参数资料
型号: IR3841MTRPBF
厂商: International Rectifier
文件页数: 13/32页
文件大小: 0K
描述: IC REG BUCK SYNC ADJ 8A 15QFN
产品培训模块: SupIRBuck? Family and POL Design Tools Overview
标准包装: 4,000
系列: SupIRBuck™
类型: 降压(降压)
输出类型: 可调式
输出数: 1
输出电压: 0.7 V ~ 14.4 V
输入电压: 1.5 V ~ 16 V
PWM 型: 电压模式
频率 - 开关: 225kHz ~ 1.65MHz
电流 - 输出: 8A
同步整流器:
工作温度: -40°C ~ 125°C
安装类型: 表面贴装
封装/外壳: 15-PowerVQFN
包装: 带卷 (TR)
供应商设备封装: PQFN(5x6)
IR3841MPbF
I OCSet ( μ A ) =
.......... .......... .......... .....( 2 )
Operating Frequency
The switching frequency can be programmed
between 250kHz – 1500kHz by connecting an
external resistor from R t pin to Gnd. Table 1
tabulates the oscillator frequency versus R t .
Table 1. Switching Frequency and I OCSet vs.
External Resistor ( R t )
1400
R t (k Ω )
Table 1. shows I OCSet at different switching
frequencies. The internal current source
develops a voltage across R OCSet . When the low
side MOSFET is turned on, the inductor current
flows through the Q2 and results in a voltage at
OCSet which is given by:
R t (k ? )
47.5
35.7
28.7
23.7
20.5
17.8
15.8
14.3
12.7
11.5
10.7
9.76
9.31
F s (kHz)
300
400
500
600
700
800
900
1000
1100
1200
1300
1400
1500
I ocset ( μ A)
29.4
39.2
48.7
59.07
68.2
78.6
88.6
97.9
110.2
121.7
130.8
143.4
150.3
V OCSet = ( I OCSet ? R OCSet ) ? ( R DS (on ) ? I L ) .......... .(3)
Fig. 7. Connection of over current sensing resistor
An over current is detected if the OCSet pin goes
Shutdown
The IR3841 can be shutdown by pulling the
Enable pin below its 1 V threshold. This will tri-
state both, the high side driver as well as the low
side driver. Alternatively, the output can be
shutdown by pulling the soft-start pin below 0.3V.
In shutdown by this method, the high side driver
is turned off, and the low side driver is turned on.
Thus, in this method, the output voltage can be
actively discharged through the synchronous
FET. Normal operation is resumed by cycling the
voltage at the Soft Start pin.
Over-Current Protection
The over current protection is performed by
sensing current through the R DS(on) of low side
MOSFET. This method enhances the converter’s
efficiency and reduces cost by eliminating a
current sense resistor. As shown in figure 7, an
external resistor (R OCSet ) is connected between
OCSet pin and the switch node (SW) which sets
the current limit set point.
An internal current source sources current ( I OCSet
) out of the OCSet pin. This current is a function
of the switching frequency and hence, of R t .
06/18/09
below ground. Hence, at the current limit
threshold, V OCset =0. Then, for a current limit
setting I Limit , R OCSet is calculated as follows:
R DS ( on ) * I Limit
R OCSet = .......... .......... .... (4)
I OCSet
An overcurrent detection trips the OCP
comparator, latches OCP signal and cycles the
soft start function in hiccup mode.
The hiccup is performed by shorting the soft-start
capacitor to ground and counting the number of
switching cycles. The Soft Start pin is held low
until 4096 cycles have been completed. The
OCP signal resets and the converter recovers.
After every soft start cycle, the converter stays in
this mode until the overload or short circuit is
removed.
The OCP circuit starts sampling current typically
160 ns after the low gate drive rises to about 3V.
This delay functions to filter out switching noise.
13
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