XE166 Family. Hardware Manual. Microcontrollers. Hardware Manual XE166 Low End Easy Kit Board V1.5 V1.5,

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1 XE Family Hardware Manual XE Low End Easy Kit Board V. Hardware Manual V., 0-0 Microcontrollers

2 Edition 0-0 Published by Infineon Technologies AG Munich, Germany 0 Infineon Technologies AG All Rights Reserved. LEGAL DISCLAIMER THE INFORMATION GIVEN IN THIS APPLICATION NOTE IS GIVEN AS A HINT FOR THE IMPLEMENTATION OF THE INFINEON TECHNOLOGIES COMPONENT ONLY AND SHALL NOT BE REGARDED AS ANY DESCRIPTION OR WARRANTY OF A CERTAIN FUNCTIONALITY, CONDITION OR QUALITY OF THE INFINEON TECHNOLOGIES COMPONENT. THE RECIPIENT OF THIS APPLICATION NOTE MUST VERIFY ANY FUNCTION DESCRIBED HEREIN IN THE REAL APPLICATION. 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) WITH RESPECT TO ANY AND ALL INFORMATION GIVEN IN THIS APPLICATION NOTE. Information For further information on technology, delivery terms and conditions and prices, please contact the nearest Infineon Technologies Office ( Warnings Due to technical requirements, components may contain dangerous substaes. For information on the types in question, please contact the nearest Infineon Technologies Office. Infineon Technologies components may be used in life-support devices or systems only with the express written approval of Infineon Technologies, if a failure of such components can reasonably be expected to cause the failure of that life-support device or system or to affect the safety or effectiveness of that device or system. Life support devices or systems are intended to be implanted in the human body or to support and/or maintain and sustain and/or protect human life. If they fail, it is reasonable to assume that the health of the user or other persons may be endangered.

3 Hardware Manual XE Low End Easy Kit Board V. XE Revision History: V. 0-0 Previous Version(s):. Trademarks TriCore is a trademark of Infineon Technologies AG. We Listen to Your Comments Is there any information in this document that you feel is wrong, ulear or missing? Your feedback will help us to continuously improve the quality of this document. Please send your proposal (iluding a referee to this document) to: mcdocu.comments@infineon.com Hardware Manual V., 0-0

4 Hardware Manual XE Low End Easy Kit Board V. Table of Contents Table of Contents Introduction - XE family General Information about XE Easy Kit Board Summary of Features Block Diagram Board Overview DIP Switch S Basic Startup Configuration for XEx (L/ U -Series) USB Drive installation Easy Kit Power Supply coept Power Supply via Power Plug Information in Detail Switch S DIP Switch Setting for XEx (L/ U -Series) Headers, Connectors and Components USB Interface CAN0 (X0) LIN Interface (X0) OCDS Interface DAP Interface ADC LEDs Serial EEPROM Pin Definition and Location Pinout Pinout Pinout Zero Ohm Resistors Getting Started Power Supply BMI Programming OCDS Debugging Interface USB Interface for UART support Schematic Hardware Manual V., 0-0

5 Hardware Manual XE Low End Easy Kit Board V. Introduction - XE family Introduction - XE family XE family - More performae, more Flash, better peripherals With more than successful years in the microcontroller market place, C has set the standard for -bit architectures with the highest aggregate volume share of all available -bit devices. With its fast interrupt response and context switching, the C family is ideally suited for automotive, industrial, mass storage and wired as well as wireless communications applications. Compared with the XC, XE delivers more performae, more Flash memory, more RAM, strongly enhaed peripherals and a complete DSP library. MCU and DSP in a core Infineon Technologies Real Time Signal Controller combines the traditional strengths of a Microcontroller Unit (MCU) to control peripherals with the computing power of Digital Signal Processors (DSP). All in one enhaed CS V core. Together, the Microcontroller's real-time capability and ease of use and the DSP's mathematical performae and data throughput form a powerful singe-chip solution ideal for many embedded applications. For detailed technical information about the different derivatives please refer to the XE family web pages on the Infineon Internet. This document covers all products of the XExL, XExL, XEFU and XE0FU series. Hardware Manual V., 0-0

