INA215

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) 60 Input offset drift (±) (typ) (µV/°C) 0.1 Features Bidirectional, High precision, Low-side Capable Rating Catalog Voltage gain (V/V) 75 CMRR (min) (dB) 105 Bandwidth (kHz) 40 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) 60 Input offset drift (±) (typ) (µV/°C) 0.1 Features Bidirectional, High precision, Low-side Capable Rating Catalog Voltage gain (V/V) 75 CMRR (min) (dB) 105 Bandwidth (kHz) 40 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
UQFN (RSW) 10 2.52 mm² (1.8 mm × 1.4 mm) SOT-SC70 (DCK) 6 4.2 mm² (2 mm × 2.1 mm)
  • 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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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

INA210-215 裝置為電壓輸出、高壓側測量、雙向、零飄移電流分流監控器。INA210-215EVM 旨在提供對此裝置系列的基本功能評估。  此固定裝置配置並非用作目標電路模型,亦非針對電磁相容性 (EMC) 測試所採取的配置。INA210-215EVM 包含一個 PCB,可選擇裁切六個獨立 PCB,適用於六部裝置 (INA210、INA211、INA212、INA213、INA214 和 INA215) 中的每一部。每個 PCB 斷路器都包含 INA21x 裝置(其中 x 為 0、1、2、3、4 和 5)及外部硬體連線的測試點。

使用指南: PDF
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模擬型號

INA215 PSpice Model (Rev. A)

SBOM934A.ZIP (149 KB) - PSpice 模型
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模擬型號

INA215 TINA-TI Reference Design

SBOM892.TSC (34 KB) - TINA-TI 參考設計
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模擬型號

INA215 TINA-TI Spice Model

SBOM891.ZIP (7 KB) - TINA-TI Spice 模型
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計算工具

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

類比工程師的計算機旨在加速類比電路設計工程師定期使用的許多重複計算。此基於 PC 的工具提供圖形介面,列出各種常見計算,從使用回饋電阻器設定運算放大器增益到選擇適當的電路設計元件以穩定類比數位轉換器 (ADC) 驅動緩衝電路。

除了作為獨立工具使用外,此計算機還與類比工程師口袋參考中描述的概念相得益彰。

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計算工具

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

此 Excel 計算機提供兩個與五個標準電流感測放大器的比較,並提供包含各裝置基本參數的圖表。此計算機也會採用使用者的系統條件輸入,例如共模電壓、供應電壓、分流電阻器值與公差,然後在可調整電流範圍中繪製錯誤曲線。此外,計算機會根據計算的全刻度輸入電壓除以最大量測電流,輸出最大分流值 (mΩ)。
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參考設計

TIDA-00302 — 具瞬態穩定性的電流分流監控器參考設計

此高壓側電流分流監控器可用於測量電流通過电流感测電阻器時在电阻器上所形成的電壓。

此外,實作外部保護電路以提供突波和快速暫態保護,並針對 IEC61000-4-4 和 IEC61000-4-5 展示不同的抗擾度等級。

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參考設計

TIDA-01451 — 適用於機上盒的電源開關參考設計

TIDA-01451 參考設計的功能可模擬機上盒的配電情況。透過使用整合式負載開關來控制電源軌,可視使用者的需求及喜好來開啟或關閉各電源軌。關閉未使用的電源軌可減少功率損耗,並有助於符合 Energy Star 等能源合規標準。置於輸入端的 eFuse 可管理熱插拔暫態,並防止下游 DC/DC 轉換器因輸入電壓過高或過低而受損,進而降低終端設備的返修率。

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封裝 針腳 CAD 符號、佔位空間與 3D 模型
UQFN (RSW) 10 Ultra Librarian
SOT-SC70 (DCK) 6 Ultra Librarian

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