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OEM/CM QUOTES ONLY | NO BROKERS
• Qualified for Automotive Applications
• AEC-Q100 Qualified With the Following Results:
– Device Temperature Grade 1: –40°C to 125°C Ambient Operating Temperature Range
– Device HBM ESD Classification Level H2
– Device CDM ESD Classification Level C6
• 1.8-V to 6-V Input Voltage Range
• Integrated VCOM Buffer
• High Voltage Switch to Isolate VGH
• Gate Voltage Shaping of VGH
• 2-A Internal MOSFET Switch
• Main Output VS up to 15 V With < 1% Output Voltage Accuracy
• Virtual Synchronous Converter Technology
• Negative Regulated Charge Pump Driver VGL
• Positive Regulated Charge Pump Driver VGH
• Adjustable Power On Sequencing
• Adjustable Fault Detection Timing
• Gate Drive Signal for external isolation MOSFET
• Thermal Shutdown Available in TSSOP-24 Package
• TFT LCD Displays for Notebooks
• TFT LCD Display for Monitor
• Car Navigation Display
The TPS65150-Q1 offers a very compact and small power-supply solution that provides all three voltages required by thin film transistor (TFT) LCD displays. With an input voltage range of 1.8 V to 6 V, the device is ideal for notebooks powered by a 2.5-V or 3.3-V input rail or monitor applications with a 5-V input-voltage rail. Additionally the TPS65150-Q1 provides an integrated high-current buffer to provide the VCOM voltage for the TFT backplane.
Two regulated adjustable charge-pump drivers provide the positive VGH and negative VGL bias voltages for the TFT. The device incorporates
adjustable power-on sequencing for VGL as well as for VGH. This avoids any additional external components to implement application-specific sequencing. The device has an integrated high-voltage switch to isolate VGH. For the QFN package (RGE), contact TI sales.
One can also use the same internal circuit to provide a gate-shaping signal of VGH for the LCD panel controlled by the signal applied to the CTRL input. For highest safety, the TPS65150-Q1 has an integrated adjustable shutdown latch feature to allow application-specific flexibility. The device monitors the outputs (VS, VGL, VGH); and, as soon as one of the outputs falls below its power-good threshold, the device enters shutdown latch, after its adjustable delay time has passed by.
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