• MCP2562-E-MF

    MCP2562-E-MF

    1/1 Transceiver Half CANbus 8-DFN #CommonPartsLibrary #IntegratedCircuits #Interface #Drivers #Receivers #Transceivers #MCP2562

    jecstronic

    3 years ago

    56 Uses

    1 Star


  • S32K358GHT1MJBST

    S32K358GHT1MJBST

    ARM® Cortex®-M7 S32K3 Microcontroller IC 32-Bit Tri-Core 240MHz 8MB (8M x 8) FLASH 289-LFBGA (14x14) ## Engineering Specification ## General Description The **S32K358GHT1MJBST** is an NXP Semiconductors **S32K3 series automotive microcontroller** designed for high-performance embedded control applications in automotive, industrial, and electrically harsh environments. It is built around an **Arm Cortex-M7 architecture** and provides high processing capability, large embedded flash memory, automotive-grade qualification, security support, and a broad set of communication interfaces. The device is suitable for body control, gateway systems, vehicle networking, motor control, domain control, safety-related embedded systems, and general-purpose automotive electronic control units. ## Device Identification Manufacturer Part Number: **S32K358GHT1MJBST** Manufacturer: **NXP Semiconductors** Product Family: **S32K3** Device Category: **Integrated Circuit** Device Type: **Automotive Microcontroller** Core Architecture: **Arm Cortex-M7** Processing Class: **Thirty-Two-Bit MCU** Qualification: **Automotive Grade, AEC-Q100** ## Functional Description The device functions as a high-performance automotive microcontroller for embedded control and communication systems. It provides processing resources for real-time control, communication management, diagnostics, security handling, and system-level application logic. The microcontroller is designed for scalable automotive platforms where software reuse, safety capability, and peripheral integration are important. ## Core and Processing Description The **S32K358GHT1MJBST** uses an Arm Cortex-M7 based processing architecture with tri-core capability and high-speed operation. The core architecture supports digital signal processing, floating-point operation, interrupt handling, and real-time embedded software execution. This makes the device suitable for control systems that require strong computing performance and deterministic response. ## Memory Description The device includes large embedded flash memory for application firmware storage and integrated RAM for runtime operation, data buffering, communication stacks, and control algorithms. The memory architecture is suitable for complex embedded applications requiring large program space, diagnostics, bootloader support, and over-the-air update capability. ## Security and Safety Description The microcontroller includes hardware security support through **HSE-B security** and is intended for automotive applications where secure boot, cryptographic services, protected firmware operation, and system integrity are important. The S32K3 family also supports automotive safety-oriented development through features such as error correction, monitoring, and diagnostic capability. ## Communication and Interface Description The device supports multiple embedded communication interfaces suitable for vehicle and industrial networks. Supported interface types include CAN, Ethernet, I²C, SPI, UART, LIN, QSPI, SAI, SENT, and FlexIO. These interfaces allow the device to communicate with sensors, actuators, transceivers, memory devices, network controllers, and other electronic control units. ## Analog and Peripheral Description The microcontroller includes analog-to-digital conversion capability, timers, watchdog functions, direct memory access, serial audio support, and general-purpose input and output resources. These peripherals support sensing, control, timing, supervision, communication, and system management functions in embedded hardware designs. ## Electrical Description The device is designed for automotive low-voltage operation and supports use across a wide supply voltage range. It is intended for applications requiring reliable operation in automotive and industrial temperature environments. Proper power supply design, decoupling, reset control, clock configuration, and grounding should follow the manufacturer’s hardware design recommendations. ## Package and Mechanical Description The **S32K358GHT1MJBST** is supplied in a **surface-mount LFBGA package** with a compact ball-grid-array footprint. The package is intended for dense printed circuit board layouts requiring careful routing, controlled assembly process, thermal management, and proper solder joint reliability. ## Mounting and Assembly Description The component is intended for automated surface-mount PCB assembly using BGA-compatible manufacturing processes. PCB layout should follow the recommended footprint, ball escape routing, power-plane design, decoupling capacitor placement, thermal design, and inspection requirements for high-density automotive microcontroller assemblies. ## Application Suitability The device is suitable for automotive electronic control units, body control modules, gateway controllers, vehicle networking systems, motor control platforms, battery-related control systems, industrial controllers, safety-oriented embedded systems, and high-performance general-purpose control applications. ## Design Considerations The design should account for supply voltage range, clocking requirements, flash and RAM usage, thermal limits, package routing density, communication interface requirements, EMC performance, boot configuration, security provisioning, debugging access, software safety requirements, and compliance with automotive design guidelines. The device should not be operated beyond the manufacturer’s specified electrical, thermal, or mechanical limits. ## Hashtags #commonpartslibrary #integratedcircuit #microcontroller #automotivemcu #nxp #nxpsemiconductors #s32k3 #s32k358 #s32k358ght1mjbst #armcortexm7 #cortexm7 #thirtytwobit #automotiveelectronics #aecq100 #hsesecurity #canfd #ethernet #vehicleelectronics #embeddedhardware #embeddeddesign #ecu #gatewaycontroller #bodycontrolmodule #pcbdesign #hardwaredesign #electronicscomponents #electronicparts #componentlibrary #engineeringparts #electronicsengineering