6 Hardware Manual XE Low End Easy Kit Board V. General Information about XE Easy Kit Board General Information about XE Easy Kit Board. Summary of Features Infineon s XE Controller in LQFP-, VQFN- and TSSOP- Package High Speed CAN Transceiver, LIN Transceiver, USB to UART/JTAG bridge Low Power Status LEDs Easy access to all pins -DIP switches for configuration On board USB to JTAG/UART interface Powered via USB Connectors The XE Board offers a wide variety of connectors: USB connector for ASC/ JTAG/ SPD Interface -pin header for LIN Transceiver -pin header for JTAG interface (OCDS) 0-pin (x) header for CAN High Speed Transceiver (CAN0) 0-pin header for DAP/ SPD interface Components Low-Drop Voltage Regulator TLE Four status LED s for Power/RESET/JTAG CAN-Transceiver TLE DS LIN Transceiver TLE FTHL Dual USB to UART/JTAG interface SPI EEPROM Kbit ATN ) general purpose LEDs Potentiometer for ADC Reset switch Zero Ohm Bridges Zero Ohm resistors give the flexibility to configure the systems futionality ) The soldered part may differ from the schematic, for example Atmel 00AN. Hardware Manual V., 0-0

7 Hardware Manual XE Low End Easy Kit Board V. General Information about XE Easy Kit Board. Block Diagram Voltage Regulator CAN Transceiver MultiCAN LIN Transceiver LIN USB TxD RxD XEx CPU LEDs EEPROM USB To UART/ JTAG Bridge OCDS DAP XTAL Figure Block diagram of XE Easy Kit layout overview Hardware Manual V., 0-0

8 Hardware Manual XE Low End Easy Kit Board V. General Information about XE Easy Kit Board. Board Overview 0. DAP OCDS Config Reset Infineon XE Debug Run Debug Active Reset Power Supply USB Power Supply Jumper CAN0 AN0 (ADC) LIN Power Figure Top View (basic components) Hardware Manual V., 0-0

9 Hardware Manual XE Low End Easy Kit Board V. General Information about XE Easy Kit Board Figure Top view in detail. DIP Switch S0 Although most of the programmable features of the XE are selected by software either during the initialization phase or repeatedly during program execution, some features must be selected earlier because they are used for the first access of the program execution. These configurations are accomplished by latching the logic levels at a number of pins at the end of the internal reset sequee. DIP switch S0 allows to configure the startup setting of the XE during RESET. The default System Startup Configuration is shown in Table. By default all DIP Switches are OFF. The XE executes a standard start from internal Flash. Note: The Kit is programmed with BMI for DAP. To connect a JTAG debugger box from a Tool vendor (KEIL, PLS), the BMI need to be reprogrammed to JTAG using a flash programming software (e.g. Memtool). Table Default Configuration Name in Default configuration schematic S0 On Description Startup configuration: Standard start from internal Flash (Default) Off P. P0. /TRST ADBUS Hardware Manual V., 0-0

