INA210

現行

26V、雙向、高精度電流感應放大器

產品詳細資料

Product type Analog output Common-mode voltage (max) (V) 26 Common-mode voltage (min) (V) -0.3 Input offset (±) (max) (µV) 35 Input offset drift (±) (typ) (µV/°C) 0.1 Features Bidirectional, High precision, Low-side Capable Rating Catalog Voltage gain (V/V) 200 CMRR (min) (dB) 105 Bandwidth (kHz) 14 Supply voltage (max) (V) 26 Supply voltage (min) (V) 2.7 Iq (max) (mA) 0.115 Number of channels 1 Comparators (#) 0 Gain error (%) 0.4, 0.9 Gain error drift (±) (max) (ppm/°C) 10 Slew rate (V/µs) 0.4 Operating temperature range (°C) -40 to 125
Product type Analog output Common-mode voltage (max) (V) 26 Common-mode voltage (min) (V) -0.3 Input offset (±) (max) (µV) 35 Input offset drift (±) (typ) (µV/°C) 0.1 Features Bidirectional, High precision, Low-side Capable Rating Catalog Voltage gain (V/V) 200 CMRR (min) (dB) 105 Bandwidth (kHz) 14 Supply voltage (max) (V) 26 Supply voltage (min) (V) 2.7 Iq (max) (mA) 0.115 Number of channels 1 Comparators (#) 0 Gain error (%) 0.4, 0.9 Gain error drift (±) (max) (ppm/°C) 10 Slew rate (V/µs) 0.4 Operating temperature range (°C) -40 to 125
SOT-SC70 (DCK) 6 4.2 mm² 2 x 2.1 UQFN (RSW) 10 2.52 mm² 1.8 x 1.4
  • Updated format to match new TI layout and flow. Tables, figures and cross-references use a new numbering sequence throughout the document.

    Wide Common-Mode Range: –0.3 V to 26 V
  • Offset Voltage: ±35 µV (Maximum, INA210) (Enables Shunt Drops of 10-mV Full-Scale)
  • Accuracy:
    • Gain Error (Maximum Over Temperature):
      • ±0.5% (Version C)
      • ±1% (Versions A and B)
    • 0.5-µV/°C Offset Drift (Maximum)
    • 10-ppm/°C Gain Drift (Maximum)
  • Choice of Gains:
    • INA210: 200 V/V
    • INA211: 500 V/V
    • INA212: 1000 V/V
    • INA213: 50 V/V
    • INA214: 100 V/V
    • INA215: 75 V/V
  • Quiescent Current: 100 µA (Maximum)
  • SC70 and Thin UQFN Packages: All Models
  • Updated format to match new TI layout and flow. Tables, figures and cross-references use a new numbering sequence throughout the document.

    Wide Common-Mode Range: –0.3 V to 26 V
  • Offset Voltage: ±35 µV (Maximum, INA210) (Enables Shunt Drops of 10-mV Full-Scale)
  • Accuracy:
    • Gain Error (Maximum Over Temperature):
      • ±0.5% (Version C)
      • ±1% (Versions A and B)
    • 0.5-µV/°C Offset Drift (Maximum)
    • 10-ppm/°C Gain Drift (Maximum)
  • Choice of Gains:
    • INA210: 200 V/V
    • INA211: 500 V/V
    • INA212: 1000 V/V
    • INA213: 50 V/V
    • INA214: 100 V/V
    • INA215: 75 V/V
  • Quiescent Current: 100 µA (Maximum)
  • SC70 and Thin UQFN Packages: All Models

The INA21x are voltage-output, current-shunt monitors (also called current-sense amplifiers) that are commonly used for overcurrent protection, precision-current measurement for system optimization, or in closed-loop feedback circuits. This series of devices can sense drops across shunts at common-mode voltages from –0.3 V to 26 V, independent of the supply voltage. Six fixed gains are available: 50 V/V, 75 V/V, 100 V/V, 200 V/V, 500 V/V, or 1000 V/V. The low offset of the zero-drift architecture enables current sensing with maximum drops across the shunt as low as 10-mV full-scale.

These devices operate from a single 2.7-V to 26-V power supply, drawing a maximum of 100 µA of supply current. All versions are specified over the extended operating temperature range (–40°C to +125°C), and offered in SC70 and UQFN packages.

The INA21x are voltage-output, current-shunt monitors (also called current-sense amplifiers) that are commonly used for overcurrent protection, precision-current measurement for system optimization, or in closed-loop feedback circuits. This series of devices can sense drops across shunts at common-mode voltages from –0.3 V to 26 V, independent of the supply voltage. Six fixed gains are available: 50 V/V, 75 V/V, 100 V/V, 200 V/V, 500 V/V, or 1000 V/V. The low offset of the zero-drift architecture enables current sensing with maximum drops across the shunt as low as 10-mV full-scale.

