Z8F80147930_V01 INFINEON | Alldatasheet

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Customer evaluation kit description PROFET™ About this document Scope and purpose This document provides an overview of the latest high-side switches evaluation boards. The user manual is intended as guidance for the Configuration Wizard and its usage related to the customer evaluation kit. The information given in this document is intended only as an implementation guide and not as a description or warranty of a certain functionality, condition or quality of the device. Intended audience This document is intended for anyone using boards of IPD with or without the IPD Configuration Wizard. Table of contents

2.3 PROFET

3.2 PROFET

4.1 PROFET

Application note Please read the Important Notice and Warnings at the end of this document Rev. 1.00 www.infineon.com 2021-05-19

1 Evaluation kit overview [MB & DB]

The PROFET™ +2 12V customer evaluation kit consists of a motherboard (MB) and a daughterboard (DB). Figure 1 below shows the DB [2] plugged onto the MB [1]. [1] [2] [1] [2] Figure 1 PROFET ™ +2 12V MB [1] and DB [2] Application description

  • The MB is designed to handle all devices within the PROFET ™ +2 12V family - 1-channel, 2-channel or 4-channel PROFET ™ +2 12V devices (DBs) can be plugged onto the MB
  • It is suitable for the evaluation of resistive, capacitive and/or inductive loads
  • The evaluation can either be done directly or with the Config Wizard for IPD (see Chapter 5) Note: • The board is not designed for EMC characterization, including ISO pulses
  • The board design is not optimized for thermal performance characterization Customer evaluation kit description PROFET™

Application note 2 Rev. 1.00 2021-05-19

Table 1 Available daughterboards Name Picture TSDSO-14: 1-channel TSDSO-14: 2-channel TSDSO-14: 4-channel TSDSO-24: 1-channel PROFET™ +2 12V (2-channel) YES YES NO NO PROFET™ +2 12V (4-channel) NO NO YES NO PROFET™ +2 12V 14/24 pin YES NO NO YES Table 2 Recommended MB depending on DB Naming Motherboard V2.0 Motherboard V3.0 Picture PROFET™ +2 12V (1-channel and 2-channel) YES YES PROFET™ +2 12V (4-channel) YES YES PROFET™ +2 12V 14/24 pin YES YES Customer evaluation kit description PROFET™ Application note 3 Rev. 1.00 2021-05-19

2 Motherboards [MB]

Figure 2 and Table 3 below illustrate the location of the connectors and jumpers. The names of the jumpers are printed next to them. Chapter 2.1 provides detailed information. [6] [5] [4][4] [3][3] [6] [5] [4] [3] Figure 2 PROFET ™ +2 12V MB - connectors and jumpers Table 3 PROFET ™ +2 12V MB connectors and jumpers # Description

1 PROFET™ +2 12V motherboard (see Figure 1)

2 PROFET™ +2 12V daughterboard (see Figure 1)

3 TVS Diode (device protection)

4 J_RGND (GND resistor selection)

5 J_SENSE1, J_SENSE2 (sense configuration)

6 µIO connectors of the PROFET™ +2 12V MB (optional: microcontroller) Customer evaluation kit description PROFET™ Application note 4 Rev. 1.00 2021-05-19

2.1 Detailed information

The two µIO connectors of the PROFET™ +2 12V MB [6] are used to connect the motherboard with the µIO-Stick 1) (for further information see Chapter 5). The connector marked as uIO can only be used for 1-channel and 2-channel devices, whereas the connector marked with TB also can be used for 4-channel devices. The yellow circles illustrated in Figure 3 and Figure 4 indicate the position of the pin 1 indicator. In order to avoid overvoltages on the MB it is possible to close the solder bridge X2 which connects a TVS diode between VS and GND. Figure 3 and Table 4 show the solder bridge X2, the TVS diode [3] and the two µIO connectors of the PROFET™ +2 12V MB. [6]1 1 12 [3] [6]1 1 12 [3] Figure 3 Position of X2, uIO and TB Table 4 TVS diode [3] Position Description yellow circle Solder bridge X2, opened by default, close to enable overvoltage protection yellow square TVS diode Figure 4 and the tables below illustrate the jumpers, as well as the positions of the jumpers. The description of the positions is given in Table 5 (J_RGND [4]) and Table 6 (J_SENSE1, J_SENSE2 [5]). [5][4] 1 2 3 2 3 [5][4] 1 2 3 2 3 Figure 4 Jumper positions Table 5 below lists the description of the three jumper positions of J_RGND [4]. All jumpers are open by default. Table 5 J_RGND [4] jumper positions # Description

