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On April 1 , 2010, NEC Electronics Corporation merged with Renesas Technology Corporation, and Renesas Electronics Corporation took over all the business of both companies. Therefore, although the old company name remains in this document, it is a valid Renesas Electronics document. We appreciate your understanding.
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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”...
Cautions This document may be, wholly or partially, subject to change without notice. All rights reserved. Duplication of this document, either in whole or part is prohibited without the written permission of Renesas Technology Europe Limited. Trademarks All brand or product names used in this manual are trademarks or registered trademarks of their respective companies or organisations.
This RSK Application Board is an evaluation tool for using Renesas microcontrollers with Ethernet and USB interfaces. It is used in conjunction with the RSK for the microcontroller to be evaluated. Features include: • Mounting connections to allow RSK to be added to top of board.
Chapter 3.Board Layout 3.1.Component References The following diagram shows the component references for the board. Figure 3-1: Component References...
3.2.Board Component functions The following diagram the shows the functions of the components on the board. Mini AB Std A RJ45 Application Board Interface Application Board Interface Figure 3-2: Board Layout +5V DC Memory Extension Interface...
3.3.Board Dimensions The following diagram gives the board dimensions and connector positions. All through hole connectors are on a common 0.1” grid for easy interfacing. Figure 3-3 : Board Dimensions...
4.1.Fitting the Target RSK to the RSK application board The board is supplied with 2x 24 way sockets, 2x 26 way sockets and 1 x 50 way socket. These should be soldered on the underside of the host RSK in JA1, JA2, JA5, JA6 and JA3 positions. The RSK should be plugged into the equivalent connectors on the RSK LCD application board.
A[7:1] CSn,WRn Data The Ethernet controller can drive two interrupts. IRQ0 is the IRQ from the Ethernet controller. IRQ2 is the PME output from the Ethernet controller. PME interrupts can be enabled on the IRQ pin, so this can be disabled for host RSKs with fewer interrupt lines, if the PME interrupt is required. Both interrupts are pulled high to 3.3V by 1K resistors.
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A[17:1] CSn,RDn Data A[17:1] CSn,WRn Data The ISP1761 controller can drive two interrupts. IRQ1 is the HC_IRQ from the ISP1761 controller. IRQ3 is the DC_IRQ output from the ISP1761 controller. DC_IRQ interrupts can be enabled on the HC_IRQ pin, so this can be disabled for host RSKs with fewer interrupt lines, if the DC_IRQ interrupt is required. Both interrupts are pulled high to 3.3V by 1K resistors.
4.4.SRAM The board is provided with 512 kilobytes of static RAM arranged as 256k x 16 bit words. This RAM is byte addressable, provided the host RSK supports this. The chip select used for the RAM is CS3 which is on JA3 pin 45. Please note the timing.
4.5.Option Links Table 4-1 below describes the function of the option links contained on this CPU board. The default configuration is indicated by BOLD text. Reference Function 3V power select Write Strobe Select Write Strobe Select Write Strobe Select Write Strobe Select Option Link Settings Fitted Regulator drives Board_3V3...
5.1.Application Headers This information is supplied for reference. Only pins marked Table 5-1 and Generic Header Name Regulated Supply 1 Regulated Supply 2 Analogue Supply Analogue Reference ADC0 ADC2 DAC0 IOPort IOPort IOPort IOPort Open drain IRQAEC I²C Bus Chapter 5.Headers These connections are not level translated.
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Generic Header Name CPU board Signal Name Open drain RESn Open drain NMIn Open drain output WDT_OVF Open drain IRQ0 Open drain IRQ1 Up/down MO_UD Motor control MO_Up Motor control MO_Vp Motor control MO_Wp Output TMR0 Input TRIGa Open drain IRQ2 SPARE Table 5-2: JA2 Standard Generic Header...
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Generic Header Name Host Serial SCIdTX Serial Port Serial Port Synchronous Serial Port Synchronous Reserved Reserved Reserved Reserved Reserved Reserved Table 5-4: JA6 Optional Generic Header CPU board Header Name Signal Name DREQ TEND Standby (Open drain) RS232TX Host Serial SCIbRX Serial Port SCIcTX...
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These connections support 5 to 3.3V level translation. Generic Header Name A(0) A(2) A(4) A(6) A(8) A(10) A(12) A(14) D(0) D(2) D(4) D(6) CS1n D(8) D(10) D(12) D(14) A(16) A(18) A(20) A(22) CS3n WR1n CASn Table 5-5 below shows the Memory Expansion connections Signal Name A(0) A(2)
For details on how to use High-performance Embedded Workshop (HEW), refer to the HEW manual available on the CD or from the web site. Online technical support and information is available at: Technical Contact Details America: techsupport.rta@renesas.com Europe: tools.support.eu@renesas.com Japan: csc@renesas.com General information on Renesas Microcontrollers can be found on the Renesas website at: http://www.renesas.com/renesas_starter_kits http://www.renesas.com/...
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