    2 months ago

    1 Use

    0 Stars


  • LAN8740A-EN

    LAN8740A-EN

    1/1 Transceiver Full Ethernet 32-SQFN (5x5) #CommonPartsLibrary #IntegratedCircuit #Interface #Drivers #Receivers #Transceivers #LAN8740

    3 years ago

    27 Uses

    0 Stars


  • 88EA1512B2-NNP2A000

    88EA1512B2-NNP2A000

    1 Ethernet Transceiver QFN-56(8x8) Ethernet Transceivers ROHS #CommonPartsLibrary #IntegratedCircuit #Interface #Driver #Receiver #Transceiver #88EA15

    a year ago

    6 Uses

    0 Stars


  • LAN9254-I/JRX

    LAN9254-I/JRX

    Ethernet Controller 10/100 Base-T/TX Bus Interface 80-TQFP-EP (12x12) The LAN9254-I/JRX is an EtherCAT SubDevice (slave) controller developed by Microchip Technology, designed to serve as the communication backbone for industrial automation devices participating in an EtherCAT network. The device integrates dual Ethernet physical layer transceivers directly on-chip, eliminating the need for external PHY components and simplifying the design of EtherCAT-enabled equipment such as servo drives, sensors, I/O modules, and other field devices used in real-time industrial control systems. Architecturally, the controller can operate as either a two-port or three-port node, depending on the network topology required. In its standard configuration it functions as a two-port device supporting daisy-chain connections typical of EtherCAT line topologies. When configured as a three-port device, it gains an additional management interface port that can connect to an external PHY or to another LAN9254, enabling star or tree network topologies and allowing the device to act as a branching point within a larger EtherCAT installation. Each integrated Ethernet PHY operates in full-duplex mode and supports automatic crossover detection, so the device can use either straight-through or crossover cabling without requiring manual configuration. Beyond pure protocol handling, the LAN9254 includes a substantial set of general-purpose digital input and output lines, allowing it to be used in simple field devices without requiring a separate microcontroller. For more complex applications, the device communicates with an external host processor through an integrated host bus interface that behaves like simple memory-mapped SRAM, supporting both 8-bit and 16-bit data widths along with multiple byte-ordering conventions, which makes it straightforward to interface with a wide range of microcontroller and microprocessor architectures. Internally, dual process data RAM buffers manage the exchange of real-time process data between the host application and the EtherCAT communication engine, while a dedicated interrupt line notifies the host of relevant internal events. A key feature of the device is its built-in distributed clock mechanism, which provides high-precision timing synchronization across all nodes in an EtherCAT network. This capability is essential for motion control and other applications where multiple devices must act in tight temporal coordination. The controller also provides configurable status indication through standard network activity and link LEDs, along with optional error and run-state indicators that give visibility into the health and operational state of the device at a glance. Power architecture on the LAN9254 is simplified through an integrated linear regulator, allowing the device to be operated from a single primary supply rail while internally generating the lower voltage needed for its core logic. This reduces the external power supply complexity that would otherwise be required to support separate core and I/O voltage domains. The "-I" designation on this particular part number indicates an industrial-grade temperature rating, making it suitable for deployment in factory floor and other demanding industrial environments where extended thermal range and long-term reliability are required. The device is housed in a surface-mount package consistent with dense industrial control board layouts and is compliant with RoHS material restrictions. Spec Sheet Identification Part Number: LAN9254-I/JRX Device Family: LAN9254 Manufacturer: Microchip Technology Functional Classification Device Type: EtherCAT SubDevice (slave) controller Network Role: Two/three-port configurable node Integrated PHYs: Dual Ethernet physical layer transceivers, on-chip Auto-MDIX Support: Yes, supports direct and crossover cabling Communication & Protocol Features Protocol: EtherCAT Topology Support: Daisy-chain (line), star, and tree topologies Additional Port Mode: Optional third port for branching/tap configurations Clock Synchronization: Integrated distributed clock for high-precision timing Host Interface Interface Type: SRAM-like host bus interface Data Width Support: Selectable bit-width host bus operation Endianness Support: Multiple byte-ordering modes Process Data Handling: Dual process data RAM buffers Interrupt Support: Configurable host interrupt line Digital I/O General-Purpose I/O: Integrated digital I/O lines for microcontroller-less operation Standalone Mode: Supports operation without external microcontroller for simple device designs Power Architecture Supply Configuration: Single primary supply rail Internal Regulation: Integrated linear regulator for core voltage generation Status Indication LED Support: Standard run and link/activity indicators per port Optional Indicators: Configurable error and run-state status indicators Environmental & Qualification Temperature Grade: Industrial ("-I" suffix) RoHS Compliance: Yes Package Package Type: Surface-mount, quad flat package style Mounting: Surface mount technology (SMT) Packaging Format Supply Format: Tape-and-reel, per part suffix designation #LAN9254 #Microchip #EtherCAT #SlaveController #SubDeviceController #IndustrialEthernet #IndustrialAutomation #MotionControl #EmbeddedSystems #FieldDevice #DigitalIO #HostBusInterface #DistributedClock #TQFP #RoHSCompliant #IndustrialGrade #EngineeringSpec #ComponentLibrary #CommonPartsLibrary #SemiconductorIC

