ADR435AR-REEL7 Analog Devices Inc, ADR435AR-REEL7 Datasheet - Page 12

IC VREF XFET 5V LN 8-SOIC T/R

ADR435AR-REEL7

Manufacturer Part Number
ADR435AR-REEL7
Description
IC VREF XFET 5V LN 8-SOIC T/R
Manufacturer
Analog Devices Inc
Series
XFET®r
Datasheet

Specifications of ADR435AR-REEL7

Rohs Status
RoHS non-compliant
Design Resources
Converting a Single-Ended Signal with AD7982 Differential PulSAR ADC (CN0032) Converting a Single-Ended Signal with AD7984 Differential PulSAR ADC (CN0033) Parametric Measurement Unit and Supporting Components for PAD Appls Using AD5522 and AD7685 (CN0104) Automated Calibration Technique That Reduces AD5360 Offset Voltage to Less Than 1 mV (CN0123) Integrated Device Power Supply for PAD with Output Voltage Range 0 V to 25 V (CN0130) 16 Channels of Programmable Output Span Using AD5360 (CN0131) 40 Channels of Programmable Output Span Using AD5371 (CN0149) Precision Single-Supply Differential ADC Driver for Industrial-Level Signals (CN0180)
Reference Type
Series
Voltage - Output
5V
Tolerance
±0.12%
Temperature Coefficient
10ppm/°C
Voltage - Input
7 ~ 18 V
Number Of Channels
1
Current - Quiescent
800µA
Current - Output
30mA
Operating Temperature
-40°C ~ 125°C
Mounting Type
Surface Mount
Package / Case
8-SOIC (3.9mm Width)
Current - Cathode
-
ADR430/ADR431/ADR433/ADR434/ADR435/ADR439
1.9
1.7
1.5
1.3
1.1
0.9
–40
20
16
12
–4
C
NO LOAD
Figure 15. ADR435 Minimum Headroom vs. Temperature
8
4
0
–40
IN
Figure 16. ADR435 Line Regulation vs. Temperature
= 0.01µF
–25
–25
–10
Figure 17. ADR431 Turn-On Response
–10
5
5
TEMPERATURE (C)
20
TEMPERATURE (C)
20
35
35
50
V
50
V
IN
O
= 2V/DIV
65
= 1V/DIV
65
TIME = 4µs/DIV
80
V
80
IN
= 7V TO 18V
NO LOAD
95
95
110
110
125
125
Rev. H | Page 12 of 24
Figure 18. ADR431 Turn-On Response, 0.01 μF Load Capacitor
C
NO INPUT CAPACITOR
BYPASS CAPACITOR = 0µF
V
L
V
IN
= 0.01µF
O
= 2V/DIV
= 1V/DIV
Figure 20. ADR431 Line Transient Response
Figure 19. ADR431 Turn-Off Response
V
TIME = 100µs/DIV
V
O
IN
= 50mV/DIV
= 500mV/DIV
V
TIME = 4µs/DIV
IN
LINE
INTERRUPTION
C
NO LOAD
V
IN
= 2V/DIV
TIME = 4µs/DIV
O
= 0.01µF
= 1V/DIV

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