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Part Number: KIT_XMC45_RELAX_LITE_V1

Features

 XMC4500 Microcontroller (ARM® Cortex™-M4F based)

 Detachable on-board debugger

 Power over USB

 ESD and reverse current protection

 2 x user button and 2 x user LED

 4 x SPI-Master, 3x I2C, 3 x I2S, 3 x UART, 2 x CAN, 17 x ADC

 (12 bit), 2 x DAC, 31x PWM mapped on 2 Pin Headers 2 x 20 0.1”

 Micro-USB plug

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E v a l u a t i o n B o a r d

For XMC4000 Family

Board User‘s Manual

X M C 4 5 0 0 R e l a x K i t &

X M C 4 5 0 0 R e l a x L i t e K i t

Kit Version 1

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Edition 2014-01-13 Published by

Infineon Technologies AG 81726 Munich, Germany

© 2014 Infineon Technologies AG All Rights Reserved.

Legal Disclaimer

The information given in this document shall in no event be regarded as a guarantee of conditions or

characteristics. With respect to any examples or hints given herein, any typical values stated herein and/or any information regarding the application of the device, Infineon Technologies hereby disclaims any and all

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Revision History

Page or Item Subjects (major changes since previous revision)

Revision 1.0, 2012-11-07

Initial release Revison 1.1,

2012-11-09

Correction of DAVE™3 trademark Revison 1.2,

2014-01-13

Notes have been added to Figure 5 (Pins of Pin Header X1 / X2 are partly used also for on-board circuits)

Trademarks of Infineon Technologies AG

AURIX™, C166™, CanPAK™, CIPOS™, CIPURSE™, EconoPACK™, CoolMOS™, CoolSET™, CORECONTROL™, CROSSAVE™, DAVE™, EasyPIM™, EconoBRIDGE™, EconoDUAL™, EconoPIM™, EiceDRIVER™, eupec™, FCOS™, HITFET™, HybridPACK™, I²RF™, ISOFACE™, IsoPACK™, MIPAQ™, ModSTACK™, my-d™, NovalithIC™, OptiMOS™, ORIGA™, PRIMARION™, PrimePACK™, PrimeSTACK™, PRO-SIL™, PROFET™, RASIC™, ReverSave™, SatRIC™, SIEGET™, SINDRION™, SIPMOS™, SmartLEWIS™, SOLID FLASH™, TEMPFET™, thinQ!™, TRENCHSTOP™, TriCore™.

Other Trademarks

Advance Design System™ (ADS) of Agilent Technologies, AMBA™, ARM™, MULTI-ICE™, KEIL™, PRIMECELL™, REALVIEW™, THUMB™, µVision™ of ARM Limited, UK. AUTOSAR™ is licensed by AUTOSAR development partnership. Bluetooth™ of Bluetooth SIG Inc. CAT-iq™ of DECT Forum. COLOSSUS™, FirstGPS™ of Trimble Navigation Ltd. EMV™ of EMVCo, LLC (Visa Holdings Inc.). EPCOS™ of Epcos AG. FLEXGO™ of Microsoft Corporation. FlexRay™ is licensed by FlexRay Consortium. HYPERTERMINAL™ of Hilgraeve Incorporated. IEC™ of Commission Electrotechnique Internationale. IrDA™ of Infrared Data Association Corporation. ISO™ of INTERNATIONAL ORGANIZATION FOR STANDARDIZATION. MATLAB™ of MathWorks, Inc. MAXIM™ of Maxim Integrated Products, Inc. MICROTEC™, NUCLEUS™ of Mentor Graphics Corporation. Mifare™ of NXP. MIPI™ of MIPI Alliance, Inc. MIPS™ of MIPS Technologies, Inc., USA. muRata™ of MURATA MANUFACTURING CO., MICROWAVE OFFICE™ (MWO) of Applied Wave Research Inc., OmniVision™ of OmniVision Technologies, Inc. Openwave™ Openwave Systems Inc. RED HAT™ Red Hat, Inc. RFMD™ RF Micro Devices, Inc. SIRIUS™ of Sirius Satellite Radio Inc. SOLARIS™ of Sun Microsystems, Inc. SPANSION™ of Spansion LLC Ltd. Symbian™ of Symbian Software Limited. TAIYO YUDEN™ of Taiyo Yuden Co. TEAKLITE™ of CEVA, Inc. TEKTRONIX™ of Tektronix Inc. TOKO™ of TOKO KABUSHIKI KAISHA TA. UNIX™ of X/Open Company Limited. VERILOG™, PALLADIUM™ of Cadence Design Systems, Inc. VLYNQ™ of Texas Instruments Incorporated. VXWORKS™, WIND RIVER™ of WIND RIVER SYSTEMS, INC. ZETEX™ of Diodes Zetex Limited.

