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TPS61160DRVTG4 Datasheet(PDF) 11 Page - Texas Instruments |
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TPS61160DRVTG4 Datasheet(HTML) 11 Page - Texas Instruments |
11 / 39 page ![]() SW Ramp Generator Oscillator Current Sensor OLP CTRL GND C3 L1 + FB Reference Control D1 Error Amplifer 2 1 Rset C2 Vin C1 PWM Control 4 6 Soft Start-up 5 3 COMP 11 TPS61160, TPS61161 www.ti.com SLVS791E – NOVEMBER 2007 – REVISED JULY 2016 Product Folder Links: TPS61160 TPS61161 Submit Documentation Feedback Copyright © 2007–2016, Texas Instruments Incorporated 7 Detailed Description 7.1 Overview The TPS61160 and TPS61161 are high-efficiency, high-output voltage boost converters in a small package size. These devices are ideal for driving white LED in series. The serial LED connection provides even illumination by sourcing the same output current through all LEDs, eliminating the need for expensive factory calibration. Each device integrate a 40-V, 0.7-A switch FET and operatea in pulse width modulation (PWM) with 600-kHz fixed switching frequency. For operation see the block diagram. The duty cycle of the converter is set by the error amplifier output and the current signal applied to the PWM control comparator. The control architecture is based on traditional current-mode control; therefore, a slope compensation is added to the current signal to allow stable operation for duty cycles larger than 50%. The feedback loop regulates the FB pin to a low reference voltage (200 mV typical), reducing the power dissipation in the current sense resistor. 7.2 Functional Block Diagram 7.3 Feature Description 7.3.1 Soft Start-Up Soft-start circuitry is integrated into the device to avoid a high inrush current during start-up. After the device is enabled, the voltage at FB pin ramps up to the reference voltage in 32 steps with each step taking 213 μs. This ensures that the output voltage rises slowly to reduce the input current. Additionally, for the first 5 msec after the COMP voltage ramps, the current limit of the switch is set to half of the normal current limit spec. During this period, the input current is kept below 400 mA (typical). See the start-up waveform of a typical example, Figure 10. |
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