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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. 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”...
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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...
The following documents apply to the RL78G13 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...
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High-performance Embedded Workshop Philips™ Inter-Integrated Circuit connection bus Interrupt Request Liquid Crystal Display Light Emitting Diode Micro-controller Unit Multifunction Timer Unit Program Counter Pulse Width Modulation Renesas Starter Kit Random Access Memory Special Function Register UART Universal Asynchronous Receiver/Transmitter Universal Serial Bus...
Jun 21, 2011 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 code pre-programmed into the Renesas microcontroller. On powering up the board the user LEDs will start to flash. After 200 flashes or after pressing any switch, the LEDs will flash at a rate controlled by the potentiometer.
RSKRL78G13 2. Power Supply 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. Figure 3-2: Board Dimensions Rev. 1.00 Page 10 of 36 R20UT0459EG0100 Jun 21, 2011...
RSKRL78G13 4. Connectivity 4. Connectivity Internal RSK Connections The diagram below shows the RSK board components and their connectivity to the MCU. Figure 4-1: Internal RSK Block Diagram Rev. 1.00 Page 12 of 36 R20UT0459EG-0100 Jun 21, 2011...
RSKRL78G13 4. Connectivity Debugger Connections The diagram below shows the connections between the RSK, E1 debugger and the host PC. Figure 4-2: Debugger Connection Diagram Rev. 1.00 Page 13 of 36 R20UT0459EG-0100 Jun 21, 2011...
RSKRL78G13 5. User Circuitry 5. User Circuitry Reset Circuit RSK is using the on chip power on reset on RL78G13 to generate the required reset signal, and it can also be triggered from the RES switch. Refer to the RL78G13 hardware manual for details regarding the reset signal timing requirements, and the RSKRL78G13 board schematics for information regarding the reset circuitry in use on the RSK.
RSKRL78G13 5. User Circuitry Potentiometer A single-turn potentiometer is connected as a potential divider to analogue input ANI6, P26. The potentiometer can be used to create a voltage between Board_VDD and GROUND. The potentiometer is fitted to offer an easy method of supplying a variable analogue input to the microcontroller. It does not necessarily reflect the accuracy of the controller’s ADC.
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RSKRL78G13 5. User Circuitry The connections for the LIN microcontroller signals are listed in Table 5-6 below. LIN Signal Function MCU Connection LINTXD LIN Data Transmission. P13, Pin 43 LINRXD LIN Data Reception. P14, Pin 42 LINNSLP LIN Transceiver Device Sleep Control. P06, Pin 30 Table 5-6: LIN Connections Rev.
RSKRL78G13 6. 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. A link resistor is a 0Ω...
RSKRL78G13 6. Configuration RS232 Serial Port Configuration Table 6-3 below details the function of the option links associated with serial port configuration. Reference Link Fitted Configuration Link Removed Configuration Related Ref. Connects T1IN (U2, pin 13) to TXD0 Disconnects T1IN (U2, pin 13) from R38, R39, (U1, pin 12) or TXD1 (U1, pin 02) or TXD0 (U1, pin 02) or TXD2 (U1, pin...
RSKRL78G13 6. Configuration transceiver. *By default, this jumper is not fitted to the RSK. R37 is fitted by default and RXD0 is connected to RS232 transceiver. *By default, this jumper is not fitted to the RSK LIN Configuration Table 6-5 below details the function of the option links associated with LIN configuration. Reference Link Fitted Configuration Link Removed Configuration...
RSKRL78G13 6. Configuration IRQ & General I/O Pin Configuration Table 6-7 below details the function of the option links associated with IRQ and general I/O pin configuration. Reference Link Fitted Configuration Link Removed Configuration Related Ref. Connects SW3_INTP4 (MCU, pin 21) Disconnects SW3_INTP4 (MCU, pin to SW3.
RSKRL78G13 6. Configuration Table 6-8 below details the function of the option links associated with IRQ and general I/O pin configuration. Reference Link Fitted Configuration Link Removed Configuration Related Ref. Connects SW2_INTP2 (MCU, pin 34) to Disconnects SW2_INTP2 (MCU, pin INTP2 (JA2, pin 23).
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RSKRL78G13 6. Configuration Table 6-10 below details the different configurations and functions of the Power Supply jumpers. Reference Position One Position Two Position Three Related Ref. Pins 1 and 2 shorted. All pins open. UC_VDD is connected to UC_VDD disconnected Board_VDD.
RSKRL78G13 6. Configuration Clock Configuration Table 6-11 below details the function of the option links associated with clock configuration. Reference Link Fitted Configuration Link Removed Configuration Related Ref. Connects X1 (MCU, pin 11) to the Disconnects X1 (MCU, pin 11) from R10, R12 crystal X1.
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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RSKRL78G13 7. Headers Table 7-3 below lists the connections of the application header, JA5. Application Header JA5 Circuit Net Name MCU Pin Circuit Net Name MCU Pin AD4* CAN1TX CAN1RX CAN2TX CAN2RX IRQ5* AD10 AD11 TIOCoA TIOCoB TIOCoC M2_TRISTn TCLKC TCLKD M2_Up M2_Un...
8. Code Development Overview For all code debugging using Renesas software tools, the RSK board must be connected to a PC via an E1 debugger. An E1 debugger is supplied with this RSK product. For further information regarding the debugging capabilities of the E1 debuggers, refer to the E1 Emulator User’s Manual (R20UT0398EJ).
RSKRL78G13 8. Code Development Address Space Figure 8-1 below details the address space of MCU in its different operating modes. For further details, refer to the RL78G13 group hardware manual. Figure 8-1: MCU Address Space Diagram Rev.1.00 Page 31 of 36 R20UT0459EG-0100 Jun 21, 2011...
REVISION HISTORY RSKRL78G13 User’s Manual Rev. Date Description Page Summary ⎯ 1.00 Jun 21, 2011 First Edition issued...
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Renesas Starter Kit User’s Manual Publication Date: Rev.1.00 Jun 21, 2011 Published by: Renesas Electronics Corporation...
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SALES OFFICES Refer to "http://www.renesas.com/" for the latest and detailed information. Renesas Electronics America Inc. 2880 Scott Boulevard Santa Clara, CA 95050-2554, U.S.A. Tel: +1-408-588-6000, Fax: +1-408-588-6130 Renesas Electronics Canada Limited 1101 Nicholson Road, Newmarket, Ontario L3Y 9C3, Canada...
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