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Table of Contents

Table of Contents

Introduction ... 7 1 Overview ... 7 1.1 Key Features ... 7 1.2 Block Diagram ... 8 2 Hardware Description ... 9 2.1 Power Supply ... 11

2.2 Pin Header Connector ... 12

3 Production Data... 14

3.1 Schematics ... 14

3.2 Components Placement and Geometry ... 17

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List of Figures

List of Figures

Figure 1 Block Diagram of the XMC4500 Relax/Relax Lite Kit-V1... 8

Figure 2 XMC4500 Relax Lite Kit-V1 ... 9

Figure 3 XMC4500 Relax Kit-V1 ... 10

Figure 4 Power Supply Concept ... 11

Figure 5 Signal mapping of the pin headers... 12

Figure 6 Mapping of communication peripherals to GPIOs and it’s corresponding functions ... 13

Figure 7 CPU, Pin Headers, Buttons, LEDs, Reset ... 15

Figure 8 On-board Debugger, Power Supply, Ethernet, Quad-SPI Memory, SD Card Slot, RTC Crystal ... 16

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List of Tables

List of Tables

Table 1 Features ... 7 Table 2 List of Material ... 18

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Overview

Introduction

This document describes the features and hardware details of the XMC4500 Relax Kit-V1 and the XMC4500 Relax Lite Kit-V1, both equipped with the ARM® Cortex™-M4 based XMC4500 Microcontroller from Infineon Technologies AG.

1

Overview

The XMC4500 Relax Kit-V1 and the XMC4500 Relax Lite Kit-V1 are designed to evaluate the capabilities of the XMC4500 Microcontroller and the powerful, free of charge tool chain DAVE™. The XMC4500 Relax Kit extends the feature set with an Ethernet-enabled communication option, e.g. to run an embedded web server. You can store your own HTML web pages on a microSD Card or control the XMC4500 via the web browser on your PC. The XMC4500 Relax Lite Kit-V1 does not support the web server application, because the components for the Ethernet are not assembled. Both boards are marked with “XMC4500 Relax/Relax Lite Kit-V1”. These boards are neither cost nor size optimized and do not serve as a reference design.

1.1

Key Features

Table 1 summarizes the features of both the XMC4500 Relax Kit-V1 and the XMC4500 Relax Lite Kit-V1.

Table 1 Features

Feature XMC4500 Relax Kit-V1 XMC4500 Relax Lite Kit-V1

XMC4500 Microcontroller (ARM® Cortex™-M4F based) Detachable on-board Debugger Power over USB

2 x User Button and 2 x User LED Reset Button

Power Regulator from 5 V to 3.3V

4 x SPI-Master, 3x I2C, 3 x I2S, 3 x UART, 2 x CAN, 17 x ADC (12 bit), 2 x DAC, 31x PMW mapped on 2 Pin Headers 2 x 20 USB-OTG (Micro USB Plug)

Ethernet PHY and RJ45 jack Real Time Clock Crystal

32 Mbit Quad-SPI Flash Memory microSD Card Slot

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Overview

1.2

Block Diagram

The block diagram in Figure 1 shows the main components of the XMC4500 Relax/Relax Lite Kit-V1 and their interconnections. There are following main building blocks:

 XMC4500 Microcontroller in a LQFP100 package

 On-board USB debugger realized with a 2nd XMC4500 for serial wire debug

 Ethernet Phy with RJ45 Plug

 Two 40 pin header X1 and X2

 On-board power generation for power supply of the XMC45000 Microcontroller and the debug IC

