产品详情

Number of channels 1 Vs (max) (V) 5.5 Vs (min) (V) 1.8 Input offset (±) (max) (µV) 25 Voltage gain (min) (V/V) 1 Voltage gain (max) (V/V) 1000 Noise at 1 kHz (typ) (nV√Hz) 50 Features Low power, Zero Drift CMRR (min) (dB) 80 Input offset drift (±) (max) (µV/°C) 0.1 Input bias current (±) (max) (nA) 0.2 Iq (typ) (mA) 0.198 Bandwidth at min gain (typ) (MHz) 0.15 Gain error (±) (max) (%) 0.5 Operating temperature range (°C) -55 to 210 Rating High Temp Type Resistor Gain nonlinearity (±) (max) (%) 0.001 Output swing headroom (to negative supply) (typ) (V) 0.05 Output swing headroom (to positive supply) (typ) (V) -0.05 Input common mode headroom (to negative supply) (typ) (V) 0.1 Input common mode headroom (to positive supply) (typ) (V) -0.1 Noise at 0.1 Hz to 10 Hz (typ) (µVPP) 2
Number of channels 1 Vs (max) (V) 5.5 Vs (min) (V) 1.8 Input offset (±) (max) (µV) 25 Voltage gain (min) (V/V) 1 Voltage gain (max) (V/V) 1000 Noise at 1 kHz (typ) (nV√Hz) 50 Features Low power, Zero Drift CMRR (min) (dB) 80 Input offset drift (±) (max) (µV/°C) 0.1 Input bias current (±) (max) (nA) 0.2 Iq (typ) (mA) 0.198 Bandwidth at min gain (typ) (MHz) 0.15 Gain error (±) (max) (%) 0.5 Operating temperature range (°C) -55 to 210 Rating High Temp Type Resistor Gain nonlinearity (±) (max) (%) 0.001 Output swing headroom (to negative supply) (typ) (V) 0.05 Output swing headroom (to positive supply) (typ) (V) -0.05 Input common mode headroom (to negative supply) (typ) (V) 0.1 Input common mode headroom (to positive supply) (typ) (V) -0.1 Noise at 0.1 Hz to 10 Hz (typ) (µVPP) 2
CFP (HKQ) 8 38.985 mm² (— mm × — mm) B0QFN (JD) 8 75.8373 mm² (0 mm × 0 mm) DIESALE (KGD) See data sheet CFP (HKJ) 8 38.985 mm² (— mm × — mm)
  • Low Offset Voltage: 25 μV (max at 25°C), G ≥ 100
  • Low Drift: 0.2 µV/°C, G ≥ 1000
  • Low Noise: 55 nV/√Hz, G ≥ 100
  • High CMRR: 100 dB (min at 25°C), G ≥ 10
  • Supply Range: +1.8 V to +5.5 V
  • Input Voltage: (V–) +0.1 V to (V+) –0.1 V
  • Output Range: (V–) +0.05 V to (V+) –0.05V
  • Low Quiescent Current: 198 µA
  • RFI Filtered Inputs
  • Low Offset Voltage: 25 μV (max at 25°C), G ≥ 100
  • Low Drift: 0.2 µV/°C, G ≥ 1000
  • Low Noise: 55 nV/√Hz, G ≥ 100
  • High CMRR: 100 dB (min at 25°C), G ≥ 10
  • Supply Range: +1.8 V to +5.5 V
  • Input Voltage: (V–) +0.1 V to (V+) –0.1 V
  • Output Range: (V–) +0.05 V to (V+) –0.05V
  • Low Quiescent Current: 198 µA
  • RFI Filtered Inputs

The INA333 is a low-power, precision instrumentation amplifier offering excellent accuracy. The versatile 3-op amp design, small size, and low power make it ideal for a wide range of portable applications.

A single external resistor sets any gain from 1 to 1000. The INA333 is designed to use an industry-standard gain equation: G = 1 + (100kΩ/RG).

