LMP8640
- Typical Values, TA = 25°C
- High Common-Mode Voltage Range
- LMP8640: –2 V to 42 V
- LMP8640-Q1: –2 V to 42 V, AEC-Q100
- LMP8640HV: –2 V to 76 V
- Supply Voltage Range: 2.7 V to 12 V
- Gain Options: 20 V/V; 50 V/V; 100 V/V
- Max Gain Error: 0.25%
- Low Offset Voltage: 900 μV
- Input Bias Current: 13 μA
- PSRR: 85 dB
- CMRR (2.1V to 42V): 103 dB
- Temperature Range: –40°C to 125°C
- 6-Pin Thin SOT-23 Package
The LMP8640, LMP8640-Q1 and the LMP8640HV are precision current sense amplifiers that detect small differential voltages across a sense resistor in the presence of high input common mode voltages with a supply voltage range from 2.7 V to 12 V.
The LMP8640 and LMP8640-Q1 accept input signals with common mode voltage range from 2 V to 42 V, while the LMP8640HV accepts input signal with common mode voltage range from 2 V to 76 V. The LMP8640 and LMP8640HV have fixed gain for applications that demand accuracy over temperature. The LMP8640 and LMP8640HV come out with three different fixed gains 20 V/V, 50 V/V, 100 V/V ensuring a gain accuracy as low as 0.25%. The output is buffered in order to provide low output impedance. This high side current sense amplifier is ideal for sensing and monitoring currents in DC or battery powered systems, excellent AC and DC specifications over temperature, and keeps errors in the current sense loop to a minimum. The LMP8640 and LMP8640HV are ideal choice for industrial and consumer applications, while the LMP8640-Q1 is an AEC-Q100 grade 1 qualified version of the LMP8640 for automotive applications. The LMP8640-x is available in SOT-23-6 package.
技術文檔
| 類型 | 標題 | 下載最新的英語版本 | 日期 | |||
|---|---|---|---|---|---|---|
| * | 數據表 | LMP8640/-Q1/HV Precision High Voltage Current Sense Amplifiers 數據表 (Rev. G) | PDF | HTML | 2014年 11月 12日 | ||
| 應用手冊 | 電流檢測放大器的 ESD、EOS 和閂鎖效應事件的風險和預防 | PDF | HTML | 英語版 | PDF | HTML | 2024年 12月 11日 | |
| 應用手冊 | 將印刷電路板覆銅線跡用作電流檢測 分流電阻器 | PDF | HTML | 英語版 | PDF | HTML | 2022年 6月 8日 | |
| 選擇指南 | Current Sense Amplifiers (Rev. E) | 2021年 9月 20日 | ||||
| 選擇指南 | 電源管理指南 2018 (Rev. K) | 2018年 7月 31日 | ||||
| 選擇指南 | 電源管理指南 2018 (Rev. R) | 2018年 6月 25日 | ||||
| 更多文獻資料 | 分流監控器 (Rev. A) | 最新英語版本 (Rev.E) | 2014年 11月 17日 | |||
| EVM 用戶指南 | AN-1975 LMP8640 / LMP8645 Evaluation Board User Guide (Rev. C) | 2013年 4月 26日 |
設計和開發
如需其他信息或資源,請點擊以下任一標題進入詳情頁面查看(如有)。
LMP8640HV-FEVAL — LMP8640HV-F 50V/V 評估板
The LMP8640HV-F Current Sense Evaluation Board is designed to evaluate the LMP8640HV-F, Precision Current Sensing Amplifier with fixed gain of 50V/V. This board show a typical configuration of a bidirectional current sense with two LMP8640HV-F parts mounted on the PCB together with the required (...)
LMP8640HV-HEVAL — LMP8640HV-H 100V/V 評估板
The LMP8640HV-H Current Sense Evaluation Board is designed to evaluate the LMP8640HV-H, Precision Current Sensing Amplifier with fixed gain of 100V/V. This board show a typical configuration of a bidirectional current sense with two LMP8640HV-H parts mounted on the PCB together with the required (...)
LMP8640HV-TEVAL — LMP8640HV-T 20V/V 評估板
The LMP8640HV-T Current Sense Evaluation Board is designed to evaluate the LMP8640HV-T, Precision Current Sensing Amplifier with fixed gain of 20V/V. This board show a typical configuration of a bidirectional current sense with two LMP8640HV-T parts mounted on the PCB together with the required (...)
CIRCUIT060035 — 具有窗口比較器的雙向電流檢測電路
CIRCUIT060037 — 精密過流鎖存電路
PSPICE-FOR-TI — PSpice? for TI 設計和仿真工具
借助?PSpice for TI 的設計和仿真環境及其內置的模型庫,您可對復雜的混合信號設計進行仿真。創建完整的終端設備設計和原型解決方案,然后再進行布局和制造,可縮短產品上市時間并降低開發成本。?
在?PSpice for TI 設計和仿真工具中,您可以搜索 TI (...)
TINA-TI — 基于 SPICE 的模擬仿真程序
TINA-TI 安裝需要大約 500MB。直接安裝,如果想卸載也很容易。我們相信您肯定會愛不釋手。
TINA 是德州儀器 (TI) 專有的 DesignSoft 產品。該免費版本具有完整的功能,但不支持完整版 TINA 所提供的某些其他功能。
如需獲取可用 TINA-TI 模型的完整列表,請參閱:SpiceRack - 完整列表
需要 HSpice (...)
TIDA-00302 — 具有瞬態魯棒性的電流分流監控器參考設計
此外,還采用外部保護電路來提供浪涌保護和快速瞬變保護并展示基于 IEC61000-4-4 和 IEC61000-4-5 的不同抗擾度。
| 封裝 | 引腳 | CAD 符號、封裝和 3D 模型 |
|---|---|---|
| SOT-23-THN (DDC) | 6 | Ultra Librarian |
訂購和質量
- RoHS
- REACH
- 器件標識
- 引腳鍍層/焊球材料
- MSL 等級/回流焊峰值溫度
- MTBF/時基故障估算
- 材料成分
- 鑒定摘要
- 持續可靠性監測
- 制造廠地點
- 封裝廠地點