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WM2633 데이터 시트보기 (PDF) - Wolfson Microelectronics plc

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WM2633 Datasheet PDF : 12 Pages
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Production Data
WM2633
Test Characteristics:
RL = 10k, CL = 100pF AVDD = DVDD = 5V ± 10%, VREF = 2.048V and AVDD = DVDD = 3V ± 10%, VREF = 1.024V over
recommended operating free-air temperature range (unless noted otherwise).
PARAMETER
Glitch energy
SYMBOL
TEST
CONDITIONS
MIN
TYP
MAX UNIT
Code 2047 to code 2048
5
nV-s
Signal to noise ratio
SNR
fS = 480ksps,
73
78
dB
fOUT = 1kHz BW = 20kHz,
TA=25°C See Note 12
Signal to noise and distortion ratio
SNRD
fS = 480ksps,
61
67
dB
fOUT = 1kHz BW = 20kHz,
TA=25°C See Note 12
Total harmonic distortion
THD
fS = 480ksps,
fOUT = 1kHz BW = 20kHz,
TA=25°C See Note 12
-69
-62
dB
Spurious free dynamic range
SPFDR
fS = 480ksps,
63
74
dB
fOUT = 1kHz BW = 20kHz, TA =
25°C See Note 12
Reference Configured as Input
Reference input resistance
RREF
10
M
Reference input capacitance
CREF
55
pF
Reference feedthrough
Reference input bandwidth
Reference Configured as Output
VREF=1VPP at 1kHz
-60
dB
+ 1.024V d.c., DAC code 0
VREF= 0.2VPP + 1.024V d.c.
DAC code 2048
Slow
500
kHz
Fast
900
kHz
Low reference voltage
VREFOUTL
1.003 1.024 1.045
V
High reference voltage
VREFOUTH
VDD > 4.75V
2.027 2.048 2.069
V
Output source current
IREFSRC
1
mA
Output sink current
IREFSNK
-1
mA
Load Capacitance
100
pF
PSRR
-48
dB
Digital Inputs
High level input current
Low level input current
IIH
Input voltage = DVDD
IIL
Input voltage = 0V
1
µA
-1
µA
Input capacitance
CI
8
pF
Notes:
1. Integral non-linearity (INL) is the maximum deviation of the output from the line between zero and full scale excluding
the effects of zero code and full scale errors).
2. Differential non-linearity (DNL) is the difference between the measured and ideal 1LSB amplitude change
of any adjacent two codes. A guarantee of monotonicity means the output voltage changes in the same
direction (or remains constant) as a change in digital input code.
3. Zero code error is the voltage output when the DAC input code is zero.
4. Gain error is the deviation from the ideal full scale output excluding the effects of zero code error.
5. Power supply rejection ratio is measured by varying AVDD from 4.5V to 5.5V and measuring the
proportion of this signal imposed on the zero code error and the gain error.
6. Zero code error and Gain error temperature coefficients are normalised to full scale voltage.
7. Output load regulation is the difference between the output voltage at full scale with a 10kload and 2k
load. It is expressed as a percentage of the full scale output voltage with a 10kload.
WOLFSON MICROELECTRONICS LTD
PD Rev 1.0 July 1999
5

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