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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 Corporation without notice. Please review the latest information published by Renesas Electronics Corporation through various means, including the Renesas Electronics Corporation website (http://www.renesas.com).
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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.
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RSK. Renesas expressly disclaims all such warranties. Renesas or its affiliates shall in no event be liable for any loss of profit, loss of data, loss of contract, loss of business, damage to reputation or goodwill, any economic loss, any reprogramming or recall...
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The following documents apply to the RX111 Group. Make sure to refer to the latest versions of these documents. The newest versions of the documents listed may be obtained from the Renesas Electronics Web site. Document Type...
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Central Processing Unit Cyclic Redundancy Check Digital-to-Analog Converter Dual In-line Package Direct Memory Access DMAC Direct Memory Access Controller Renesas On-chip Debugging Emulator EEPROM Electronically Erasable Programmable Read Only Memory Electromagnetic Compatibility Electrostatic Discharge General PWM Timer C (IIC) Philips™ Inter-Integrated Circuit Connection Bus...
Apr 14, 2014 1. Overview Purpose This RSK is an evaluation tool for Renesas microcontrollers. This manual describes the technical details of the RSK hardware. The Quick Start Guide and Tutorial Manual provide details of the software installation and debugging environment.
When the RSK is purchased, the RSK board has the ‘Release’ or stand-alone code from the example tutorial software pre-programmed into the Renesas microcontroller. On powering up the board the LEDs will start to flash. After 200 flashes or after pressing any switch, the text on the LCD display will change and the LED’s will begin to flash at a rate controlled by the potentiometer.
RSKRX111 3. Board Layout 3. Board Layout Component Layout Figure 3-1 below shows the top component layout of the board. Reset Switch Application Headers Pmod connector (Display) USB to Serial PMOD1 USB Function C EEPROM Pmod RL78/G1C Connector Power Jack (Spare) Power LED E1 Interface...
RSKRX111 3. Board Layout Board Dimensions Figure 3-2 below gives the board dimensions and connector positions. All the through-hole connectors are on a common 0.1 inch grid for easy interfacing. 7.0mm 3.2mm 4-R3.0 13.88mm 45.00mm 25.40mm 3.00mm PMOD1 10.46mm PWR1 RX111 (64-pin) 27.00mm...
RSKRX111 3. Board Layout Component Placement Figure 3-3 below shows placement of individual components on the top-side PCB. Component types and values can be looked up using the board schematics. G1CUSB0 USB0_2 USB0_1 POWE LED0 LED1 LED2 LED3 R100 R109 R118 R127 R185...
RSKRX111 4. Connectivity 4. Connectivity Internal RSK Connections The diagram below shows the RSK board components and their connectivity to the MCU. Power Jack Regulator MCU Current Draw Test Point RL78/G1C Microcontroller Application Headers Function Micon Pin Headers RX111 Microcontroller E1 Debug Interface USB to Serial...
RSKRX111 4. Connectivity Debugger Connections The diagram below shows the connections between the RSK, E1 debugger and the host PC. User Interface USB Cable Cable E1 Emulator Host PC Figure 4-2: Debugger Connection Diagram R20UT2193EG0200 Rev. 2.00 Page 13 of 42 Apr 14, 2014...
RSKRX111 User Circuitry 5. User Circuitry Reset Circuit A reset control circuit is fitted to the RSK to generate the required reset signal, and is triggered from the RES switch. Refer to the RX111 hardware manual for details regarding the reset signal timing requirements, and the RSK schematics for information regarding the reset circuitry in use on the board.
RSKRX111 User Circuitry LEDs There are five LEDs on the RSK. The function of each LED, its colour, and its connections are shown in Table 5-3. Colour Function Port POWER Green Indicates the status of the Board_3V3 power rail. LED0 Green User operated LED.
* It can be configured by modifying option links. USB Serial Port A USB serial port implemented in another Renesas low power microcontroller (RL78/G1C) is fitted on the RSK to the microcontroller Serial Communications Interface (SCI) module. Multiple options are provided to allow re- use of the serial interface.
RSKRX111 User Circuitry Local Interconnect Network (LIN) A LIN transceiver IC is fitted to the RSK, and connected to the Extended serial mode MCU peripheral. For further details regarding the supported modes of operation, please refer to the RX111 Group Hardware Manual.
RSKRX111 Configuration 6. Configuration Modifying the RSK This section lists the option links that are used to modify the way RSK operates in order to access different configurations. Configurations are made by modifying link resistors or headers with movable jumpers or by configuration DIP switches A link resistor is a 0Ω...
RSKRX111 Configuration Power Supply Configuration Table 6-3 below details the function of the option links associated with power supply configuration. Exclusive Function Header connection Signal Name Header Function IC Pin Remove Connects VBUS to power supply line of 5V. U4.IN VBUS Disconnect.
