MIC5158BM Micrel Inc, MIC5158BM Datasheet - Page 10

IC CTRLR REG LDO 5V/ADJ 14SOIC

MIC5158BM

Manufacturer Part Number
MIC5158BM
Description
IC CTRLR REG LDO 5V/ADJ 14SOIC
Manufacturer
Micrel Inc
Type
Positive Fixed or Adjustabler
Datasheet

Specifications of MIC5158BM

Package / Case
14-SOIC (3.9mm Width), 14-SOL
Number Of Outputs
1
Voltage - Output
5V, 1.3 ~ 36 V
Current - Supply
4.5mA
Voltage - Input
3 ~ 36 V
Operating Temperature
-40°C ~ 85°C
No. Of Pins
14
Peak Reflow Compatible (260 C)
No
Output Voltage Max
5V
Leaded Process Compatible
No
Mounting Type
Surface Mount
Voltage Regulator Type
LDO Linear
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant

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MIC5156/5157/5158
Current Limiting
Current sensing requires a low-value series resistance (R
between V
The internal current-limiting circuit limits the voltage drop
across the sense resistor to 35mV. Equation (2) provides the
sense resistor value required for a given maximum current.
2)
where:
Most current-limited applications require low-value resistors.
See Application Hints 21 and 25 for construction hints.
Non-Current-Limited Applications
For circuits not requiring current limiting, do not use a sense
resistor between V
troller will not limit current when it does not detect a 35mV
drop from V
3.3V Microprocessor Applications
For computer designs that use 3.3V microprocessors with 5V
logic, the FLAG output can be used to suppress the 5V sup-
ply until the 3.3V output is in regulation. Refer to the external
components shown with the MIC5156 Block Diagram.
SMPS Post Regulator Application
A Super LDO regulator can be used as a post regulator for a
switch-mode power supply. The Super LDO regulator can pro-
vide a significant reduction in peak-to-peak ripple voltage.
High-Current Switch Application
All versions of the MIC5156/7/8 may be used for current-lim-
ited, high-current, high-side switching with or without voltage
regulation. See figure (4a). Simply leave the “S” terminal
open. A 16V zener diode from the gate to the source of the
MOSFET protects the MOSFET from overdrive during fault
conditions.
MIC5156/5157/5158
R
R
I
LIM
S
S
= sense resistor value
=
= maximum output current
DD
DD
3 5 m V
I
and D (drain). Refer to the typical applications.
LI M
to D.
Figure 3. No Current Limit
DD
and D (drain). See figure (3). The con-
MIC5156
V
DD
G
D
S
V
IN
s
)
10
If a MIC5157 or MIC5158 is used and is shutdown for a
given time, the charge pump reservoir V
recharging the reservoir causes an unacceptable delay in the
load reaching its operating voltage, do not use the EN pin
for on/off control. Instead, use the MIC5158, hold EN high to
keep the charge pump in continuous operation, and switch
the MOSFET on or off by overriding the error amplifier input
as shown in figure (4b).
Battery Charger Application
The MIC5158 may be used in constant-current applications
such as battery chargers. See figure (5). The regulator supplies
a constant-current (35mV ÷ R3) until the battery approaches
the float voltage:
where:
At float voltage, the MOSFET is shut off. A trickle charge is
supplied by R4.
V
V
FL
F L
= float voltage
= 1 . 2 3 5
Figure 4b. Fast High-Side Switch
Shutdown
Output Off
Output On
Enable
Figure 4a. High-Side Switch
(
Gate Supply
1 +
EN
E N
MIC5156-x.x
V
G
MIC5158
R 2
R 1
GND
GND
1N4148
V
V
)
DD
DD
E A
G
D
G
S
S
CP
V
V
IN
will bleed off. If
R
IN
S
August 2005
Micrel, Inc.

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