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5962-87719012A

产品描述

5962-87719012A放大器基础信息:

5962-87719012A是一款INSTRUMENTATION AMPLIFIER。常用的包装方式为QCCN,

5962-87719012A放大器核心信息:

5962-87719012A的最低工作温度是-55 °C,最高工作温度是125 °C。其峰值回流温度为NOT SPECIFIED他的最大平均偏置电流为0.05 µA而其最大的输入失调电流(IIO)则仅为0.035 µA

如何简单看一个放大器效率?看它的压摆率,5962-87719012A的标称压摆率有5 V/us。其最大电压增益为10000,最小电压增益为1。而在运放闭环使用时,某个指定闭环增益(一般为 1 或者 2、 10 等)下,5962-87719012A增益变为低频增益的 0.707 倍时的频率为0.65 MHz。

5962-87719012A的标称供电电压为15 V,其对应的标称负供电电压为-15 V。5962-87719012A的输入失调电压为200 µV(输入失调电压:使运算放大器输出端为0V(或接近0V)所需加于两输入端之间的补偿电压。)

5962-87719012A的相关尺寸:

5962-87719012A的宽度为:8.89 mm,长度为8.89 mm其端子位置类型为:QUAD。端子节距为1.27 mm。共有针脚:20

5962-87719012A放大器其他信息:

其温度等级为:MILITARY。其对应的的JESD-609代码为:e0。5962-87719012A的封装代码是:QCCN。5962-87719012A封装的材料多为PLASTIC/EPOXY。5962-87719012A封装引脚的形式有:CHIP CARRIER。

其端子形式有:NO LEAD。座面最大高度为2.54 mm。

产品类别模拟混合信号IC    放大器电路   
文件大小321KB,共15页
制造商Defense Logistics Agency
相似器件已查找到1个与5962-87719012A功能相似器件
器件替换:5962-87719012A替换放大器
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5962-87719012A概述

5962-87719012A放大器基础信息:

5962-87719012A是一款INSTRUMENTATION AMPLIFIER。常用的包装方式为QCCN,

5962-87719012A放大器核心信息:

5962-87719012A的最低工作温度是-55 °C,最高工作温度是125 °C。其峰值回流温度为NOT SPECIFIED他的最大平均偏置电流为0.05 µA而其最大的输入失调电流(IIO)则仅为0.035 µA

如何简单看一个放大器效率?看它的压摆率,5962-87719012A的标称压摆率有5 V/us。其最大电压增益为10000,最小电压增益为1。而在运放闭环使用时,某个指定闭环增益(一般为 1 或者 2、 10 等)下,5962-87719012A增益变为低频增益的 0.707 倍时的频率为0.65 MHz。

5962-87719012A的标称供电电压为15 V,其对应的标称负供电电压为-15 V。5962-87719012A的输入失调电压为200 µV(输入失调电压:使运算放大器输出端为0V(或接近0V)所需加于两输入端之间的补偿电压。)

5962-87719012A的相关尺寸:

5962-87719012A的宽度为:8.89 mm,长度为8.89 mm其端子位置类型为:QUAD。端子节距为1.27 mm。共有针脚:20

5962-87719012A放大器其他信息:

其温度等级为:MILITARY。其对应的的JESD-609代码为:e0。5962-87719012A的封装代码是:QCCN。5962-87719012A封装的材料多为PLASTIC/EPOXY。5962-87719012A封装引脚的形式有:CHIP CARRIER。

其端子形式有:NO LEAD。座面最大高度为2.54 mm。

5962-87719012A规格参数

参数名称属性值
厂商名称Defense Logistics Agency
零件包装代码QLCC
包装说明QCCN,
针数20
Reach Compliance Codeunknow
ECCN代码EAR99
放大器类型INSTRUMENTATION AMPLIFIER
最大平均偏置电流 (IIB)0.05 µA
标称带宽 (3dB)0.65 MHz
最小共模抑制比70 dB
最大输入失调电流 (IIO)0.035 µA
最大输入失调电压200 µV
JESD-609代码e0
长度8.89 mm
负供电电压上限-18 V
标称负供电电压 (Vsup)-15 V
最大非线性0.01%
功能数量1
最高工作温度125 °C
最低工作温度-55 °C
封装主体材料PLASTIC/EPOXY
封装代码QCCN
封装形式CHIP CARRIER
峰值回流温度(摄氏度)NOT SPECIFIED
认证状态Not Qualified
筛选级别MIL-STD-883 Class B
座面最大高度2.54 mm
标称压摆率5 V/us
供电电压上限18 V
标称供电电压 (Vsup)15 V
表面贴装YES
温度等级MILITARY
端子面层TIN LEAD
端子形式NO LEAD
端子节距1.27 mm
端子位置QUAD
处于峰值回流温度下的最长时间NOT SPECIFIED
最大电压增益10000
最小电压增益1
标称电压增益10
宽度8.89 mm
Base Number Matches1

