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TABLE III. Group A inspection for all device types Continued.
Applied voltages
Applied digital
DUT digital
Active
Measurement
Limits
Units
ref. pin 9
code-word
output
relays
sense lines
Equation and notes
(figures 6, 8)
code-word
ref. pin 9
Subgroup Symbol Test
Pin  Value  Unit
Min
Max
29 <-------------> 40
29 <-------------> 16
7
11
1
no.
VEE
VDD
VCC
MSB <------------>LSB
MSB <------------>LSB
(V)
(V)
(V)
382
+15.0
-15.0
+5.0
0000 0000 0000
Device types 01, 02
-0.5
1.5
LSB
4
13
E556
V
0000 0000 000φ
VIO = 410*(E566)
VIO
03,04,05,06
-1.5
2.5
"
383
"
"
"
0111 1111 1111
All device types
-4.5
3.5
"
KA
"
E557
"
φφφφ φφφφ φφφφ
TA =
BZ
BZ = 410*(E557)
Device type 01
-.125
.125
%/FSR
AE
384
"
"
"
0000 0000 0000
"
E558
"
+25C
0000 0000 000φ
AE = 100*(9.995-(E559-
"
"
"
1111 1111 1110
"
E559
"
E558)) / (E559-E558)
Device types 02
-.25
.25
"
1111 1111 111φ
03,04,05,06
-.3
.3
"
385
"
"
"
0000 0000 0000
Device type 01
-0.125
0.125
%/FSR
KA
"
E560
"
0000 0000 000φ
BPAE = 100*(19.990*
BPAE
"
"
"
1111 1111 1110
"
"
E561
"
(E560-E559)) /
Device types 02
-0.25
0.25
"
1111 1111 111φ
(E560-E559)
03,04,05,06
-0.3
0.3
"
For end point linearity error,
LE(N) = ((E(N+562)+E(N+563)) / 2-V(ideal))) / S
V(ideal) = N1*S+E563-S / 2, N1 = Applied ref DAC
"
"
"
1111 1111 1110
"
"
E562
"
code word ; S = (E563-E563)/4094
1111 1111 111φ
"
"
"
0000 0000 0000
"
"
E563
"
All device types
-.5
.5
LSB
0000 0000 000φ
386
"
"
"
0000 0000 0001
"
"
"
"
"
E564
"
0000 0000 00φφ
LE1 = ((E563+E564)/2-1*S-E563 +S/2) / S
LE1
387
"
"
"
0000 0000 0010
"
"
"
"
"
E565
"
0000 0000 001φ
LE2 = ((E564+E565)/2-2*S-E563 +S/2) / S
LE2
0000 0000 0011
"
"
E566
"
0000 0000 0φφφ
388
"
"
"
0000 0000 0100
"
"
"
"
"
E567
"
0000 0000 010φ
LE3 = ((E566+E567)/2-4*S-E563 +S/2) / S
LE3
0000 0000 0111
"
"
E568
"
0000 0000 φφφφ
389
"
"
"
0000 0000 1000
"
"
"
"
"
E569
"
0000 0000 100φ
LE4 = ((E568+E569)/2-8*S-E563 +S/2) / S
LE4
0000 0000 1111
"
"
E570
"
0000 000φ φφφφ
390
"
"
"
0000 0001 0000
"
"
"
"
"
E571
"
0000 0001 000φ
LE5 = ((E570+E571)/2-16*S-E563 +S/2) / S
LE5
0000 0001 1111
"
"
E572
"
0000 00φφ φφφφ
391
"
"
"
0000 0010 0000
"
"
"
"
"
E573
"
0000 0010 000φ
LE6 = ((E572+E573)/2-32*S-E563 +S/2) / S
LE6
0000 0011 1111
"
"
E574
"
0000 0φφφ φφφφ
392
"
"
"
0000 0100 0000
"
"
"
"
"
E575
"
0000 0100 000φ
LE7 = ((E574+E575)/2-64*S-E563 +S/2) / S
LE7
0000 0111 1111
"
"
E576
"
0000 φφφφ φφφφ
393
"
"
"
0000 1000 0000
"
"
"
"
"
E577
"
0000 1000 000φ
LE8 = ((E576+E577)/2-128*S-E563 +S/2) / S
LE8
0000 1111 1111
"
"
E578
"
000φ φφφφ φφφφ
394
"
"
"
0001 0000 0000
"
"
"
"
"
E579
"
0001 0000 000φ
LE9 = ((E578+E579)/2-256*S-E563 +S/2) / S
LE9
0001 1111 1111
"
"
E580
"
00φφ φφφφ φφφφ
395
"
"
"
0010 0000 0000
"
"
"
"
"
E581
"
0010 0000 000φ
LE10 = ((E580+E581)/2-512*S-E563 +S/2) / S
LE10
0010 1111 1111
"
"
E582
"
001φ φφφφ φφφφ
396
"
"
"
0011 0000 0000
"
"
"
"
"
E583
"
0011 0000 000φ
LE11 = ((E582+E583)/2-768*S-E563 +S/2) / S
LE11
0011 1111 1111
"
"
E584
"
0φφφ φφφφ φφφφ

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