参数资料
型号: IR3093MTRPBF
厂商: International Rectifier
文件页数: 12/39页
文件大小: 0K
描述: IC CTLR 3PHASE VR10 48-MLQP
标准包装: 3,000
应用: VID 电压编程器
电源电压: 7.4 V ~ 21 V
电流 - 电源: 38mA
工作温度: 0°C ~ 125°C
安装类型: 表面贴装
封装/外壳: 48-MLPQ
供应商设备封装: 48-MLPQ(7x7)
包装: 带卷 (TR)
IR3093PbF
50% INTERNAL OSCILLATOR RAMP
DUTY CYCLE
CLK1
CLK2
CLK3
RAMP3 MIN DUTY
CYCLE ADJUST
RAMP3 MAX DUTY
CYCLE ADJUST
EAOUT
RAMP3
FIXED RAMP1
RAMP2
0.6V
RAMP1 SLOPE = 50mV / % DC
THE SHARE ADJUST ERROR AMPLIFIER CAN
CHANGE THE PULSE WIDTH OF RAMPS 2 & 3 FROM
0.5 x RAMP1 TO 2.0 X RAMP1 TO FORCE
CURRENT SHARING.
Figure 3 – 3 Phase Oscillator and PWM Waveforms
The RSFF is reset dominant allowing both phases to go to zero duty cycle within a few tens of nanoseconds in
response to a load step decrease. Phases can overlap and go to 100% duty cycle in response to a load step increase
with turn-on gated by the clock pulses. An Error Amplifier output voltage greater than the common mode input range of
the PWM comparator results in 100% duty cycle regardless of the voltage of the PWM ramp. This arrangement
guarantees the Error Amplifier is always in control and can demand 0 to 100% duty cycle as required. It also favors
response to a load step decrease which is appropriate given the low output to input voltage ratio of most systems. The
inductor current will increase much more rapidly than decrease in response to load transients.
This control method is designed to provide “single cycle transient response” where the inductor current changes in
response to load transients within a single switching cycle maximizing the effectiveness of the power train and
minimizing the output capacitor requirements.
Body Braking
TM
In a conventional synchronous buck converter, the minimum time required to reduce the current in the inductor in
response to a load step decrease is;
T SLEW = [L x (I MAX - I MIN )] / Vout
The slew rate of the inductor current can be significantly increased by turning off the synchronous rectifier in response
to a load step decrease. The switch node voltage is then forced to decrease until conduction of the synchronous
rectifier’s body diode occurs. This increases the voltage across the inductor from Vout to Vout + V BODY DIODE . The
minimum time required to reduce the current in the inductor in response to a load transient decrease is now;
T SLEW = [L x (I MAX - I MIN )] / (Vout + V BODY DIODE )
Page 12 of 39
09/08/05
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