10 Hardware Manual XE Low End Easy Kit Board V. General Information about XE Easy Kit Board.. Basic Startup Configuration for XEx (L/ U -Series) Table Basic Startup Configuration via External Circuitry Startup Mode TRST BMI value ) CFG-pins P. P0. Internal Start from Flash, no debug 0 not checked x x Start-up and debug mode from BMI BMI valid BMI.BLS=disable x x Start-up and debug mode from BMI BMI.BLS=enable x 0 ASC Bootloader x ASC Bootloader BMI invalid/ uonfigured x CAN Bootloader ) 0 0 Internal start from Flash,JTAG debug 0 pos.a ) BMI0[:] = 00 B means BMI.BLS=enable. BMI0[:] = 00 B means BMI.BLS=disable. BMI0[:] = else means BMI is invalid. ) CAN Bootloader is not available to XExU series. Configuration pins are treated by firmware differently depending on additional conditions:. If TRST=0 - it is purely hardware controlled (so-called Zero-pin ) configuration - device start from Internal Flash without debug support is executed. If TRST= - the Boot Mode Index (BMI) is evaluated by firmware first and depending on the result - start-up mode and debug For more detailed information about the DIP switch setting, please refer to Chapter.., Table.. USB Drive installation All USB-Transaction are realized by the USB-Software running on a Host-Computer. The USB-Device driver is communicating with the Equipment connected to the Computer. The driver for Easy Kit USB interface will be delivered with a Software called DAS (Device Access Server). The goal of the DAS architecture is to provide one single interface for all types of tools, which fulfills all performae and reliability needs. Additionally a driver for a virtual COM port will be installed. Find out more about DAS on the Infineon Web page: This DAS Software can be found in the Easy Kit CD under the Tools section. DAS Software Version.0.0 or higher is required to be used with the Easy Kit. Hardware Manual 0 V., 0-0

11 Hardware Manual XE Low End Easy Kit Board V. General Information about XE Easy Kit Board Figure Tools install Hardware Manual V., 0-0

12 Hardware Manual XE Low End Easy Kit Board V. General Information about XE Easy Kit Board. Easy Kit Power Supply coept The Easy Kit USB Power Supply coept allows the user to work with the Kit without an external Power Supply. If the USB power supply is not sufficient, an additional regulated DC power supply can be used. XE CPU Powe r LEDs V DC JP0 USB Supply V Power Supply V Figure Easy Kit Power Supply coept By means of the Power Supply Jumper JP0, USB, or the external power Supply can be selected to run the Easy Kit. The Setup for the Jumper JP0 is shown in Table below. Table Name in schematic JP0 Power Supply Jumper configuration Configuration Description Power Supply via USB Interface (Default) JP0 Power Supply via Power Plug The USB specification provides a V supply on a single wire from which connected USB devices may draw power. The specification provides for no more than. V and no less than. V between the +ve and -ve bus power lines. Initially, a device is only allowed to draw 00 ma. It may request more current from the upstream device in units of 00 ma up to a maximum of 00 ma. In practice, most ports will deliver the full 00 ma or more before shutting down power, even if the device hasn't requested it or even identified itself. If a (compliant) device requires more power than is available, then it cannot operate until the user changes the network (either by rearranging USB connections or by adding external power) to supply the required power. Hardware Manual V., 0-0

13 Hardware Manual XE Low End Easy Kit Board V. General Information about XE Easy Kit Board Note: If the USB power supply is not sufficient, an external power supply is needed and the Jumper JP0 setting need to be changed. Note: In case the USB Host PC goes into Suspend Mode, an external Power Supply should be used... Power Supply via Power Plug The XE Board can be supplied either with USB cable or with an external power supply. For external power supply, a regulated DC power supply with max. Volt/ 00mA can be connected to the power connector. The maximum power dissipation of the used voltage regulator has to be taken into account. Figure Power Supply Hardware Manual V., 0-0

14 Hardware Manual XE Low End Easy Kit Board V. Information in Detail Information in Detail The XE family supports variety of start-up modes, allowing the user to make selections in three aspects: Main futionality - where from the user code will be started (on-chip Flash, PSRAM, external memory); Optionally - a way for initial code-downloading into PSRAM before to start it: From an external host via a communication interface - UART, CAN. Debug-related - either debugging will be possible, and if Yes - which debug-interface to use (SPD, JTAG, and DAP selectable pin-assignments via BMI). The Easy Kit Board Manual covers only a limited number of start-up modes. For all possible start-up modes please refer to the corresponding User s Manual.. Switch S0.. DIP Switch Setting for XEx (L/ U -Series) Table Name in schematic S0 DIP Switch Settings for S0 Default configuration On Description Startup configuration: Standard start from internal Flash xx-xx-off-xx Off S0 On Off Startup configuration: BMI valid. BLS disable, Start-up and debug mode from BMI xx-xx-on-xx S0 On Off Startup configuration: BMI valid. BLS enable, Start-up and debug mode from BMI xx-on-on-xx S0 On Off Startup configuration: BMI valid. BLS enable, Bootstrap loader ASC xx-off-on-xx S0 On Off Startup configuration: BMI invalid. Bootstrap loader ASC xx-off-on-xx S0 On Off Startup configuration: BMI invalid. Bootstrap loader CAN ON-ON-ON-xx Hardware Manual V., 0-0

