NON INVERTING PMIC CHIP TEXAS INSTRUMENTS TI TPS2065DDBVR NEW ORIGINAL COMPUTER CHIPS
D/c: | Originals | Type: | Drive IC |
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High Light: | Non Inverting PMIC Chip , Texas Non Inverting PMIC Chip , Drive Non Inverting PMIC Chip |
Power Management ICs Texas Instruments/TI TPS2065DDBVR
ECAD Module | PCB Symbol,Footprint & 3D Model |
Supply and Demand Status | Sufficient |
Fake Threat In the Open Market | 64 pct. |
Popularity | High |
MSL Level | 2 (1 Year) |
Manufacturer Pack Quantity | 3,000 |
Mounting Style | Surface Mount |
Supplier Device Package | SOT-23-5 |
Manufacturer Package | SC-74A, SOT-753 |
Features | Status Flag |
Fault Protection | Current Limiting (Fixed), Over Temperature, UVLO |
Rds On (Typ) | 96mOhm |
Temperature Range - Operating | -40°C ~ 85°C |
Voltage - Supply (Vcc/Vdd) | Not Required |
Voltage - Load | 4.5V ~ 5.5V |
Input Type | Non-Inverting |
Output Type | N-Channel |
Output Configuration | High Side |
Switch Type | General Purpose |
Packaging | Reel |
Manufacturer | Texas Instruments |
Current - Output (Maximum) | 1A |
Interface | On/Off |
Number of Outputs | 1 |
- Single Power Switch Family
- Rated currents of 1 A
- ±20% Accurate, Fixed, Constant Current Limit
- Fast Overcurrent Response: 2 µs
- Deglitched Fault Reporting
- Output Discharge
- Reverse Current Blocking
- Built-in Soft Start
- Ambient Temperature Range: –40°C to 85°C
- UL Listed and CB-File No. E169910
The TPS2065D power-distribution switch family is intended for applications such as USB where heavy capacitive loads and short circuits are likely to be encountered. The device can continuously deliver up to 1 A output current.
The TPS2065D limits the output current to a safe level by operating in a constant-current mode when the output load exceeds the current limit threshold. This provides a predictable fault current under all conditions. The fast overload response time eases the burden on the main 5-V supply to provide regulated power when the output is shorted. The power-switch rise and fall times are controlled to minimize current surges during turnon and turnoff.