 2 User Buttons and 2 User LEDs

 USB Plug

 microSD Card Slot

Figure 1 Block Diagram of the XMC4500 Relax/Relax Lite Kit-V1

XMC4500 Microcontroller U0C0 ETH USB Debug, U1C1 SDMMC OCS EVR RTC SD/MMC 12 MHz Crystal 32.768 kHz Micro USB micro SD qSPI Flash BUTTON2 ETH PHY 25 MHz Crystal RJ45

RMII ADC, DAC, CCU42, CCU80, POSIF0, U1C0,

U1C1, CAN0, ERU0, LEDTS

DSD, CCU4[0..2], CCU8[0..1], POSIF0, U0C0, U1C0, U2C0, CAN[0..2], ERU[0..1]

SWV SWD USB GPIO, ERU0, ERU1 PORST # RESET LED1 BUTTON1 Cortex Debug (10pin) XMC4500 Debug IC Micro USB Voltage Regulator +5V +3.3V * * UART BSL Pin Header X1 2x20, 0.1" Pin Header X2 2x20, 0.1" Not assembled in Relax Lite version

Not assembled in both versions XMC4500 Relax/Relax Lite P1.1 LED2 P1.14 P1.0 P1.15 Power LED Debug LED * Simplified view on power supply BlockDiag.emf

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Hardware Description

2

Hardware Description

The following sections give a detailed description of the board hardware and how it can be used. Figure 2 shows the XMC4500 Relax Lite Kit-V1, Figure 3 shows the XMC4500 Relax Kit-V1.

Figure 2 XMC4500 Relax Lite Kit-V1

Pin Header X1 Reset Button

Voltage Regulator Power LED Pin Header X2 XMC4500 Microcontroller User Buttons & LEDs

Cortex Debug (10Pin) XMC4500 Debug IC Micro USB Evaluation Board Detachable Debugger 12 MHz XTAL Micro USB Debug LED PCB_Block_Lite.emf

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Hardware Description

Figure 3 XMC4500 Relax Kit-V1

Pin Header X1 Reset Button

Voltage Regulator Power LED Pin Header X2 XMC4500 Microcontroller User Buttons & LEDs

Cortex Debug (10Pin) XMC4500 Debug IC Micro USB Micro USB Evaluation Board Detachable Debugger Ethernet RJ45 & PHY qSPI Flash microSD RTC XTAL 12 MHz XTAL Debug LED PCB_Block.emf

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Hardware Description

2.1

Power Supply

The XMC4500 Relax/Relax Lite Kit-V1 must be supplied by an external 5 Volt DC power supply connected to any of the Micro UBS plugs (X3, X100). Out of the box with the pre-programmed web server application and the on-board debugger in operation the XMC4500 Relax Kit-V1 typically draws about 250 mA. The XMC4500 Relax Lite Kit-V1 without the web server capabilities draws about 200 mA. This current can be delivered via the USB plug of a PC, which is specified to deliver up to 500 mA. The Power LED indicates the presence of the generated 3.3V supply voltage.

On-board reverse current protection diodes will ensure safe operation in case power is provided through both USB plugs at the same time. These protection diodes allows to use the on-board debugger connected with a PC/Notebook via X100 and a second host PC/Laptop connected with the XMC4500 Relax Kit via X3.

If the board is powered via a USB plug, it’s not recommended to apply an additional 5 Volt power supply to one of the 5 Volt power pins (VDD5) on the pin headers X1 or X2, because there is no protection against reverse current into the external power supply. These power pins can be used to power an external circuit. But care must be taken not to draw more current than USB can deliver. A PCs as USB host typically can deliver up to 500 mA current. If higher currents are required and in order to avoid damages on the USB host the use of an external USB power supply unit which is able to deliver higher currents than 500 mA is strongly recommended. After power-up the Debug LED starts blinking. In case there is a connection to a PC via the Debug USB plug X100 and the USB Debug Device drivers are installed on this PC, the Debug LED will turn from blinking to constant illumination.

Figure 4 Power Supply Concept

XMC4500

Relax/Relax Lite Kit-V1

3.3V +5V

Power.emf

Pin Header X1 and X2 2x20, 0.1" Micro USB** Micro USB* Lin. Voltage Regulator IFX1763 IC101 XMC4500 Debug IC IC100 XMC4500 Micro-controller IC1 Power LED Eth Phy X3

* Micro USB on Evaluation Board ** Micro USB on Detachable Debugger

IC200 X100 Infineon Infineon Infineon Infineon Infineon

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Hardware Description

2.2

Pin Header Connector

The pin headers X1 and X2 can be used to extend the evaluation board or to perform measurements on the XMC4500. Figure 5 shows the available GPIOs/signals at the pin headers. The pinning table is also printed onto the bottom side of the PCB.