15 Hardware Manual XE Low End Easy Kit Board V. Information in Detail Table Name in schematic S0 S0 DIP Switch Settings for S0 Default configuration Off On Description Startup configuration: BMI invalid. JTAG Debug Mode A OFF-ON-ON-xx Startup configuration: All other positions are reserved Note: Other than hardware configuration, the BMI value has to be configured in order for the device to run in the correct mode. For more information, refer to Table.. Headers, Connectors and Components.. USB Interface The USB connector is used for connection to a PC. Via the USB it is possible to power the board, using the USIC0 Channel 0 as serial connection via USB and Debugging via DAS. For the pinout of USB socket see Figure. (D-) (Vbus) (D+) () Figure On-board header (P0).. CAN0 (X0) One CAN transceiver is connected to the MultiCAN on XE node 0. The transceiver is connected to the IDC0 plug. For the pinout of IDC0 plug see Figure. You can use a IDC female connector with crimp connector, flat cable and SUB-D plug with crimp connector to have a : adapter to SUB-D. CAN module is not available to XExU series. CANL CANH VDDP 0 Figure On-board header (X0) Hardware Manual V., 0-0

16 Hardware Manual XE Low End Easy Kit Board V. Information in Detail.. LIN Interface (X0) The board has a connector with pins for LIN. For the pinout of the connector see Figure. The LIN transceiver is connected to USIC Channel 0 for XExL module, and USIC0 Channel 0 for XExU module of the CPU. Bus Vs VBat Figure On-board header (X0).. OCDS Interface The OCDS signals are connected to the IDC plug (X0). For pinout of the connector see Figure 0. You can connect any debugger to this connector. The signals /BRKIN and /BRKOUT are not connected by default. If you connect a debug hardware, ensure that the MiniWiggler circuit is not active (ACTIV LED is off), and on the DAP connector (X0), no hardware is connected or the hardware is tristate. If the ACTIV LED is on, then stop the active DAS Server JTAG over USB Chip and/or remove the USB connection to the PC. TMS Vcc TD0 CPUCLOCK TDI /TRST TCLK 0 /PORST /BRKOUT /BRKIN /OCDSE Figure 0 On-board header X0.. DAP Interface The board comes with a DAP connector (X0). For pinout of this connector see Figure. You can connect a DAP/ SPD hardware here. If you use this connector make sure that the MiniWiggler is not active (ACTIV LED is off) and a connected OCDS hardware is disconnected or tristate. For single pin DAP (SPD) interface, DAP is used. Hardware Manual V., 0-0

17 Hardware Manual XE Low End Easy Kit Board V. Information in Detail VREF 0 DAP DAP0 USER0_IO USER_IN /RESET Figure On-board header X0.. ADC On AN0 (ADC0) is a 0K potentiometer (R) connected. You can apply a voltage between VA0 and VAREF0 to the AN0 channel via this potentiometer... LEDs Port 0 pin 0 up to pin are connected to single LED s (D0... D0) and can be controlled by Software. These status LEDs are low active. Table LED number D0 (red) D0 (green) D0 (red) D0 (green) D0 - D0 (yellow) LEDs description Description Debug Run Mode (switched by DAS Server) Debug Active (Mini Wiggler circuit active) Power On Reset Active Board Voltage Volts Status of P0L.. Serial EEPROM By default the USIC0 Channel of the XE is connected to a serial EEPROM with a size of K ( x ). The default setting for the SSC is described in Table. Table Serial EEPROM interface Default Setting: SSC (USIC0 Channel ) P. (SCK) with R0 P. (SI) with R P.0 (SO) with R P. (CS) with R Hardware Manual V., 0-0

