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DAC11001A Datasheet(PDF) 9 Page - Texas Instruments

No. de Pieza. DAC11001A
Descripción  DACx1001 20-Bit, 18-Bit, and 16-Bit, Low-Noise, Ultra-Low Harmonic Distortion, Fast-Settling, High-Voltage Output, Digital-to-Analog Converters (DACs)
Descarga  42 Pages
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Fabricante  TI1 [Texas Instruments]
Página de inicio  http://www.ti.com
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DAC11001A Datasheet(HTML) 9 Page - Texas Instruments

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9
DAC11001A, DAC91001, DAC81001
www.ti.com
SLASEL0 – OCTOBER 2019
Product Folder Links: DAC11001A DAC91001 DAC81001
Submit Documentation Feedback
Copyright © 2019, Texas Instruments Incorporated
Electrical Characteristics (continued)
at TA = –40°C to +125°C, VCC = +15 V, VSS = –15 V, AVDD = 5.5 V, DVDD = 3.3 V, IOVDD = 1.8 V, see note
(1) for V
REFPF and
VREFNF, OUT pin buffered with unity gain OPA827, ROFS, RCM, RFB unconnected, and all typical specifications at TA = 25°C,
(unless otherwise noted)
PARAMETER
TEST CONDITIONS
MIN
TYP
MAX
UNIT
Code change glitch impulse magnitude
±1 LSB change around mid code
(including feedthrough), VREFPF = 10 V,
VREFNF = 0 V, measured at output of
buffer op amp
5
mV
Reference feedthrough
VREFPF = 10 V ± 10%, VREFNF = 0 V,
frequency = 100 Hz, DAC at zero scale
–90
dB
Reference feedthrough
VREFNF = –10 V ± 10%, VREFPF = 10 V,
frequency = 100 Hz, DAC at full scale
–90
dB
Digital feedthrough
At SCLK = 1 MHz, DAC output static at
midscale, 10-V range
1
nV-s
DIGITAL INPUTS
Hysteresis voltage
0.4
V
Input current
±5
µA
Pin capacitance
Per pin
10
pF
DIGITAL OUTPUTS
VOL
Output low voltage
sinking 200 µA
0.4
V
VOH
Output high voltage
sourcing 200 µA
IOVDD
0.5
V
High impedance leakage
±5
µA
High impedance output capacitance
10
pF
POWER REQUIREMENTS
IAVDD
Current flowing into AVDD
VREFPF = 10 V, VREFNF = 0 V, midscale
code
1
mA
IVCC
Current flowing into VCC
VREFPF = 10 V, VREFNF = 0 V, midscale
code
7
mA
IVSS
Current flowing into VSS
VREFPF = 10 V, VREFNF = 0 V, midscale
code
7
mA
IDVDD
Current flowing into DVDD
VREFPF = 10 V, VREFNF = 0 V, midscale
code
0.5
mA
IIOVDD
Current flowing into IOVDD
VREFPF = 10 V, VREFNF = 0 V, midscale
code, all digital input pins static at IOVDD
0.1
mA
IREFPF
Reference input current (VREFPF)
VREFPF = 10 V, VREFNF = 0 V, midscale
code
5
mA
IREFNF
Reference input current (VREFNF)
VREFPF = 10 V, VREFNF = 0 V, midscale
code
5
mA


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