 Page 24 August 2015 RENESAS RH850 F1x StarterKit User Manual 6 Component Placement and Schematics 6 1 Component placement L LI CN4 UARTALIN ms R48 AM uim W P014 HS C16 fg LILI JPO 6 JPO 5 Ni ER Li HI E JPO3 EB P IPO2 JPO1 nz JPOO ine ml Im i LINTX LENT R 5 S10 c z ESI RH85
18. guration to connect the potentiometers to the microcontroller Potentiometer to MCU Connector POT1 lt gt APO 0 5 6 Close POT1 supply gt DPO Table 14 Potentiometer Jumper Configuration R20UT3451ED0110 p Page 16 August 2015 RENESAS RH850 F1x StarterKit User Manual 3 2 7 Serial Communication Interfaces 3 2 7 1 RS232 and LIN RS232 transceiver IC5 is supplied to provide a serial interface The transceiver can be connected to the microcontrollers UART macro RLIN30 Please use the following jumper configuration to connect the RS232 transceiver to the microcontroller HS232 Transceiver to MCU connector R232 TX o PO 2 Table 15 RS232 Transceiver Jumper Configuration Local Interconnect Network LIN transceiver IC4 is supplied to provide a LIN interface The transceiver can be connected to the microcontroller s LIN macro RLIN21 Please use the following jumper configuration to connect the LIN transceiver to the microcontroller LIN Transceiver to MCU connector LIN RX o PO 7 Table 16 LIN Transceiver Jumper Configuration The serial interfaces are connected to the DB9 connector CN4 via DIP switch S10 Caution The DB9 connector CN13 is shared between the board s RS232 and LIN interface Please ensure that only one interface is configured for operation at the same time either RS232 or LIN by using DIP switch S10 R20UT3451ED0110 Page 17 August 2015 RENESAS RH850 F1x StarterKit User Manual
19. ircuits It is possible to supply the StarterKit by using the E1 Debugger or it is possible to supply the StarterKit by using an external 12 Volt power supply With the default jumper setting see Table 3 the StarterKit is configured to be power supplied by the E1 Debugger Details about the power supply jumper settings are shown in chapter 3 2 2 The operation of the IPD Intelligent Power Device the high power LEDs and the FlexRay interface is only possible by using an external 12 Volt power supply R20UT3451ED0110 Page 11 August 2015 RENESAS RH850 F 1x StarterKit User Manual 3 2 Functional Areas The functional areas provide various circuits and components useful for interacting with the microcontroller s I O Flexray Area Ethernet Area Only available for FIM and F1H Only available for F1H Mikrocontroller Area Debug Connector Power Supply Area RH850 F1x Starterkit U2 amp SK RH850F1L ASK RH850F 1M ASK RH850OF1H 5 e 178 FLXRX FLXEN e FLXTX R70 R71 E miimi LIE FE MR ce L4 NEN ENESAS Ai TPL Sri S10 C 42 MEM A m mjmgm 2s UNUN mp LE T DMEI LT MTITI CANIRT 6 Riot 1 R31 a Eee mp UART amp LIN Indicator LEDs 2 Channel CAN Area Potentiometers Reset and Interrupt Button Shared LIN and RS232 Area IPD and LPS and digital Input Figure 3 Functional Areas Page 12 R20UT3451ED0110 August 2015 RENESAS High Povver LED Area RH850 F1x Star
20. lease use the following DIP switch configuration to connect the Ethernet transceiver to the microcontroller sening 7 ETHOTXEN amp P18 5 ETHOTXCLK P18 7 Table 23 DIP Switch ETH1 NO TT ETHORXCLK P10 0 ETHORXD3 o P10 5 Table 24 DIP Switch ETH2 sening R20UT3451ED0110 p Page 20 August 2015 RENESAS RH850 F1x StarterKit User Manual ETHORESETB o P11 9 ETHOMDC gt P12 5 ETHOINT P11 6 Table 25 DIP Switch ETH3 Seg m m ETHXOLSDOPH TO Lom EA Lm mmomennornn m ETHOMDIO cs Pa Ten m 3 2 8 On chip Debug and Flash Programming Connector Connector CNS is provided to allow the connection of microcontroller debug and flash programming tools Connector CNS is a 14 pin 0 1 pin pitch connector The pinout of this connector supports the Renesas E1 On chip debug emulator For more information about E1 please see Chapter 4 1 E1 On Chip Debug Emulator ROE000010KCE00 4 Development tools 4 1 4 2 R20UT3451ED0110 August 2015 RENESAS E1 On Chip Debug Emulator R0E000010KCE00 The E1 On Chip Debug Emulator is a powerful debugging tool with flash programming functions which supports various Renesas microcontrollers Updates and User Manuals for this tool can be found on the Renesas website http www renesas eu e1 Compiler and Debugger Software Trail versions of the following compiler and debugger software tools are included in the StarterKit package