文档预览

下载PDF文档
a
FEATURES
User Programmed Gains of 1 to 10,000
Low Gain Error: 0.02% Max
Low Gain TC: 5 ppm/ C Max
Low Nonlinearity: 0.001% Max
Low Offset Voltage: 25 V
Low Noise 4 nV/√Hz (at 1 kHz) RTI
Gain Bandwidth Product: 25 MHz
16-Lead Ceramic or Plastic DIP Package,
20-Terminal LCC Package
Standard Military Drawing Available
MlL-Standard Parts Available
Low Cost
–INPUT
–GAIN
SENSE
–GAIN
DRIVE
Programmable Gain
Instrumentation Amplifier
AD625
FUNCTIONAL BLOCK DIAGRAM
50
+
+
AD625
10k
SENSE
10k
OUTPUT
+
10k
REFERENCE
V
B
+GAIN
DRIVE
+GAIN
SENSE
+INPUT
+
+
50
10k
PRODUCT DESCRIPTION
PRODUCT HIGHLIGHTS
The AD625 is a precision instrumentation amplifier specifically
designed to fulfill two major areas of application: 1) Circuits re-
quiring nonstandard gains (i.e., gains not easily achievable with
devices such as the AD524 and AD624). 2) Circuits requiring a
low cost, precision software programmable gain amplifier.
For low noise, high CMRR, and low drift the AD625JN is the
most cost effective instrumentation amplifier solution available.
An additional three resistors allow the user to set any gain from
1 to 10,000. The error contribution of the AD625JN is less than
0.05% gain error and under 5 ppm/°C gain TC; performance
limitations are primarily determined by the external resistors.
Common-mode rejection is independent of the feedback resistor
matching.
A software programmable gain amplifier (SPGA) can be config-
ured with the addition of a CMOS multiplexer (or other switch
network), and a suitable resistor network. Because the ON
resistance of the switches is removed from the signal path, an
AD625 based SPGA will deliver 12-bit precision, and can be
programmed for any set of gains between 1 and 10,000, with
completely user selected gain steps.
For the highest precision the AD625C offers an input offset
voltage drift of less than 0.25
µV/°C,
output offset drift below
15
µV/°C,
and a maximum nonlinearity of 0.001% at G = 1. All
grades exhibit excellent ac performance; a 25 MHz gain band-
width product, 5 V/µs slew rate and 15
µs
settling time.
The AD625 is available in three accuracy grades (A, B, C) for
industrial (–40°C to +85°C) temperature range, two grades (J,
K) for commercial (0°C to +70°C) temperature range, and one
(S) grade rated over the extended (–55°C to +125°C) tempera-
ture range.
REV. C
Information furnished by Analog Devices is believed to be accurate and
reliable. However, no responsibility is assumed by Analog Devices for its
use, nor for any infringements of patents or other rights of third parties
which may result from its use. No license is granted by implication or
otherwise under any patent or patent rights of Analog Devices.
1. The AD625 affords up to 16-bit precision for user selected
fixed gains from 1 to 10,000. Any gain in this range can be
programmed by 3 external resistors.
2. A 12-bit software programmable gain amplifier can be config-
ured using the AD625, a CMOS multiplexer and a resistor
network. Unlike previous instrumentation amplifier designs,
the ON resistance of a CMOS switch does not affect the gain
accuracy.
3. The gain accuracy and gain temperature coefficient of the
amplifier circuit are primarily dependent on the user selected
external resistors.
4. The AD625 provides totally independent input and output
offset nulling terminals for high precision applications. This
minimizes the effects of offset voltage in gain-ranging
applications.
5. The proprietary design of the AD625 provides input voltage
noise of 4 nV/√Hz at 1 kHz.
6. External resistor matching is not required to maintain high
common-mode rejection.
One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106, U.S.A.
Tel: 781/329-4700
World Wide Web Site: http://www.analog.com
Fax: 781/326-8703
© Analog Devices, Inc., 1999

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