ROHM Product Detail

BD14230FVJ-C
車用電流感測放大器

料號 | BD14230FVJ-CE2
狀態 | 推薦品
封裝 | TSSOP-B8J
包裝形式 | Taping
單位數量 | 2500
最小包裝數量 | 2500
RoHS | Yes
 

Description

BD14230FVJ-C為電流感測放大器系列。該元件採用2.7V至18V單電源供電。其共模電壓範圍寬達-14V至+80V,輸出類比電壓,增益為20 V/V。匹配的增益電阻能最大程度減少增益誤差和偏移電壓。此外,低輸入偏置電流為1µA,可降低分流電阻路徑上的偏移。

Product Detail

Specifications

Sensor Type

Current Sensor

Supply Voltage (Min.)[V]

2.7

Supply Voltage (Max.)[V]

5.5

Operating Current (Typ.)[mA]

0.3

Common Mode Voltage (Min.)[V]

-14

Common Mode Voltage (Max.)[V]

80

Gain (Typ.)[V/V]

20

Gain Accuracy (Max.)[%]

±1

Operating Temperature (Min.)[°C]

-40

Operating Temperature (Max.)[°C]

125

Package Size [mm]

3.0x4.9 (t=1.1)

Common Standard

AEC-Q100 (Automotive Grade)

Features

  • 符合AEC-Q100標準(Grade 1)
  • 寬共模電壓範圍
  • 高精確度
  • 低偏移電壓
  • 低輸入偏置電流
類別 : FS supportive
A product that has been developed for automotive use and is capable of supporting safety analysis with regard to the functional safety.

Reference Design / Evaluation Tool

    • Evaluation Board - BD14230FVJ-EVK-001
    • BD14230FVJ-EVK-001 is an evaluation board for BD14230FVJ-C, which is ROHM's current sense amplifier.

    • Reference Design - REF68013
    • 50A Shunt-based current sensing (uni-direction) with CSA on 48V system
    • In the automotive and industrial equipment fields, current sensing circuits are essential for applications such as current feedback, overcurrent limitation, and battery level monitoring. The shunt-based current sensing circuit is the most standard circuit for current measurement and monitoring. ROHM provides solutions that leverage the resistor technology it has developed since its founding, as well as the analog and thermal design technologies it has cultivated over many years, contributing to improved system performance, higher power efficiency, and higher reliability through high-precision current sensing.

      The components you select will vary depending on the power supply system and detection current value. We have a lineup of reference designs for 12V, 24V, and 48V systems, as well as current sensing values from 20 to 100A. We publish not only the schematic design guide but also thermal evaluation data for shunt resistors. Thermal issues are an important factor in shunt-based current sensing. Please use these as design references to help reduce design man-hours.

      This reference design is designed for 50A, uni-direction current sensing on 48V systems.

    • Reference Design - REF68014
    • 100A Shunt-based current sensing (uni-direction) with CSA on 48V system
    • In the automotive and industrial equipment fields, current sensing circuits are essential for applications such as current feedback, overcurrent limitation, and battery level monitoring. The shunt-based current sensing circuit is the most standard circuit for current measurement and monitoring. ROHM provides solutions that leverage the resistor technology it has developed since its founding, as well as the analog and thermal design technologies it has cultivated over many years, contributing to improved system performance, higher power efficiency, and higher reliability through high-precision current sensing.

      The components you select will vary depending on the power supply system and detection current value. We have a lineup of reference designs for 12V, 24V, and 48V systems, as well as current sensing values from 20 to 100A. We publish not only the schematic design guide but also thermal evaluation data for shunt resistors. Thermal issues are an important factor in shunt-based current sensing. Please use these as design references to help reduce design man-hours.

      This reference design is designed for 100A, uni-direction current sensing on 48V systems.

    • Reference Design - REF68015
    • 100A Shunt-based current sensing (bi-direction) with CSA on 48V system
    • In the automotive and industrial equipment fields, current sensing circuits are essential for applications such as current feedback, overcurrent limitation, and battery level monitoring. The shunt-based current sensing circuit is the most standard circuit for current measurement and monitoring. ROHM provides solutions that leverage the resistor technology it has developed since its founding, as well as the analog and thermal design technologies it has cultivated over many years, contributing to improved system performance, higher power efficiency, and higher reliability through high-precision current sensing.

      The components you select will vary depending on the power supply system and detection current value. We have a lineup of reference designs for 12V, 24V, and 48V systems, as well as current sensing values from 20 to 100A. We publish not only the schematic design guide but also thermal evaluation data for shunt resistors. Thermal issues are an important factor in shunt-based current sensing. Please use these as design references to help reduce design man-hours.

      This reference design is designed for 100A, bi-direction current sensing on 48V systems.

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