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Datasheet: AT22V10B-7JC (ATMEL Corporation)

High Speed UV Erasable Programmable Logic Device

 

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ATMEL Corporation

Document Outline

DIP/SOIC
PLCC
High Speed
UV Erasable
Programmable
Logic Device
Description
The AT22V10B is an ultra-high performance CMOS Programmable Logic Device (PLD).
Speeds down to 7.5 ns and operation up to 166 MHz are offered. All pins offer a low
10
A
leakage.
The AT22V10B logic functionality is fully compatible with the standard 22V10. The 12 dedi-
cated inputs and ten configurable I/O pins allow implementation of logic requiring up to 22
input signals. The AT22V10B also provides individual output enable product terms for each
of the ten I/Os.
(continued)
Pin Configurations
Pin Name
Function
CLK/IN
Clock and Logic Input
IN
Logic Inputs
I/O
Bidirectional Buffers
*
No Internal Connection
VCC
+5 V Supply
Features
High Performance Programmable Logic Device
7.5 ns Max Propagation Delay
Up to 166 MHz Operation
5 V
10% Operation
Fully Compatible with Standard 22V10
Identical Functionality/Fuse-Map
TTL Compatible Inputs and Outputs
10
A Leakage Maximum
Reprogrammable - Tested 100% for Programmability
High Reliability
Proven UV Erasable CMOS Technology
2000 V ESD Protection
200 mA Latch-Up Protection
Full Military, Commercial and Industrial Temperature Ranges
Dual-In-Line and Surface Mount Packages with Standard Pinouts
PROGRAMMABLE
INTERCONNECT
AND
COMBINATORIAL
LOGIC ARRAY
LOGIC
OPTION
(UP T0 10
FLIP-FLOPS)
OUTPUT
OPTION
8 TO 16
PRODUCT
TERMS
OE PRODUCT TERMS
10
I/O PINS
12
INPUT PINS
1
Logic Diagram
*
GND IN
I/O
I/O
IN
VCC
*
CLK/IN
I/O
I/O
IN IN
1
15
22
8
GND
15
16
17
18
19
20
21
22
23
24
14
13
12
11
10
9
8
7
6
5
4
3
2
1
IN
Vcc
I/O
I/O
I/O
I/O
I/O
I/O
I/O
I/O
I/O
I/O
IN
CLK/IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
IN
I/O
I/O
I/O
I/O
I/O
I/O
*
IN
IN
IN
IN
IN
IN
*
0226B
AT22V10B
1-109
I/O
OE
Logic
From
Option
Output Options
To
Output
Output
From
Logic Options
I/O
OE
From
Logic
Option
Q
SP
D
AR
Q
CK
To
Output
Temperature Under Bias.................-55
o
C to +125
o
C
Storage Temperature......................-65
o
C to +150
o
C
Voltage on Any Pin with
Respect to Ground........................ -2.0 V to +7.0 V
(1)
Voltage on Input Pins
with Respect to Ground
During Programming................... -2.0 V to +14.0 V
(1)
Programming Voltage with
Respect to Ground...................... -2.0 V to +14.0 V
(1)
Integrated UV Erase Dose .............. 7258 W
sec/cm
2
*NOTICE: Stresses beyond those listed under "Absolute Maximum
Ratings" may cause permanent damage to the device. This is a
stress rating only and functional operation of the device at these
or any other conditions beyond those indicated in the operational
sections of this specification is not implied. Exposure to absolute
maximum rating conditions for extended periods may affect de-
vice reliability.
Note:
1. Minimum voltage is -0.6 V dc which may undershoot to -2.0 V
for pulses of less than 20 ns. Maximum output pin voltage is
V
CC
+0.75 V dc which may overshoot to +7.0 V for pulses of less
than 20 ns.
Absolute Maximum Ratings*
