参数资料
型号: MIC2199YML TR
厂商: Micrel Inc
文件页数: 13/14页
文件大小: 0K
描述: IC REG CTRLR BUCK PWM CM 12-MLF
标准包装: 1
PWM 型: 电流模式
输出数: 1
频率 - 最大: 330kHz
占空比: 85%
电源电压: 4.5 V ~ 32 V
降压:
升压:
回扫:
反相:
倍增器:
除法器:
Cuk:
隔离:
工作温度: -40°C ~ 125°C
封装/外壳: 12-VFDFN 裸露焊盘,12-MLF?
包装: 标准包装
产品目录页面: 1092 (CN2011-ZH PDF)
其它名称: 576-1718-6
Micrel, Inc.
Decoupling Capacitor Selection
The 4.7μF decoupling capacitor is used to minimize noise on
the V DD pin. The placement of this capacitor is critical to the
proper operation of the IC. It must be placed right next to the
pins and routed with a wide trace. The capacitor should be a
good quality tantalum. An additional 1μF ceramic capacitor
may be necessary when driving large MOSFETs with high 
gate capacitance. Incorrect placement of the V DD decoupling
capacitor will cause jitter or oscillations in the switching wave-
form and large variations in the overcurrent limit.
A 0.1μF ceramic capacitor is required to decouple the V IN .
The capacitor should be placed near the IC and connected
directly to between pin 6 (V IN ) and pin 9 (GND).
PCB Layout and Checklist
PCB layout is critical to achieve reliable, stable and efficient 
performance. A ground plane is required to control EMI and 
minimize the inductance in power, signal and return paths.
The following guidelines should be followed to insure proper
operation of the circuit.
?  Signal and power grounds should be kept separate 
and connected at only one location. Large currents
or high di/dt signals that occur when the MOSFETs 
turn on and off must be kept away from the small
signal connections.
?  The connection between the current-sense resis -
tor and the MIC2199 current-sense inputs (pin 4
and 5) should have separate traces, through a
10Ω  resistor  on  each  pin. The  traces  should  be 
routed as closely as possible to each other and
their length should be minimized. Avoid running
the traces under the inductor and other switching
components. The 10Ω resistor should be placed 
close as possible to pins 4 and 5 on the MIC2199
and a 1nF to 0.1μF capacitor placed between pins
4 and 5 will help attenuate switching noise on the
current sense traces. This capacitor should be
placed close to pins 4 and 5.
MIC2199.
?  When the high-side MOSFET is switched on, the 
critical flow of current is from the input capacitor 
through  the  MOSFET,  inductor,  sense  resistor, 
output capacitor, and back to the input capacitor.
These paths must be made with short, wide pieces
of trace. It is good practice to locate the ground
terminals of the input and output capacitors close
to each.
?  When the low-side MOSFET is switched on, cur -
rent  flows  through  the  inductor,  sense  resistor, 
output capacitor, and MOSFET. The source of the 
low-side MOSFET should be located close to the 
output capacitor.
?  The freewheeling diode, D1 in Figure 2, conducts 
current during the dead time, when both MOSFETs 
are off. The anode of the diode should be located
close to the output capacitor ground terminal and
the cathode should be located close to the input
side of the inductor.
?  The 4.7μF capacitor, which connects to the V DD
terminal (pin 7) must be located right at the IC. The
V DD terminal is very noise sensitive and placement
of this capacitor is very critical. Connections must
be made with wide trace. The capacitor may be
located on the bottom layer of the board and con-
nected to the IC with multiple vias.
?  The V IN bypass capacitor should be located close
to the IC and connected between pins 6 and 9.
Connections should be made with a ground and
power plane or with short, wide trace.
January 2010
13
M9999-011310
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