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TABLE III. Group A inspection for all device types Continued.
Subgroup
Symbol
MIL-
Adapter pin numbers
Limits
Unit
STD-
Test
Notes
Energize
Measured pin
Equation
883
no.
d relays
method
1
2
3
4
5
6
7
No.
Value Units
1/
Min
Max
1
8/
8.5 V -21.5 V
Open
5.5 V
0V
Open Open
None
4
29
0
10
A
A
IIH
I4
IIH = I4
30
"
8.5 V -21.5 V
"
0V
5.5 V
"
"
"
5
"
0
10
"
I5
IIH = I5
31
"
21.5 V -8.5 V
"
0V
5.5 V
"
"
"
4
"
-1.0
1.0
"
TA =
IIL
I6
IIL = I6
32
"
21.5 V -8.5 V
"
5.5 V
0V
"
"
"
5
"
-1.0
1.0
"
+25C
I7
IIL = I7
9/
15 V
-15 V
10 V
2.5 V
0V
"
"
K1,K2
9
3011
33
mA
-25
mA
IOS(+)
I8
IOS(+) = I8
Type 01
Type 02
-30
"
9/
15 V
-15 V
-10 V
2.5 V
0V
"
"
K1,K2
9
3011
34
"
25
mA
IOS(-)
I9
IOS(-) = I9
Type 01
Type 02
30
"
10/
3.5 V -26.5 V
See fig. 8
-11. 5 V
"
"
None
8
35
mV
-100
100
pA
IHL(+)
E34
IHL(+) = (E35 E34)
timing
"
mV
"
"
"
E35
10/
26.5 V -3.5 V
11.5 V
"
"
"
"
36
mV
"
"
"
Ćt = 100 ms
IHL(-)
E36
IHL(-) = (E37 E36)
"
mV
"
"
"
E37
11/
15 V
-15 V
11.5 V  2.5 V
0V
"
9.5 V K1,K2,K3
7
37
mA
-3
mA
ICH(+)
I10
ICH(+) = I10
11/
"
"
-11.5 V 2.5 V
"
"
-9.5 V
"
"
38
mA
3
mA
ICH(-)
I11
ICH(-) = I11
12/
"
"
-2 V
2.0 V
"
"
0V
"
"
39
mA
1
mA
VTH(H) 2 V if I12 1 mA
VTH(H)
I12
12/
"
"
-2 V
0.8 V
"
"
0V
"
"
40
-10
10
A
A
VTH(L) 0.5 V if 10 < I13 < 10 A
VTH(L)
I13
4001
41
2/ 3/
2
3.5 V
-26.5 V
Open
-9 V  -11.5 V Open Open
None
8
V
-5
5
mV
VIO
E38
VIO = 10 (E38 E1)
"
42
"
26.5 V
-3.5 V
"
14 V  11.5 V
"
"
"
"
"
"
"
"
E39
VIO = 10 (E39 E1)
"
43
"
15 V
-15 V
"
2.5 V
0V
"
"
"
"
"
"
"
"
TA =
E40
VIO = 10 (E40 E1)
"
44
"
7V
-3 V
"
4.5 V
2V
"
"
"
"
"
"
"
"
+125C
E41
VIO = 10 (E41 E1)
"
45
"
3V
-7 V
"
0.5 V
-2 V
"
"
"
"
"
"
"
"
E42
VIO = 10 (E42 E1)
3/
3.5 V
-26.5 V
"
9 V  -11.5 V
"
"
K1
"
4001
46
"
-25
75
nA
IIB
E43
IIB = 100 (E38 E43)
"
47
"
26.5 V
-3.5 V
"
14 V  11.5 V
"
"
"
"
"
"
"
"
E44
IIB = 100 (E39 E44)
"
48
"
15 V
-15 V
"
2.5 V
0V
"
"
"
"
"
"
"
"
E45
IIB = 100 (E40 E45)
"
49
"
7V
-3 V
"
4.5 V
2V
"
"
"
"
"
"
"
"
E46
IIB = 100 (E41 E46)
"
50
"
3V
-7 V
"
0.5 V
-2 V
"
"
"
"
"
"
"
"
E47
IIB = 100 (E42 E47)
51
Calculate value using data from tests 41, 42, 46, and 47.
1
G
ZI
ZI = 0.23 / |E38 +E44 E39 E43|
52
3.5 V -26.5 V
Open
-9 V
-11.5 V Open Open
K4
8
V
-.02
.02
%
AE
E48
AE = (E48 E49) / 23
26.5 V -3.5 V
"
14 V
11.5 V
"
"
K4
"
"
"
E49
53
-02
5V
-25 V
"
-7.5 V
-10 V
"
"
K7
"
"
-.02
.02
"
E50
AE = (E50 E51) / 20
only
25 V
-5 V
"
12.5 V
10 V
"
"
K7
"
"
"
E51
54
3V
-7 V
"
0.5 V
-2 V
"
"
K4
"
"
-.04
.04
"
E52
AE = (E52 E53) / 4
7V
-3 V
"
4.5 V
2V
"
"
K4
"
"
"
E53
6
mV
55
15 V
-15 V
"
2.5 V
0V
"
"
K5
"
"
VIO ADJ(+) = 10 (E40 E54)
VIO
E54
ADJ(+)
56
15 V
-15 V
"
2.5 V
0V
"
"
K8
"
"
-6
mV
VIO ADJ(-) = 10 (E40 E55)
VIO
E55
ADJ(-)
See footnotes at end of time.

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