- 封装:8-SOIC(0.154",3.90mm 宽)
- RoHS:无铅 / 符合限制有害物质指令(RoHS)规范要求
- 包装方式:管件
- 参考价格:$3.936-$8
更新日期:2024-04-01
产品简介:8V 至 65V 低侧智能电源开关
查看详情- 封装:8-SOIC(0.154",3.90mm 宽)
- RoHS:无铅 / 符合限制有害物质指令(RoHS)规范要求
- 包装方式:管件
- 参考价格:$3.936-$8
UC27131D 供应商
- 公司
- 型号
- 品牌
- 封装/批号
- 数量
- 地区
- 日期
- 说明
- 询价
-
TI
-
原厂原装
22+ -
3288
-
上海市
-
-
-
一级代理原装
-
TI
-
原厂原装
2318+ -
9200
-
合肥
-
-
-
科大讯飞战略投资企业
UC27131D 中文资料属性参数
- 标准包装:75
- 类别:集成电路 (IC)
- 家庭:PMIC - MOSFET,电桥驱动器 - 内部开关
- 系列:-
- 类型:低端
- 输入类型:非反相
- 输出数:1
- 导通状态电阻:-
- 电流 - 输出 / 通道:300mA
- 电流 - 峰值输出:700mA
- 电源电压:8 V ~ 65 V
- 工作温度:-40°C ~ 85°C
- 安装类型:表面贴装
- 封装/外壳:8-SOIC(0.154",3.90mm 宽)
- 供应商设备封装:8-SOIC
- 包装:管件
- 其它名称:296-34711-5UC27131D-ND
产品特性
- 300mA Continuous Output Current
- Low Side or High Side Switch Configuration
- 8V to 65V Operation
- Overload and Short Circuit Protection
- Power Interruption Protection
- +6V Regulated Voltage
- 2mA Quiescent Current
- Programmable Overcurrent and Power Interruption Protection
- 1% to 30% Programmable Input Comparator Hysteresis (on UC37132)
- Low and High Side Internal High Current Clamps When Driving Inductive Loads
产品概述
The UC37131, UC37132 and UC37133 are a family of smart power switches which can drive resistive or inductive loads from the high side or low side.
The UC37132 is available in 14 pin (DIP), 16 pin (SOIC), or 20 pin (CLCC) packages and can accommodate both low side (load to VCC) or high side (load to GND) configurations. The UC37131 and UC37133 are exclusively for a low side or a high side configuration respectively and both are available in an 8 pin package. Both high side and low side configurations provide
high current switching with low saturation voltages which can drive resistive or inductive loads.
The input to the switch is driven by a low voltage signal, typically 5V. Additionally, UC37132 features adjustable hysteresis. The output of the device can switch a load between 8V and 65V. Output current capability is 300mA continuous or 700mA peak.
The device also has inherent smart features that allow for programmable turn-on delay in enabling the output following startup. The same capacitor that specifies the turn-on delay is also used to program a VCC power interruption time. If VCC drops below a threshold for a time specified by this capacitor, the output is turned off and a new turn-on delay will be retriggered. Similarly, if high current persists longer than the response delay, the output driver will operate in a very low duty cycle mode to protect the IC.
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