    2 months ago

    1 Use

    0 Stars


  • MCP2562-H/SN

    MCP2562-H/SN

    1/1 Transceiver Half CANbus 8-SOIC #CommonPartsLibrary #IntegratedCircuits #Interface #Drivers #Recievers #Transceivers #MCP2562

    3 years ago

    18 Uses

    0 Stars


  • SN65LVDS1DBVR

    SN65LVDS1DBVR

    High-Speed Differential Line Driver, 630Mbps, SOT-23-5 #CommonPartsLibrary #IntegratedCircuits #Interface #Drivers #Receivers #Transceivers #65LVDS1

    3 years ago

    17 Uses

    0 Stars


  • TJA1051T-E-1J

    TJA1051T-E-1J

    1/1 Transceiver Half CANbus 8-SOIC #CommonPartsLibrary #IntegratedCircuits #Interface #Drivers #Recievers #Transceivers #TJA1051

    3 years ago

    14 Uses

    0 Stars


  • MCP2561-E-P

    MCP2561-E-P

    High-Speed CAN Transceiver, 1Mbps, 5V supply, SPLIT pin, -40C to + 125C, DIP-8 #CommonPartsLibrary #IntegratedCircuits #Interface #Drivers #Receivers #Transceivers #MCP2561

    3 years ago

    13 Uses

    0 Stars


  • MCP25625T-E-SS

    MCP25625T-E-SS

    1/1 Transceiver - CANbus 28-SSOP #CommonPartsLibrary #IntegratedCircuits #Interface #Drivers #Recievers #Transceivers #MCP25625

    3 years ago

    11 Uses

    0 Stars


  • MCP2561-E-SN

    MCP2561-E-SN

    1/1 Transceiver Half CANbus 8-SOIC #CommonPartsLibrary #IntegratedCircuits #Interface #Drivers #Receivers #Transceivers #MCP2561

