Factory directly Class A Amplifier Ic - LM5009AMMX/NOPB Switching Voltage Regulators 6-95V Wide Vin, 150mA Constant On-Time Non-Synchronous Buck Regulator 8-VSSOP -40 to 125 – Shinzo
Factory directly Class A Amplifier Ic - LM5009AMMX/NOPB Switching Voltage Regulators 6-95V Wide Vin, 150mA Constant On-Time Non-Synchronous Buck Regulator 8-VSSOP -40 to 125 – Shinzo Detail:
♠ Product Description
Product Attribute | Attribute Value |
Manufacturer: | Texas Instruments |
Product Category: | Switching Voltage Regulators |
Mounting Style: | SMD/SMT |
Package / Case: | VSSOP-8 |
Topology: | Buck |
Output Voltage: | 2.5 V to 85 V |
Output Current: | 150 mA |
Number of Outputs: | 1 Output |
Input Voltage, Min: | 6 V |
Input Voltage, Max: | 95 V |
Switching Frequency: | 600 kHz |
Minimum Operating Temperature: | - 40 C |
Maximum Operating Temperature: | + 125 C |
Series: | LM5009A |
Packaging: | Reel |
Packaging: | Cut Tape |
Packaging: | MouseReel |
Brand: | Texas Instruments |
Development Kit: | LM5009AEVAL/NOPB |
Input Voltage: | 6 V to 95 V |
Operating Supply Current: | 485 uA |
Product Type: | Switching Voltage Regulators |
Shutdown: | Shutdown |
Factory Pack Quantity: | 3500 |
Subcategory: | PMIC – Power Management ICs |
Supply Voltage – Min: | 6 V |
Type: | Step Down |
Unit Weight: | 0.004938 oz |
♠ LM5009A 100-V, 150-mA Constant ON-Time Buck Switching Regulator
The LM5009A is a functional variant of the LM5009 COT buck switching regulator. The functional differences of the LM5009A are: The minimum input operating voltage is 6 V, the ON-time equation is slightly different, and the requirement for a minimum load current is removed.
The LM5009A step-down switching regulator features all of the functions required to implement a low cost, efficient, buck bias regulator. This high voltage regulator contains an 100-V N-channel buck switch. The device is easy to implement and is provided in the 8-pin VSSOP and the thermally enhanced 8-pin WSON packages. The regulator is based on a control scheme using an ON time inversely proportional to VIN. This feature allows the operating frequency to remain relatively constant. The control scheme requires no loop compensation. An intelligent current limit is implemented with forced OFF time, which is inversely proportional to VOUT. This scheme ensures short-circuit control while providing minimum foldback. Other features include: thermal shutdown, undervoltage lockout (VCC), gate drive undervoltage lockout, max duty cycle limiter, and a precharge switch.
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