The INA333 provides very low offset voltage (25 µV at 25°C, G ≥ 100), excellent offset voltage drift (0.2 µV/°C, G ≥ 100), and high common-mode rejection (100 dB at 25°C, G ≥ 10). It operates with power supplies as low as 1.8 V (±0.9V), and quiescent current is only 50 µA—ideal for battery-operated systems. Using autocalibration techniques to ensure excellent precision over the extended industrial temperature range, the INA333 also offers exceptionally low noise density (55 nV/√Hz) that extends down to dc.

The INA333 is is specified over the TA = –55°C to +210°C temperature range.

The INA333 is a low-power, precision instrumentation amplifier offering excellent accuracy. The versatile 3-op amp design, small size, and low power make it ideal for a wide range of portable applications.

A single external resistor sets any gain from 1 to 1000. The INA333 is designed to use an industry-standard gain equation: G = 1 + (100kΩ/RG).

The INA333 provides very low offset voltage (25 µV at 25°C, G ≥ 100), excellent offset voltage drift (0.2 µV/°C, G ≥ 100), and high common-mode rejection (100 dB at 25°C, G ≥ 10). It operates with power supplies as low as 1.8 V (±0.9V), and quiescent current is only 50 µA—ideal for battery-operated systems. Using autocalibration techniques to ensure excellent precision over the extended industrial temperature range, the INA333 also offers exceptionally low noise density (55 nV/√Hz) that extends down to dc.

The INA333 is is specified over the TA = –55°C to +210°C temperature range.

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* 数据表 Micro-Power, Zerø-Drift, Rail-to-Rail Out 数据表 (Rev. C) 2013-10-22
* 辐射与可靠性报告 INA333SJD Reliability Report 2012-5-7
* 辐射与可靠性报告 INA333SHKQ Reliability Report 2012-5-7
* 辐射与可靠性报告 INA333SHKJ Reliability Report 2012-5-7
应用手册 输入偏置电流回路在仪表放大器应用中的重要性 PDF | HTML 英语版 PDF | HTML 2022-4-22
电子书 The Signal e-book: 有关运算放大器设计主题的博客文章汇编 PDF | HTML 英语版 PDF | HTML 2018-1-31

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评估模块 (EVM) 用 GUI

SLAC498 — HEATEVM GUI Software

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仿真模型

INA333 PSpice Model (Rev. G)

SBOM382G.ZIP (26 KB) - PSpice 模型
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仿真模型

INA333 TINA-TI Reference Design (Rev. F)

SBOC264F.TSC (1395 KB) - TINA-TI 参考设计
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仿真模型

INA333 TINA-TI Spice Model (Rev. E)

SBOM310E.ZIP (11 KB) - TINA-TI Spice 模型
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计算工具

ANALOG-ENGINEER-CALC — PC software analog engineer's calculator

模拟工程师计算器旨在加快模拟电路设计工程师经常运用的许多重复性计算。该基于 PC 的工具提供图形界面,其中显示各种常见计算列表,从使用反馈电阻器设置运算放大器增益到选择合适的电路设计元件,以稳定模数转换器 (ADC) 驱动器缓冲器电路。

除了可用作独立工具之外,该计算器还能很好地与模拟工程师口袋参考中所述的概念配合使用。

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参考设计

TIDA-00002 — 针对高温应用的苛刻环境采集终端 (HEAT) EVM 平台

HEATEVM 是旨在为信号调节和处理器评估提供高温平台的 MCM。该模块包含完整的组件链,专为承受高达 200°C 的极端工作温度而设计。PCB 采用同样适用于此类极端温度的聚酰亚胺材料制成。

支持的产品和硬件
封装 引脚 CAD 符号、封装和 3D 模型
CFP (HKQ) 8 Ultra Librarian
B0QFN (JD) 8 Ultra Librarian
DIESALE (KGD) Ultra Librarian
CFP (HKJ) 8 Ultra Librarian

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