1 The PROFET™ +2 12V DB ground is connected to the MB module ground via 150 Ω

2 The PROFET™ +2 12V DB ground is connected to the MB module ground via 47 Ω resistor

3 The PROFET™ +2 12V DB ground is connected to the MB module ground via 0 Ω resistor

1 The Infineon µIO-Stick can be ordered at https://www.ehitex.de/en/. Customer evaluation kit description PROFET™ Application note 5 Rev. 1.00 2021-05-19

Table 6 below lists the description of J_SENSE1 and J_SENSE2 jumpers [5], as well as their positions and the position of pin 1. In order to convert the IS current into a voltage, J_SENSE2 [3] needs to be closed. In case of using a different sense resistor, either replace RIS or use an external resistor. Therefore, remove J_SENSE2 [3] and close JSENSE [1] to enable a direct path from the IS pin of the device to the banana connector. All jumpers are open by default. Table 6 J_SENSE1/J_SENSE2 [5] jumper positions # Description J_SENSE1 [1] It connects the IS pin of the device directly to the banana connector of the MB and disables the on-board filter of the IS J_SENSE1 [2] It connects the IS pin of the device after the on-board filter to the banana connector of the MB J_SENSE2 [3] It connects the IS pin of the device to the 1.2 kΩ sense resistor RIS and to the μIO connectors 2.2 PROFET ™ +2 12V motherboard V2.0 Figure 5 shows the block diagram of the PROFET™ +2 12V MB. It provides an overview of the locations of jumpers and connectors. GND VS INO DEN IS DSEL0 IN2 IN3 IN1 DSEL1 OUT0 OUT1 OUT2 OUT3 PROFET™+2 Daughterboard Out0 Out1 Out3 Out2 150R 47R GN D circuit J_GND1 Device GND IN0 DEN IS DSEL0 IN2 IN3 DSEL1 IN1 4k7 4k7 4k7 4k7 4k7 4k7 4k7 4k7 RAD RIS_ PRO T J_SEN SE1 1 1 J_SEN SE2 RIS DZ CSENSE GND Sense circuit ISIN0DENDSEL0 IN1 uIO TB ISIN0DENDSEL0 IN1 IN2IN3DSEL1µIO Connectors GND GND VS INO DEN IS DSEL0 IN2 IN3 IN1 DSEL1 OUT0 OUT1 OUT2 OUT3 PROFET™+2 Daughterboard Out0 Out1 Out3 Out2 150R 47R GN D circuit J_GND1 Device GND IN0 DEN IS DSEL0 IN2 IN3 DSEL1 IN1 4k7 4k7 4k7 4k7 4k7 4k7 4k7 4k7 RAD RIS_ PRO T J_SEN SE1 1 1 J_SEN SE2 RIS DZ CSENSE GND Sense circuit ISIN0DENDSEL0 IN1 uIO TB ISIN0DENDSEL0 IN1 IN2IN3DSEL1µIO Connectors GND Figure 5 Block diagram of the PROFET ™ +2 12V MB V2.0 Customer evaluation kit description PROFET™ Application note 6 Rev. 1.00 2021-05-19

