AD210JN Analog Devices Inc, AD210JN Datasheet - Page 5

IC AMP ISOL PREC LDRIFT 38DIP

AD210JN

Manufacturer Part Number
AD210JN
Description
IC AMP ISOL PREC LDRIFT 38DIP
Manufacturer
Analog Devices Inc
Type
Precisionr
Datasheets

Specifications of AD210JN

Slew Rate
1 V/µs
Rohs Status
RoHS non-compliant
Amplifier Type
Isolation
Number Of Circuits
1
-3db Bandwidth
20kHz
Current - Input Bias
30pA
Voltage - Input Offset
15000µV
Current - Supply
50mA
Current - Output / Channel
5mA
Voltage - Supply, Single/dual (±)
14.25 V ~ 15.75 V
Operating Temperature
-25°C ~ 85°C
Mounting Type
Through Hole
Package / Case
38-DIP (0.800", 20.32mm), 12 Leads
No. Of Amplifiers
1
Isolation Voltage
1.5kV
Gain Non-linearity Max
0.025%
Supply Voltage Range
13.5V To 16.5V
Input Offset Voltage
5mV
Bandwidth
20kHz
Common Mode Rejection Ratio
120
Current, Input Bias
30 pA
Current, Output
±5 mA
Current, Supply
50 mA
Package Type
PDIP-12
Temperature, Operating, Maximum
85 °C
Temperature, Operating, Minimum
-25 °C
Temperature, Operating, Range
-40 to +85 °C
Voltage, Gain
1-100 V/V
Voltage, Input
±10 V
Voltage, Input Offset
±15 V
Voltage, Noise
18 nV/sqrt Hz
Voltage, Output
±10 V
Voltage, Supply
+15 VDC
High Cmv Isolation
2500 V rms continuous ±3500 VpPeak continuous
Small Cive
1.00in. x 2.10in. x 0.350in.
Three-port Isolation
input, output, and power
Number Of Channels
1
Number Of Elements
2
Power Supply Requirement
Single
Voltage Gain Db
40dB
Input Resistance
1000000MOhm
Input Bias Current
400pA
Single Supply Voltage (typ)
15V
Dual Supply Voltage (typ)
Not RequiredV
Rail/rail I/o Type
No
Single Supply Voltage (min)
13.5V
Single Supply Voltage (max)
16.5V
Dual Supply Voltage (min)
Not RequiredV
Dual Supply Voltage (max)
Not RequiredV
Operating Temp Range
-40C to 85C
Operating Temperature Classification
Industrial
Mounting
Through Hole
Pin Count
12
Output Type
-
Gain Bandwidth Product
-
Lead Free Status / Rohs Status
Not Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
AD210JN
Manufacturer:
ETA
Quantity:
21 000
Phase Shift: Figure 10 illustrates the AD210’s low phase shift
and gain versus frequency. The AD210’s phase shift and wide
bandwidth performance make it well suited for applications like
power monitors and controls systems.
Input Noise vs. Frequency: Voltage noise referred to the input
is dependent on gain and signal bandwidth. Figure 11 illustrates
the typical input noise in nV/ Hz of the AD210 for a frequency
range from 10 to 10 kHz.
Gain Nonlinearity vs. Output: Gain nonlinearity is defined as the
deviation of the output voltage from the best straight line, and is
specified as % peak-to-peak of output span. The AD210B provides
guaranteed maximum nonlinearity of 0.012% with an output span of
Gain Nonlinearity vs. Output Swing: The gain nonlinearity
of the AD210 varies as a function of total signal swing. When
the output swing is less than 20 volts, the gain nonlinearity as a
fraction of signal swing improves. The shape of the nonlinearity
remains constant. Figure 13 shows the gain nonlinearity of the
AD210 as a function of total signal swing.
REV. A
10 V. The AD210’s nonlinearity performance is shown in Figure 12.
–20
–40
–60
–80
60
40
20
Figure 10. Phase Shift and Gain vs. Frequency
0
10
60
50
40
30
20
10
0
10
Figure 11. Input Noise vs. Frequency
100
FREQUENCY – Hz
100
FREQUENCY – Hz
G = 100
G = 1
1k
10k
1k
100k
0
–20
–40
–60
–80
–100
–120
–140
10k
–5–
Gain vs. Temperature: Figure 14 illustrates the AD210’s
gain vs. temperature performance. The gain versus temperature
performance illustrated is for an AD210 configured as a unity
gain amplifier.
100
+0.04
+0.03
+0.02
+0.01
–0.01
–0.02
–0.03
–0.04
90
80
70
60
50
40
30
20
10
0
Figure 13. Gain Nonlinearity vs. Output Swing
Figure 12. Gain Nonlinearity Error vs. Output
–1000
–1200
–1400
–1600
0
0
–200
–400
–600
–800
400
200
–10
0
–25
2
–8
Figure 14. Gain vs. Temperature
4
–6
TOTAL SIGNAL SWING – Volts
OUTPUT VOLTAGE SWING – Volts
6
–4
0
8
–2
TEMPERATURE – C
10
0
+25
12
+2
14
+4
+50
16
+6
G = 1
18
AD210
+8
+70
20
+10
0.01
0.009
0.008
0.007
0.006
0.005
0.004
0.003
0.002
0.001
0.000
+8
+6
+4
+2
–2
–4
–6
–8
+85
0

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