• SANTA CRUZ (MAXREFDES23#): IO-LINK light sensor

    Maxim's Santa Cruz (MAXREFDES23#) reference design is the world's smallest IO-Link® light sensor compliant with IEC 61131-9. The Santa Cruz has six different types of sensors: ambient light (clear), red, green, blue, infrared, and is also a temperature sensor. The entire design fits onto a 6.5mm x 25mm printed circuit board (PCB).

    Schematic PCB

  • MAXREFDES62#: RS-485 communication micro PLC card

    The MAXREFDES62# reference design ushers in the era of Industry 4.0. With dual RS-485 communication channels for the next generation of ultra-small programmable logic controllers, this design meets the data rate and higher voltage needs of industrial control and industrial automation applications, while consuming minimal power and space. This high-performance system features one half-duplex RS-485 transceiver, one full-duplex RS-485 transceiver, a complete, efficient power-supply system and on-board processing. Hardware and firmware design files as well as results of lab measurements are provided.

  • MAXREFDES63#: 8-channel digital output micro PLC card

    The MAXREFDES63# reference design ushers in the era of Industry 4.0. This design meets the higher voltage needs of industrial control and industrial automation applications, while consuming minimal power and space. This high-performance system features eight channels of digital outputs and a complete, efficient power-supply system. Hardware and firmware design files are provided.

  • MAXREFDES64#: 8-channel digital input micro PLC card

    The MAXREFDES64# reference design ushers in the era of Industry 4.0. This design meets the higher voltage needs of industrial control and industrial automation applications while consuming minimal power and space. This high-performance system features eight channels of digital inputs and a complete, efficient power-supply system. Hardware and firmware design files are provided.

  • MAXREFDES79#: 4-port IO-LINK host

    Maxim Integrated's MAXREFDES79# reference design is a fully compliant IO-Link version 1.1, 4-port IO-Link Master using a TEConcept software stack. The system contains four IO-Link master transceivers, a standard ARM® Cortex® M3 processor, and efficient industrial step-down DC-DC converters. The MAXREFDES79# comes preprogrammed and ready to connect with any compliant IO-Link device using a simple-to-use graphical user interface (GUI) program. Design files including schematic, PCB, BOM, GUI software, and compliance report are available for download.

    Schematic PCB

  • MAXREFDES37#: IO-LINK four-channel servo driver

    Maxim Integrated's MAXREFDES37# reference design is a fully IO-Link ver1.1 compliant, four-channel servo driver using a TMG TE IO-Link device stack. The system contains an IO-Link device transceiver, a low-power RL78 processor, and efficient industrial step-down DC-DC converter. The MAXREFDES37# comes preprogrammed and ready to connect with any compliant IO-Link master such as the MAXREFDES79# IO-Link master with a simple-to-use graphical user interface (GUI) program. Design files including schematic, PCB, BOM, and IODD firmware files are available for download.

    Schematic PCB

  • MAXREFDES43#: I2C SHA-256 security authentication design

    The MAXREFDES43# subsystem provides an I2C-based reference design for securing Xilinx FPGAs to protect IP and prevent attached peripheral counterfeiting. The system implements an I2C SHA-256 challenge-response between the FPGA and a DS28C22 secure authenticator with on-board memory. Boards for purchase, hardware, and firmware design files provide complete system information for rapid prototyping and development.

    Schematic PCB

  • MAXREFDES44#: Safety-certified design with 1-WIRE ECDSA and XILINX ZYNQ SOC

    The MAXREFDES44# subsystem provides a 1-Wire-based reference design for securing a Xilinx system-on-chip (SoC) to protect IP and prevent attached peripheral counterfeiting. The system implements a Public/Private Key 1-Wire ECDSA challenge-response between the SoC and a DS28E35 secure authenticator with on board memory. Boards for purchase, hardware, and firmware design files provide complete system information for rapid prototyping and development.

