TIBPAL22V10-5C Datasheet PDF Download, etcTI





(PDF) TIBPAL22V10-5C Datasheet Download

Part Number TIBPAL22V10-5C
Description HIGH-PERFORMANCE IMPACT-XL PROGRAMMABLE ARRAY LOGIC CIRCUIT
Manufacture etcTI
Total Page 17 Pages
PDF Download Download TIBPAL22V10-5C Datasheet PDF

Features: TIBPAL22V10-5C HIGH-PERFORMANCE IMPACT-X L™ PROGRAMMABLE ARRAY LOGIC CIRCUIT SRPS028A – MAY 1992 – REVISED OCTOB ER 1993 • High-Performance Operation : fmax (External Feedback) . . . 117 MH z Propagation Delay . . . 5 ns Max • Increased Logic Power – Up to 22 Inpu ts and 10 Outputs • Increased Product Terms – Average of 12 Per Output • Variable Product Term Distribution All ows More Complex Functions to Be Implem ented • Each Output Is User Programma ble for Registered or Combinational Ope ration, Polarity, and Output Enable Con trol • Power-Up Clear on Registered O utputs • TTL-Level Preload for Improv ed Testability • Extra Terms Provide Logical Synchronous Set and Asynchronou s Reset Capability • Fast Programming , High Programming Yield, and Unsurpass ed Reliability Ensured Using Ti-W Fuses • AC and DC Testing Done at the Fact ory Utilizing Special Designed-In Test Features • JEDEC Approved Revolutiona ry Power and Ground Pinout for 28-Pin Chip Carrier Reduces Cross Talk and Ground Bounce • JEDEC.

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TIBPAL22V10-5C
HIGH-PERFORMANCE IMPACT-XLPROGRAMMABLE ARRAY LOGIC CIRCUIT
SRPS028A – MAY 1992 – REVISED OCTOBER 1993
High-Performance Operation:
fmax (External Feedback) . . . 117 MHz
Propagation Delay . . . 5 ns Max
Increased Logic Power – Up to 22 Inputs
and 10 Outputs
Increased Product Terms – Average of 12
Per Output
Variable Product Term Distribution
Allows More Complex Functions to Be
Implemented
Each Output Is User Programmable for
Registered or Combinational Operation,
Polarity, and Output Enable Control
Power-Up Clear on Registered Outputs
TTL-Level Preload for Improved Testability
Extra Terms Provide Logical Synchronous
Set and Asynchronous Reset Capability
Fast Programming, High Programming
Yield, and Unsurpassed Reliability Ensured
Using Ti-W Fuses
AC and DC Testing Done at the Factory
Utilizing Special Designed-In Test Features
JEDEC Approved Revolutionary Power and
Ground Pinout for 28-Pin Chip Carrier
Reduces Cross Talk and Ground Bounce
JEDEC File Compatibility Allows Previous
’22V10 Designs to be Programmed Into the
TIBPAL22V10-5C Without Modifications
FN PACKAGE
(TOP VIEW)
I/O/Q
GND
I/O/Q
VCC
I/O/Q
GND
I/O/Q
4 3 2 1 28 27 26
5 25
6 24
7 23
8 22
9 21
10 20
11 19
12 13 14 15 16 17 18
I/O/Q
GND
I/O/Q
VCC
I/O/Q
GND
I/O/Q
description
The TIBPAL22V10-5C is a programmable array logic device featuring high speed and functional equivalency
when compared to presently available devices. The TIBPAL22V10-5C is implemented with the familiar
sum-of-products (AND-OR) logic structure featuring programmable output logic macrocells. These
IMPACT-XLcircuits combine the latest Advanced Low-Power Schottky technology with proven titanium-
tungsten fuses to provide reliable, high-performance substitutes for conventional TTL logic.
This device contains up to 22 inputs and 10 outputs. It incorporates the unique capability of defining and
programming the architecture of each output on an individual basis. Outputs can be registered or nonregistered
and inverting or noninverting as shown in the output logic macrocell diagram. The ten potential outputs are
enabled through the use of individual product terms.
Further advantages can be seen in the introduction of variable product term distribution. This technique
allocates from 8 to 16 logical product terms to each output for an average of 12 product terms per output. This
variable allocation of terms allows far more complex functions to be implemented than in previously available
devices.
This device is covered by U.S. Patent 4,410,987.
IMPACT-XL is a trademark of Texas Instruments Incorporated.
PRODUCTION DATA information is current as of publication date.
Products conform to specifications per the terms of Texas
Instruments standard warranty. Production processing does not
necessarily include testing of all parameters.
Copyright © 1993, Texas Instruments Incorporated
POST OFFICE BOX 655303 DALLAS, TEXAS 75265
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