CLA200 Zarlink Semiconductor, CLA200 Datasheet - Page 7

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CLA200

Manufacturer Part Number
CLA200
Description
CMOS Gate Arrays
Manufacturer
Zarlink Semiconductor
Datasheet
DC ELECTRICAL CHARACTERISTICS
ABSOLUTE MAXIMUM RATINGS
Note 1: Only required for 5V tolerant push-pull outputs
Exceeding the absolute maximum ratings may cause
permanent damage to the device. Extended exposure at the
maximum ratings will affect device reliability.
HBM stands for Human Body Model
INPUT DC ELECTRICAL SPECIFICATION
Typical characteristics are taken at a nominal supply voltage of 3.3 volts at 25 C. Min and Max values are defined over all
process conditions from -40 to +85 C.
Supply Voltage (VDD)
Bias for 5V tolerant cells
(VBIAS) (see note 1)
Input Voltage
Output Voltage
Static Discharge (HBM)
Storage Temperature
Input Loads
Input Hold Cell - HD
Input Levels
All Cells Types
Input Leakage
Output (Tristate) Leakage
Input Capacitance
Output Capacitance 01, 03, 06
Output Capacitance 12
Weak Pull-Up Current
Weak Pull-Down Current
Hold-Up Current
Hold-Down Current
Hold Threshold
CMOS - Vil
CMOS - Vih
TTL - Vil
TTL - Vih
Vt-
Vt+
Ceramic
Plastic
Parameter
Parameter
Min
-0.5
-0.5
-0.5
-0.5
-65
-55
0.7 VDD
VDD + 0.5
VDD + 0.5
Min.
-16
-12
2.0
13
-1
-1
Max
8
150
150
5.0
7.0
2
1.48
Typ.
-30
-24
1.2
1.6
Value
30
19
4
4
8
Units
KV
V
V
V
V
C
C
Advance Information
0.3 VDD
Max.
-50
-38
0.8
+1
+1
64
38
NORMAL OPERATING CONDITIONS
Supply Voltage (VDD)
Bias for 5V tolerant cells
Input Voltage
Input Voltage on 5V Tolerant
I/P's with VDD 2.7V
Output Voltage
DC Current per Bond Pad
Junction Temperature
Ambient Temperature-
Units
Commercial
Industrial
Military
pF
pF
pF
V
V
V
V
V
A
A
A
A
A
A
Parameter
VDD = 3.6V
No Pull Up/Down Cells
No Pull Up/Down Cells
Not including package
Not including package
Not including package
3.0V < VDD < 3.6V
Input at 0V
Input at VDD
3.0V < VDD < 3.6V
@ 55% of VDD
@ 30% of VDD
@ 3.3V
1.8V < VDD < 3.6V
1.8V < VDD < 3.6V
3.0V < VDD < 3.6V
3.0V < VDD < 3.6V
@ 3.3V
@ 3.3V
CLA200 Series
Min
1.8
4.5
0.0
0.0
0.0
-55
-40
-55
0
-
VBIAS
VDD
VDD
Max
150
125
3.6
5.5
30
70
85
Units
mA
V
V
V
V
V
C
C
C
C
7

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