mic4690 Micrel Semiconductor, mic4690 Datasheet - Page 7

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mic4690

Manufacturer Part Number
mic4690
Description
Mic4690 500khz 1a Superswitcher? Buck Regulator
Manufacturer
Micrel Semiconductor
Datasheet

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Block Diagrams
Functional Description
The MIC4690 is a variable duty cycle switch-mode regulator
with an internal power switch. Refer to the block diagrams.
Supply Voltage
The MIC4690 operates from a +4V to +30V (transients to
34V) unregulated input. Highest efficiency operation is from
a supply voltage around +12V. See the efficiency curve on
page 5.
Enable/Shutdown
The shutdown (
enables the regulator. A logic-high shuts down the internal
regulator which reduces the current to typically 1.5µA when
V
“Shutdown Input Behavior: Shutdown Hysteresis.”
Feedback
Fixed-voltage versions of the regulator have an internal
resistive divider from the feedback (
directly to the output voltage.
Adjustable versions require an external resistive voltage
divider from the output voltage to ground, center tapped to the
FB
Duty Cycle Control
A fixed-gain error amplifier compares the feedback signal
with a 1.23V bandgap voltage reference. The resulting error
amplifier output voltage is compared to a 500kHz sawtooth
April 2005
MIC4690
SHDN
pin. See Figure 1b for recommended resistor values.
= V
IN
= 12V and 30µA when V
SHDN
) input is TTL compatible. A logic-low
SHDN
MIC4690 [adj.]
Oscillator
500kHz
FB
parator
) pin. Connect
Com-
SHDN
Error
Amp
Regulator
Shutdown
Thermal
Internal
Reset
= 5V. See
Adjustable Regulator
1.23V
Bandgap
Reference
Current
Driver
FB
Limit
7
waveform to produce a voltage controlled variable duty cycle
output.
A higher feedback voltage increases the error amplifier
output voltage. A higher error amplifier voltage (comparator
inverting input) causes the comparator to detect only the
peaks of the sawtooth, reducing the duty cycle of the com-
parator output. A lower feedback voltage increases the duty
cycle. The MIC4690 uses a voltage-mode control architec-
ture.
Output Switching
When the internal switch is ON, an increasing current flows
from the supply V
output capacitor C
inductor as the current increases with time.
When the internal switch is turned OFF, the collapse of the
magnetic field in L1 forces current to flow through fast
recovery diode D1, charging C
Output Capacitor
External output capacitor C
reduces ripple.
Return Paths
During the ON portion of the cycle, the output capacitor and
load currents return to the supply ground. During the OFF
portion of the cycle, current is being supplied to the output
capacitor and load by storage inductor L1, which means that
D1 is part of the high-current return path.
IN
V
IN
SW
FB
V
R1 R2
V
OUT
REF
=
=
=
1.23V
V
IN,
REF
V
V
OUT
OUT
REF
through external storage inductor L1, to
R2
R1
and the load. Energy is stored in the
1
+
1
R1
R2
OUT
OUT
V
C
OUT
provides stabilization and
OUT
.
MIC4690
Micrel

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