EPM5128GM/883

PinoutDescriptionThe EPM5128GM/883 belongs to the EPM5128 EPLD series. It is a user-configurable,high-performance Multiple Array MatriX (MAX) 5000-family EPLD. It provides a high-density replacement for 7400-series SSI and COMS logic. It is available in J-lead package. There are some features of ...

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SeekIC No. : 004337539 Detail

EPM5128GM/883: PinoutDescriptionThe EPM5128GM/883 belongs to the EPM5128 EPLD series. It is a user-configurable,high-performance Multiple Array MatriX (MAX) 5000-family EPLD. It provides a high-density replacement...

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Part Number:
EPM5128GM/883
Supply Ability:
5000

Price Break

  • Qty
  • 1~5000
  • Unit Price
  • Negotiable
  • Processing time
  • 15 Days
Total Cost: $ 0.00

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Upload time: 2024/11/7

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Description

The EPM5128GM/883 belongs to the EPM5128 EPLD series. It is a user-configurable,high-performance Multiple Array MatriX (MAX) 5000-family EPLD. It provides a high-density replacement for 7400-series SSI and COMS logic. It is available in J-lead package.

There are some features of EPM5128GM/883 as follows. (1) high-density 128-macrocell general-purpose NAX 5000 EPLD; (2) 256 shareable explander product terms that allow over 32 product terms in a single macrocell; (3) high-speed mutil-LAB architecture; (4) programmable I/O architecture allowing up to 60 inputs or 52 outputs.

What comes next is about EPM5128GM/883's absolute maximum raings. (1): supply voltage (VCC) is from -2.0 V to 7.0 V; (2): programmable supply voltage (Vpp) is from -2.0 V to 13.5 V; (3): DC input voltage (VI) is from -2.0 V to 7.0 V; (4): the maximum power disspation (PD) is 2500 mW; (5): storage temperature (Tstg) is from -65 to 150 ; (6): ambient temperature (Tamb) is from -65 to 135 ; (7): the maximum junction temperature (Tj) is 150 ; (8): DC output current per pin is from -25 mA to 25 mA; (9): the maximum DC VCC or GND current is 500 mA. Then is about its DC operating conditions. (1): high-level input voltage (VIH) is from 2.0 V to VCC+0.3 V; (2): the minimum high-level TTL output voltage (VOH) is 2.4 V when IOH is -4 mA DC; (3): input leakage current (II) is from -10 A to 10 A at VI is VCC or GND.




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