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EPM240ZM100I8N - Brand New Intel / Altera Programmable Logic Device (CPLDs/FPGAs) - Datasheet - Chipdatas

EPM240ZM100I8N - Brand New Intel / Altera Programmable Logic Device (CPLDs/FPGAs)

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In Stock: 3329, Ready for Immediate Shipping
Chipdatas Part No.:CD94-EPM240ZM100I8N
Manufacturer Part No.:EPM240ZM100I8N
Datecode:09+
Package:100-TFBGA
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  • Description

    The EPM240ZM100I8N is an electronic component model belonging to the programmable logic device category, specifically a CPLD (Complex Programmable Logic Device) or FPGA (Field-Programmable Gate Array). It is part of the MAX®II family of CPLDs, which are instant-on and non-volatile, meaning they can be programmed and retain their configuration even without power.

    Manufactured using a 0.18-µm, 6-layer-metal-flash process, the EPM240ZM100I8N offers a density of 240 logic elements (LEs) or 128 equivalent macrocells. It also has a non-volatile storage capacity of 8 Kbits. These features make it a suitable choice for applications that require high I/O counts, fast performance, and reliable fitting compared to other CPLD architectures.

    The MAX II devices, including the EPM240ZM100I8N, are designed to provide programmable solutions for various applications. Some common use cases include bus bridging, I/O expansion, power-on reset (POR) and sequencing control, and device configuration control. With its MultiVolt core, user flash memory (UFM) block, and enhanced in-system programmability (ISP), the EPM240ZM100I8N offers cost and power savings.

    Specifications and features

    • Manufacturer: [Manufacturer Name]
    • Product Model: EPM240ZM100I8N
    • Product Category: Programmable Logic Device (CPLDs/FPGAs)
    • Process Technology: 0.18-µm, 6-layer-metal-flash
    • Density: 240 logic elements (LEs), 128 equivalent macrocells
    • Non-volatile Storage: 8 Kbits
    • Features: MultiVolt core, user flash memory (UFM) block, enhanced in-system programmability (ISP)

    Application Scenarios

    - Bus bridging

    - I/O expansion

    - Power-on reset (POR) and sequencing control

    - Device configuration control

    Comparison

    Advantages

    - Instant-on and non-volatile

    - High I/O counts

    - Fast performance

    - Reliable fitting compared to other CPLD architectures

    - Programmable for various applications

    - Cost and power savings

    Disadvantages

    - Limited density compared to higher-end models

  • Similar parts: 2518 , Click to view
    Attributes Value
    Category Programmable Logic Device (CPLDs/FPGAs)
    Manufacturer Intel / Altera
    Product Category CPLDs (Complex Programmable Logic Devices)
    Series MAX® II
    Product MAX II
    Packaging Tray
    Mounting-Style SMD/SMT
    Tradename MAX II
    Package-Case BGA-100
    Operating-Temperature -40°C ~ 100°C (TJ)
    Mounting-Type Surface Mount
    Supplier-Device-Package 100-MBGA (6x6)
    Memory-Type Flash
    Programmable-Type In System Programmable
    Delay-Time-tpd-1-Max 7.5ns
    Voltage-Supply-Internal 1.71 V ~ 1.89 V
    Number-of-Logic-Elements-Blocks 240
    Number-of-Macrocells 192 Macrocells
    IC Number of Gates
    Number-of-I-O 80 I/O
    Maximum Operating Temperature + 85 C
    Operating temperature range - 40 C
    Operating-Supply-Voltage 1.8 V
    Operating-Supply-Current 40 mA
    Maximum-Operating-Frequency 152 MHz
    Supply-Voltage-Max 1.89 V
    Supply-Voltage-Min 1.71 V
    Propagation-Delay-Max 7.5 ns
    Input/output 80 I/O
    Number-of-Logic-Array-Blocks-LABs 24
    Number-of-Logic-Elements 240 Logic Elements
    Total-Memory 8192 bit
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  • Shopping guide

    Warranty:
    • - 30-day money-back return policy,
    • - 90-day warranty against any manufacturing defects. View more
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Additional Information
  • Datasheet: Download EPM240ZM100I8N
  • Chipdatas Part: CD94-EPM240ZM100I8N
  • Warehouse: China, Hong Kong
  • Dispatch: Within 24 hours
  • Free Shipping: Yes
  • Prority Shipping: Yes, 3-5 days
  • Last Updated: 2024/06/13 05:00 +0800
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    • Full Refund if you don't receive your order
    • Full or Partial Refund , If the item is not as described
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