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BSP752RXUMA2
+NomenclatureIC PWR SWITCH N-CHAN 1:1 PDSO-8
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FabricantTechnologie Infineon
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Pièce fabricant #BSP752RXUMA2
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Fiche technique BSP752RXUMA2 DataSheet
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Package SOIC-8
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En stock6888
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Spécifications
| Attribut | Valeur |
| Package | Tape & Reel (TR),Cut Tape (CT),Bulk |
| Series | miniPROFET® |
| ProductStatus | Active |
| SwitchType | General Purpose |
| NumberofOutputs | 1 |
| Ratio-Input:Output | 1:1 |
| OutputConfiguration | High Side |
| OutputType | N-Channel |
| Interface | On/Off |
| Voltage-Load | 6V ~ 52V |
| Voltage-Supply(Vcc/Vdd) | Not Required |
| Current-Output(Max) | 1.3A |
| RdsOn(Typ) | 150mOhm |
| InputType | Non-Inverting |
| FaultProtection | Current Limiting (Fixed), Open Load Detect, Over Temperature, Over Voltage |
| OperatingTemperature | -40°C ~ 150°C (TJ) |
| MountingType | Surface Mount |
| SupplierDevicePackage | PG-DSO-8-6 |
Présentation
Description
Equivalent
Features
1. Nominal Operating Voltage: Designed for a 12V automotive electrical system.
2. Current Capability: Handles a continuous current up to 5.5A, suitable for driving resistive, inductive, or capacitive loads.
3. Protection Features:
- Overload Protection: Safeguards against current overloads.
- Overtemperature Protection: Automatically turns off in case of excessive temperature.
- Short-circuit Protection: Protects against direct short circuits to ground.
- Overvoltage Protection: Withstands voltage spikes, enhancing reliability.
4. Diagnostic Feedback: Provides status feedback for load and fault conditions via a diagnostic output.
5. Low Power Consumption: Optimized for minimal energy usage when in standby mode.
6. Robust Design: Built to withstand harsh environmental conditions and electromagnetic interference typical in automotive settings.
7. Package: Available in a TO-252-5 (DPAK) package, facilitating easy integration onto circuit boards.
These features make the BSP752RXUMA2 ideal for automotive applications requiring reliable, protected power switching.
Pinout
1. Drain (D): This is the output pin of the switch, connected to the load. It serves as the high-side output terminal where the controlled current exits the device.
2. Source (S): This pin is usually connected to ground. In a high-side switch, the source is connected to the positive supply voltage.
3. Gate (G): This is the control input pin. By applying a voltage to the gate, the switch is turned on or off, allowing or interrupting the current flow from the drain to the source.
These smart high-side switches are designed for automotive and industrial applications, offering protection features such as overcurrent, overtemperature, and short-circuit protection. They are typically used to switch power to resistive, inductive, and capacitive loads, providing a more efficient and reliable solution compared to mechanical relays.