参数资料
型号: AD822AR
厂商: Analog Devices Inc
文件页数: 13/24页
文件大小: 0K
描述: IC OPAMP GP R-R 1.9MHZ LP 8SOIC
设计资源: 16-Bit Fully Isolated 4 mA to 20 mA Output Module Using AD5662, ADuM1401, and External Amplifiers (CN0064)
标准包装: 98
放大器类型: 通用
电路数: 2
输出类型: 满摆幅
转换速率: 3 V/µs
增益带宽积: 1.9MHz
-3db带宽: 1.9MHz
电流 - 输入偏压: 2pA
电压 - 输入偏移: 400µV
电流 - 电源: 1.4mA
电流 - 输出 / 通道: 20mA
电压 - 电源,单路/双路(±): 3 V ~ 36 V,±1.5 V ~ 18 V
工作温度: -40°C ~ 85°C
安装类型: 表面贴装
封装/外壳: 8-SOIC(0.154",3.90mm 宽)
供应商设备封装: 8-SO
包装: 管件
AD822
Rev. I | Page 20 of 24
SINGLE-SUPPLY PROGRAMMABLE GAIN
INSTRUMENTATION AMPLIFIER
The AD822 can be configured as a single-supply instrumenta-
tion amplifier that is able to operate from single supplies down
to 3 V or dual supplies up to ±15 V. Using only one AD822 rather
than three separate op amps, this circuit is cost and power efficient.
The 2 pA bias currents of the AD822 FET inputs minimize
offset errors caused by high unbalanced source impedances.
An array of precision thin film resistors sets the in-amp gain to
be either 10 or 100. These resistors are laser trimmed to ratio
match to 0.01% and have a maximum differential TC of 5 ppm/°C.
Table 6. In-Amp Performance
Parameters
VS = 3 V, 0 V
VS = ±5 V
CMRR
74 dB
80 dB
Common-Mode Voltage Range
0.2 V to +2 V
5.2 V to +4 V
3 dB BW
G = 10
180 kHz
G = 100
18 kHz
tSETTLING
2 V Step
2 μs
5 V Step
5 μs
Noise @ f = 1 kHz
G = 10
270 nV/√Hz
G = 100
2.2 μV/√Hz
ISUPPLY (Total)
1.10 mA
1.15 mA
90
100
10
0%
....
.... .... . ..
... .... . ... . ... . ...
....
.... .... . . .. .... .... .... .... . ...
1V
5s
00
87
4-
04
8
Figure 48. Pulse Response of In-Amp to a 500 mV p-p Input Signal;
VS = 5 V, 0 V; Gain = 0
G = 100
G = 10
1
2
3
4
5
6
7
+
+
0
087
4-
0
49
OHMTEK
PART # 1043
R5
9k
R4
1k
R3
1k
R2
9k
R1
90k
R6
90k
VREF
V+
0.1F
1/2
AD822
1/2
AD822
VOUT
+
+
VIN1
VIN2
RP
1k
RP
1k
(G = 10) VOUT = (VIN1 – VIN2)+VREF
1+
R6
R4 + R5
()
(G = 100) VOUT = (VIN1 – VIN2)+VREF
R5 + R6
R4
1+
()
Figure 49. A Single-Supply Programmable Instrumentation Amplifier
LOW DROPOUT BIPOLAR BRIDGE DRIVER
The AD822 can be used for driving a 350 Ω Wheatstone bridge.
Figure 50 shows one-half of the AD822 being used to buffer the
AD589, a 1.235 V low power reference. The output of 4.5 V can
be used to drive an analog-to-digital converter (ADC) front end.
The other half of the AD822 is configured as a unity-gain inverter
and generates the other bridge input of 4.5 V. Resistor R1 and
Resistor R2 provide a constant current for bridge excitation. The
AD620 low power instrumentation amplifier is used to condition
the differential output voltage of the bridge. The gain of the AD620
is programmed using an external resistor RG and determined by
1
k
9
.
49
G
R
G
+1.235V
49.9k
R1
20
25.4k
1%
10k
1%
350
350
350
350
RG
AD589
10k
1%
10k
1%
R2
20
–4.5V
GND
+5V
–5V
1/2
AD822
+
+
1/2
AD822
8
3
2
1
V+
+VS
–VS
VREF
V+
V–
+
AD620
+
2
3
4
5
6
7
0.1
μF
0.1
μF
1
μF
1
μF
++
6
5
7
4
TO A/D CONVERTER
REFERENCE INPUT
00
87
4-
0
51
Figure 50. Low Dropout Bipolar Bridge Driver
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