参数资料
型号: IR3087MPBF
厂商: International Rectifier
文件页数: 20/35页
文件大小: 0K
描述: IC XPHASE W/OVP/TM CTRL 20MLPQ
标准包装: 5
系列: XPhase™
应用: 处理器
电流 - 电源: 10mA
电源电压: 8.4 V ~ 21 V
工作温度: 0°C ~ 125°C
安装类型: 表面贴装
封装/外壳: 20-MLPQ
供应商设备封装: 20-MLPQ(4x4)
包装: 剪切带 (CT)
IR3087PBF
Type II Compensation for AVP Applications
Determine the compensation at no load, the worst case condition. Choose the crossover frequency fc between 1/10
and 1/5 of the switching frequency per phase. Assume the time constant of the resistor and capacitor across the
output inductors matches that of the inductor, and determine R CP and C CP from Equations (26) and (27), where L E
and C E are the equivalent inductance of output inductors and the equivalent capacitance of output capacitors
respectively.
R CP =
C CP =
( 2 π ? f C ) 2 ? L E ? C E ? R FB ? V PWMRMP
V O * 1 + ( 2 π * f C * C * R C ) 2
10 ? L E ? C E
R CP
(26)
(27)
C CP1 is optional and may be needed in some applications to reduce the jitter caused by the high frequency noise. A
ceramic capacitor between 10pF and 220pF is usually enough.
Type III Compensation for AVP Applications
Determine the compensation at no load, the worst case condition. Assume the time constant of the resistor and
capacitor across the output inductors matches that of the inductor, the crossover frequency and phase margin of the
voltage loop can be estimated by Equations (28) and (29), where R LE is the equivalent resistance of inductor DCR. .
f C 1 =
R DRP
2 π * C E ? G CS * R FB ? R LE
(28)
θ C 1 = 90 ? A tan( 0 . 5 ) ?
180
π
(29)
Choose the desired crossover frequency fc around fc1 estimated by Equation (28) or choose fc between 1/10 and
1/5 of the switching frequency per phase, and select the components to ensure the slope of close loop gain is -20dB
/Dec around the crossover frequency. Choose resistor R FB1 according to Equation (30), and determine C FB and
R DRP from Equations (31) and (32).
R FB 1 =
1
2
R FB
to
R FB 1 =
2
3
R FB
(30)
C FB
=
1
4 π ? f C ? R FB 1
(31)
C DRP =
( R FB + R FB 1 ) ? C FB
R DRP
(32)
R CP and C CP have limited effect on the crossover frequency, and are used only to fine tune the crossover frequency
and transient load response. Determine R CP and C CP from Equations (33) and (34).
R CP =
C CP =
( 2 π ? f C ) 2 ? L E ? C E ? R FB ? V PWMRMP
V O
10 ? L E ? C E
R CP
(33)
(34)
C CP1 is optional and may be needed in some applications to reduce the jitter caused by the high frequency noise. A
ceramic capacitor between 10pF and 220pF is usually enough.
Page 20 of 35
1 /31/05
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