21. nesas Electronics sales office if you have any questions regarding the information contained in this document or Renesas Electronics products or if you have any other inquiries Note 1 Renesas Electronics as used in this document means Renesas Electronics Corporation and also includes its majority owned subsidiaries Note 2 Renesas Electronics product s means any product developed or manufactured by or for Renesas Electronics R20UT3451ED0110 p Page 2 August 2015 RENESAS RH850 F1x StarterKit User Manual Table of Contents 1 KONI E 0 Ka aE Ei e Oaa 4 2 Quick Start Information nro 6 2 1 Connector and jumper overview rrrrrnnnnnnnnnnnnnnnnnnnnnnnnnnnennnnnnnnnnnnnnnnnnennnnnnnnnvennnnnnnnvnnnnnnnnnvennnnnnnr 6 2 2 Board Overview RH850 F1L Version Y ASK RH850F1L V2 9 2 3 Board Overview RH850 F1H Version Y ASK RH850F1H V2 10 3 StarterKit Hardware cocus x i VV va RR d Ra Vj 11 3 1 POWer NN e 11 3 2 FM AA TS 12 3 2 1 Microcontroller Area and Port Pin Interfaces ee enen ee eee nera enen eee enen eee eee 13 322 Power SUID NN 13 eo ENN 14 3 2 4 Digital inputs for Low Power Sampler LPS 15 229 P shb lton SWINGING Sci k Ge 16 3 2 6 Analog Input Potentiometers ss 16 3 2 7 Serial Communication Interfaces ss 17 3 2 8 On chip Debug and Flash Progr
22. sas Electronics products or technical information described in this document No license express implied or otherwise is granted hereby under any patents copyrights or other intellectual property rights of Renesas Electronics or others 3 You should not alter modify copy or otherwise misappropriate any Renesas Electronics product whether in whole or in part 4 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 5 When exporting the products or technology described in this document you should comply with the applicable export control laws and regulations and follow the procedures required by such laws and regulations You should not use Renesas Electronics products or the technology described in this document for any purpose relating to military applications or use by the military including but not limited to the development of weapons of mass destruction Renesas Electronics products and technology may not be used for or incorporated into any products or systems whose manufacture use or sale is prohibited under any applicable domestic or
23. ss otherwise expressly specified in a Renesas Electronics data sheets or data books etc Standard Computers office equipment communications equipment test and measurement equipment audio and visual equipment home electronic appliances machine tools personal electronic equipment and industrial robots High Quality Transportation equipment automobiles trains ships etc traffic control systems anti disaster systems anti crime systems safety equipment and medical equipment not specifically designed for life support Specific Aircraft aerospace equipment submersible repeaters nuclear reactor control systems medical equipment or systems for life support e g artificial life support devices or systems surgical implantations or healthcare intervention e g excision etc and any other applications or purposes that pose a direct threat to human life 8 You should use the Renesas Electronics products described in this document within the range specified by Renesas Electronics especially with respect to the maximum rating operating supply voltage range movement power voltage range heat radiation characteristics installation and other product characteristics Renesas Electronics shall have no liability for malfunctions or damages arising out of the use of Renesas Electronics products beyond such specified ranges 9 Although Renesas Electronics endeavors to improve the quality and reliability of its products semiconduc
24. terKit User Manual 3 2 1 Microcontroller Area and Port Pin Interfaces On the RH850 F1x StarterKit devices the following device are assembled Y ASK RH850F1L V2 R7F701057 Y ASK RH850F 1 M V2 R7F701569 Y ASK RH850F1H V2 R7F701503 As external clock supply for the microcontroller a 16MHz crystal oscillator and a 32 768kHz sub oscillator is mounted Each microcontroller I O pin is connected to a pin header interface The pin header interfaces allow easy probing of I O pins and provide the ability to selectively connect the I O pins to power ground or other signals Table 1 and Table 2 are showing the assignment of the pin header interface Through hole pads with 0 1 spacing are provided for signal probing and connections These pads can be populated with standard 0 1 headers to facilitate signal probing 3 2 2 Power Supply Area The StarterKit provides two options for powering the board s integrated circuits E1 On Chip debugger supply or external supply When the board is supplied externally by 12 Volt please choose the following jumper settings Jumper Description Seting Note Voltage regulator output to VDD Connector J11 VBAT selector Closed 12V Table 4 Jumper Setting for external 12 Volt power supply When the board is supplied by E1 debugger please choose the following jumper settings dumper Description Setting Noe VBAT selector Table 5 Jumper Setting For Power Supply By E1 Debugger Th
