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5962H9563801VYX View Datasheet(PDF) - Aeroflex Corporation

Part Name
Description
Manufacturer
5962H9563801VYX
Aeroflex
Aeroflex Corporation Aeroflex
5962H9563801VYX Datasheet PDF : 19 Pages
1 2 3 4 5 6 7 8 9 10 Next Last
5.0 DC ELECTRICAL CHARACTERISTICS (Pre/Post-Radiation)*
VDD = 5.0V ±10%; TA = -55°C < TC < +125°C)
SYMBOL
PARAMETER
CONDITION
VIL
VIH
VIH1
VOL
Low-level Input Voltage
High-level Input Voltage
(except XTAL, RST)
High-level Input Voltage
(XTAL, RST)
Low-level Output Voltage1
(Ports 1, 2 and 3)
VOL1
Low-level Output Voltage1,2
(Port 0, ALE, PSEN, PROG)
VOH High-level Output Voltage3
(Ports 1, 2, and 3
ALE and PSEN)
VOH1 High-level Output Voltage
(Port 0 in External Bus Mode)
IIL Logical 0 Input Current
(Ports 1, 2, and 3)
IIL Logical 0 Input Current
(XTAL 1)
ILI Input Leakage Current
(Port 0)
ILI Input Leakage Current
(XTAL1)
CIO4 Pin Capacitance
IDD Power Supply Current:
IOL = 100µA
IOL = 1.6mA
IOL = 3.5mA
IOL = 200µA
IOL = 3.2mA
IOL = 7.0mA
IOH = -10µA
IOH = -30µA
IOH = -60µA
IOH = -200µA
IOH = -3.2mA
IOH = -7.0mA
VIN = 0.0V
VCC = 5.5V
VIN = 0.0V
VCC = 5.5V
VIN = 0.0V or VCC
VCC = 5.5V
VIN = 0.0V or VCC
VCC = 5.5V
@ 1MHZ, 25°C
@16MHz
@20 MHz
MINIMUM
2.0
3.85
4.2
MAXIMUM
0.8
UNIT
V
V
V
0.3
V
0.45
V
1.0
V
0.3
V
0.45
V
1.0
V
V
3.8
V
3.0
V
4.2
V
3.8
V
3.0
V
-50
µA
-65
-65
µA
±25
µA
±65
±65
µA
15
pF
95
mA
120
Notes:
* Post-radiation performance guaranteed at 25°C per MIL-STD-883.
1. Under steady state (non-transient) conditions, IOL must be limited externally as follows:
Maximum IOL per port pin:
10mA
Maximum IOL per 8-bit port-
Port 0: 26mA
Ports 1, 2, & 3: 15mA
Maximum total IOL for all output pins: 71mA
If IOL exceeds the test condition, VOL may exceed the related specification. Pins are not guaranteed to sink current greater than the listed test conditions.
2. Capacitive loading on ports 0 and 2 may cause spurious noise pulses to be superimposed on the VOL of ALE and ports 1 and 3. The noise is due to external bus
capacitance discharging into the port 0 and port 2 pins when these pins make 1 to 0 transitions during bus operations. In applications where capacitance loading
exceeds 100 pF, the noise pulse on the ALE may exceed 0.8V. In these cases, it may be desirable to qualify ALE with a schmitt trigger or use an address latch
with a schmitt trigger strobe input.
3. Capacitive loading ports 0 and 2 cause the VOH on ALE and PSEN to drop below the VDD-0.3 specification when the address lines are stabilizing.
4. Capacitance measured for initial qualification or design changes which may affect the value.
8
 

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