参数资料
型号: AD8295ACPZ-R7
厂商: Analog Devices Inc
文件页数: 14/28页
文件大小: 0K
描述: IC AMP INST 1MHZ TRPL LN 16LFCSP
产品培训模块: Top Five Instrumentation Amplifier Problems
标准包装: 1
放大器类型: 仪表
电路数: 3
转换速率: 2 V/µs
增益带宽积: 1MHz
-3db带宽: 1.2MHz
电流 - 输入偏压: 500pA
电压 - 输入偏移: 120µV
电流 - 电源: 2mA
电流 - 输出 / 通道: 18mA
电压 - 电源,单路/双路(±): 4.6 V ~ 36 V,±2.3 V ~ 18 V
工作温度: -40°C ~ 85°C
安装类型: 表面贴装
封装/外壳: 16-VQFN,CSP
供应商设备封装: 16-LFCSP(4x4)
包装: 标准包装
产品目录页面: 771 (CN2011-ZH PDF)
其它名称: AD8295ACPZ-R7DKR
AD8295
Rev. A | Page 21 of 2
8
Power Supplies
A stable dc voltage should be used to power the instrumentation
amplifier. Noise on the supply pins can adversely affect perfor-
mance. See the PSRR performance curves in Figure 14 and
Figure 15 for more information.
A 0.1 μF capacitor should be placed as close as possible to each
supply pin. An additional capacitor, a 10 μF tantalum for the
lower frequencies, can be used farther away from the IC. In
most cases, the 10 μF bypass capacitor can be shared by other
integrated circuits on the same PCB.
AD8295
IN-AMP
+VS
+IN
RG
–IN
LOAD
REF
0.1F
10F
0.1F
10F
–VS
VOUT
07
34
3-
00
5
Figure 61. Supply Decoupling, REF, and Output Referred to Local Ground
INPUT PROTECTION
All terminals of the AD8295 are protected against ESD by
diodes at the inputs. If voltages beyond the supplies are anti-
cipated, resistors should be placed in series with the inputs to
limit the current. Resistors should be chosen so that current
does not exceed 6 mA into the internal ESD diodes in the over-
load condition. These resistors can be the same as those used
for RFI protection. (See the RF Interference section for more
information.)
For applications where the AD8295 encounters extreme
overload voltages, as in cardiac defibrillators, external series
resistors and low leakage diode clamps, such as BAV199Ls,
FJH1100s, or SP720s can be used.
INPUT BIAS CURRENT RETURN PATH
The input bias currents of the AD8295 must have a return path
to common. When the source, such as a thermocouple, cannot
provide a return current path, one should be created, as shown
in Figure 62. Otherwise, the input currents charge up the input
capacitance until the in-amp is turned off or saturated.
THERMOCOUPLE
+VS
REF
–VS
CAPACITIVELY COUPLED
+VS
REF
C
–VS
AD8295
IN-AMP
AD8295
IN-AMP
TRANSFORMER
+VS
REF
–VS
INCORRECT
CAPACITIVELY COUPLED
+VS
REF
–VS
TRANSFORMER
+VS
REF
–VS
10M
CORRECT
AD8295
IN-AMP
AD8295
IN-AMP
AD8295
IN-AMP
THERMOCOUPLE
+VS
REF
C
R
C
–VS
1
fHIGH-PASS = 2πRC
AD8295
IN-AMP
0
73
43
-00
6
Figure 62. Creating an Input Bias Current Return Path
RF INTERFERENCE
RF interference is often a problem when amplifiers are used in
applications where there are strong RF signals. The precision
circuits in the AD8295 can rectify the RF signals so that they
appear as a dc offset voltage error. To avoid this rectification,
place a low-pass filter before the input. Figure 63 shows such a
network in front of the instrumentation amplifier. The filter
limits both the differential and common-mode bandwidth, as
shown in the following equations:
)
2
(
π
2
C
D
C
R
+
1
)
(
FILTER Diff
f
=
C
FILTER
RC
CM
f
π
2
1
)
(
=
where CD ≥ 10CC.
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