    3 years ago

    9 Uses

    0 Stars


  • SN65LVDS047PW

    SN65LVDS047PW

    Quad LVDS Differential Line Driver, 400Mbps, TSSOP-16 #CommonPartsLibrary #IntegratedCircuits #Interface #Drivers #Receivers #Transceivers #65LVDS047

    3 years ago

    6 Uses

    0 Stars


  • MCP2557FD-H/SN

    MCP2557FD-H/SN

    1/1 Transceiver - CANbus 8-SOIC #CommonPartsLibrary #IntegratedCircuits #Interface #Drivers #Recievers #Transceivers #MCP2557

    3 years ago

    6 Uses

    0 Stars


  • MCP2562-E-P

    MCP2562-E-P

    1/1 Transceiver Half CANbus 8-PDIP #CommonPartsLibrary #IntegratedCircuits #Interface #Drivers #Receivers #Transceivers #MCP2562

    3 years ago

    6 Uses

    0 Stars


  • TCAN330GDR

    TCAN330GDR

    1/1 Transceiver - CANbus 8-SOIC #CommonPartsLibrary #IntegratedCircuits #Interface #Drivers #Receivers #Transceivers #TCAN330

    3 years ago

    6 Uses

    0 Stars


  • TCAN334GDCNT

    TCAN334GDCNT

    1/1 Transceiver CANbus SOT-23-8 #CommonPartsLibrary #IntegratedCircuits #Interface #Drivers #Receivers #Transceivers #TCAN334

    3 years ago

    6 Uses

    0 Stars


  • TCAN332GDR

    TCAN332GDR

    1/1 Transceiver - CANbus 8-SOIC #CommonPartsLibrary #IntegratedCircuits #Interface #Drivers #Receivers #Transceivers #TCAN332

    3 years ago

    5 Uses

    0 Stars


  • SN75160BDW

    SN75160BDW

    Octal general-purpose interface bus transceiver, SOIC-20 #CommonPartsLibrary #IntegratedCircuits #Interface #Drivers #Receivers #Transceivers #SN75160

    3 years ago

    3 Uses

    0 Stars


  • SN74AUP1T34DCKR

    SN74AUP1T34DCKR

    Buffer, Non-Inverting 1 Element 1 Bit per Element Push-Pull Output SC-70-5 #CommonPartsLibrary #IntegratedCircuit #logic #Buffer #Drivers #Receiver #Transceivers

    3 years ago

    2 Uses

    0 Stars


  • AM26C31IDBR

    AM26C31IDBR

    4/0 Driver 16-SSOP #CommonPartsLibrary #IntegratedCircuit #Interface #Drivers #Receivers #Transceivers

    3 years ago

    2 Uses

    0 Stars


  • SN65LVDS047D

    SN65LVDS047D

    Quad LVDS Differential Line Driver, 400Mbps, SOIC-16 #CommonPartsLibrary #IntegratedCircuits #Interface #Drivers #Receivers #Transceivers #65LVDS047

    3 years ago

    1 Use

    0 Stars


  • LTC1688CS-PBF

    LTC1688CS-PBF

    100Mbps RS485 Hot Swapable Quad Drivers 16-SOIC #CommonPartsLibrary #IntegratedCircuits #Interface #Drivers #Receivers #Transceivers #LTC1688

    3 years ago

    1 Use

    0 Stars


  • TCAN337DR

    TCAN337DR

    1/1 Transceiver - CANbus 8-SOIC #CommonPartsLibrary #IntegratedCircuits #Interface #Drivers #Receivers #Transceivers #TCAN337

    3 years ago

    1 Use

    0 Stars


  • TCAN334GDR

    TCAN334GDR

    1/1 Transceiver CANbus 8-SOIC #CommonPartsLibrary #IntegratedCircuits #Interface #Drivers #Receivers #Transceivers

    3 years ago

    1 Use

    0 Stars


  • ADM3057EBRWZ-RL

    ADM3057EBRWZ-RL

    1/1 Transceiver, Isolated - CAN 20-SOIC #CommonPartsLibrary #IntegratedCircuits #Interface #Drivers #Receivers #Transceivers #ADM3057

    3 years ago

    0 Uses

    0 Stars


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