18 Hardware Manual XE Low End Easy Kit Board V. Information in Detail. Pin Definition and Location.. - Pinout 0 0 ESR0 PORST XTAL XTAL P0. P0. P0.0 VDDIM P0. P0. P0. P0. P0. P0. P0. V SS TESTM TRST P. P. P. P.0 V DDPB V AREF V A P.0 P. P. P. P. P. LQFP P0. P0. P0. P0. P0. P0.0 V DDPB P. P. P. P.0 P. P. P. P. V SS P. P. P. P. P.0 P. P. P. P.0 P. VDDIM P. P. P. P. Figure Pinout of the pin device Hardware Manual V., 0-0

19 Hardware Manual XE Low End Easy Kit Board V. Information in Detail X0 /PORST XTAL P0. VDDI P0. P0. P0. P0. ESR0 XTAL P0. P0.0 P0. P0. P0. /TESTM P0. P0. /TRST P. P0. P0. P. P. P0. P0.0 P.0 VAREF VA XEx P. P. P. P.0 P. P.0 P. P. P. P. P. P. P. P. X0 P. P. P. P. P. P.0 P. P. P. P.0 VDDI P. P. P. P. X0 X0 Figure Pin connector of the pin device Hardware Manual V., 0-0

20 Hardware Manual XE Low End Easy Kit Board V. Information in Detail.. - Pinout TESTM TRST P. P. P.0 V SS V DDPB V AREF V A P.0 P. P. PORST XTAL XTAL P0. P0.0 VDDIM P0. P0. P0. P0. 0 VQFN P. P. P. P.0 P. VDDIM VSS VSS P. P. P. P. P0. P0. P0. P0. P0. P0.0 P. P.0 P. P. P. P. Figure Pinout of the pin device Hardware Manual 0 V., 0-0

21 Hardware Manual XE Low End Easy Kit Board V. Information in Detail X0 /PORST XTAL VDDI P0. P0. XTAL P0. P0.0 P0. P0. /TESTM P0. P0. /TRST P. P0. P0. P. P0. P0.0 P.0 VAREF VA XEx P. P.0 P.0 P. P. P. P. P. P. X0 P. P. P. P. X0 P. P. P.0 VDDI P. P. X0 Figure Pin connector of the pin device Hardware Manual V., 0-0

22 Hardware Manual XE Low End Easy Kit Board V. Information in Detail.. - Pinout 0 0 P0. TSSOP VAREF VA P.0 P. P. P. P. P.0 VSS VDDP P. P. P. P. P. P. P. P.0 P0.0 0 P.0 P. TRST TESTM PORST P0. P0.0 VDDIM VSS P0. P0. P0. P0. P0. P0. P0. P0. Figure Pinout of the pin device X0 /PORST VDDI P0. P0. P0. P0.0 P0. P0. /TESTM P0. P0. /TRST P0. P0. P.0 P. VA XEx P0. P0.0 P.0 P.0 P. P. P. P. P. P. X0 P. P. X0 P. P. P.0 P. X0 Figure Pin connector of the pin device Hardware Manual V., 0-0

