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WM5621 데이터 시트보기 (PDF) - Wolfson Microelectronics plc

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WM5621
Wolfson
Wolfson Microelectronics plc Wolfson
WM5621 Datasheet PDF : 14 Pages
1 2 3 4 5 6 7 8 9 10 Next Last
WM5621L
Electrical Characteristics (continued)
VDD = 3 V to 3.6V, GND = 0 V, VREF = 1.25 V, RL = 10 k, CL = 100 pF, x1 gain output range, TA = full range
unless otherwise stated.
PARAMETER
Max. full-scale output voltage
High level input current
Low level input current
Output sink current DACA
Output sink current DACB
Output Source Current
Input capacitance
Reference input capacitance
Supply current
Supply current One low
power DAC Active
Supply Current ALL DACs
Shutdown
Reference input current
Integral Nonlinearity
Differential Nonlinearity
Zero scale error
Zero scale error temperature
coefficient
Zero scale error supply
rejection
Full scale error
Full scale error temperature
coefficient
Full scale error supply
rejection
Feedback resistor network
resistance
SYMBOL
Vomax
IIH
IIL
Io (sink)
Io (sink)
Io (source)
CI
IDD
IDAC
Iddsd
IREF
INL
DNL
ZCE
FSE
CONDITIONS
Vref=1.5V, open cct. output
,x2 gain
VI = VDD
VI = 0V
at DAC code 0
at DAC code 0
Each DAC output, at DAC
code 255
A, B, C, D inputs
VDD = 3.6V
VDD = 5.0V
VDD = 3.6V (Note 4)
MIN
TYP MAX UNIT
VDD-100 2
mV
± 10 µA
± 10 µA
5
µA
20
µA
1
mA
15
pF
15
pF
1
1.5 mA
1
1.5 mA
150 250 µA
VDD = 3.6V (see note 4)
50 100 µA
A, B, C, D inputs
VREF = 1.25V, Range x2.
(note 5,13)
VREF = 1.25V, Range x2.
(note 6,13)
VREF = 1.25V,Range x2.
0
(note 7)
VREF = 1.25V,Input code = 00
Hex (note 8)
± 10 µA
± 1.0 LSB
± 0.1 ± 0.9 LSB
30 mV
10
µV/OC
2
mV/V
Range x 2. (note 9)
VREF = 1.25V,Range x2.
(note 10)
± 60 mV
± 25
µV/OC
2
mV/V
168
k
Notes:
1. Absolute Maximum Ratings are stress ratings only.
Permanent damage to the device may be caused by
continuously operating at or beyond these limits. De-
vice functional operating range limits are given under
Recommended Operating Conditions. Guaranteed
performance specifications are given under Electrical
Characteristics at the test conditions specified.
2. The device operates over the supply voltage range of
2.7V to 5.5V. Over this voltage range the device re-
sponds correctly to data input by changing the voltage
output but conversion accuracy is not specified over
this extended range.
Wolfson Microelectronics
3

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