2 1 2 1 GND GND GND GND 4 GND GND 3 4 GND GND 3 6 P5.7 P2.6 5 6 RESET# GND 5 8 P5.1 P5.2 7 8 P2.10 P2.1 7 10 P1.15** P5.0 9 10 P14.8 P2.14 9 12 P1.13 P1.14** 11 12 P14.9 P2.15 11 14 P1.11 P1.12 13 14 P14.0 VAREF 13 16 P1.5*** P1.10*** 15 16 P14.2 P14.1 15 18 P1.3*** P1.4*** 17 18 P14.4 P14.3 17 20 P1.1* P1.2*** 19 20 P14.6 P14.5 19 22 P1.9 P1.0* 21 22 P14.12 P14.7 21 24 P0.8 P1.8*** 23 24 P14.14 P14.13 23 26 P3.4 P0.7 25 26 P15.2 P14.15 25 28 P0.12 P3.3 27 28 HIB_IO_0 P15.3 27 30 P0.6 P0.11 29 30 P3.0 HIB_IO_1 29 32 P0.2 P0.5 31 32 P3.2 P3.1 31 34 P0.4 P0.3 33 34 P0.1 P0.9 33 36 GND GND 35 36 P0.0 P0.10 35 38 VDD3.3 VDD3.3 37 38 VDD3.3 VDD3.3 37 40 VDD5 VDD5 39 40 VDD5 VDD5 39

* P1.1 is connected to LED1, P1.0 is connected to LED2 (2 mA load, ~2 V clip of input signal)

** P1.14 is connected to BUTTON1, P1.15 is connected to BUTTON 2 (both with a 100 nF capacitor in parallel) *** These pins are connected to the on-board SPI Fash Memory (not valid for Relax Lite):

X2.23 = Port 1.8 = SPI Flash CS# X2.15 = Port 1.10 = SPI Flash CLK X2.16 = Port 1.5 = SPI Flash DI (IO0) X2.17 = Port 1.4 = SPI Flash DO (IO1) X2.18 = Port 1.3 = SPI Flash WP# (IO2) X2.19 = Port 1.2 = SPI Flash HOLD# (IO3)

Pin Header X2 (Top View) Pin Header X1

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Hardware Description

UART UART-1 UART-2 UART-3 UART-4

TX P0.1 / U1C1.DOUT0 P1.5 / U0C0.DOUT0 P5.1 / U0C0.DOUT0 P0.5 / U1C0.DOUT0

RX P0.0 / U1C1.DX0D P1.4 / U0C0.DX0B P5.0 / U0C0.DX0D P0.4 / U1C0.DX0A

I2C Master/Slave I2C-Master1 I2C-Master2 I2C-Master3 I2C-Slave1 I2C-Slave2

SCL (clock) P5.2 / U2C0.SCLKOUT P1.10 / U0C0.SCLKOUT P0.11 / U1C0.SCLKOUT P5.2 / U2C0.DX1A P0.11 / U1C0.DX1A

SDA (data) P5.0 / U2C0.DOUT0 / .DX0B P1.5 / U0C0.DOUT0 /.DX0A P0.5 / U1C0.DOUT0 /.DX0B P5.0 /U2C0.DOUT0 / .DX0B P0.5 / U1C0.DOUT0 /.DX0B

SPI Master/Slave SPI-Master1 SPI-Master2 SPI-Master3 SPI-Master4 SPI-Slave1 SPI-Slave2

MOSI P0.1 / U1C1.DOUT0 P5.0 / U2C0.DOUT0 P1.5 / U0C0.DOUT0 P0.5 / U1C0.DOUT0 P0.0 / U1C1.DX0D P0.4 / U1C0.DX0A

MISO P0.0 / U1C1.DX0D P5.1 / U2C0.DX0A P1.4 / U0C0.DX0B P0.4 / U1C0.DX0A P0.1 / U1C1.DOUT0 P0.5 / U1C0.DOUT0

SCK (clock) P0.10 / U1C1.SCLKOUT P5.2 / U2C0.SCLKOUT P1.10 / U0C0.SCLKOUT P0.11 / U1C0.SCLKOUT P0.10 / U1C1.DX1A P0.11 / U1C0.DX1A

