EPM7256AETC144-10N

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Mfr.Part #
EPM7256AETC144-10N
Manufacturer
Altera (Intel)
Package / Case
144-LQFP
Datasheet
Download
Description
IC CPLD 256MC 10NS 144TQFP
Stock
844
In Stock :
844

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Manufacturer :
Altera (Intel)
Product Category :
CPLDs (Complex Programmable Logic Devices)
Power Supplies :
2.5/3.33.3V
Packaging :
Tray
Height Seated (Max) :
1.6mm
Length :
20mm
Base Part Number :
EPM7256
Supply Voltage-Min (Vsup) :
3V
Number of I/O :
120
Package / Case :
144-LQFP
JTAG BST :
yes
Time@Peak Reflow Temperature-Max (s) :
40
JESD-30 Code :
S-PQFP-G144
Number of Gates :
5000
Supply Voltage :
3.3V
Width :
20mm
Supply Voltage-Max (Vsup) :
3.6V
Additional Feature :
yes
Number of Macro Cells :
256
Delay Time tpd(1) Max :
10ns
Number of Terminations :
144
Number of Logic Elements/Blocks :
16
Propagation Delay :
10 ns
Voltage Supply - Internal :
3V~3.6V
Terminal Finish :
Matte Tin (Sn) - annealed
Factory Lead Time :
8 Weeks
ECCN Code :
3A991
JESD-609 Code :
e3
Moisture Sensitivity Level (MSL) :
3 (168 Hours)
RoHS Status :
RoHS Compliant
Clock Frequency :
95.2MHz
Series :
MAX® 7000A
Terminal Position :
QUAD
Output Function :
MACROCELL
Programmable Type :
In System Programmable
HTS Code :
8542.39.00.01
Terminal Pitch :
0.5mm
Qualification Status :
Not Qualified
Terminal Form :
Gull wing
Mounting Type :
Surface Mount
Surface Mount :
yes
Peak Reflow Temperature (Cel) :
260
Operating Temperature :
0°C~70°C TA
Introducing CPLDs (Complex Programmable Logic Devices) Altera (Intel) EPM7256AETC144-10N from Chip IC,where excellence meets affordability. This product stands out with its Base Part Number:EPM7256, Package / Case:144-LQFP, Number of Terminations:144, Mounting Type:Surface Mount, Operating Temperature:0°C~70°C TA, EPM7256AETC144-10N pinout, EPM7256AETC144-10N datasheet PDF, EPM7256AETC144-10N amp .Beyond CPLDs (Complex Programmable Logic Devices) Altera (Intel) EPM7256AETC144-10N ,we also offer GAL16V8A-15LVI, PALCE22V10H-15JC/4, PALCE22V10Q-25PC/4, Our vast inventory has you covered. Contact us now for immediate solutions.

Altera (Intel) EPM7256AETC144-10N


CPLDs Altera EPM7256AETC144-10N Overview

The EPM7256AETC144-10N by Altera (Intel) stands out in the realm of Complex Programmable Logic Devices (CPLDs), offering a seamless blend of capacity and speed for demanding logic operations. This robust IC CPLD integrates 256 macrocells with a 10 ns logic propagation delay, encased in a compact 144-TQFP package suitable for dense board layouts. Furnished with Altera's proven technology, the CPLD is not only reliable but also offers exceptional programmability and functionality that is critical for sophisticated digital systems. Its rapid implementability and reprogrammability make it an ideal choice for rapid prototyping and production across various applications requiring efficient logic optimizations.

EPM7256AETC144-10N Features

  • 256 macrocells for ample design flexibility
  • 10 ns pin-to-pin logic delays for high-speed operations
  • 144-TQFP package fitting in space-constrained applications
  • In-system programmability for rapid deployment and updates
  • Backed by Altera (Intel) quality and support

EPM7256AETC144-10N Applications

  • Industrial Control Systems:

    The EPM7256AETC144-10N can be used to manage logic-intensive control processes, ensuring efficient and responsive operations within robust industrial environments.

  • Telecommunication Infrastructure:

    In telecoms, this CPLD aids in handling complex algorithmic functions for signal processing, contributing to the stability and reliability of communication networks.

  • Automotive Electronics:

    Auto manufacturers can integrate this device into vehicle electronics to control various subsystems with precision, enhancing overall vehicular function and safety.

  • Consumer Electronics:

    For rapid development cycles in consumer electronics, the device's reprogrammability allows for iterative enhancements, driving innovation in smart gadgets.

  • Data Storage Devices:

    Offering high-speed logic solutions, this CPLD helps manage the flow of data in storage devices, optimizing access times and reliability.

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