    Schematic PCB

  • MAXREFDES1158: 2.75kVRMS isolated 500kbps half-duplex RS-485 transceiver using MAX14946

    The MAXREFDES1158 is a 5V supplied, 2.75kVRMS isolated, 500kbps, RS-485 module using the MAX14946. This reference design demonstrates how to build an isolated RS-485 module with a low-cost transformer to provide isolated power.

  • MAXREFDES1160: Full-duplex, 500kbps and 2.75kVRMS isolated RS-485 module using the MAX14853

    The MAXREFDES1160 is a 5V supplied, 2.75kVRMS, full-duplex and 500kbps isolated RS-485 module using the MAX14853. This reference design demonstrates how to build an isolated RS-485 module with a low-cost transformer to provide isolated power. A transformer from HanRun, the HR600755, is used in this design. The power supply on the reference design is derived from a single 5V source. Connect the design board to a USB port or connect an external supply from VDDA to GNDA to provide 5V power supply on the logic side (A). The integrated push-pull transformer driver and external transformer (TX1) generate an isolated supply for powering the isolated side (B) of the board.

  • MAXREFDES174#: IO-Link distance sensor

    The MAXREFDES174# is an IO-Link®-compliant, distance sensor reference design that uses the Maxim MAX22513 IO-Link device transceiver and supports the IQ2 Development IO-Link stack.

  • MAXREFDES173#: IO-Link local temperature sensor

    The MAXREFDES173# IO-Link® temperature sensor uses the MAX14827A IO-Link device transceiver and supports the IQ2 Development™ IO-Link stack.

  • MAXREFDES145#: 8-channel IO-Link master

    The MAXREFDES145# is a fully IO-Link®-compliant, 8-port IO-Link master reference design. This design uses TEConcept's IO-Link master stack and is both an IO-Link master reference design as well as an IO-Link sensor /actuator development and test system. Eight IO-Link ports allow for simultaneous testing of up to eight different sensors (or actuators).

    Schematic PCB

  • DEVKIT-COMM: Development board adapter for CAN/LIN communication expansion

    DEVKIT-COMM is a hardware plug-in adapter board that supports up to 4 additional CAN and 6 additional LIN/SCI connections when plugged into the MCU DEVKIT:

    Schematic PCB

  • OM6270: SPI/I 2 C to UART Bridge Demonstration Board (SC16IS750)

    OM6270 is a demonstration board for SC16IS750. SC16IS740/750/760 is a slave I 2 C bus/SPI interface that connects to a single-channel high-performance UART .

  • KIT33903BD3EVBE: Evaluation Kit - MC33903BD3, 2nd Generation SBC with CAN and LIN

    You can use this evaluation board to implement the functionality of the MC33903D3 system basis chip (SBC).

  • SJA1124EVB: Evaluation board for the SJA1124 SPI to Quad-LIN bridge

    The SJA1124EVB is an evaluation board for the SJA1124 SPI to QuadLIN bridge that supports up to 16 LIN master channel connections when plugged into a microcontroller board.

    Schematic PCB

  • OM13790 Host and Dock: USB Type-C Shield Board Gen 2 with DisplayPort Alt Mode

    NXP is launching a Generation 2 USB Type-C Shield with display port alt mode support! The NXP Generation 2 USB Type-C shield works with the MCUXpresso SDK and USB Power Delivery stack to allow you to connect USB Type-C Connectors to select Kinetis®, LPC and i.MX RT development platforms.

    Schematic PCB

  • OM6273: SC16IS752/762 - SPI/I 2 C to Dual UART/IRDA/General IO

    OM6273 is a demonstration board for SC16IS752/762. SC16IS752/SC16IS762 is an I 2 C bus/SPI bus interface to a dual-channel high-performance UART , providing a maximum data rate of 5 Mbit/s, low operating and sleep current; it also provides 8 additional programmable I/O pins for applications foot.

  • OM13584: PTN5150A-PTN36043 USB Type-C CC Logic Evaluation Kit

    Evaluate USB Type-C CC control logic in DFP and UFP (or DRP) configurations. Also included is the PTN36043 USB3.0 SuperSpeed ​​redriver.

    Schematic PCB

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