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LP55231 Datenblatt(PDF) 16 Page - Texas Instruments |
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LP55231 Datenblatt(HTML) 16 Page - Texas Instruments |
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16 / 53 page ![]() 8-BIT CURRENT SETTING 0 mA TO 25.5 mA 12-BIT PWM PATTERN CONTROL 0% TO 100 % TIME PWM FREQUENCY = 312 Hz CHARGE PUMP CURRENT SOURCE SATURATION MONITOR DIGITAL FILTER MODE CONTROL COMMAND LOOK-AHEAD PROGRAM MEMORY CONTROL REGISTERS COMPARATOR VOUT VDD D1 TO D6 PWM VOFS MODE LP55231 SNOSCR5 – MARCH 2013 www.ti.com Gain Change Hysteresis Charge pump gain control utilizes digital filtering to prevent supply voltage disturbances (for example, the transient voltage on the power supply during the GSM burst) from triggering unnecessary gain changes. Hysteresis is provided to prevent periodic gain changes (which could occur due to LED driver) and charge-pump voltage drop in 1x mode. The hysteresis of the gain change is user-configurable; default setting is factory- programmable. Flexible configuration ensures that hysteresis can be minimized or set to desired level in each application. LED forward voltage monitoring and gain control block diagram is shown in Figure 17. Figure 17. Forward Voltage Monitoring and Gain Control Block LED Driver Operational Description Overview LP55231 LED drivers are constant current sources. Output current can be programmed by control registers up to 25.5 mA. The overall maximum current is set by 8-bit output current control registers with 100 μA step size. Each of the 9 LED drivers has a separate output current control register. The LED luminance pattern (dimming) is controlled with PWM (pulse width modulation) technique, which has internal resolution of 12 bits (8-bit control can be seen by user). PWM frequency is 312 Hz. See Figure 18 below. Figure 18. LED Pattern and Current Control Principle LED dimming is controlled according to a logarithmic or linear scale, see Figure 19. A logarithmic or linear scheme can be set for both the program execution engine control and direct PWM control. Note: if the temperature compensation is active, the maximum PWM duty cycle is limited to 50% at +25°C. This is required to allow enough headroom for temperature compensation over the whole temperature range −30°C to 90°C. 16 Submit Documentation Feedback Copyright © 2013, Texas Instruments Incorporated Product Folder Links: LP55231 |
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