RSKRX111 Configuration E1 Debugger Configuration Table 6-6 below details the function of the option links associated with E1 Debugger configuration. Exclusive function Header connection Signal Name R105 E1.1 J1.2 R87, R107, MTIOC3C R216 JA2.11 J11: open R224, R38, R87, R107, U2.15 A-TXD1 J11.1-2...
RSKRX111 Configuration I/O Port Configuration Table 6-8 below details the function of the option links associated with the I/O Port configuration. Exclusive function Header connection Signal Name JA1.22 IO7_AN015 AN015 JA5.4 JA1.21 IO6_AN014 AN014 JA5.3 R213 JA1.20 IO5_MTIOC4C MTIOC4C R213 JA2.16 R204,R203 JA1.19...
RSKRX111 Configuration IRQ & Switch Configuration Table 6-9 below details the function of the option links associated with the IRQ & Switches configuration. Exclusive function Header connection Signal Name R204,R203 JA1.19 R206, MTIOC1A R204 R15,R203 JA2.23 R205 R207 IO4_MTIOC1A_IRQ4 R205, R203 R15,R204 JA2.23...
RSKRX111 Configuration 6.11 MTU & POE Configuration Table 6-11 and Table 6-12 below details the function of the option links associated with MTU & POE configuration. Exclusive function Header connection Signal Name R25, MTIC5W R188 JA6.16 U3.6 R59, R61 R25, R188 JA1.26 MTIC5W_SCL_ADTRG0n R61,...
RSKRX111 Configuration 6.14 SCI & RS232 Serial Port Configuration Table 6-15 below details the function of the option links associated with serial port configuration. Exclusive function Header connection Signal Name LINRXD U6.1 R122 R17, R192 R122, R192 JA1.17 RXD12 R192 R17, R122 JA6.12 LINRXD_IO2_RXD12...
RSKRX111 Configuration 6.15 USB Configuration Table 6-16 below details the function of the option links associated with the USB Configuration. Exclusive function Header connection Signal Name R70,R200, R71, R72 PMOD1.1 - PC7_MTCLKB_USB0OV R134 RCURB MTCLKB R200 R72, R134 JA2.26 USB0OVRCURB U5.6 R134 R72,...
7. Headers 7. Headers Application Headers This RSK is fitted with application headers, which can be used to connect compatible Renesas application devices or as easy access to MCU pins. Table 7-1 below lists the connections of the application header, JA1.
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RSKRX63T144 7. Headers Table 7-2 below lists the connections of the application header, JA2. Application Header JA2 Header Name Header Name MCU Pin MCU Pin Circuit Net Name Circuit Net Name RESET EXTAL RESn CON_XTAL Vss1 NMIn GROUND WDT_OVF SCIaTX A-TXD1 IRQ0/WKUP/M1_HSIN0 SCIaRX...
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RSKRX63T144 7. Headers Table 7-3 below lists the connections of the application header, JA5. Application Header JA5 Header Name Header Name MCU Pin MCU Pin Circuit Net Name Circuit Net Name ADC4 ADC5 AN004 AN006 ADC6 ADC7 AN014 AN015 CAN1TX CAN1RX CAN2TX CAN2RX...
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RSKRX63T144 7. Headers Table 7-4 below lists the connections of the application header, JA6. Application Header JA6 Header Name Header Name MCU Pin MCU Pin Circuit Net Name Circuit Net Name DREQ DACK TEND STBYn RS232TX RS232RX RS232TX RS232RX SCIbRX SCIbTX A-RXD5 A-TXD5...
RSKRX63T144 7. Headers Microcontroller Pin Headers This RSK is fitted with MCU pin headers, which are used to access all the MCU’s pins. Table 7-5 below lists the connections of the microcontroller pin header, J1. Microcontroller Pin Header J1 Circuit Net Name MCU Pin Circuit Net Name MCU Pin...
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RSKRX63T144 7. Headers Table 7-7 below lists the connections of the microcontroller pin header, J3. Microcontroller Pin Header J3 Circuit Net Name MCU Pin Circuit Net Name MCU Pin MTIOC3B MTIOC3D PB5_MTIOC1B USB0OVRCURA LINNSLP UC_VCC MTIC5W_SCL_ADTRG GROUND MTIC5V_SDA_CTS5RT IRQ5_MTIC5U POE0_A-IRQ6_P-IRQ6 A-SCK5_P-SCK5 MTIOC4A IO5_MTIOC4C...
8. Code Development Overview For all code debugging using Renesas software tools, the RSK board must be connected to a PC via an E1/E20 debugger. An E1 debugger is supplied with this RSK product. For further information regarding the debugging capabilities of the E1/E20 debuggers, refer to E1/E20 Emulator Additional Document for User's Manual (R20UT0399EJ).
RSKRX111 8. Code Development Address Space Figure 8-1 below details the address space of the MCU. This diagram is taken from the Hardware Manual version 0.2. The MCU fitted to the RSK has 128KB of ROM. For further details, refer to the RX111 Group Hardware Manual.
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