TABLE III. Group A inspection for device type 04 - Continued. 1/
Subgroup |
Symbol |
MIL-STD- 883 method |
Cases E, F |
1 |
2 |
3 |
4 |
5 |
6 |
7 |
8 |
9 |
10 |
11 |
12 |
13 |
14 |
15 |
16 |
Measured terminal |
Limits |
Unit |
|
Cases 1/ 2, X |
2 |
3 |
4 |
5 |
7 |
8 |
9 |
10 |
12 |
13 |
14 |
15 |
17 |
18 |
19 |
20 |
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Test no. |
B |
C |
LT |
RBO |
RBI |
D |
A |
GND |
e |
d |
c |
b |
a |
g |
f |
VCC |
Min |
Max |
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9 Tc = 25°C |
tPLH1 tPHL1 |
3003 Fig. 4 " " " " " " " " " " |
164 & 165 |
GND |
IN |
5.0 V |
5.0 V |
GND |
GND |
GND |
OUT |
5.0 V |
C to d |
5 |
105 |
ns |
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166 & 167 |
" |
" |
" |
" |
GND |
" |
" |
OUT |
" |
C to e |
" |
" |
" |
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168 & 169 |
5.0 V |
" |
" |
" |
5.0 V |
" |
" |
OUT |
" |
C to f |
" |
" |
" |
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170 & 171 |
GND |
GND |
IN |
" |
GND |
5.0 V |
" |
OUT |
" |
C to f |
" |
" |
" |
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172 &173 |
5.0 V |
5.0 V |
" |
" |
IN |
5.0 V |
" |
OUT |
" |
D to a |
" |
" |
" |
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174 & 175 |
GND |
5.0 V |
" |
" |
" |
GND |
" |
OUT |
" |
D to c |
" |
" |
" |
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176 & 177 |
" |
GND |
" |
" |
" |
" |
" |
OUT |
" |
D to g |
" |
" |
" |
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178 & 179 |
" |
" |
" |
GND |
GND |
" |
" |
OUT |
" |
LT to a |
" |
" |
" |
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180 & 181 |
" |
" |
" |
OUT |
GND |
" |
" |
" |
" |
LT to RBO |
" |
" |
" |
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182 & 183 |
" |
" |
5.0 V |
IN |
5.0 V |
" |
" |
" |
OUT |
" |
RBO to a |
" |
" |
" |
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184 & 185 |
" |
" |
" |
IN |
" |
" |
" |
OUT |
" |
RBI to a |
" |
" |
" |
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186 & 187 |
" |
" |
" |
OUT |
" |
" |
" |
" |
" |
RBI to RBO |
" |
" |
" |
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10 |
Same tests and terminal conditions as for subgroup 9, except TC = +125°C and for following limits: tPLH1 = 5 to 158 ns; tPHL1 = 5 to 158 ns. |
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11 |
Same tests, terminal conditions and limits as for subgroup 10, except TC = -55°C |
1/ Pins not designated are high 2.0 V; low σ 0.7 V; or open. Case X and 2 pins not referenced are NC.
2/ Test limits shall be as follows:
Test |
Min/Max limits (mA) for circuits |
||
A |
E |
G |
|
IIL2 |
-.12/-.36 |
-.11/-.35 |
-.12/-.36 |
IIL3 |
-.36/-1.08 |
-.36/-.1.37 |
-.36/-1.08 |
3/ X = Input may be high level or low level.
4/ A pullup resistor of 665ν to 2 kν shall be connected between each output and VCC.
5/ H 1.5 V; L σ 1.5 V; A = 2.5 V; B = 0.4 V.
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