23 Hardware Manual XE Low End Easy Kit Board V. Information in Detail. Zero Ohm Resistors For configuration purposes several zero ohm resistors have been implemented. The futionality of these resistors are shown in the table below. Table Zero Ohm Resistors Component Name in schematic TLE (LIN Transceiver Board) R Description enable / disable For XExL series For XExU series TLEDS (CAN Transceiver) ) Microcontroller XEx Analog referee Voltage supply ATN ) (Serial EEPROM) Status LED s Oscillator circuit FTHL JTAG-Option: DAP-Option: ASC Bootloader: Pin / Pin/ Pin Other U0: EEPROM LCB: R / R R / R0 R / R0 R R R / R R R R0 / R R / R R0 R / R R, R R, R R-R R-R R0 R0 connect / disconnect connect / disconnect connect / disconnect (CAN0) enable / disable (CAN0) supply Bus voltage internal / external (CAN0) connect Bus / disconnect Bus (CAN0) change of analog referee source change of voltage supply connect to USIC0 Channel connect to USIC0 Channel connect / disconnect LED s to V oscillator gain open assembled with assembled with open For internal use only If ORG futionality is needed ) CAN transceiver is not available to XExU series. ) The soldered part may differ from the schematic, for example Atmel 00AN. Hardware Manual V., 0-0

24 Hardware Manual XE Low End Easy Kit Board V. Getting Started Getting Started. Power Supply If more current is needed, a regulated DC power supply with max. Volts should be connected to the power connector. The maximum power dissipation of the used voltage regulator has to be taken into account. By default one green LED should be active. It indicates that the embedded voltage regulator supply the microcontroller. Note: Power supply is not part of the delivery. Figure Power Supply Connector. BMI Programming The XE Easy Kit supports Boot Mode Index (BMI) programming. This provides flexibility for the users to configure the device start-up mode. BMI value can be configured via software or tool. For details on how to program the BMI value, please refer to the User s Manual.. OCDS Debugging Interface The XE Easy Kit offers access to device via four interfaces (UART, JTAG, DAP, SPD), through a USB connection. With the FTDI chip, an on board USB JTAG wiggler has been implemented. Further, the USB interface allows to emulate a USB to UART bridge. A simple -pin JTAG/ DAP/ SPD header can be used to connect a debugger from one of Infineon s tool suppliers. Both systems ilude an On-Chip Debug Support (OCDS) system, which provides convenient debugging, controlled directly by an external device via debug interface pins.. USB Interface for UART support The USB connector is used for connection to a PC. Via the USB it is possible to power the board, using the ASC as serial connection via USB and Debugging via DAS. For the pinout of USB socket see Figure. Note: Before connecting the board to the PC, make sure that the actual DAS software is installed on the PC. For actual DAS software please contact your local FAE. The latest version of the software can also be found on the DAS website: Hardware Manual V., 0-0