25. the A D converter of the microcontroller to evaluate the LED drive current The LED PWM signals are active high Please use the following jumper configuration to activate the full IPD and High Power LED functionality dumper Description Setting Configuration Net p A D Feedback of HPLED2 APO 2 J13 High Power LED IPD PWM output 1 lt gt HPLED2 Connector IPD PWM output 2 lt gt HPLED1 Table 7 White HPLED Signals Configuration Caution The High Power LEDs and the IPD can only be used when the power of the StarterKit is supplied with 12 Volt from external When the power of the StarterKit is supplied by E1 debugger the High Power LEDs and the IPD cannot be used R20UT3451ED0110 Page 14 August 2015 RENESAS RH850 F1x StarterKit User Manual 3 2 3 2 Green LEDS Two green LEDs LED1 and LED2 are provided to allow visual observation of microcontroller output port states The LED signals are active high Table8 Green LED Signals 3 2 3 3 Blue LEDs Two blue LEDs D5 and D6 are provided to allow visual observation of the power supply status 12 Volt power supply 5 Volt power supply Table 9 Blue LED Signals 3 2 4 Digital inputs for Low Power Sampler LPS Eight digital input signals which are generated by a DIP switch array S3 are provided to trigger the microcontroller s Low Power Sampler The input signals are connected to the microcontroller via 8 to 1 Multiplexer IC4 Please us
26. tor products have specific characteristics such as the occurrence of failure at a certain rate and malfunctions under certain use conditions Further Renesas Electronics products are not subject to radiation resistance design Please be sure to implement safety measures to guard them against the possibility of physical injury and injury or damage caused by fire in the event of the failure of a Renesas Electronics product such as safety design for hardware and software including but not limited to redundancy fire control and malfunction prevention appropriate treatment for aging degradation or any other appropriate measures 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 Please use Renesas Electronics products in compliance with all applicable laws and regulations that regulate the inclusion or use of controlled substances including without limitation the EU RoHS Directive Renesas Electronics assumes no liability for damages or losses occurring as a result of your noncompliance with applicable laws and regulations 11 This document may not be reproduced or duplicated in any form in whole or in part without prior written consent of Renesas Electronics 12 Please contact a Re
27. ugger or externally 12V DC input Support of different RH850 F1x family members RH850 F1L RH850 F1M and RH850 F 1H This document will describe the functionality provided by the StarterKit and guide the user through its operation For details regarding the operation of the microcontroller refer to the RH850 F1x User Manuals R20UT3451ED0110 August 2015 RENESAS Page 4 RH850 F1x StarterKit User Manual CAUTION 1 Do not look into the LED beami Special care must be taken with the high power LEDs 2 When power supply of E1 On Chip debugger is used please note that the maximum current provided by the debugger is limited to 200mA Thus an external power supply is required in case all functions on the StarterKit are used to full extend 3 The High Power LEDs can only be used when the board is supplied by 12V externally R20UT3451ED0110 p Page 5 August 2015 RENESAS RH850 F1x StarterKit User Manual 2 Quick Start Information 2 1 Connector and jumper overview R20UT3451ED0110 August 2015 SUED E i O 1 I E jg pup DE LL el pe el p SENE I ele 2 ej e ZEE JEMEN cet fe se pr e le ac acc ae Paw Xr VDD D P10 14 P10 12 P10 10 AP1 14 AP1 12 AP1 10 CIE Table 1 J1 J2 Signal Assignment RENESAS Page 6 RH850 F1x StarterKit User Manual Q a N A gt a Z O O Q gt E AS w S LL

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