The device can be controlled with or without the µIO-Stick (see Chapter 2.1, Chapter 5). Table 7 below explains the functionality of all jumpers as well as the purpose of the connectors shown in the block diagram above (Figure 5). Table 7 PROFET ™ +2 12V MB connectors and jumpers Name Description VS Connection of the supply voltage GND Connection of the GND module OUT0 OUT0 from the PROFET™ +2 12V OUT1 OUT0/OUT1 2) from the PROFET™ +2 12V OUT2 OUT1/OUT2 3) from the PROFET™ +2 12V OUT3 OUT1/OUT3 3) from PROFET™ +2 12V IN0, IN1, IN2, IN3 External input control of the PROFET™ +2 12V device with serial 4.7 kΩ resistors DEN External control of DEN pin with serial 4.7 kΩ resistor; enables/disables the diagnosis functions of the device DSEL0, DSEL1 External control of DSELx pins with serial 4.7 kΩ resistor to select a dedicated channel for diagnosis feedback IS Sense output of the PROFET™ +2 12V (see Chapter 2.1) J_GND J_GND is used to connect the PROFET™ +2 12V to the motherboard's GND network. It is also possible to choose between three ground resistors (150 Ω, 47 Ω, 0 Ω) (see Chapter 2.1) J_SENSE1 Used to enable/disable the sense filtering (see Chapter 2.1) J_SENSE2 J_SENSE2 either enables the connection to a 1.2 kΩ onboard-resistor or a direct connection to the IS connector on the motherboard to add an external RSENSE with different values (see Chapter 2.1) µIO-Connectors The PROFET™ +2 12V demoboard can either be used with external sources or with the µIO-stick by means of the Infineon Config Wizard (see Chapter 2.1, Chapter 5) 2 If a 1-channel or 2-channel device is used, OUT0 and OUT1 are connected to OUT0 of the device connector. 3 If a 2-channel device is used, OUT3 and OUT4 are connected to OUT1 of the device connector. Customer evaluation kit description PROFET™ Application note 7 Rev. 1.00 2021-05-19

Figure 6 Motherboard V2.0 schematic Figure 7 Motherboard V2.0 PCB top view Customer evaluation kit description PROFET™ Application note 8 Rev. 1.00 2021-05-19

Figure 8 Motherboard V2.0 PCB bottom view 2.3 PROFET ™ +2 12V motherboard V3.0 As a new option, the PROFET™ +2 12V motherboard V3.0 provides the possibility to easily plug in further PROFET™ devices with a DB. In comparison to the PROFET™ +2 12V motherboard V2.0, this improvement allows the use of more PROFET™ devices. Figure 9 shows the changes of the GND path. There are two jumpers: J_GND and J_RGND. Using J_GND enables modification of the ground resistor value at four different positions. Figure 10 shows the possible jumper positions and Table 8 contains the description of the four possible jumper positions and their values. Device GND RGND2 150Ω RGND1 47Ω RGND 47Ω DGND J_RGND GND 1 2 3 4 J_GND BAS21 Figure 9 Motherboard V3.0 GND schematic Customer evaluation kit description PROFET™ Application note 9 Rev. 1.00 2021-05-19

Figure 10 Motherboard V3.0 GND path layout Table 8 Motherboard V3.0 J_GND jumper positions # Description

1 The PROFET™ +2 12V DB ground is connected to the MB module ground via a 150 Ω

2 The PROFET™ +2 12V DB ground is connected to the MB module ground via a 47 Ω

3 The PROFET™ +2 12V DB ground is connected to the MB module ground via a 47 Ω

resistor and a serial diode (BAS21-03W)

4 The PROFET™ +2 12V DB ground is connected to the MB module ground via a 0 Ω resistor

3 + 5 The PROFET™ +2 12V DB ground is connected to the MB module ground via a serial diode (BAS21-03W) Customer evaluation kit description PROFET™ Application note 10 Rev. 1.00 2021-05-19

Figure 11 Motherboard V3.0 schematic Figure 12 Motherboard V3.0 PCB top view Customer evaluation kit description PROFET™ Application note 11 Rev. 1.00 2021-05-19