These devices operate from a single 2.7-V to 26-V power supply, drawing a maximum of 100 µA of supply current. All versions are specified over the extended operating temperature range (–40°C to +125°C), and offered in SC70 and UQFN packages.

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技術文件

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重要文件 類型 標題 格式選項 日期
* Data sheet INA21x Voltage Output, Low- or High-Side Measurement, Bidirectional,Zero-Drift Series, Current-Shunt Monitors datasheet (Rev. K) PDF | HTML 2023年 11月 14日
Application note Risks and Prevention of ESD, EOS, and Latch Up Events for Current Sense Amplifiers PDF | HTML 2024年 11月 18日
Application brief Precision Current Measurements on High-Voltage Power-Supply Rails (Rev. F) PDF | HTML 2022年 10月 17日
E-book An Engineer's Guide to Current Sensing (Rev. B) 2022年 4月 12日
Application note Using a PCB Copper Trace as a Current-Sense Shunt Resistor PDF | HTML 2022年 1月 25日
Application brief Integrating the Current Sensing Signal Path (Rev. B) PDF | HTML 2021年 9月 29日
Application brief Integrated, Current Sensing Analog-to-Digital Converter (Rev. A) PDF | HTML 2021年 9月 28日
Selection guide Current Sense Amplifiers (Rev. E) 2021年 9月 20日
Circuit design Low-Drift, Low-Side, Bidirectional Current Sensing Circuit (Rev. A) PDF | HTML 2020年 12月 2日
Technical article Why current and magnetic sensing matters for wireless earbud design PDF | HTML 2019年 11月 11日
Application brief Precision, Low-Side Current Measurement (Rev. B) 2019年 3月 6日
Application brief External current sense amps vs integrated onboard amplifiers for current sensing (Rev. B) 2019年 2月 19日
Selection guide Power Management Guide 2018 (Rev. R) 2018年 6月 25日
Application note Closed-Loop Analysis of Load-Induced Amplifier Stability Issues Using Zout 2017年 10月 27日
Technical article Precise constant current regulation helps advance fast-charging PDF | HTML 2017年 6月 15日
Application brief Low-Side Current Sense Circuit Integration 2017年 3月 30日
Technical article How to get started with current sense amplifiers – part 4 PDF | HTML 2015年 7月 16日
Technical article How to get started with current sense amplifiers – part 2 PDF | HTML 2015年 5月 26日
Technical article How to get started with current sense amplifiers – part 1 PDF | HTML 2015年 5月 19日
More literature Over-Current Detection Products Brochure 2014年 8月 14日

設計與開發

如需其他條款或必要資源,請按一下下方的任何標題以檢視詳細頁面 (如有)。

開發板

INA210-215EVM — INA210-215 電壓輸出電流分流監控器評估模組

The INA210-215 devices are voltage output, high-side measurement, bi-directional, zero-drift current shunt monitors. The INA210-215EVM is intended to provide basic functional evaluation of this device family.  The fixture layout is not intended to be a model for the target circuit, nor is it (...)

使用指南: PDF
TI.com 無法提供
模擬型號

INA210 PSpice Model (Rev. A)

SBOM316A.ZIP (41 KB) - PSpice Model
模擬型號

INA210 TINA-TI Reference Design (Rev. A)

SBOM317A.TSC (106 KB) - TINA-TI Reference Design
模擬型號

INA210 TINA-TI Spice Model (Rev. A)

SBOM318A.ZIP (7 KB) - TINA-TI Spice Model
計算工具

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

The analog engineer’s calculator is designed to speed up many of the repetitive calculations that analog circuit design engineers use on a regular basis. This PC-based tool provides a graphical interface with a list of various common calculations ranging from setting operational-amplifier (...)

