MIL-M-38510/103H
TABLE I. Electrical performance characteristics - Continued.
Test |
Symbol |
Conditions 1/ 2/ -55°C ≤ TA ≤ +125°C unless otherwise specified |
Temperature |
Device type |
Limits |
Unit |
|
Min |
Max |
||||||
Response time, output saturated low level to threshold level |
tLTHR |
See figure 3, CL = 5 pF, 100 mV step, 5 mV overdrive |
TA = +25°C |
01,02, 03 |
60 |
ns |
|
Strobe release time |
tSTRL |
See figure 4, TA = +25°C, CL = 5 pF, VID = +10 mV |
TA = +25°C |
02,03 |
15 |
ns |
|
Response time, low-to-high level collector output |
tRLHC |
VOD (overdrive) = -5 V, CL = 50 pF, VIN = 100 mV |
-55°C ≤ TA ≤ +25°C |
04,05 |
300 |
ns |
|
TA = +125°C |
640 |
||||||
VOD (overdrive) = -5 V, CL = 50 pF minimum, VIN = 100 mV |
TA = +25°C, -55°C |
06,07 |
125 |
||||
TA = +125°C |
160 |
||||||
Response time, high-to-low level collector output |
tRHLC |
VOD (overdrive) = +5 V, CL = 50 pF, VIN = 100 mV |
-55°C ≤ TA ≤ +25°C |
04,05 |
300 |
ns |
|
TA = +125°C |
500 |
||||||
VOD (overdrive) = +5 V, CL = 50 pF minimum, VIN = 100 mV |
TA = +25°C, +125°C, -55°C |
06,07 |
160 |
1/ For device types 01, 02, and 03, unless otherwise specified, +VCC = +12 V dc and -VCC = -6 V.
Unless otherwise specified, for device type 02, strobe on device not being tested is connected to ground; strobe on
device being tested is left open. Unless otherwise specified, for device type 03, strobes are at a high level for all tests.
2/ For device types 04, 05, 06, and 07, unless otherwise specified, VIC = 0 V, ±VCC = ±15 V and -55°C ≤ TA ≤ +125°C.
Limits apply to each half of device types 05, 06, and 07 except as noted for +ICC and -ICC.
3/ VIC is achieved by algebraically subtracting the common mode voltage from each VCC (power supplies) and algebraically adding it to VIN. VIC can be calculated by using the following formula:
VIC = -[((+VCC) + (-VCC)) / 2] +VIN
4/ Subscript (R) indicates tests which are performed with input stage current raised by connecting BAL and
BAL / STB terminals to +VCC.
5/ The output voltage follows the strobe voltage, staying one diode drop (0.7 V) below.
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