参数资料
型号: IR3082MTRPBF
厂商: International Rectifier
文件页数: 20/33页
文件大小: 0K
描述: IC CTLR XPHASE 20-MLPQ
标准包装: 3,000
系列: XPhase™
应用: 处理器
电流 - 电源: 10mA
电源电压: 9.6 V ~ 16 V
工作温度: 0°C ~ 100°C
安装类型: 表面贴装
封装/外壳: 20-MLPQ
供应商设备封装: 20-MLPQ(5x5)
包装: 带卷 (TR)
IR3082P b F
t SSDEL =
C SS / DEL ? ( 1 . 3 ? R SS / DEL ? I CHG )
I CHG
=
C SS / DEL ? ( 1 . 3 ? R SS / DEL ? 66 ? 10 ? 6 )
66 ? 10 ? 6
(6)
VDAC Slew Rate Programming Capacitor C VDAC and Resistor R VDAC
The slew rate of VDAC down-slope SR DOWN can be programmed by the external capacitor C VDAC as defined in
Equation (7), where I SINK is the sink current of VDAC pin as shown in Figure 15. The resistor R VDAC is used to
compensate VDAC circuit and is determined by Equation (8). The slew rate of VDAC up-slope SR UP is proportional
to that of VDAC down-slope and is given by Equation (9), where I SOURCE is the source current of VDAC pin as
shown in Figure15.
C VDAC =
I SINK
SR DOWN
(7)
C VDAC
R VDAC = 0 . 5 +
3 . 2 ? 10 ? 15
2
(8)
SR UP =
I SOURCE
C VDAC
(9)
Over Current Setting Resistor R OCSET
The inductor DC resistance is utilized to sense the inductor current. The copper wire of inductor has a constant
temperature coefficient of 3850 PPM, and therefore the maximum inductor DCR can be calculated from Equation
(10), where R L_MAX and R L_ROOM are the inductor DCR at maximum temperature T L_MAX and room temperature
T_ ROOM respectively.
R L _ MAX = R L _ ROOM ? [ 1 + 3850 ? 10 ? 6 ? ( T L _ MAX ? T ROOM )]
(10)
The current sense amplifier gain of IR3086A decreases with temperature at the rate of 1470 PPM, which
compensates part of the inductor DCR increase. The phase IC die temperature is only a couple of degrees Celsius
higher than the PCB temperature due to the low thermal impedance of MLPQ package. The minimum current sense
amplifier gain at the maximum phase IC temperature T IC_MAX is calculated from Equation (11).
G CS _ MIN = G CS _ ROOM ? [ 1 ? 1470 ? 10 ? 6 ? ( T IC _ MAX ? T ROOM )]
(11)
The total input offset voltage (V CS_TOFST ) of current sense amplifier in phase ICs is the sum of input offset
(V CS_OFST) of the amplifier itself and that created by the amplifier input bias currents flowing through the current
sense resistors R CS+ and R CS- .
V CS _ TOFST = V CS _ OFST + I CSIN + ? R CS + ? I CSIN ? ? R CS ?
(12)
The over current limit is set by the external resistor R OCSET as defined in Equation (13), where I LIMIT is the required
over current limit. I OCSET, the bias current of OCSET pin, changes with switching frequency setting resistor R OSC
and is determined by the curve in Figure 14. K P is the ratio of inductor peak current over average current in each
phase and is calculated from Equation (14).
R OCSET = [
I LIMIT
n
? R L _ MAX ? ( 1 + K P ) + V CS _ TOFST ] ? G CS _ MIN / I OCSET
(13)
K P =
Page 20 of 33
( V I ? V O ) ? V O /( L ? V I ? f SW ? 2)
I O / n
(14)
01/31/05
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