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SC2621 Datenblatt(PDF) 6 Page - Semtech Corporation |
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SC2621 Datenblatt(HTML) 6 Page - Semtech Corporation |
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6 / 10 page ![]() 6 2003 Semtech Corp. www.semtech.com POWER MANAGEMENT SC2621 Applications Information THEOR THEOR THEOR THEOR THEORY OF OPERA Y OF OPERA Y OF OPERA Y OF OPERA Y OF OPERATION TION TION TION TION The SC2621 integrates a high-speed, voltage mode PWM controller with a linear controller into a single package. It is designed to control two independent output voltages for high performance graphic card applications. As shown in the block diagram of the SC2621, the volt- age-mode PWM controller consists of an error amplifier, a 500kHz ramp generator, a PWM comparator, a RS latch circuit, and two MOSFET drivers. The buck converter out- put voltage is fed back to the error amplifier negative input and is regulated to a reference voltage level. The error amplifier output is compared with the ramp to gen- erate a PWM wave, which is amplified and used to drive the MOSFETs in the buck converter. The PWM wave at the phase node with the amplitude of Vin is filtered out to get a DC output. The linear controller is an error ampli- fier. It provides the gate drive and output voltage control for a linear regulator. Both PWM controller and linear con- troller work with soft-start and fault monitoring circuitry to meet application requirement. UVLO, Start Up and Shut Down UVLO, Start Up and Shut Down UVLO, Start Up and Shut Down UVLO, Start Up and Shut Down UVLO, Start Up and Shut Down To initiate the SC2621, a supply voltage is applied to Vcc pin. The top gate (DH) and bottom gate (DL) are held low until Vcc voltage exceed UVLO (Under Voltage Lock Out) threshold, typically 4.0V. Then the internal Soft-Start (SS) capacitor begins to charge, the top gate remains low, and the bottom gate is pulled high to turn on the bottom MOSFET. When the SS voltage at the capacitor reaches 0.4V, the linear controller is enabled and LDO output is turned on. Meanwhile, the top and bottom gates of PWM controller begin to switch. The switching regulator output is slowly ramping up for a soft turn-on. If the supply voltages at Vcc pin falls below UVLO thresh- old during a normal operation, the SS capacitor begins to discharge. When the SS voltage reaches 0.4V, the PWM controller controls the switching regulator output to ramp down slowly for a soft turn-off. Meanwhile, the linear controller is disabled and LDO output is turned off. Hiccup Mode Short Circuit Protection Hiccup Mode Short Circuit Protection Hiccup Mode Short Circuit Protection Hiccup Mode Short Circuit Protection Hiccup Mode Short Circuit Protection The SC2621 uses low-side MOSFET Rdson sensing for over current protection. In every switching cycle, after the bottom MOSFET is on for 150ns, the SC2621 de- tects the phase node voltage and compares it with an internal setting voltage. If the phase node is lower than the setting voltage, an overcurrent condition occurs. The SC2621 will discharge the internal SS capacitor and shut- down both outputs. After waiting for around 10 millisec- onds, the SC2621 begins to charge SS capacitor again and initiates a fresh startup. The startup and shutdown cycle will repeat until the short circuit is removed. This is called a hiccup mode short circuit protection. To program a load trip point for short circuit protection, it is recommended to connect a 3.3k resistor from the OCS pin to the ground, and a resistor Rset from the OCS pin to the DRV pin, as shown in Fig. 1. SC2621 GND OCS DRV VCC 11 4 9 3.3k Rset 12V 8 Fig. 1. Programming load trip point The resistor Rset can be found in Fig. 2 for a given phase node voltage Vpn at the load trip point. This voltage is the product of the inductor peak current at the load trip point and the Rdson of the low-side MOSFET: on _ ds peak pn R I V ´ = The soft start time of the SC2621 is fixed at around 5ms. Therefore, the maximum soft start current is determined by the output inductance and output capacitance. The values of output inductor and output bulk capacitors have to be properly selected so that the soft start peak cur- rent does not exceed the load trip point of the short cir- cuit protection. Internal LDO for Gate Drive Internal LDO for Gate Drive Internal LDO for Gate Drive Internal LDO for Gate Drive Internal LDO for Gate Drive An internal LDO is designed in the SC2621 to lower the 12V supply voltage for gate drive. An 1uF external ce- ramic capacitor connected in between DRV pin to the ground is needed to support the LDO. The LDO output is connected to low gate drive internally, and has to beconnected to high gate drive through an external boot- strap circuit. The LDO output voltage is set at 8.2V. |
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