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EPM7512BFC256-5

PMIC 256 Pin 166.67MHz FBGA


  • Manufacturer: Altera
  • Origchip NO: 2936-EPM7512BFC256-5
  • Package: FBGA
  • Datasheet: PDF
  • Stock: 707
  • Description: PMIC 256 Pin 166.67MHz FBGA (Kg)

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FedEx International, 5-7 business days.

The following are some common countries' logistic time.
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Details

Tags

Parameters
Mount Surface Mount
Package / Case FBGA
Number of Pins 256
Published 1998
Max Operating Temperature 70°C
Min Operating Temperature 0°C
Frequency 166.67MHz
Operating Supply Voltage 2.5V
Max Supply Voltage 2.625V
Min Supply Voltage 2.375V
Memory Type EEPROM
Propagation Delay 5.5 ns
Turn On Delay Time 5.5 ns
Frequency (Max) 163.9MHz
Number of Gates 10000
Number of Programmable I/O 212
Number of Logic Blocks (LABs) 32
Number of Macro Cells 512
Radiation Hardening No
RoHS Status RoHS Compliant
Lead Free Contains Lead

EPM7512BFC256-5 Overview


The mobile phone network has 512 macro cells, which are cells that provide radio coverage from high-power cell sites (towers, antennas, or masts).It is contained in package [0].A digital circuit is built using 10000gates.A high level of efficiency can be achieved by maintaining the supply voltage at [0].EEPROM is adopted for storing data.Surface Mountis the mounting point of this electronic part.There are 256 pins on the device.There is a maximum supply voltage of 2.625Vwhen the device is operating.A minimum supply voltage of 2.375V is required for it to operate.Currently, there are 212 Programmable I/Os available.There can be 166.67MHz frequency achieved.The operating temperature should be higher than 0°C.A temperature lower than 70°Cis recommended for operation.It is composed of 32 logic blocks (LABs).The maximum frequency should not exceed 163.9MHz.

EPM7512BFC256-5 Features


FBGA package
256 pins
32 logic blocks (LABs)

EPM7512BFC256-5 Applications


There are a lot of Altera EPM7512BFC256-5 CPLDs applications.

  • Programmable polarity
  • USB Bus
  • Wireless Infrastructure Base Band Unit and Remote Radio Unit
  • Multiple DIP Switch Replacement
  • Cross-Matrix Switch
  • Random logic replacement
  • Discrete logic functions
  • Programmable power management
  • POWER-SAVING MODES
  • Power automation