onsemi PWM控制器, 电流模式, 最高1 MHz, 10 A, 5.25 V输出, 35针, PQFN, 贴片安装
- RS Stock No.:
- 178-4280
- Mfr. Part No.:
- FAN65008B
- Brand:
- onsemi
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- RS Stock No.:
- 178-4280
- Mfr. Part No.:
- FAN65008B
- Brand:
- onsemi
Specifications
Technical Reference
Legislation and Compliance
Product Details
Find similar products by selecting one or more attributes.
Select all | Attribute | Value |
|---|---|---|
| 品牌 | onsemi | |
| 最高开关频率 | 1 MHz | |
| 输出电压 | 5.25 V | |
| 输出电流 | 10 A | |
| 输出数目 | 1 | |
| 控制方法 | 电压 | |
| 安装类型 | 贴片 | |
| 下降时间 | 200ns | |
| 封装类型 | PQFN | |
| 上升时间 | 200ns | |
| 拓扑 | 降压 | |
| 引脚数目 | 35 | |
| 最大负载循环 | 50% | |
| 尺寸 | 6 x 6 x 0.75mm | |
| PWM控制器类型 | 电流模式 | |
| 长度 | 6mm | |
| 宽度 | 6mm | |
| 高度 | 0.75mm | |
| 最低工作温度 | -40 °C | |
| 最大工作电源电压 | 65 V | |
| 最高工作温度 | +125 °C | |
| Select all | ||
|---|---|---|
品牌 onsemi | ||
最高开关频率 1 MHz | ||
输出电压 5.25 V | ||
输出电流 10 A | ||
输出数目 1 | ||
控制方法 电压 | ||
安装类型 贴片 | ||
下降时间 200ns | ||
封装类型 PQFN | ||
上升时间 200ns | ||
拓扑 降压 | ||
引脚数目 35 | ||
最大负载循环 50% | ||
尺寸 6 x 6 x 0.75mm | ||
PWM控制器类型 电流模式 | ||
长度 6mm | ||
宽度 6mm | ||
高度 0.75mm | ||
最低工作温度 -40 °C | ||
最大工作电源电压 65 V | ||
最高工作温度 +125 °C | ||
- COO (Country of Origin):
- PH
FAN65008B is a wide VIN highly efficient synchronous buckregulator, with integrated high side and low side power MOSFETs. The device incorporates a fixed frequency voltage mode PWM controller supporting a wide voltage range from 4.5 V to 65 V and can handle continuous currents up to 10 A. FAN65008B includes a 0.67% accurate reference voltage to achieve tight regulation.
Supports wide range of applications
Allows for optimization between size, efficiency, and maximum duty cycle
Maintain voltage accuracy
Best Efficiency at heavy loads and also at light loads
Fully protected against voltage, current and temperature faults
Improves efficiency by reducing power loss
Allows for optimization between size, efficiency, and maximum duty cycle
Maintain voltage accuracy
Best Efficiency at heavy loads and also at light loads
Fully protected against voltage, current and temperature faults
Improves efficiency by reducing power loss
