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ATF22V10CQZ
  • ATF22V10CQZ
  • ATF22V10CQZ
  • ATF22V10CQZ
  • ATF22V10CQZ

ATF22V10CQZ

In Production

A high-performance electrically erasable CMOS programmable logic device (PLD) with proven Microchip electrically erasable flash memory. The device supports speeds down to 12ns with zero standby power dissipation. All speed ranges are specified over the full 5V ±10% range for industrial temperature ranges; 5V ±5% for commercial range 5-volt devices. The device provides a low voltage and edge-sensing "zero" power CMOS PLD solution with 5??A typical standby power so desingers can manage total system power to meet specific application requirements and enhance reliability. Pin keeper circuits on input and output pins eliminate static power consumed by pull-up resistors. CQZ combines the low high-frequency ICC of the Q design with the Z feature. The device replaces 22V10 family and most 24-pin c...

Microchip Technology ATF22V10CQZ Product Info

16 April 2026 0

Parameters

Power Options

QUARTER, ZERO

Operating Voltage Min (V)

4.5

Operating Voltage Max (V)

5.5

Inputs and I/O Pins

22

Registers

10

Macrocells

10

tPD Min

20

Max Clock Freq

50

Temp# Range Min (deg C)

-40

Temp# Range Max (deg C)

85

Description

A high-performance electrically erasable CMOS programmable logic device (PLD) with proven Microchip electrically erasable flash memory. The device supports speeds down to 12ns with zero standby power dissipation. All speed ranges are specified over the full 5V ±10% range for industrial temperature ranges; 5V ±5% for commercial range 5-volt devices. The device provides a low voltage and edge-sensing "zero" power CMOS PLD solution with 5??A typical standby power so desingers can manage total system power to meet specific application requirements and enhance reliability. Pin keeper circuits on input and output pins eliminate static power consumed by pull-up resistors. CQZ combines the low high-frequency ICC of the Q design with the Z feature. The device replaces 22V10 family and most 24-pin combinatorial PLDs. Ten outputs are each allocated 8 to 16 product terms. Three different modes of operation, configured automatically with software power highly complex logic functions.

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