Figure 13 Motherboard V3.0 PCB bottom view Customer evaluation kit description PROFET™ Application note 12 Rev. 1.00 2021-05-19

3 Daughterboards [DB]

3.1 PROFET ™ +2 12V 2-channel daughterboard

Figure 14 below shows the PROFET™ +2 12V DB in top and bottom view. As can be seen, depending on the required product (1-channel or 2-channel), this device is located on the DB. The DB is plugged onto the MB. Figure 14 PROFET ™ +2 12V 2-channel daughterboard top and bottom view

3.2 PROFET ™ +2 12V 4-channel daughterboard

Figure 15 below shows the PROFET™ +2 12V DB in top view. As can be seen, depending on the required product (4-channel), this device is located on the DB. The DB is plugged onto the MB. Figure 15 PROFET ™ +2 12V 4-channel daughterboard top and bottom view Customer evaluation kit description PROFET™ Application note 13 Rev. 1.00 2021-05-19

4 Evaluation boards [EB]

Note: Depending on the evaluation board, compatibility with the Infineon Toolbox and Config Wizard can not be guaranteed. Please check the availability of softw ar e for each board.

4.1 PROFET ™ +2 12V Arduino H-bridge evaluation board

This chapter provides a quick introduction to the Arduino H-bridge evaluation board, which is designed to handle the H-bridge configuration of all 2-channel devices in the PROFET™ +2 12V family. The intention of the evaluation board is to give customers a quick start for lab evaluation of the performance of this board. Note: Its recommended to use the Arduino H-bridge evaluation board with 5 V compatible Arduino microcontroller boards. Figure 16 Arduino H-bridge evaluation board Default assembly As seen in Figure 16 and Figure 19 some parts are not mounted on default assembling. The following parts are not mounted:

  • C2_2 with 470 µF
  • R_EXT of the BCR320U circuit BCR320U circuit This circuit includes a red LED, an LED driver (BCR320U) and a footprint for the R_EXT resistor. The BCR320U circuit is placed in parallel to the IC. The LED indicates if the PROFET™ +2 12V device is supplied. With the additional external resistor the current flow can be adjusted. The higher the current flow, the brighter the LED4 shines. For more information see the datasheet of the BCR320U LED driver. Customer evaluation kit description PROFET™

Application note 14 Rev. 1.00 2021-05-19

The Arduino H-bridge evaluation board can be controlled via Arduino board. See Figure 18 and Figure 19 of the pinout for the Arduino board. The Arduino pin connections are written in cyan font color. Figure 18 Arduino H-bridge pinout Table 9 Board connectors and functions Connector Function VS Supply pin connects the positive supply voltage to this pin (table continues...) Customer evaluation kit description PROFET™ Application note 15 Rev. 1.00 2021-05-19

Table 9 (continued) Board connectors and functions Connector Function GND Ground pin connects the supply ground to this pin IN0 Input signal of channel 0 of IC turns the device on/off and resets the fault if triggered

3.3 V or 5 V logical input

IN1 Input signal of channel 1 of IC turns the device on/off and resets the fault if triggered DEN Sense enable signal of IC measurements at the IS pin are now possible and in addition it resets the counter if a fault is triggered DSEL Diagnostic select signal selects the channel to be diagnosed connects a grounded load to this pin, such as a power resistor, a bulb or 12 V heating elements OUT1 Output 1 of IC connects a grounded load to this pin, such as a power resistor, a bulb or 12 V heating elements LS0 Low side pin 0 enables the low-side 0, input signal of channel 0 of IC T500/T501 LS1 Low side pin 1 enables the low side 1, input signal of channel 1 of IC T500/T501 MOTOR 2 pins for connecting the motor Customer evaluation kit description PROFET™ Application note 16 Rev. 1.00 2021-05-19

Figure 19 PROFET ™ +2 12V Arduino H-bridge evaluation board schematic Figure 20 Arduino H-bridge top layout Customer evaluation kit description PROFET™ Application note 17 Rev. 1.00 2021-05-19

