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Am1404A डेटा पत्रक PDF( Datasheet डाउनलोड )


डेटा पत्रक - 1024-Bit Dynamic Shift Registers - AMD

भाग संख्या Am1404A
समारोह 1024-Bit Dynamic Shift Registers
मैन्युफैक्चरर्स AMD 
लोगो AMD लोगो 
पूर्व दर्शन
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<?=Am1404A?> डेटा पत्रक पीडीएफ

Am1404A pdf
Am1402A/03A/04A· Am2802l03/04
MAXIMUM RATINGS (Above which the useful life may be impaired)
Storage Temperature
Temperature Under Bias
Power Dissipation (Note 1)
Data and Clock Input Voltages with respect to most Positive Supply Voltage, Vee
Power Supply Voltage, VDD with respect to Vee
OPERATING RANGE
Part Number
Am1402A, Am1403A, Am1404A
Am1402ADM, Am1403AHM, Am1404AHM
Am2802DC, Am2803HC, Am2804HC
Am2802DM, Am2803HM, Am2804HM
Vcc
5V ±5%
5V ±5%
5V ±5%
5V ±5%
VDD
-4.75V to -9.45V
-4. 75V to -9.45V
-5V ±5%
-5V ±5%
Temperature Range
O°C to +70°C
_55°C to +125°C
O°C to +70oC
_55°C to +125°C
600mW
0.3Vto -20V
0.3 Vto -20 V
ELECTRICAL CHARACTERISTICS over operating range
Parameters
V IH
VIL
II
10
Iet>L
VOH
VOL
Vet>H
Vet>L
100(-5)
(Note 1)
100(-9)
(Note 1)
Description
Input HIGH Voltage
Input LOW Voltage
Input Current
Output Leakage Current
Clock Leakage Current
Output HIGH Voltage D~iving TTL,
Output HIGH Voltage Driving MOS
Output HIGH Voltage Driving TTL
Output HIGH Voltage Driving MOS
Output LOW Voltage
Clock Input HIGH Level
Clock I nput LOW Level
VOO Current, VOO = -5 V ±5%
VOO Current, VOO = -5V ±5%
VOO Current, VOO = -9V ±5%
Test Conditions
TA=25°C
T A = 25°C, VOUT = OV
TA = 25°C, Vet> = -12V
R,L = 3k to VOO,
VOO = -5V ±5%
RL = 4,7k to VOO,
VOO = -5V ±5%
RL = 4.7k to VOO,
VOO = -9V ±5%
RL = 6.2k to VOO, 3.9k to Vce
VOO = -9V ±5%
VOO = -5V±5%,
RL,= 3k to VOO, IOL = -1.6rnA
RL = 4.7k to VOO
VOO =-9V ±5%,IOL = -1.6rnA
VOO = -5V ±5%
VOO = -9V ±5%
5 MHz Data Rate
33% Duty eyc'le
Vet>L = VCC-17V
TA = 25°C
TA = O°C
TA = _55°e
10MHz Data Rate
40% Duty Cycle
Vet>L = VCC-17
TA = 25°C
TA = O°C
TA =_55°C
3MHz Data Rate TA = 25°C
26% Duty Cycle TA = O°C
Vet>L = VCC-14.7V TA = _55°C
Am1402A, 3A, 4A
Min. Typ. Max.
V e e -2 .O
Vce- 1O
VCC-4·2
<10
500
<10
1000
10 1000
2.4 3.5
VCC-l.9 VCC-l
2.4 3,5
VCC-l.9 VCC-l
-0.3
0.5
VCC-l
Vce-15
VCC-12.6
-0.3
40
0.5
VCC+0.3
Vee-17
VCC-14.7
50
56
30 40
45
Am2802, 3, 4
Min.
Typ.
Max.
V e e -2 .O
VCC-10
VCC-4.2
<10
500
<10
1000
10 1000
Units
V
V
nA
nA
nA
VCC-l.9 VCC-l
VCC-l.9 VCC-l
V
-0.3
0.5
V
VCC-l
VCC+0.3
V
VCC-15
VCC-12.6
Vce-17
VCC-14.7
V
40 50
56 rnA
70
50 60
68 rnA
80
30 40
45 rnA
60
Note: 1. Power dissipation is directly proportional to clock duty cycle and independent of frequency. The duty cycle is the clock LOW time (one cia.
line) divided by the clock period. At VDD = -9V the maximum duty cycle is 26%. The duty cycle should be kept as small as possible to minimi
power dissipation.
5-8

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