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MAX5354CUA Datasheet(PDF) 4 Page - Maxim Integrated Products

Part # MAX5354CUA
Description  10-Bit Voltage-Output DACs in 8-Pin 關MAX
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Manufacturer  MAXIM [Maxim Integrated Products]
Direct Link  https://www.maximintegrated.com/en.html
Logo MAXIM - Maxim Integrated Products

MAX5354CUA Datasheet(HTML) 4 Page - Maxim Integrated Products

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10-Bit Voltage-Output DACs
in 8-Pin µMAX
4
_______________________________________________________________________________________
ELECTRICAL CHARACTERISTICS: MAX5355
(VDD = +3.15V to +3.6V, REF = 1.25V, GND = 0V, RL = 5kΩ, CL = 100pF, TA = TMIN to TMAX, unless otherwise noted. Typical values
are at TA = +25°C. Output buffer connected in unity-gain configuration (Figure 8).)
Guaranteed monotonic
LSB
Code dependent, minimum at code 1550 hex
±1.0
VREF = 0.67Vp-p
DNL
kHz
Differential Nonlinearity
650
Reference -3dB Bandwidth
CONDITIONS
Input code = all 0s, VREF = 1.9Vp-p at 1kHz
VREF = 1Vp-p at 25kHz, code = full scale
dB
72
k
18
30
RREF
Reference Input Resistance
V
0
VDD - 1.4
VREF
Reference Input Range
SINAD
Signal-to-Noise Plus
Distortion Ratio
dB
-84
Reference Feedthrough
V
2.4
VIH
Input High Voltage
µV/V
PSRR
Power-Supply Rejection Ratio
800
VIN = 0V or VDD
±1
MAX5355C/E
MAX5355M
Bits
10
N
Resolution
ppm/°C
1
Gain-Error Tempco
LSB
GE
Gain Error (Note 4)
-0.3
±2
pF
ppm/°C
6
TCVOS
Offset-Error Tempco
LSB
±2
INL
Integral Nonlinearity
(Note 4)
8
CIN
Input Capacitance
µA
±0.3
±8
0.001
±0.5
IIN
mV
Input Leakage Current
VOS
Offset Error
UNITS
MIN
TYP
MAX
SYMBOL
PARAMETER
V
0.6
VIL
Input Low Voltage
To ±1/2LSB, VSTEP = 1.25V
Rail-to-rail (Note 5)
V
0 to VDD
Output Voltage Swing
µs
10
Output Settling Time
V/µs
0.6
SR
Voltage Output Slew Rate
µA
0.001
±0.1
Current into FB
CS = VDD, DIN = 100kHz
V
3.15
3.6
VDD
Supply Voltage
nV-s
5
Digital Feedthrough
(Note 6)
(Note 6)
µA
0.001
±0.5
Reference Current in Shutdown
µA
1.6
10
Supply Current in Shutdown
mA
0.24
0.4
IDD
Supply Current
µs
20
Start-Up Time
STATIC PERFORMANCE—ANALOG SECTION
DIGITAL INPUTS
REFERENCE INPUT
MULTIPLYING-MODE PERFORMANCE (VDD = +3.3V)
DYNAMIC PERFORMANCE
POWER SUPPLIES


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