Figure 21 Arduino H-bridge bottom layout Bill of materials Table 10 Arduino H-bridge evaluation board BOM Designator Comment Manufacturer Manufactuer order number C1, C506, C507 100 nF TDK Corporation C1005X7R1H104K050BE C2 220 nF MuRata GRM21BR71H224KA01 C2_2 470 μF Nippon Chemi-Con EMHS500ARA471MKG5S C500, C505, C_SENSE 220 nF TDK Corporation CGA2B3X7R1E224K050BB C508, C509, C510, C511 10 nF AVX 06035F103K4Z2A COUT0, COUT1 10 nF AVX 06035C103K4Z2A CVS 100 nF AVX 06035C104K4Z2A CVSGND 47 nF MuRata GRM155R61H473KE19 D0, DZ2 Bourns SMAJ26CA-Q D_Z1 6.20 V Vishay BZX584C6V2-V-G-08 DEN, DSEL, GND, IN0, IN1, IS, LS0, LS1, OUT0, OUT1, VS Vero Technologies 20-2137 DR0 Infineon Technologies BCR320U DZ 5.60 V Vishay BZX584C5V6-V-G DZ3 10 V Nexperia BZT52H-B10,115 IC Infineon Technologies BTS7040-2EPA LED0, LED1, LED2, LED3 Yellowish green ROHM Semiconductors SML-P12MTT86R LED4 Red ROHM Semiconductors SML-P12UTT86R MOTOR, SUP Camden Boss CTB5000/2 (table continues...) Customer evaluation kit description PROFET™ Application note 18 Rev. 1.00 2021-05-19

Table 10 (continued) Arduino H-bridge evaluation board BOM Designator Comment Manufacturer Manufactuer order number Q1 Infineon Technologies IPD90P03P4L-04 R1, R100 10 kΩ Vishay CRCW040210K0FK R101, R_PROT1, R_PROT2 2.2 kΩ Vishay CRCW04022K20FK R513, R516 470 Ω Vishay CRCW0402470RFK R514, R515 100 kΩ Vishay CRCW0402100KFK R_ADC 4.7 kΩ Yageo RC0603FR-074K7L R_EXT R_LED0, R_LED1, R_LED2, R_LED3 220 Ω Vishay CRCW0402220RFK RDEN, RDSEL, RIN0, RIN1 4.7 kΩ Yageo RC0402FR-074K7L RGND 47 Ω Vishay CRCW060347R0FK RSENSE 1.2 kΩ Vishay CRCW04021K20FK T500/T501 Infineon Technologies IPG20N04S4-18A X1 Samtec TSW-110-07-L-S X2, X4 Samtec TSW-108-23-F-S X3 Samtec TSW-106-07-L-S X_DZ2 Solder jumper 2 pins Customer evaluation kit description PROFET™ Application note 19 Rev. 1.00 2021-05-19

5 So ftw ar e (optional)

The PROFET™ +2 12V MB can either be used directly or with the ConfigWizard for IPD. Accessing the software requires the Infineon Toolbox to be installed. Download the Infineon Toolbox.

5.1 GUI description

The Infineon Config Wizard is designed to support an easy configuration of Infineon devices. configure Infineon devices easily. The graphical user interfaces (GUI) are product specific and not intended for detailed evaluation (use). 5.1.1 µIO-Stick The Infineon µIO-Stick is the required tool to connect the Config Wizard to a device. Figure 22 shows the μIO-Stick which is delivered with a 16-pin ribbon cable that enables to connect the µIO-Stick to the MB. Figure 22 Infineon µIO-Stick with ribbon cable To connect the MB with the µIO-Stick please refer to µIO connector uIO and µIO connector TB. Figure 23 below illustrates the µIO-Stick connected to the PROFET™ +2 12V MB. Figure 23 Infineon µIO-Stick connected to the PROFET ™ +2 12V MB Customer evaluation kit description PROFET™ Application note 20 Rev. 1.00 2021-05-19

