TABLE lll. Group A inspection for all device types - Continued.
Subgroup |
Symbol |
Test no. |
Applied voltages ref. pin 9 (figures 6, 8) |
Applied digital code-word |
DUT digital output code-word |
Active relays |
Measurement sense lines ref. pin 9 |
Equation and notes |
Limits |
Units |
|||||
Min |
Max |
||||||||||||||
7 VCC (V) |
11 VEE (V) |
1 VDD (V) |
29 <-------------> 40 MSB <------------>LSB |
29 <-------------> 16 MSB <------------>LSB |
Pin |
Value |
Unit |
||||||||
5 TA = +125°C |
LE1 |
451 |
+15.0 " " |
-15.0 " " |
+5.0 " " |
1111 1111 1110 0000 0000 0000 0000 0000 0001 |
1111 1111 111> 0000 0000 000> 0000 0000 00>> |
KA " " |
13 " " |
E628 E629 E630 |
V " " |
For end-point linearity error, LE(N) = (E(N+628)+E(N+629)) / 2-V(ideal)) / S V(ideal) = N1* S+E629-S/2 N1 - Applied ref DAC code-word S = (E628-E629) / 4094 All device types LE1 = ((E629+E630)/2-1*S-E629 +S/2) / S |
-1.0 |
1.0 |
LSB |
LE2 |
452 |
" |
" |
" |
0000 0000 0010 0000 0000 0011 |
0000 0000 001> 0000 0000 0>>> |
" " |
" " |
E631 E632 |
" " |
LE2 = ((E630+E631)/2-2*S-E629 +S/2) / S |
" |
" |
" |
|
LE3 |
453 |
" |
" |
" |
0000 0000 0100 0000 0000 0111 |
0000 0000 010> 0000 0000 >>>> |
" " |
" " |
E633 E634 |
" " |
LE3 = ((E632+E633)/2-4*S-E629 +S/2) / S |
" |
" |
" |
|
LE4 |
454 |
" |
" |
" |
0000 0000 1000 0000 0000 1111 |
0000 0000 100> 0000 000> >>>> |
" " |
" " |
E635 E636 |
" " |
LE4 = ((E634+E635)/2-8*S-E629 +S/2) / S |
" |
" |
" |
|
LE5 |
455 |
" |
" |
" |
0000 0001 0000 0000 0001 1111 |
0000 0001 000> 0000 00>> >>>> |
" " |
" " |
E637 E638 |
" " |
LE5 = ((E636+E637)/2-16*S-E629 +S/2) / S |
" |
" |
" |
|
LE6 |
456 |
" |
" |
" |
0000 0010 0000 0000 0011 1111 |
0000 0010 000> 0000 0>>> >>>> |
" " |
" " |
E639 E640 |
" " |
LE6 = ((E638+E639)/2-32*S-E629 +S/2) / S |
" |
" |
" |
|
LE7 |
457 |
" |
" |
" |
0000 0100 0000 0000 0111 1111 |
0000 0100 000> 0000 >>>> >>>> |
" " |
" " |
E641 E642 |
" " |
LE7 = ((E640+E641)/2-64*S-E629 +S/2) / S |
" |
" |
" |
|
LE8 |
458 |
" |
" |
" |
0000 1000 0000 0000 1111 1111 |
0000 1000 000> 000> >>>> >>>> |
" " |
" " |
E643 E644 |
" " |
LE8 = ((E642+E643)/2-128*S-E629 +S/2) / S |
" |
" |
" |
|
LE9 |
459 |
" |
" |
" |
0001 0000 0000 0001 1111 1111 |
0001 0000 000> 00>> >>>> >>>> |
" " |
" " |
E645 E646 |
" " |
LE9 = ((E644+E645)/2-256*S-E629 +S/2) / S |
" |
" |
" |
|
LE10 |
460 |
" |
" |
" |
0010 0000 0000 0010 1111 1111 |
0010 0000 000> 001> >>>> >>>> |
" " |
" " |
E647 E648 |
" " |
LE10 = ((E646+E647)/2-512*S-E629 +S/2) / S |
" |
" |
" |
|
LE11 |
461 |
" |
" |
" |
0011 0000 0000 0011 1111 1111 |
0011 0000 000> 0>>> >>>> >>>> |
" " |
" " |
E649 E650 |
" " |
LE11 = ((E648+E649)/2-768*S-E629 +S/2) / S |
" |
" |
" |
|
LE12 |
462 |
" |
" |
" |
0100 0000 0000 0100 1111 1111 |
0100 0000 000> 010> >>>> >>>> |
" " |
" " |
E651 E652 |
" " |
LE12 = ((E650+E651)/2-1024*S-E629 +S/2) / S |
" |
" |
" |
|
LE13 |
463 |
" |
" |
" |
0101 0000 0000 0101 1111 1111 |
0101 0000 000> 01>> >>>> >>>> |
" " |
" " |
E653 E654 |
" " |
LE13 = ((E652+E653)/2-1280*S-E629 +S/2) / S |
" |
" |
" |
|
LE14 |
464 |
" |
" |
" |
0110 0000 0000 0110 1111 1111 |
0110 0000 000> 011> >>>> >>>> |
" " |
" " |
E655 E656 |
" " |
LE14 = ((E654+E655)/2-1536*S-E629 +S/2) / S |
" |
" |
" |
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