参数资料
型号: IR3802AMTRPBF
厂商: International Rectifier
文件页数: 12/21页
文件大小: 0K
描述: IC REG BUCK SYNC ADJ 6A 15QFN
产品培训模块: SupIRBuck? Family and POL Design Tools Overview
标准包装: 1
系列: SupIRBuck™
类型: 降压(降压)
输出类型: 可调式
输出数: 1
输出电压: 0.6 V ~ 12 V
输入电压: 2.5 V ~ 21 V
PWM 型: 电压模式
频率 - 开关: 300kHz
电流 - 输出: 6A
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: 标准包装
供应商设备封装: PQFN(5x6)
产品目录页面: 1384 (CN2011-ZH PDF)
其它名称: IR3802AMTRPBFDKR
PD-60357
IR3802AMPbF
Input Capacitor Selection
The input filter capacitor should be selected
based on how much ripple the supply can
tolerate on the DC input line. The ripple current
generated during the on time of upper MOSFET
should be provided by the input capacitor. The
RMS value of this ripple is expressed by:
If Δ i ≈ 40 %( I o ) , then the output inductor will be:
L = 2.2uH
ACT provides a range of inductors in different
values, low profile suitable for large currents.
Output Capacitor Selection
I RMS = I o ? D ? ( 1 ? D )
--( 7 )
The voltage ripple and transient requirements
determine the output capacitors’ type and values.
Where:
D is the Duty Cycle
D =
V o
V in
The criteria is normally based on the value of the
Effective Series Resistance (ESR). However the
actual capacitance value and the Equivalent
I RMS is the RMS value of the input capacitor
current.
Io is the output current.
For Io=6A and D=0.15, the I RMS =2.14A.
Ceramic capacitors are recommended due to
Series Inductance (ESL) are other contributing
components. These components can be
described as:
Δ V o = Δ V o ( ESR ) + Δ V o ( ESL ) + Δ V o ( C )
Δ V o ( ESL ) = ?
? V in ?
their peak current capabilities. They also feature
low ESR and ESL at higher frequency which
results in better efficiency.
Use 3x10uF, 16V ceramic capacitors from
Panasonic.
Δ V o ( ESR ) = Δ I L * ESR
? * ESL
? L ?
- -(9)
Inductor Selection
The inductor is selected based on output power,
operating frequency and efficiency requirements.
Δ V o ( C ) =
Δ I L
8 * C o * F s
A low inductor value causes a large ripple
current, resulting in the smaller size, faster
response to a load transient but poor efficiency
and high output noise. Generally, the selection of
the inductor value can be reduced to the desired
maximum ripple current in the inductor ( Δ i ) . The
optimum point is usually found between 20% and
50% ripple of the output current.
For the buck converter, the inductor value for the
desired operating ripple current can be
determined using the following:
Δ V o = Output voltage ripple
Δ I L = Inductor ripple current
Since the output capacitor has a major role in the
overall performance of the converter and
determine the result of transient response,
selection of the capacitor is critical. The IR3802A
can perform well with all types of capacitors.
As a rule the capacitor must have low enough
V in ? V o = L ?
Δ i
Δ t
; Δ t = D ?
1
F s
ESR to meet output ripple and load transient
requirements, yet have high enough ESR to
satisfy stability requirements.
L = ( V in ? V o ) ?
V o
V in ? Δ i * F s
--( 8 )
The goal for this design is to meet the voltage
ripple requirement in the smallest possible
Where:
V in = Maximum input voltage
V o = Output Voltage
Δ i = Inductor ripple current
F s = Switching frequency
Δ t = Turn on time
D = Duty cycle
11/04/08
capacitor size. Therefore, a ceramic capacitor is
selected due to its low ESR and small size. Six of
the Panasonic ECJ2FB0J226M (22uF, 6.3V, X5R
and EIA 0805 case size) are a good choice.
In the case of tantalum or low ESR electrolytic
capacitors, the ESR dominates the output
voltage ripple, equation (9) can be used to
calculate the required ESR for the specific
voltage ripple.
12
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