5.1.2 Start screen

Figure 24 shows the start screen of the Config Wizard for IPD. It provides tile-like buttons named according to the product families. Figure 24 Config Wizard for IPD start screen Note: The number of tiles shown to users can vary depending on product extensions such as for example new product families or types. Clicking on the tile with the product family of choice leads to a rearrangement of the GUI, allowing users to select the required type of product. Figure 25 shows the type selection screen for the different product types (1-channel, 2-channel, 4-channel) of the PROFET™ +2 12V family. In the upper left corner a back button is available that enables going one step backwards. Figure 25 Config Wizard for IPD type-selection screen of PROFET™ +2 12V Customer evaluation kit description PROFET™ Application note 21 Rev. 1.00 2021-05-19

Clicking on the tile with the product type of choice leads again to a rearrangement of the GUI (see Chapter 5.1.3).

5.1.3 PROFET ™ +2 12V GUI

The GUI for PROFET™ +2 12V provides buttons to control the GPIOs of the µIO-Stick. The GPIOs are connected to the pins of the device (as INx, DEN and DSELx). As such, the buttons control the logic state applied to the pins of the device. Figure 26 shows the device screen of the PROFET™ +2 12V GUI for a 2-channel device. Figure 26 PROFET ™ +2 12V device screen (2-channel) The state of the buttons is visualized by alternating icons and lamp elements. The names of the buttons reflect the actions they perform, such as Set IN0 HIGH or once a button has been clicked, Set IN1 LOW. In addition, as shown in Figure 27, a lamp element indicates whether a button has been clicked or not. Once the lamp element is green, the corresponding pin is activated. Figure 27 PROFET ™ +2 12V functional view – GPIO controlling toggle-buttons As seen in Figure 27 and Figure 28, also PWM functionality is given for channels 0 and 1. It can be activated by ticking the PWM checkbox. The button then adapts to PWM1 ON and the lamp-element will stay grey. PWM frequency and PWM duty-cycle can be set via the two spinboxes below the checkbox. Customer evaluation kit description PROFET™ Application note 22 Rev. 1.00 2021-05-19

Figure 28 PROFET ™ +2 12V functional view: – IN0 as logic input, IN1 as PWM input The possibility to display the sense current IS is also given, it is converted into a measurable voltage via a resistor. This voltage is measured by an analog-to-digital converter (ADC) on the µIO-stick and visualized by the GUI. Figure 28 displays the GUI plot of the digitalized data set imported. As shown in Figure 29, clicking the Set DEN HIGH button, displays the sense current automatically and the button changes to Set DEN LOW while the color of the lamp element turns green. Figure 29 PROFET ™ +2 12V functional view – Sense current display for OUT0 It is also possible to switch between the sense and load current display. As shown in Figure 30, by selecting a device in the display section, the corresponding factor kILIS is mapped and the load current is calculated with the defaults of the PROFET™ +2 12V MB. Next to the device selection is the Switch to IL button, which can be used to switch between sense and load current. After clicking this button, Switch to IS is displayed. Figure 29 illustrates this. Customer evaluation kit description PROFET™ Application note 23 Rev. 1.00 2021-05-19

Figure 30 PROFET ™ +2 12V functional view – Device selection Figure 31 PROFET ™ +2 12V functional view – Switching from IS to IL Figure 32 shows the small box titled Filter activated? included in the diagnosis display section. It is used to specify whether sense filtering on the MB is activated (see Chapter 2.1 for further information). This setting serves to display the sense/load current and the sense voltage correctly. J_SENSE2 is set & J_SENSE1 is set to position #1 or #2 only J_SENSE2 is set & J_SENSE1 is set in Position #1 and #2 to short the filter Figure 32 “Filter activated?”- box in diagnosis display section – Meaning of “Yes”/”No” Customer evaluation kit description PROFET™ Application note 24 Rev. 1.00 2021-05-19

