THPM4301A THine Electronics DC/DC Switching Regulators - 商品詳細情報
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THPM4301A
THPM4301A
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Data sheet
Design/Simulation Data
Other Documents
Data Sheet | |
---|---|
Datasheet | EN_THine Electronics_Datasheet_20201006175930227 |
Specifications
- Manufacturer name
- THine Electronics
- Product name
- THPM4301A
- Product classification
- DC/DC Switching Regulators
- Lifecycle Status
- Active
- RoHS
- RoHS2
- Switching style
- Step-down(Buck)
- Type
- Power Module
- Fan-out
- 1
- Output Power
- 2.95V
- Maximum input voltage
- 6V
- Output voltage
- 0.6 to 3.6V
- Input voltage
- 2.95 to 6V
- Operating temperature range
- -40 to 85C
- Output voltage accuracy
- 1%
- Package
- 56pin LGA
- Output current
- 0 to 6A
- Manufacturer Packaging
- Tape & Reel
- Manufacturer packaging quantity
- 250
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Details
- "Our Intelligence Inductor Power Module offers significant benefits in high density Point of Load modules and represents the next step in POL integration.
<Suitable for>
ASIC, ASSP, FPGA, DSP, DDR
<Features>
1. High Efficiency - Inductor-based package allows very low DCR, reduced losses
Compared to conventional packaging technologies, “this inductor technology” reduces constraints on the inductor size. This allows for larger gauge wire and coil diameters to be used within the inductor structure which results in lower power losses and a high efficiency module.
2. High Power Density - Solutions require minimal board space
The small size and very low profile (3 mm) package reduces board space, allowing higher density designs.
3. Cooler Operating Temp. - Packaged in high thermal conductivity magnetic material
The inductor body acts as a heat sink to evenly sistribute heat, produced by the IC and inductor, across the package and dissipate it to the ambient air. The measured surface temperature is reduced by up to 11.5℃ compared to a module with an internal inductor under identical conditions. High thermal conductivity avoids “hot spots”.
4. Low Radiated EMI - Core material provides electro-Magnetic shielding
The inductor material is conductive and acts as a shield over the internal components. All internal power traces are very short, minimizing the loop area and further reducing radiated EMI.
We have the other line-ups upon Vout/Iout."