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SC4611ITSTRT Datasheet(PDF) 9 Page - Semtech Corporation |
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SC4611ITSTRT Datasheet(HTML) 9 Page - Semtech Corporation |
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9 / 11 page ![]() 9 2004 Semtech Corp. www.semtech.com SC4611 POWER MANAGEMENT Applications Information (Cont.) The classical Type III compensation network can be built around the error amplifier as shown below Figure 1. Voltage Mode Buck Converter Compensation Network The transfer function of the compensation network is as follows: where, 0dB Gd T ωZ1 ω Z2 p1 p2 c ESR ω o ω ω ω ω Loop gain T(s) The design guidelines are as following: 1. Set the loop gain crossover frequency w C for given switching frequency. 2. Place an integrator in the origin to increase DC and low frequency gains. 3. Select w Z1 and wZ2 such that they are placed near wO to dampen peaking; the loop gain has –20 dB rate to go across the 0 dB line for obtaining a wide bandwidth. 4. Cancel w ESR with compensation pole wP1 (wP1 = wESR ). 5. Place a high frequency compensation pole w P2 at half the switching frequency to get the maximum attenuation of the switching ripple and the high frequency noise with the adequate phase lag at w C. PCB LA PCB LA PCB LA PCB LA PCB LAYYYYYOUT F OUT F OUT F OUT F OUT FOR SC46 OR SC46 OR SC46 OR SC46 OR SC461 11 1 11 11 1 1 Careful attention to layout requirements is necessary for successful implementation of the SC4611 PWM controller. High switching currents with fast rise and fall times are present in the application and their effect on ground plane voltage differentials must be understood and minimized. A good layout with minimum parasitic loop areas will a) reduce EMI b) lower ground injection currents, resulting in electrically “cleaner” grounds for the rest of the system and c) minimize source ringing, resulting in more reliable gate switching signals. LA LA LA LA LAYYYYYOUT GUIDELINES OUT GUIDELINES OUT GUIDELINES OUT GUIDELINES OUT GUIDELINES In the following Q T and QB denote the high side and low side MOSFETs respectively. 1) A ground plane should be used. The number and position of ground plane interruptions should be minimised so as not to compromise ground plane integrity. Isolated or semi- isolated areas of the ground plane may be deliberately introduced to constrain ground currents into particular paths, such as the output capacitor or the Q B source. ) 1 )( 1 ( ) 1 )( 1 ( ) ( 2 1 2 1 P P Z Z I COMP s s s s s s G ω ω ω ω ω + + + + ⋅ = 2 3 1 2 1 2 1 ) ( 1 , 1 C R R C R Z Z + = =ω ω 3 1 3 1 2 2 2 3 1 3 1 1 1 , 1 , ) ( 1 C C C C R C R C C R P P I + = = + =ω ω ω R3 C3 R2 R1 C1 Vref C2 - + Figure 2. Simplified asymptotic diagram of buck power stage and its compensated loop gain. |
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