Infineon BSP752TXUMA1 High Side 1, High Side Power Switch Power Switch IC 8-Pin, SOIC
- RS庫存編號:
- 752-8227
- Distrelec 貨號:
- 304-35-441
- 製造零件編號:
- BSP752TXUMA1
- 製造商:
- Infineon
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TWD134.00
(不含稅)
TWD140.70
(含稅)
訂單超過 $1,300.00 免費送貨
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- 4,838 件準備從其他地點送貨
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單位 | 每單位 | 每包* |
|---|---|---|
| 2 - 624 | TWD67.00 | TWD134.00 |
| 626 - 1248 | TWD54.00 | TWD108.00 |
| 1250 + | TWD49.50 | TWD99.00 |
* 參考價格
- RS庫存編號:
- 752-8227
- Distrelec 貨號:
- 304-35-441
- 製造零件編號:
- BSP752TXUMA1
- 製造商:
- Infineon
規格
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產品詳細資訊
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選取全部 | 屬性 | 值 |
|---|---|---|
| 品牌 | Infineon | |
| Power Switch Type | High Side Power Switch | |
| Power Switch Topology | High Side | |
| Product Type | Power Switch IC | |
| Switch On Resistance RdsOn | 380mΩ | |
| Number of Inputs | 1 | |
| Power Rating | 1.5W | |
| Mount Type | Surface | |
| Package Type | SOIC | |
| Minimum Supply Voltage | 6V | |
| Maximum Supply Voltage | 16V | |
| Pin Count | 8 | |
| Operating Current | 1.7A | |
| Minimum Operating Temperature | -40°C | |
| Maximum Operating Temperature | 150°C | |
| Height | 1.5mm | |
| Length | 5mm | |
| Standards/Approvals | No | |
| Series | BSP752T | |
| Automotive Standard | AEC | |
| 選取全部 | ||
|---|---|---|
品牌 Infineon | ||
Power Switch Type High Side Power Switch | ||
Power Switch Topology High Side | ||
Product Type Power Switch IC | ||
Switch On Resistance RdsOn 380mΩ | ||
Number of Inputs 1 | ||
Power Rating 1.5W | ||
Mount Type Surface | ||
Package Type SOIC | ||
Minimum Supply Voltage 6V | ||
Maximum Supply Voltage 16V | ||
Pin Count 8 | ||
Operating Current 1.7A | ||
Minimum Operating Temperature -40°C | ||
Maximum Operating Temperature 150°C | ||
Height 1.5mm | ||
Length 5mm | ||
Standards/Approvals No | ||
Series BSP752T | ||
Automotive Standard AEC | ||
Infineon BSP752T Series Power Switch IC, 1.5W Power Rating, 16V Maximum Supply Voltage - BSP752TXUMA1
This power switch IC is a high-side switching device designed for automotive electrical systems, providing controlled distribution of multiple loads from a single supply. It is intended for surface-mount board assembly and operates across typical vehicle voltages, offering a compact solution for managing several outputs within vehicular electronics environments.
Features and Benefits:
• Five independent outputs reduce wiring complexity and system weight
• 380mΩ Rds(on) limits conduction losses during steady-state operation
• 6-16V supply range supports standard automotive electrical systems
• 1.7A operating current enables drive of moderate loads per channel
• 1.5W power rating handles dissipation in continuous operation
• 380mΩ Rds(on) limits conduction losses during steady-state operation
• 6-16V supply range supports standard automotive electrical systems
• 1.7A operating current enables drive of moderate loads per channel
• 1.5W power rating handles dissipation in continuous operation
Applications
• Suitable for body control modules managing lighting circuits
• Ideal for switching multiple solenoids in actuation systems
• Used with sensor arrays requiring centralised supply control
• Can be used for infotainment peripheral power distribution
• Appropriate for control units in auxiliary power management
• Ideal for switching multiple solenoids in actuation systems
• Used with sensor arrays requiring centralised supply control
• Can be used for infotainment peripheral power distribution
• Appropriate for control units in auxiliary power management
What package type should designers plan for when laying out the board?
The device is supplied in an SOIC 8-pin package intended for surface mounting, so standard SOIC land patterns and reflow profiles apply.
How does the operating temperature range affect placement in vehicle assemblies?
With a rated range from -40°C to 150°C, it can be placed near heat sources or within engine-bay nearby electronics where extended temperature resilience is required.
What pin and I/O count must be accommodated in system schematics?
The component presents eight pins organised to support five outputs and one input, requiring schematic allocation for these connections.
Which electrical limitation governs maximum supply selection?
The maximum allowable supply voltage is 16V, so system designers should ensure transient protection and regulation keep the input below this threshold.