The AT22V10B incorporates a variable product term architec-
ture. Each output is allocated from eight to 16 product terms,
which allows highly complex logic functions to be realized.
The AT22V10B includes two additional product terms to pro-
vide synchronous preset and asynchronous reset. These terms
are common to all ten registers. All registers are automatically
cleared upon power up.
Register preload simplifies testing. A security fuse prevents un-
authorized copying of programmed fuse patterns.
Description
(Continued)
1-110
AT22V10B
D.C. Characteristics
Symbol Parameter
Condition
Min
Max
Units
I
LI
Input Load Current
V
IN
= -0.1 V to V
CC
+1 V
10
A
I
LO
Output Leakage Current
V
OUT
= -0.1 V to V
CC
+0.1 V
10
A
I
CC
Power Supply Current
f = 0 MHz to F
MAX
, V
CC
= MAX,
V
IN
= GND, Outputs Open
Com.
140
mA
Ind., Mil.
160
mA
I
OS
(
1
)
Output Short Circuit Current V
OUT
= 0.5 V
-30
-120
mA
V
IL
Input Low Voltage
-0.6
0.8
V
V
IH
Input High Voltage
2.0
V
CC
+0.75
V
V
OL
Output Low Voltage
V
IN
= V
IH
or V
IL
,
V
CC
= MIN
I
OL
= 16 mA
Com.,Ind.
0.5
V
I
OL
= 12 mA
Mil.
0.5
V
I
OL
= 24 mA
Com.
0.8
V
V
OH
Output High Voltage
V
IN
= V
IH
or V
IL
,
V
CC
= MIN
I
OH
= -4.0 mA
2.4
V
Notes: 1. Not more than one output at a time should be shorted. Duration of short circuit test should not exceed 30 sec.
D.C. and A.C. Operating Conditions
Commercial
AT22V10B
-7
Commercial
AT22V10B
-10
Industrial
AT22V10B
-10
Military
AT22V10B
-10
Operating Temperature (Case)
0
o
C - 70
o
C
0
o
C - 70
o
C
-40
o
C - 85
o
C
-55
o
C - 125
o
C
V
CC
Power Supply
5 V
5%
5 V
10%
5 V
10%
5 V
10%
AT22V10B
1-111
OUTPUT
PIN
5.0V
CL= 50pF
R1= 338
R2= 248
Military
AC
MEASUREMENT
LEVEL
AC
DRIVING
LEVELS
0.0V
3.0V
1.5V
tR, tF < 2 ns (10% to 90%)
Input Test Waveforms and
Measurement Levels
tCO
tAP
tER
HIGH Z
OUTPUT
VALID
OUTPUT
VALID
OUTPUTS
ASYNCH. RESET
INPUTS,I/O
CP
tP
tWH
tS
OUTPUTS
VALID
OUTPUT
VALID
OUTPUT
HIGH Z
REG. FEEDBACK
SYNCH. PRESET
REGISTERED
COMBINATORIAL
tH
tPD
tWP
tAR
tAW
OUTPUT
VALID
VALID
OUTPUT
tER
tEA
tEA
Note:
1. Timing measurement reference is 1.5 V. Input AC driving levels are 0.0 V and 3.0 V, unless otherwise specified.
A.C. Waveforms
(1)
OUTPUT
PIN
5.0V
CL= 50pF
R1= 250
R2= 167
Output Test Loads:
Commercial
(1)
Note:
1. CL = 30 pF for AT22V10B-7
A.C. Characteristics
AT22V10B-7
AT22V10B-10
Symbol
Parameter
Min
Typ
Max
Min
Typ
Max
Units
t
PD
Input or Feedback to Non-Registered Output
5
7.5
6
10
ns
t
EA
Input to Output Enable
5
7.5
6
10
ns
t
ER
Input to Output Disable
5
7.5
6
10
ns
t
CF
(1)
Clock to Feedback
0
1
2
0
1
2
ns
t
CO
Clock to Output
0
3.5
5.5
0
4
7
ns
t
S
Input or Feedback Setup Time
3.5
2
5
3
ns
t
H
Hold Time
0
0
ns
t
P
Clock Period
6
7
ns
t
WL
(1)
Clock Width Low
3
3.5
ns
t
WH
Clock Width High
3
3.5
ns
F
MAX
External Feedback 1/(t
S
+t
CO
)
111
83
MHz
Internal Feedback 1/(t
S
+ t
CF
)
166
142
MHz
No Feedback 1/(t
P
)
166
142
MHz
t
AW
Asynchronous Reset Width
6
3
7
4
ns
t
AR
Asynchronous Reset, Synchronous Preset,
Recovery Time
7
4
8
5
ns
t
AP
Asynchronous Reset to Registered Output
Reset
6
10
8
14
ns
Note:
1. This parameter is only sampled and is not 100% tested.
1-112
AT22V10B
Functional Logic Diagram AT22V10B
AT22V10B
1-113
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