XC6SLX150-L1CSG484I Manufacturers

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Hot Products

  • XCVU095-2FFVA2104I

    XCVU095-2FFVA2104I

    ​XCVU095-2FFVA2104I Description: Virtex UltraScale devices provide optimal performance and integration at 20nm, including serial I/O bandwidth and logic capacity. As the industry's only high-end FPGA in the 20nm process node, this series is suitable for applications ranging from 400G networks to large-scale ASIC prototype design/simulation
  • BCM89107B0BFBG

    BCM89107B0BFBG

    BCM89107B0BFBG is suitable for use in a variety of applications, including industrial control, telecommunications, and automotive systems. The device is known for its easy-to-use interface, high efficiency, and thermal performance, making it an ideal choice for a wide range of power management applications.
  • AD9446BSVZ-80

    AD9446BSVZ-80

    AD9446BSVZ-80 is suitable for use in a variety of applications, including industrial control, telecommunications, and automotive systems. The device is known for its easy-to-use interface, high efficiency, and thermal performance, making it an ideal choice for a wide range of power management applications.
  • XC3S200AN-4FTG256C

    XC3S200AN-4FTG256C

    XC3S200AN-4FTG256C is a low-cost field-programmable gate array (FPGA) developed by Intel Corporation, a leading semiconductor technology company. This device features 120,000 logic elements and 414 user input/output pins, making it suitable for a wide range of low-power and low-cost applications. It operates on a single power supply voltage ranging from 1.14V to 1.26V and supports various I/O standards such as LVCMOS, LVDS, and PCIe. The device has a maximum operating frequency of up to 415 MHz. The device comes in a small fine pitch ball grid array (FGBA) package with 484 pins, providing high pin-count connectivity for a variety of applications.
  • BCM54980C1KFBG

    BCM54980C1KFBG

    BCM54980C1KFBG is suitable for use in a variety of applications, including industrial control, telecommunications, and automotive systems. The device is known for its easy-to-use interface, high efficiency, and thermal performance, making it an ideal choice for a wide range of power management applications.
  • Impedance Control PCB

    Impedance Control PCB

    At high speeds, Impedance control PCB traces are used as transmission lines, and electrical energy can be reflected back and forth, similar to the situation where ripples in lake water encounter obstacles. Controlled impedance traces are designed to reduce electronic reflections and ensure correct conversion between PCB traces and internal connections.

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