25 Hardware Manual XE Low End Easy Kit Board V. Schematic Schematic VAREF VDDI PLEASE NOTE: ONLY ONE CPU (U0, U0 OR U0) IS ASSEMBLED VDDI R R 0 A VA VA A +V R0 /TESTM S0 R U0 P. XCXXX LE PIN U0 P0. R0 +V XCXXX LE_ULE PIN /TRST R +V R ESR0 ADBUS 0K P0. P0. K /TESTM P0. /TESTM P0. R TESTM P0. TESTM P0. CONFIG /TRST P0. /TRST P0. R TRST P0. TRST P0. /TRST P. P0. P. P0. P. P0. P. P0. K P. P0. P. P0. P. P0. P. P0. P. P0.0 P.0 P0. P. P0.0 P.0 P0. P.0 P0.0 P. R0 P.0 P0.0 C0 P. 0 P. P. P. 0 P. P.0 +V VAREF VAREF P. VAREF VAREF P.0 0 P. P. P. R U0 pf VA VA P. VA VA P. P.0 P.0 P.0 0 P. P.0 P.0 P.0 P. SCK VCC XTAL P. P. P. P. CB0 R R R P. P. P. P. SI P. P. P. P. P.0 R 00n 0K 0K 0K Y0 R P. P. P. P. SO P. P. MHz R opt P. P. HOLD XTAL P. P. P. P. CS WP P. P. R P. C0 ATN-0SI. +V +V pf B B +V R R K_opt K_opt U0 +V P0. R0 SCL VDD P0. CB0 SDA 00n_opt R0 D0 P0.0 +V K X0 LY TK AS ALERT R0 D0 P0. VDDI +V VDDI R ADART_opt R opt K LY TK R0 D0 P0. X0 CB0 CB0 CB0 CB0 CB CB IC_opt R K /TESTM 00n 00n 00n 00n 00n 00n opt LY TK /TRST P. R0 D0 P0. P. P. K P.0 VDDI +V LY TK R AND R ARE ASSEMBLED ONLY WITH XCXXX LE R0 VAREF 0 VA D0 P0. P.0 P. R AND R0 ARE ASSEMBLED ONLY WITH XCXXX ULE R K P. P. CB0 CB CB LY TK P. P. 0n 0n 0n P0. R U0 X0 R0 D0 P0. EN K CPUCON_opt LY TK P0. R BUS R0 TXD D0 P0. X0 VAREF +V C0 R R RXD n K K P. P. LY TK C P. P. P0. R LIN R0 WK INH C D0 P0. P.0 P. CB0 CB D0 K P. P. 00n 00n R VBAT LY TK P.0 P. 0 P0.0 R0 VS VA VA VA VDDI P. P. +V TLE CB0 C0 P. P. R 00n µf/0v BAT-0 U0 0K CPUCON_opt P.0 VAREF VAREF P.0 P. VA VA P. X0 P.0 /TRST P.0 TRST P. P. P. TESTM /TESTM P. P. P. /PORST P. PORST X0 P. P.0 P. P0. CB0 +V P. P0. SPLIT_CAN0_opt P. P. P. P0.0 U0 +V P. P0.0 P. P.0 R 0 P.0 VDDI VDDI P. R 00n VCC SPLIT P0.0 P0. 0 RXD CANH R X0 P0. P0. 0 R P0. P0. P. P0. R _opt P. P0. P. R0 TXD CANL P. P0. P. P0. STB CPUCON_opt P. P0. P. P0. P. P0. TLEDS P. P0. 0 X0 P. P0. P. P0. P0. P0. P. P0. R CAN0 P. P0. P0. P0. P. P0. P. P0. P0. P0. P.0 P0. P.0 P0. P0. P0.0 0 P0. P0.0 P0. P0.0 VDDI 0 D P0. P0. XCXXX ULE PIN ONLY WITH XCXXX LE D XTAL XTAL /PORST ESR0 P. P. P. P. P.0 P. P. P. P.0 P. P. P. P. P. 0K P.0 C0 00n PORT[..0] PORT[..0] Easy Kit XCXXX // CPU and On Board IO's Sheet: of Infineon Technologies AG ATV MC ACE PDA Number: Am Campeon - Revision:. D- Neubiberg Date:.0.00 Tel.: File: G:\Technical_Support\P\XCXXX\EDA_DXP\Easy Kit XCXXX\ V.X\Easy Kit xcxxx V.\Main.Sch P. P. P. P.0 P. P. P. P. P. 0 0 P. P. P. P. P.0 P. P. P. P.0 P. VDDI P. P. P. P. 0 P. P. P. P.0 P. VDDI P. P. P. P. ESR0 PORST XTAL XTAL P0. P0. P0.0 VDDI P0. P0. P0. P0. P0. P0. P0. PORST XTAL XTAL P0. P0.0 VDDI P0. P0. P0. P ESR0 /PORST XTAL XTAL P0. P0. P0.0 P0. P0. P0. P0. P0. P0. P0. /PORST XTAL XTAL P0. P0.0 P0. P0. P0. P0. CPUCON_opt Hardware Manual V., 0-0