CS (chip select) P0.9 / U1C1.SELO0* P2.6 / U2C0.SELO4 P1.11 / U0C0.SELO0** P0.6 / U1C0.SELO0 P0.9 / U1C1.DX2A P0.6 / U1C0.DX2A

CAN CAN-1 CAN-2

TX P1.12 / CAN.N1_TXD P1.4 / CAN.N0_TXD

RX P1.13 / CAN.N1_RXDC P1.5 / CAN.N0_RXDA

I2S Master/Slave I2C-Master1 I2C-Master2 I2C-Master3 I2C-Slave1

SCK (clock) P5.2 / U2C0.SCLKOUT P1.10 / U0C0.SCLKOUT P0.11 / U1C0.SCLKOUT P0.11 / U1C0.DX1A

SD (data) P5.0 / U2C0.DOUT0 / .DX0B P1.5 / U0C0.DOUT0 /.DX0A P0.5 / U1C0.DOUT0 /.DX0B P5.0 / U2C0.DOUT0 / .DX0B

WS (wait) P2.6 / U2C0.SEL04 P1.11 / U0C0.SELO0 P0.6 / U1C0.SELO0 P0.6 / U2C0.DX2A

* more chip select signals for U1C1 can be found at P3.3, P3.4, P3.5, P3.6 ** another chip select signal for U0C0 can be found at P1.8

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Production Data

3

Production Data

3.1

Schematics

This chapter contains the schematics for the XMC4500 Relax/Relax Lite Kit-V1:

 Figure 7: CPU, Pin Headers, Buttons, LEDs, Reset

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Production Data AGND AGND 10uF/10V 10uF/10V 100nF 100nF 100nF 100nF 100nF 100nF 100nF 100nF 10uF/10V 15pF 15pF 100nF 100nF 10nF 100nF 100nF BAT60A BAT54-02V GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND XMC4500_LQFP100 BLM18PG600 BLM18PG600 LED-RT/D/0603 LED-RT/D/0603 12MHZ/S/3.2X2.5 10k/0402 680R 680R 10k 10k 510R TMPS2-SMD TMPS2-SMD TMPS2-SMD VDD5 VDD5 VDD3.3 VDD3.3 VDD3.3 VDD3.3 VDD5 VDD3.3 VDD3.3 VDD3.3 VDD3.3 VDD3.3 2*20 FTSH-105-01-F-D-K XMC4500-F100x1024 P0.[0..15],P1.[0..15],P2.[0..15],P3.[0..15],P4.[0..7],P5.[0..11],P6.[0..6],P14.[0..15],P15.[2..15],HIB_IO_0,HIB_IO_1 DBGPRES# ETH_CLK ETH_CRS

