ic-mcw EVAL MCW1D EVALUATION KIT DESCRIPTION

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1 Rev A2, Page 1/11 ORDERING INFORMATION This evaluation kit includes the evaluation board MCW1D (assembled with ic-mcw QFN24), and an USB (A-B) cable for PCs. Type Description Options Order Designation Evaluation kit evaluation board MCW1D ic-mcw EVAL MCW1D USB (A-B) cable Package Weight approx. < 0.5 kg Figure 1: Evaluation board MCW1D ORDERING INFORMATION: RECOMMENDED TOOLS Type Description Options Order Designation PC Adapter BiSS-to-PC adapter (USB) For BiSS master ic-mb3 icsy MB3U PC Adapter BiSS-to-PC adapter (USB) For BiSS master ic-mb3 icsy MB3U-I2C PC Adapter High performance For BiSS master ic-mb4 icsy MB4U BiSS-to-PC adapter (USB) PC Adapter High performance BiSS-to-PC adapter (USB) For BiSS master ic-mb5 icsy MB5U BiSS Slave Eval Board BiSS Safety Slave emulation eval board For BiSS Safety Slave al Mode 6 BiSS Safety RMS Profile ic-mcb EVAL MCB1D Figure 2: Adapter MB4U Copyright 2018 ic-haus

2 Rev A2, Page 2/11 EVALUATION KIT: COMPONENTS Figure 3: Evaluation kit. Scope of delivery: evaluation board MCW1D, USB (A-B) cable Figure 4: USB (A-B) cable (hub not included)

3 Rev A2, Page 3/11 RELATED PRODUCTS AND DOCUMENTATION IC Documentation: ic-mcw. Please check website for contact information. IC Software Manual: ic-mcw Evaluation Software Manual. Please check software ZIP packages for related PDF. IC Software Installer: ic-mcw Evaluation Software ZIP Packages. Please check ic-mcw software ZIP installer packages. Evaluation Software ic-mcw with RTE Evaluation Software ic-mcw without RTE BiSS-to-PC Adapter Descriptions IC Documentation: ic-mcb. ic-mcb EVAL MCB1D for BiSS Safety RSM Profile Slaves Setup Emulation. Please check website for contact information.

4 Rev A2, Page 4/11 EVALUATION BOARD MCW1D PLUG J1 J2 J3 J4 J5 J6 J7 J8 J9 J10 J11 COMMUNICATION BiSS Interface (to master) BiSS Interface RJ45 (to master) BiSS Interface (to encoder/slave) BiSS Interface RJ45 (to encoder/slave) USB B Interface (MCU) UART Interface (MCU) MCU Programming Interfaces EVAL Interface (prepared for further applications) Diff. MAO-SLI Interface Diff. SLI Interface Diff. MA Interface Figure 5: Evaluation board MCW1D (top view); size approx. 80 mm x 100 mm TML SUPPLY VDD +5 V Supply Input ( 80 ma; remove JP2 if in use) GND Ground (0 V) BUTTON FUNCTION RESET Reset ic-mcw ERRCLR Clear Error MCU and ic-mcw LED D1 D2 D3 D4 D5 D6 D7 INDICATION VDD indication Cross Compare (CCMP) Error Indication (prepared for further applications) Sign-Of-Life (LC) Error Indication Position Compare (POS) Error Indication CRC SPW (CRCS) Error Indication CRC CPW (CRCC) Error Indication ic-mcw Error Pin (ERR) Indication JUMPER FUNCTION JP1 Jumper group FTDI to MCU and ic-mcw, removable signals JP2 VDD Link to +5 V of J1 (module supply via BiSS Interface) JP3 VDD Link to +5 V of J8 (module supply via additional MCW1D) JP4 ic-mcw or MCU Mode selection (PTA6) JP5 GND to SHIELD BiSS (solderable) JP6 FTDI supply (V5_FDTI) to VDD_IO JP7 USB Supply to V5_FDTI JP8 GND to USB_Shield (solderable)

