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What is PA7024JI-25?

This electronic component, produced by the manufacturer "ETC", performs the same function as "Programmable Electrically Erasable Logic Array".


PA7024JI-25 Datasheet PDF - ETC

Part Number PA7024JI-25
Description Programmable Electrically Erasable Logic Array
Manufacturers ETC 
Logo ETC Logo 


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PA7024 PEELTM Array
Programmable Electrically Erasable Logic Array
Features
s CMOS Electrically Erasable Technology
- Reprogrammable in 24-pin DIP, SOIC and
28-pin PLCC packages
-Optional JN package for 22V10 power/ground
compatibility
s Most Powerful 24-pin PLD Available
- 20 I/Os, 2 inputs/clocks, 40 registers/latches
- 40 logic cell output functions
- PLA structure with true product-term sharing
- Logic functions and registers can be I/O-buried
s Flexible Logic Cell
- Multiple output functions per cell
- D,T and JK registers with special features
- Independent or global clocks, resets, presets,
clock polarity and output enables
-Sum of products logic for output enable
General Description
The PA7024 is a member of the Programmable Electrically
Erasable Logic (PEEL™) Array family based on ICT’s
CMOS EEPROM technology. PEEL™ Arrays free design-
ers from the limitations of ordinary PLDs by providing the
architectural flexibility and speed needed for today’s pro-
grammable logic designs. The PA7024 is by far the most
powerful 24-pin PLD available today with 20 I/O pins, 2
input/global-clocks and 40 registers/latches (20 buried logic
cells and 20 I/O registers/latches). Its logic array imple-
ments 84 sum-of-product logic functions that share 80
product terms. The PA7024’s logic and I/O cells (LCCs,
IOCs) are extremely flexible, offering two output functions
per logic cell (a total of 40 for all 20 logic cells). Logic cells
are configurable as D, T, and JK registers with independent
Figure 1: Pin Configuration
s High-Speed Commercial and Industrial Versions
- As fast as 10ns/15ns (tpdi/tpdx), 71.4MHz (fMAX)
- Industrial grade available for 4.5 to 5.5V Vcc
and -40 to +85°C temperatures
s Ideal for Combinatorial, Synchronous and
Asynchronous Logic Applications
- Integration of multiple PLDs and random logic
- Buried counters, complex state-machines
- Comparators, decoders, multiplexers and
other wide-gate functions
s Development and Programmer Support
- ICT PLACE Development Software
- Fitters for ABEL, CUPL and other software
-Programming support by ICT PDS-3 and popular third-
party programmers
or global clocks, resets, presets, clock polarity, and other
special features. This makes them suitable for a wide vari-
ety of combinatorial, synchronous and asynchronous logic
applications. With pin compatibility and super-set function-
ality to most 24-pin PLDs, (22V10, EP610/630, GAL6002),
the PA7024 can implement designs that exceed the archi-
tectures of such devices. The PA7024 supports speeds as
fast as 10ns/15ns (tpdi/tpdx) and 71.4MHz (fMAX) at mod-
erate power consumption 120mA (85mA typical). Packag-
ing includes 24-pin DIP, SOIC and 28-pin PLCC (see Figure
1). Development and programming support for the PA7024
is provided by ICT and popular third-party development tool
manufacturers.
Figure 2. Block Diagram
DIP
PLCC-J
SOIC
PLCC-JN
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PA7024JI-25 equivalent
Sequential Timing - Waveforms and Block Diagram
PA7024
Notes
1. Minimum DC input is -0.5V, however inputs may undershoot to -2.0V for
periods less than 20ns.
2. Test points for Clock and VCC in tR,tF,tCL,tCH, and tRESET are referenced
at 10% and 90% levels.
3. I/O pins are 0V or VCC.
4. Test one output at a time for a duration of less than 1 sec.
5. Capacitances are tested on a sample basis.
6. Test conditions assume: signal transition times of 5ns or less from the
10% and 90% points, timing reference levels of 1.5V (unless otherwise
specified).
7. tOE is measured from input transition to VREF ±0.1V (See test loads for
VREF value). tOD is measured from input transition to VOH -0.1Vor VOL
+0.1V.
8. “System-clock” refers to pin 1 or 13 (2 or 16 PLCC) high speed clocks.
9. For T or JK registers in toggle (divide by 2) operation only.
10. For combinatorial and async-clock to LCC output delay.
11. ICC for a typical application: This parameter is tested with the device
programmed as a 10-bit D-type counter.
12. Test loads are specified in Section 5 of this Data Book.
13. “Async. clock” refers to the clock from the Sum term (OR gate).
14. The “LCC” term indicates that the timing parameter is applied to the
LCC register. The “IOC” term indicates that the timing parameter is
applied to the IOC register. The “LCC/IOC/INC” term indicates that the
timing parameter is applied to both the LCC, IOC and INC registers.
15. The term “Input” without any reference to another term refers to an
(external) input pin.
16. The parameter tSPI indicates that the PCLK signal to the IOC register is
always slower than the data from the pin or input by the absolute value
of (tSK -tPK -tIA). This means that no set-up time for the data from the
pin or input is required, i.e. the external data and clock can be sent to
the device simultaneously. Additionally, the data from the pin must
remain stable for tHPI time, i.e. to wait for the PCLK signal to arrive at
the IOC register.
17. Typical (typ) ICC is measured at TA =25°C, Freq = 25MHz, VCC =5V.
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