ETH_MDC ETH_RXER ETH_RXD1 ETH_RXD0 ETH_MDIO

ETH_TXD0 ETH_TXD1 ETH_TXEN HIB_IO_0 HIB_IO_1 MMC_CLK MMC_CMD MMC_DAT0 MMC_DAT1 MMC_DAT2 MMC_DAT3 P0.0 P0.1 P0.2 P0.2 P0.3 P0.3 P0.4 P0.4 P0.5 P0.5 P0.6 P0.6 P0.7 P0.7 P0.7 P0.8 P0.8 P0.9 P0.10 P0.11 P0.11 P0.12 P0.12 P1.0 P1.0 P1.0 P1.1 P1.1 P1.1 P1.2 P1.2 P1.3 P1.3 P1.4 P1.4 P1.5 P1.5 P1.8 P1.8 P1.9 P1.9 P1.10 P1.10 P1.11 P1.11 P1.12 P1.12 P1.13 P1.13 P1.14 P1.14 P1.14 P1.15 P1.15 P1.15 P2.1 P2.1 P2.6 P2.6 P2.10 P2.14 P2.15 P3.0 P3.1 P3.2 P3.3 P3.3 P3.4 P3.4 P5.0 P5.0 P5.1 P5.1 P5.2 P5.2 P5.7 P5.7 P14.0 P14.1 P14.2 P14.3 P14.4 P14.5 P14.6 P14.7 P14.8 P14.9 P14.12 P14.13 P14.14 P14.15 P15.2 P15.3 RESET# RESET# RESET# RTC1 RTC2 TCK TCK TMS TMS USB_DM USB_DP VAREF VDDA VDDC ADJ_1 ADJ_2 ADJ_3 C1 C2 C3 C4 C5 C6 C7 C8 C9 C10 C11 C12 C13 C16 C17 C20 C24 C25 A C D2 2 1 D3 EPAD EXP HIB_IO_0 14 HIB_IO_1 13 P0.0 2 P0.1 1 P0.2 100 P0.3 99 P0.4 98 P0.5 97 P0.6 96 P0.7 89 P0.8 88 P0.9 4 P0.10 3 P0.11 95 P0.12 94 P1.0 79 P1.1 78 P1.2 77 P1.3 76 P1.4 75 P1.5 74 P1.6 83 P1.7 82 P1.8 81 P1.9 80 P1.10 73 P1.11 72 P1.12 71 P1.13 70 P1.14 69 P1.15 68 P2.0 52 P2.1 51 P2.2 50 P2.3 49 P2.4 48 P2.5 47 P2.6 54 P2.7 53 P2.8 46 P2.9 45 P2.10 44 P2.14 41 P2.15 40 P3.0 7 P3.1 6 P3.2 5 P3.3 93 P3.4 92 P3.5 91 P3.6 90 P4.0 85 P4.1 84 P5.0 58 P5.1 57 P5.2 56 P5.7 55 P14.0 31 P14.1 30 P14.2 29 P14.3 28 P14.4 27 P14.5 26 P14.6 25 P14.7 24 P14.8 37 P14.9 36 P14.12 23 P14.13 22 P14.14 21 P14.15 20 P15.2 19 P15.3 18 P15.8 39 P15.9 38 PORST# 65 RTC_XTAL_1 15 RTC_XTAL_2 16 TCK 67 TMS 66 USB_D+ 9 USB_D-8 VAGND 32 VAREF 33 VBAT 17 VBUS 10 VDDA 35 VDDC 12 VDDC1 42 VDDC2 64 VDDC3 86 VDDP 11 VDDP1 43 VDDP2 60 VDDP3 87 VSS 59 VSSA 34 VSSO 63 XTAL1 61 XTAL2 62 IC1 L2 L3 LED1 LED2 Q1 R1 R3 R4 R5 R6 R12 P P1 S S1 SW1 P P1 S S1 SW2 P P1 S S1 SW3 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 X2 1 2 3 4 5 6 7 8 9 10 X5 2 3 4 5 6 7 8 A B C D E 2 3 4 5 6 7 8 XMC4500_Relax-V1 25.10.2012 13:02:04 1/2 Sheet:

Legal Disclaimer The information given in this document shall in no event be regarded as a guarantee of conditions or characteristics. With respect to any examples or hints given herein, any typical values stated herein and/or any information regarding the application of the device, Infineon Technologies hereby disclaims any and all warranties and liabilities of any kind, including without limitation, warranties of non-infringement of intellectual property rights of any third party.

USB

Supply

Analog

Digital

Hibernate/RTC

XMC4500 Relax/Relax Lite Kit

V1 / 25.10.2012 LED2 LED1 BUTTON 2 BUTTON 1 Reset

Buttons & LEDs Cortex Debug

2mA LED 2mA LED

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Production Data 15pF 15pF 100nF 100nF 100nF 10uF/10V 10uF/10V 100nF 100nF 22uF/10V 100nF 22uF/10V 100nF 22uF/10V 100nF 22pF 22pF 100nF 100nF 10uF/10V 100nF ESD8V0L2B-03L BAT60A BAT54-02V BAT54-02V GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND S25FL032P0XMFI01 BLM18PG600 BLM18PG600 BLM18PG600 LED-GN/D/0603 32.768KHz 25MHz/50ppm 10k 680R 33R/0402 33R/0402 100R 1k 120R 1k 6k49 no ass./0R 120R 10k 10k 10k 10k 10k 10k 10k 10k VDD3.3 VDD3.3 VDD3.3 VDD3.3 VDD3.3 VDD3.3 VDD3.3 VDD3.3 VDD3.3 VDD3.3 VDD5 ZX62-AB-5PA Würth 7499010211A 3M_2908-05WB CS DEBUG_LED