5 Rev A2, Page 5/11 PHYSICAL DIMENSIONS PCB size approx. 80mm x 100mm. Figure 6: ic-mcw EVAL MCW1D (top side)

6 Rev A2, Page 6/11 PINOUT OF CONNECTORS AND TERMINALS BiSS IN 9-pin D-Sub connector J1 - female PIN Name 1 VB_IN +12 V Supply Voltage (line in) 2 MA + Master Clock Input 3 MA - Master Clock Input (inverted) 4 VDD_IN +5 V Supply Voltage (line in) 5 SLI - Slave Data Input (inverted) 6 GND_BiSS 0 V Ground (line in) 7 SL + Slave Data 8 SL - Slave Data (inverted) 9 SLI + Slave Data Input BiSS IN 10-pin RJ45 connector J2 - female PIN Name 1 SL + Slave Data 2 SL - Slave Data (inverted) 3 MA + Master Clock Input 4 SLI + Slave Data Input 5 SLI - Slave Data Input (inverted) 6 MA - Master Clock Input (inverted) 7 VB_IN +12 V Supply Voltage (line in) 8 GND_BiSS 0 V Ground (line in) B GND_BiSS 0 V Ground (line in) A VDD_IN +5 V Supply Voltage (line in) SHLD SHIELD_IN Shield_In BiSS OUT 9-pin D-Sub connector J3 - male PIN Name 1 VB_OUT +12 V Supply Voltage 2 MAO + Master Clock Output 3 MAO - Master Clock Output (inverted) 4 VDD_OUT +5 V Supply Voltage 5 SLO - Slave Data Output (inverted) 6 GND_BiSS 0 V Ground 7 SL + Slave Data 8 SL - Slave Data (inverted) 9 SLO + Slave Data Output BiSS OUT 10-pin RJ45-Sub connector J4 - female PIN Name 1 SL + Slave Data 2 SL - Slave Data (inverted) 3 MAO + Master Clock Output 4 SLO + Slave Data Output 5 SLO - Slave Data Output (inverted) 6 MAO - Master Clock Output (inverted) 7 VB_OUT +12 V Supply Voltage 8 GND_BiSS 0 V Ground A VDD_OUT +5 V Supply Voltage B GND_BiSS 0 V Ground SHLD SHIELD_OUT Shield_Out USB Interface (MCU) USB-B 4-pin connector J5 PIN Name 1 VBUS USB Supply Voltage (4.75 V V) 2 DATA- Neg. USB Digital Data Port Input/Output 3 DATA+ Pos. USB Digital Data Port Input/Output 4 GND USB Ground S Shield USB Shield UART Interface (MCU) 6-pin connector J6 PIN Name 1 GND Ground 2 n.c. 3 n.c. 4 TXD UART Transmit Data (to MCU) 5 RXD UART Receive Data (from MCU) 6 n.c. MCU Programming Interface (SWD) 10-pin connector J7 PIN Name 1 VDD Supply Voltage (3.0 V V) 2 PTA4 Data In and Out (SWD_DIO) 3 GND Ground 4 PTA0 Data Clock (SWD_CLK) 5 GND Ground 6 n.c. 7 n.c. 8 n.c. 9 n.c. 10 PTA5 Analog/Digital Port (MCU) EVAL Interface 6-pin connector J8 PIN Name 1 VDD Jumperable Supply Voltage (3.0 V V) 2 GND Ground 3 PTC5 External IRQ Input Port (MCU) 4 PTC3 Analog/Digital Port (MCU) 5 PTA3 Analog/Digital Port (MCU) 6 PTC2 Analog/Digital Port (MCU) 7 PTA2 Analog/Digital Port (MCU) 8 PTC1 Analog/Digital Port (MCU) 9 PTC0 Analog/Digital Port (MCU) 10 PTB6 Analog/Digital Port (MCU)

7 Rev A2, Page 7/11 DESCRIPTION OF JUMPERS Jumper JP1-1 UART TXD FTDI to MCU Jumper JP1-8 IRQ ic-mcw to FTDI Jumper JP1-2 UART RXD MCU to FTDI Jumper JP1-9 EVAL GND to FTDI Jumper JP1-3 Jumper JP1-4 Jumper JP1-5 Jumper JP1-6 SPI SCLK FTDI to ic-mcw (ic-mcw mode required) SPI MOSI FTDI to ic-mcw (ic-mcw mode required) SPI MISO ic-mcw to FTDI (ic-mcw mode required) SPI NCS FTDI to ic-mcw (ic-mcw mode required) Jumper JP1-10 EVAL VDD to FTDI Jumper JP2 Jumper JP3 Jumper JP4 Jumper JP6 VDD supplied by BiSS connector J1 Connect +5 V to supply terminal VDD VDD supplied by EVAL Interface connector J8-1 Connect +5 V to supply terminal VDD MCU Mode ic-mcw Mode (MCU SPI signals are disabled) FTDI I/O connected to FTDI_VDD Jumper JP1-7 ic-mcw ERR ic-mcw to FTDI Jumper JP7 USB Supply to FTDI_VDD

