MIC38C45ABMM Micrel Inc, MIC38C45ABMM Datasheet - Page 7

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MIC38C45ABMM

Manufacturer Part Number
MIC38C45ABMM
Description
IC CTRLR PWM CURRENT MODE 8-MSOP
Manufacturer
Micrel Inc
Datasheet

Specifications of MIC38C45ABMM

Pwm Type
Current Mode
Number Of Outputs
1
Frequency - Max
500kHz
Duty Cycle
50%
Voltage - Supply
7.6 V ~ 20 V
Buck
Yes
Boost
Yes
Flyback
Yes
Inverting
No
Doubler
No
Divider
No
Cuk
No
Isolated
Yes
Operating Temperature
-40°C ~ 85°C
Package / Case
8-MSOP, Micro8™, 8-uMAX, 8-uSOP,
Frequency-max
500kHz
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
MIC38C42A/43A/44A/45A
Application Information
Familiarity with 384x converter designs is assumed.
MIC38C4x Advantages
Start-up Current
Start-up current has been reduced to an ultra-low 50µA
(typical) permitting higher-valued, lower-wattage, start-up
resistors (powers controller during power supply start-up).
The reduced resistor wattage reduces cost and printed circuit
space.
Operating Current
Operating current has been reduced to 4mA compared to
11mA for a typical bipolar controller. The controller runs
cooler and the V
start-up may be reduced.
Output Driver
Complementary internal P- and N-channel MOSFETs pro-
duce rail-to-rail output voltages for better performance driving
external power MOSFETs. The driver transistor’s low on-
resistance and high peak current capability can drive gate
capacitances of greater than 1000pF. The value of output
capacitance which can be driven is determined only by the
rise/fall time requirements. Within the restrictions of output
capacity and controller power dissipation, maximum switch-
ing frequency can approach 500kHz.
Design Precautions
When operating near 20V, circuit transients can easily ex-
ceed the 20V absolute maximum rating, permanently damag-
ing the controller’s CMOS construction. To reduce tran-
sients, use a 0.1µF low-ESR capacitor to next to the controller’s
supply V
Film type capacitors, such as Wima MKS2, are recom-
April 2005
DD
M17Z105
26V to 40V
(or V
1/4W
V
D2
IN
D
MBR030
DD
for ‘-1’ versions) and ground connections.
D3
R2
68k
hold-up capacitance required during
0.22µF
6.8k
R4
18
100k
Figure 1. 500kHz, 25W, Buck Converter
0.1µF*
C7
200pF
1
2
3
4
COMP
FB
ISNS
RT/CT GND
MIC38C42A
CT1
16k
VREF
R5
VDD
OUT
MKS2
8
7
6
5
0.1µF
4.7µF
C5
0.1µF
7
C8
1N765B
mended.
When designing high-frequency converters, avoid capacitive
and inductive coupling of the switching waveform into high-
impedance circuitry such as the error amplifier, oscillator, and
current sense amplifier. Avoid long printed-circuit traces and
component leads. Locate oscillator and compensation cir-
cuitry near the IC. Use high frequency decoupling capacitors
on V
directly to their source and use large area ground planes.
Buck Converter
Refer to figure 1. When at least 26V is applied to the input,
C5 is charged through R2 until the voltage V
14.5V (the undervoltage lockout value of the MIC38C42).
Output switching begins when Q1 is turned on by the gate
drive transformer T1, charging the output filter capacitor C3
through L1. D5 supplies a regulated +12V to V
circuit is running.
Current sense transformer CT1 provides current feedback to
ISNS for current-mode operation and cycle-by-cycle current
limiting. This is more efficient than a high-power sense
resistor and provides the required ground-referenced level
shift.
When Q1 turns off, current flow continues from ground
through D1 and L1 until Q1 is turned on again.
The 100V Schottky diode D1 reduces the forward voltage
drop in the main current path, resulting in higher efficiency
than could be accomplished using an ultra-fast-recovery
diode. R1 and C2 suppress parasitic oscillations from D1.
Using a high-value inductance for L1 and a low-ESR capaci-
tor for C3 permits small capacitance with minimum output
ripple. This inductance value also improves circuit efficiency
by reducing the flux swing in L1.
4.7Ω
0.1µF
D4
T1
IRF820
REF
Q1
*Locate near MIC38C42 supply pins
, and if necessary, on V
1000pF
R1
10
1/2W
C2
31DQ10
L1 48µH
D1
1N4001
D5
3.3µF
C3
DD
0.1µF
. Return high di/dt currents
C4
6.19k
1.62k
1%
1%
12V, 2A
DD
V
OUT
is greater than
M9999-042205
DD
Micrel, Inc.
once the

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