ETH_CLK ETH_TXEN ETH_TXD0 ETH_TXD1 ETH_CRS ETH_RXD0 ETH_RXD1 ETH_RXER ETH_MDC ETH_MDIO MMC_DAT2 MMC_DAT3 MMC_CMD MMC_CLK MMC_DAT0 MMC_DAT1

P0.0 P0.0 P0.1 P0.1 P1.2 P1.3 P1.4 P1.5 P1.8 P1.10 P2.1 P2.1 P2.10 P3.1 RESET# RESET# RESET# RTC1 RTC2 TCK TCK TMS TMS C14 C15 C19 C102 C103 C104 C105 C106 C108 C200 C201 C202 C203 C204 C205 C206 C207 C208 C209 C210 C400 1 2 3 D101 A C D102 2 1 D200 2 1 D201 HIB_IO_0 14 HIB_IO_1 13 P0.0 2 P0.1 1 P0.2 100 P0.3 99 P0.4 98 P0.5 97 P0.6 96 P0.7 89 P0.8 88 P0.9 4 P0.10 3 P0.11 95 P0.12 94 P1.0 79 P1.1 78 P1.2 77 P1.3 76 P1.4 75 P1.5 74 P1.6 83 P1.7 82 P1.8 81 P1.9 80 P1.10 73 P1.11 72 P1.12 71 P1.13 70 P1.14 69 P1.15 68 P14.0 31 P14.1 30 P14.2 29 P14.3 28 P14.4 27 P14.5 26 P14.6 25 P14.7 24 P14.8 37 P14.9 36 P14.12 23 P14.13 22 P14.14 21 P14.15 20 USB_D+ 9 USB_D-8 VBAT 17 VBUS 10 VDDC 12 VDDC1 42 VDDC2 64 VDDC3 86 VDDP 11 VDDP1 43 VDDP2 60 VDDP3 87 CRS_DV 15 GND 22 INTRP 18 LED0 23 MDC 11 MDIO 10 P_GND EXP REF_CLK 16 REXT 9 RST# 24 RXD0 13 RXD1 12 RXER 17 RXM 3 RXP 4 TXD0 20 TXD1 21 TXEN 19 TXM 5 TXP 6 VDDA_3.3 2 VDDIO 14 VDD_1.2 1 XI 8 XO 7 CLK 6 CS# 1 DI 5 DO 2 GND 4 HOLD# 7 VCC 8 WP# 3 IC400 1 2 3 4 5 6 7 8 JP500 1 2 3 4 5 6 7 8 JP501 L100 L200 L201 LED100 Q2 Q200 R7 R100 R101 R102 R104 R200 R201 R203 R204 R206 R207 R300 R301 R302 R303 R304 R400 R401 R402 1 2 3 4 5 X100C CG 8 CTR 5 CTT 4 LA 9 LC 10 NC 7 RA 12 RC 11 RD+ 3 RD-6 S1 S1 S2 S2 TD+ 1 TD-2 X200 CLK/SCK 5 CMD/MOSI 3 DAT0/MISO 7 DAT1 8 DAT2 1 DAT3/CS_N 2 GND 6 S1 S1 S2 S2 S3 S3 S4 S4 VDD 4 X300 IC200 KSZ8031RNL D1 D2 3 4 5 6 7 8 A B C D E 3 4 5 6 7 8 XMC4500_Relax-V1 25.10.2012 13:02:04 2/2 Sheet:

Legal Disclaimer The information given in this document shall in no event be regarded as a guarantee of conditions or characteristics. With respect to any examples or hints given herein, any typical values stated herein and/or any information regarding the application of the device, Infineon Technologies hereby disclaims any and all warranties and liabilities of any kind, including without limitation, warranties of non-infringement of intellectual property rights of any third party.