8 Rev A2, Page 8/11 CIRCUIT SCHEMATIC Figure 7: MCW1D schematic

9 Rev A2, Page 9/11 ASSEMBLY PARTS LIST Figure 8: ic-mcw EVAL MCW1D (top side) Figure 9: ic-mcw EVAL MCW1D (bottom side)

10 Rev A2, Page 10/11 Device Value (typical) Comment C6, C7 10 nf C 10 nf 10% X7R 50 V Size 0603 C8, C9, C10, C11, C13, C15, 100 nf C 100 nf 10% X7R 16 V Size 0603 C16, C17 C12 10 µf C 10 µf 20% 10 V Size B C14 33 nf C 33 nf 20% X7R 10 V Size 0603 D1 LG-T67K LED GREEN LG-T67K D2, D3, D4, D5, D6, D7 LS-T67K LED SUPER-RED LS-T67K J1 D-SUB9 FEMALE CONN SUBD 9 FEMALE RH J2, J4 YAMAICHI RJ45 10 Y-CONJACK-21 (not assembled) J3 D-SUB9 MALE CONN SUBD 9 MALE RH J5 A-USBS-B Connector USB A/USBS-B J6 SLLP11126G Connector 6x1-pole 2.54 mm (SLLP11126G) J7 ESHF10501LDTH Connector 2x5-pole (ESHF10501LDTH) J8 WSL10G Connector 2x5-pole male (WSL10G) J9, J10, J11 SLLP11122G Connector 2x1-pole 2.54 mm (SLLP11122G) GND LBA04G Jumperlink mm d=1 mm (LBA04G) GND1, GND_USB, VDD LBA02G Jumperlink 5.08 mm d=1 mm (LBA02G) ERR, IRQ, VDD_BISS S1-F PIN 11.5 mm JP1 SLLP209720G Connector 2x10-pole 2.54 mm (SLLP209720G) JP2, JP3, JP4, JP6, JP7 SLLP10972G Connector 2x1-pole 2.54 mm (SLLP10972G) F1 0.5 A Resetable Fuse 500 ma Size 0805 L1 60/100 MHz Ferrit 3000 ma Size 0805 R1, R2, R3, R4, R5, R6, R7 560 Ω R 560R 1% Size 0603 R8, R10, R11, R12, R13, R17, 10k Ω R 10K 1% Size 0603 R19, R25, R29 R9, R14 10 Ω R 10R 1% Size 0603 R15, R16, R18, R20, R21, 0 Ω R 0R 5% 1A Size 0603 R22 R Ω R 470R 1% Size 0603 R24 4.7k Ω R 4k7 1% Size 0603 R26, R27 27R Ω R 27R 1% Size 0603 R28 1.5k Ω R 1k5 1% Size 0603 R30 2k2 Ω R 2k2 1% Size 0603 U1 ic-mcw QFN24 4X4 U2 S9KEAZN8 QFN24 4X4 U3 FTD2232D LQFP-48 USB UART FT2232L LQFP-48 U4 6MHz Oscillator 6 MHz 50 ppm 5 V 7 mm x 5 mm U5 93C56C SO8 EEPROM 2k AT93C56 SO8 S1_1 S2X1 Socket Connector 2x1-pole (MKLP412G) S1_2 S11X1 Socket Connector 11x1-pole (MKLP4111G) S1_3 S12X1 Socket Connector 12x1-pole (MKLP4112G) SW1, SW2 OMR_B3S_1000 Switch B3S 6 mm x 6 mm

11 Rev A2, Page 11/11 ENCODER CONNECTION EXAMPLE Figure 10: Principle assembly REVISION HISTORY Rel. Rel. Date Chapter Modification Page A All Initial release all Rel. Rel. Date Chapter Modification Page A EVALUATION BOARD MCW1D Updated 4 PINOUT OF CONNECTORS AND TERMINALS Updated 6 DESCRIPTION OF JUMPERS Updated 7 ic-haus expressly reserves the right to change its products and/or specifications. An Infoletter gives details as to any amendments and additions made to the relevant current specifications on our internet website and is automatically generated and shall be sent to registered users by . Copying even as an excerpt is only permitted with ic-haus approval in writing and precise reference to source. The data specified is intended solely for the purpose of product description and shall represent the usual quality of the product. In case the specifications contain obvious mistakes e.g. in writing or calculation, ic-haus reserves the right to correct the specification and no liability arises insofar that the specification was from a third party view obviously not reliable. There shall be no claims based on defects as to quality in cases of insignificant deviations from the specifications or in case of only minor impairment of usability. No representations or warranties, either expressed or implied, of merchantability, fitness for a particular purpose or of any other nature are made hereunder with respect to information/specification or the products to which information refers and no guarantee with respect to compliance to the intended use is given. In particular, this also applies to the stated possible applications or areas of applications of the product. ic-haus products are not designed for and must not be used in connection with any applications where the failure of such products would reasonably be expected to result in significant personal injury or death (Safety-Critical Applications) without ic-haus specific written consent. Safety-Critical Applications include, without limitation, life support devices and systems. ic-haus products are not designed nor intended for use in military or aerospace applications or environments or in automotive applications unless specifically designated for such use by ic-haus. ic-haus conveys no patent, copyright, mask work right or other trade mark right to this product. ic-haus assumes no liability for any patent and/or other trade mark rights of a third party resulting from processing or handling of the product and/or any other use of the product. Software and its documentation is provided by ic-haus GmbH or contributors "AS IS" and is subject to the ZVEI General Conditions for the Supply of Products and Services with ic-haus amendments and the ZVEI Software clause with ic-haus amendments ( Release Date format: YYYY-MM-DD

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