LTC1096/LTC1096L
LTC1098/LTC1098L
5
10968fc
CONVERTER AND MULTIPLEXER CHARACTERISTICS
LTC1096/LTC1098
The
l denotes the specications which apply over the full operating temperature range, otherwise specications are at TA = 25°C.
VCC = 5V, VREF = 5V, fCLK = 500kHz, unless otherwise noted.
PARAMETER
CONDITIONS
LTC1096A/LTC1098A
LTC1096/LTC1098
UNITS
MIN
TYP
MAX
MIN
TYP
MAX
Resolution (No Missing Code)
l
8
Bits
Offset Error
l
±0.5
LSB
Linearity Error
(Note 4)
l
±0.5
LSB
Full Scale Error
l
±0.5
±1.0
LSB
Total Unadjusted Error (Note 5)
VREF = 5.000V
l
±0.5
±1.0
LSB
Analog Input Range
(Notes 6, 7)
–0.05V to VCC + 0.05V
V
REF Input Range (Notes 6, 7)
4.5 ≤ VCC ≤ 6V
6V < VCC ≤ 9V, LTC1096
–0.05V to VCC + 0.05V
–0.05V to 6V
V
Analog Input Leakage Current
(Note 8)
l
±1.0
μA
LTC1096/LTC1098
The
l denotes the specications which apply over the full operating temperature range, otherwise specications are at TA = 25°C.
VCC = 3V, VREF = 2.5V, fCLK = 250kHz, unless otherwise noted.
PARAMETER
CONDITIONS
LTC1096A/LTC1098A
LTC1096/LTC1098
UNITS
MIN
TYP
MAX
MIN
TYP
MAX
Resolution (No Missing Code)
l
8
Bits
Offset Error
l
±0.75
±1.0
LSB
Linearity Error
(Notes 4, 9)
l
±0.5
±1.0
LSB
Full-Scale Error
l
±1.0
LSB
Total Unadjusted Error (Notes 5, 9)
VREF = 2.500V
l
±1.0
±1.5
LSB
Analog Input Range
(Notes 6, 7)
–0.05V to VCC + 0.05V
V
REF Input Range (Notes 6, 7, 9)
3V ≤ VCC ≤ 6V
–0.05V to VCC + 0.05V
V
Analog Input Leakage Current
(Notes 8, 9)
l
±1.0
μA
LTC1096L/LTC1098L
The
l denotes the specications which apply over the full operating temperature range, otherwise specications are at TA = 25°C.
VCC = 2.65V, VREF = 2.5V, fCLK = 250kHz, unless otherwise noted.
PARAMETER
CONDITIONS
LTC1096A/LTC1098A
UNITS
MIN
TYP
MAX
Resolution (No Missing Code)
l
8
Bits
Offset Error
l
±1.0
LSB
Linearity Error
(Note 4)
l
±1.0
LSB
Full-Scale Error
l
±1.0
LSB
Total Unadjusted Error (Note 5)
VREF = 2.5V
l
±1.5
LSB
Analog Input Range
(Notes 6, 7)
–0.05V to VCC + 0.05V
V
REF Input Range (Note 6)
2.65V ≤ VCC ≤ 4.0V
–0.05V to VCC + 0.05V
V
Analog Input Leakage Current
(Note 8)
l
±1.0
μA