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計算工具

CS-AMPLIFIER-ERROR-TOOL Current Sense Amplifier Comparison and Error Tool

This Excel calculator provides a comparison between two and five of our standard current sense amplifiers, delivering a chart containing the basic parameters of each device. This calculator also takes system condition inputs from users such as common-mode voltage, supply voltage, shunt resistor (...)
支援產品和硬體

支援產品和硬體

設計工具

CIRCUIT060035 — 具有窗型比較器電路的雙向電流感測

此雙向電流感測解決方案採用電流感測放大器與高速雙比較器,並具備軌對軌輸入共模範圍,可在比較器輸出 (OUTA 和 OUTB) 處建立過電流 (OC) 警示訊號,如果輸入電流 (IG1) 高於 100 A 或降至 -35 A 以下。在此實作中,兩個過電流警示訊號都是高電位作動,因此當超過 100 A 或 -35 A 閾值時,比較器輸出將會變高。在兩個比較器上實作外部磁滯,因此當電流降低 10% (90 A 和 -31 A) 時,比較器輸出將回到邏輯低狀態。雖然下方電路將分流電阻器 R8 連接至接地,但相同的電路仍適用於高壓側電流感測,最高可達 INA 的共模電壓範圍。
設計工具

CIRCUIT060037 — 精密過電流閂鎖電路

這個高壓側電流感測解決方案採用電流感測放大器、含整合式參考的比較器以及 P 通道 MOSFET,以建立過電流閂鎖電路。當偵測到負載電流大於 200 mA 時,電路會中斷系統與電源的連接。比較器輸出將閂鎖 (將 P 通道 MOSFET 的閘極電壓保持在 0 V),直到電路的電源開始循環,因為比較器會驅動 P 通道 MOSFET 的閘極,並將訊號傳送回電流感測放大器的參考針腳。
模擬工具

PSPICE-FOR-TI — PSpice® for TI 設計與模擬工具

PSpice® for TI 是有助於評估類比電路功能的設計和模擬環境。這款全功能設計和模擬套件使用 Cadence® 的類比分析引擎。PSpice for TI 包括業界最大的模型庫之一,涵蓋我們的類比和電源產品組合,以及特定類比行為模型,且使用無需支付費用。

PSpice for TI 設計和模擬環境可讓您使用其內建函式庫來模擬複雜的混合訊號設計。在進行佈局和製造之前,建立完整的終端設備設計和解決方案原型,進而縮短上市時間並降低開發成本。 

在 PSpice for TI 設計與模擬工具中,您可以搜尋 TI (...)
模擬工具

TINA-TI — 基於 SPICE 的類比模擬程式

TINA-TI provides all the conventional DC, transient and frequency domain analysis of SPICE and much more. TINA has extensive post-processing capability that allows you to format results the way you want them. Virtual instruments allow you to select input waveforms and probe circuit nodes voltages (...)
使用指南: PDF
參考設計

TIDA-00302 — 具瞬態穩定性的電流分流監控器參考設計

This high-side current shunt monitor is used to measure the voltage developed across a current-sensing resistor when current passes through it.

Additionally, an external protection circuit is implemented to provide surge and fast-transient protection and demonstrate the different immunity levels to (...)

Design guide: PDF
電路圖: PDF
參考設計

PMP41017 — 採用 GaN 和 C2000™ MCU 的 3kW 雙相交錯半橋 LLC 參考設計

此參考設計是使用 LMG3422 及 F280039C 裝置的 3-kW、雙相、交錯式半橋電感器-電感器-電容器 (LLC)。此設計可達到 98.1% 峰值效率與 313 W/in³ 功率密度,可做為常用備援電源供應器 (CRPS) 伺服器電源供應器的輸出階段,可用於評估兩個並聯 LLC 階段的控制方法,例如交叉與電流平衡。
Test report: PDF
參考設計

TIDA-00570 — 適用於工業 3D 列印和數位印刷的高速 DLP 子系統參考設計

The High Speed DLP® Sub-system Reference Design provides system-level DLP development board designs for industrial Digital Lithography and 3D Printing applications that require high resolution, superior speed and production reliability. The system design offers maximum throughput by integrating (...)
Design guide: PDF
電路圖: PDF
參考設計

TIDM-HAHSCPTO — 高可用性高速計數器 (HSC) 和脈衝串輸出 (PTO) 參考設計

此參考設計針對與運動控制相關的兩種不同工業輸入/輸出功能提供韌體和測試平台:高速計數器 (HSC) 和脈衝串輸出 (PTO)。此設計以微控制器平台為基礎,適合在對於高可用性和/或功能安全具有嚴格要求的工業應用中使用。
Design guide: PDF
電路圖: PDF
封裝 針腳 CAD 符號、佔位空間與 3D 模型
SOT-SC70 (DCK) 6 Ultra Librarian
UQFN (RSW) 10 Ultra Librarian

訂購與品質

內含資訊:
  • RoHS
  • REACH
  • 產品標記
  • 鉛塗層/球物料
  • MSL 等級/回焊峰值
  • MTBF/FIT 估算值
  • 材料內容
  • 認證摘要
  • 進行中的可靠性監測
內含資訊:
  • 晶圓廠位置
  • 組裝地點

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