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LP3952 Datenblatt(PDF) 7 Page - Texas Instruments |
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LP3952 Datenblatt(HTML) 7 Page - Texas Instruments |
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7 / 46 page ![]() + - + - + - + - FB SW R S R R R Duty control 2 MHz clock OVPCOMP ERRORAMP SLOPER OLPCOMP RESETCOMP LOOPC + - + - R FBNCCOMP ACTIVE LOAD SWITCH V OUT VIN LP3952 www.ti.com SNVS518A – JULY 2007 – REVISED MARCH 2013 Magnetic Boost DC/DC Converter The LP3952 Boost DC/DC Converter generates a 4.0 – 5.3V voltage for the LEDs from single Li-Ion battery (3V…4.5V). The output voltage is controlled with an 8-bit register in 9 steps. The converter is a magnetic switching PWM mode DC/DC converter with a current limit. The converter has three options for switching frequency, 1 MHz, 1.67 MHz and 2 MHz (default), when timing resistor RT is 82 k Ω. Timing resistor defines the internal oscillator frequency and thus directly affects boost frequency and all circuit's internally generated timing (RGB patterns). The LP3952 Boost Converter uses pulse-skipping elimination to stabilize the noise spectrum. Even with light load or no load a minimum length current pulse is fed to the inductor. An active load is used to remove the excess charge from the output capacitor at very light loads. At very light load and when input and output voltages are very close to each other, the pulse skipping is not completely eliminated. Output voltage should be at least 0.5V higher than input voltage to avoid pulse skipping. Reducing the switching frequency will also reduce the required voltage difference. Active load can be disabled with the en_autoload bit. Disabling will increase the efficiency at light loads, but the downside is that pulse skipping will occur. The Boost Converter should be stopped when there is no load to minimise the current consumption. The topology of the magnetic boost converter is called CPM control, current programmed mode, where the inductor current is measured and controlled with the feedback. The user can program the output voltage of the boost converter. The output voltage control changes the resistor divider in the feedback loop. The following figure shows the boost topology with the protection circuitry. Four different protection schemes are implemented: 1. Over voltage protection, limits the maximum output voltage – Keeps the output below breakdown voltage. – Prevents boost operation if battery voltage is much higher than desired output. 2. Over current protection, limits the maximum inductor current – Voltage over switching NMOS is monitored; too high voltages turn the switch off. 3. Feedback break protection. Prevents uncontrolled operation if FB pin gets disconnected. 4. Duty cycle limiting, done with digital control. Figure 1. Boost Converter Topology Copyright © 2007–2013, Texas Instruments Incorporated Submit Documentation Feedback 7 Product Folder Links: LP3952 |
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