26 Hardware Manual XE Low End Easy Kit Board V. Schematic Hardware Manual V., 0-0 D D C C B B A A Infineon Technologies AG ATV MC ACE PDA Am Campeon - D- Neubiberg Tel.: Number: Date: Sheet: of Easy Kit XCXXX // pin OCDS and Power Supply. Revision: G:\Technical_Support\P\XCXXX\EDA_DXP\Easy Kit XCXXX\ V.X\Easy Kit xcxxx V.\OCDS_Power.sch File: EECS EECLK EEDATA TEST SUSPEND OSCI DM VREGOUT RESET A 0 OSCO DP REF VREGIN 0 VCCIO 0 VCCIO ADBUS0 ADBUS ADBUS ADBUS ADBUS ADBUS ADBUS ADBUS ACBUS0 ACBUS ACBUS BDBUS0 BCBUS0 BDBUS BCBUS BDBUS 0 BCBUS BDBUS BDBUS BDBUS BDBUS BDBUS ACBUS ACBUS 0 ACBUS ACBUS ACBUS BCBUS BCBUS BCBUS BCBUS BCBUS PWREN 0 VCORE VCORE VCORE VCCIO VCCIO VPLL VPHY U0 FTHL ORG DNC VCC CS Q CLK D U0 LCB-I/SN P0 USB Connector R0 R R0 R VDD_USB R0 0K R0 opt R0 K CB0 00n G A Y A Y A Y A Y VCC 0 0 Y Y Y Y G A A A A U0 SNAHCPW D0 MBRS0T C0 µf/0v CB0 00n VBAT C0 µf/0v X0 POWER OUT IN U0 TLEDV P0. P0.0 R K +V TMS TDO CPUCLOCK TDI TRST TCLK BRKIN N.C. VCC PORST BRKOUT 0 OCDSE KEY X0 OCDS +V P. P. P0. P. /TRST /PORST /PORST R K D0 LS TK Q0 BCC +V R K CB0 00n S0 RESET /PORST R K +V R K D0 LP TK PORT[..0] RO BUC VCC VS R BDS BUO U0 TLEG_opt CB0 0n_opt R K_opt R 00K_opt C0 0n_opt C0 0n_opt L0 DOP-_opt D0 SS_opt CB0 0n_opt BDBUS0 BDBUS C0 00µF/0V_opt +V VDD_USB VDD_REG JP0 POWER Q0 BSSN Q0 BSSN Q0 BSSN Q0 BSSN R K R0 0K R0 0K R 0K R 0K +V +V Q0 BSLSP R K SWITCHED_VDD_USB C0 00n VREF KEY DAP DAP0 USER_IN USER0_IO RESET 0 X0 DAPWIRE +V /PORST P0. P. /TRST R R DIR VCCA VCCB A B U0 SNLVCTDBV R0 K Y0 NXSA-MHz C0 pf C pf R0 K/% C,uF L0 MMZ00A CB0 00n CB 00n CB 00n CB 00n C0 0µ/V CB 00n OUT IN U0 TLEGSV CB0 00n CB0 00n CB0 00n C0 u/v CB0 00n L0 MMZ00A C0 u/v CB 00n +V R 0K R 0K R 0K CB 00n CB 00n +V ADBUS0 ADBUS ADBUS ADBUS ADBUS ADBUS ADBUS ADBUS ACBUS0 ACBUS R0 0K +V P. P. /TRST P. /RESET R K D0 LB TK R 0 P0. ADBUS0 ADBUS ADBUS ADBUS ADBUS ADBUS ACBUS0 ACBUS BDBUS0 BDBUS P0. R0 0K ACBUS /ENABLE Q0 BSSN Q0 BSSN R0 0K D0 LP TK R /OE VCC A Y U0 LVCG CB 00n ACBUS ADBUS ADBUS R 0K ACBUS ACBUS R 0K ACBUS R _opt R 0K R K R K +V /PORST D0 BAT /TRST P. P. P. P0. +V CB 00n +V ADBUS ADBUS Q0 BSSN R 0K R0 0K R 0K /ENABLE Q0 BSSN +V R _opt R 0K

27 Published by Infineon Technologies AG

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