6 Appendix

Table 11 Available demoboards: PROFET ™ +2 12V Product ISaR name Internet link PROFET™ +2 12V motherboard V2 PROFET™ PLUS2 MOTH BRD https://www.infineon.com/profet-plus2-moth-brd BTS7008-1EPA BTS7008-1EPA DAUGH BRD https://www.infineon.com/bts7008-1epa-daugh-brd BTS7010-1EPA BTS7010-1EPA DAUGH BRD https://www.infineon.com/bts7010-1epa-daugh-brd BTS7012-1EPA BTS7012-1EPA DAUGH BRD https://www.infineon.com/bts7012-1epa-daugh-brd BTS7040-1EPA BTS7040-1EPA DAUGH BRD https://www.infineon.com/bts7040-1epa-daugh-brd BTS7008-2EPA BTS7008-2EPA DAUGH BRD https://www.infineon.com/bts7008-2epa-daugh-brd BTS7010-2EPA BTS7010-2EPA DAUGH BRD https://www.infineon.com/bts7010-2epa-daugh-brd BTS7012-2EPA BTS7012-2EPA DAUGH BRD https://www.infineon.com/bts7012-2epa-daugh-brd BTS7020-2EPA BTS7020-2EPA DAUGH BRD https://www.infineon.com/bts7020-2epa-daugh-brd BTS7030-2EPA BTS7030-2EPA DAUGH BRD https://www.infineon.com/bts7030-2epa-daugh-brd BTS7040-2EPA BTS7040-2EPA DAUGH BRD https://www.infineon.com/bts7040-2epa-daugh-brd BTS7080-2EPA BTS7080-2EPA DAUGH BRD https://www.infineon.com/bts7080-2epa-daugh-brd BTS7120-2EPA BTS7120-2EPA DAUGH BRD https://www.infineon.com/bts7120-2epa-daugh-brd BTS7200-2EPA BTS7200-2EPA DAUGH BRD https://www.infineon.com/bts7200-2epa-daugh-brd BTS7200-4EPA BTS7200-4EPA DAUGH BRD https://www.infineon.com/bts7200-4epa-daugh-brd BTS7200-2EPC BTS7200-2EPC DAUGH BRD https://www.infineon.com/bts7200-2epc-daugh-brd µIO-Stick DAP-miniWiggler V3 (hitex name) https://www.ehitex.de/en/

7 Revision history

Document version Date of release Description of changes 1.00 2021-05-19 PROFET™ customer evaluation kit description available Customer evaluation kit description PROFET™ Application note 25 Rev. 1.00 2021-05-19

All referenced product or service names and trademarks are the property of their respective owners. Edition 2021-05-19 Published by Infineon Technologies AG

81726 Munich, Germany

© 2021 Infineon Technologies AG All Rights Reserved. Do you have a question about any aspect of this document? Email: erratum@infineon.com Document reference IFX-rgj1553757446915 IMPORTANT NOTICE The information given in this document shall in no event be regarded as a guarantee of conditions or characteristics (“Beschaffenheitsgarantie”). With respect to any examples, hints or any typical values stated herein and/or any information regarding the application of the product, 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. In addition, any information given in this document is subject to customer’s compliance with its obligations stated in this document and any applicable legal requirements, norms and standards concerning customer’s products and any use of the product of Infineon Technologies in customer’s applications. The data contained in this document is exclusively intended for technically trained staff. It is the responsibility of customer’s technical departments to evaluate the suitability of the product for the intended application and the completeness of the product information given in this document with respect to such application. WARNINGS Due to technical requirements products may contain dangerous substances. For information on the types in question please contact your nearest Infineon Technologies office. Except as otherwise explicitly approved by Infineon Technologies in a written document signed by authorized representatives of Infineon Technologies, Infineon Technologies’ products may not be used in any applications where a failure of the product or any consequences of the use thereof can reasonably be expected to result in personal injury.