USB Supply Analog Digital Hibernate/RTC (IO0) (IO1) (IO3) (IO2)

RJ45 XMC4500 Relax/Relax Lite Kit

Debug Micro SD-Card qSPI Flash V1 / 25.10.2012 RTC Crystal Ethernet Debug Connector

Relax Kit only Relax Kit only

Relax Kit only

Relax Kit only

SWV TMS TCK

2mA LED

IC100_RXD

(18)

Production Data

3.2

Components Placement and Geometry

Figure 9 Components Placement and Geometry

75.5 mm 98.52 mm 50.8 mm 3.4 mm 47.4 mm 50x 0.4mm drills, NPTH 27.2 mm 9.2 mm 36.4 mm BUTTON1 Power BUTTON2 LED2 LED1 RESET X1 X2 www.infineon.com/xmc-dev 1 2 1 2 IC1 Q1 X3 X5 IC101 Q100 IC100 X100 IC400 X300 Q2 IC200 X200

XMC4500 Relax/Relax Lite Kit-V1

1 Debug 1 1 10 20 30 9 19 29 P1.0 P1.1 1 2 3 4 9 10 11 12 1 3 5 7 8 6 4 2 LEFT RIGHT FRONT card IN card OUT 1 40 1 40 ADJ_1 ADJ_2 ADJ_3 C1 C2 C3 C4 C5 C6 C7 C8 C9 C10 C11 C12 C13 C14 C15 C16 C17 C19 C20 C24 C25 C100 C101 C102 C103 C104 C105 C106 C108 C109 C110 C200 C201 C202 C203 C204 C205 C206 C207 C208 C209 C210 C400 D1 D2 D3 D101 D102 D200 D201 IC1 IC100 IC101 IC200 IC400 JP500 JP501 L1 L2 L3 L100 L200 L201 LED1 LED2 LED100 LED101 Q1 Q2 Q100 Q200 R1 R3 R4 R5 R6 R7 R10 R11 R12 R100 R101 R102 R103 R104 R105 R106 R200 R201 R203 R204 R206 R207 R300 R301 R302 R303 R304 R400 R401 R402 SW1 SW2 SW3 X1 X2 X3 X5 X100 X101 X200 X300

(19)

Production Data

3.3

List of Material

The list of material is valid for the XMC4500 Relax/Relax Lite Kit-V1.

Table 2 List of Material

No. Qty Value Device

Reference Designator 1

2 2x4

Pin Header 0.1” TH

JP500, JP501

2

2 1k

Resistor

R200, R203

3

1 2*20

Pin Header 0.1” TH

X2

4

1 2x20

Pin Header 0.1” TH

X1

5

1 3M_2908-05WB

microSD Card Holder

X300

6

1 6k49

Resistor

R204

7

12 10k

Resistor

R5, R6, R7, R105, R300, R301, R302, R303,

R304, R400, R401, R402

8

1 10k/0402

Resistor

R1

9

1 10nF

Capacitor

C20

10

8 10uF/10V

Capacitor

C1, C2, C11, C104, C105, C109, C110, C210

11

2 12MHz/S/3.2X2.5

Crystal 12 MHz

Q1, Q100

12

6 15pF

Capacitor

C12, C13, C14, C15, C100, C101

13

2 22pF

Capacitor

C206, C207

14

3 22uF/10V

Capacitor

C200, C202, C204

15

1 25MHz/50ppm

Crystal 12 MHz

Q200

16

1 32.768KHz

Crystal 32 kHz

Q2

17

2 33R

Resistor

R10, R11

18

2 33R/0402

Resistor

R101, R102

19

1 100R

Resistor

R104

20

23 100nF

Capacitor

C3, C4, C5, C6, C7, C8, C9, C10, C16, C17,

C19, C24, C25, C102, C103, C106, C108,

C201, C203, C205, C208, C209, C400

21

2 120R

Resistor

R201, R207

22

1 510R

Resistor

R12

23

1 510R/0603

Resistor

R103

24

3 680R

Resistor

R3, R4, R100

25

1 680R/0603

Resistor

R106

(20)

Production Data

Table 2 List of Material

No. Qty Value Device

Reference Designator

37

3 TMPS2-SMD

Push Button

SW1, SW2, SW3

38

1 7499010211A

Ethernet RJ45 Plug, Würth X200

39

2 XMC4500-F100F1024

Microcontroller Cortex

M4F, Infineon

IC1, IC100

40

2 ZX62-AB-5PA

Micro USB Plug

X3, X100

41

1 no ass.

Pin Header 1x4

X101

(21)

References

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