MIC29150 Micrel Semiconductor, MIC29150 Datasheet - Page 5

no-image

MIC29150

Manufacturer Part Number
MIC29150
Description
High-Current Low-Dropout Regulators
Manufacturer
Micrel Semiconductor
Datasheet

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
MIC29150
Manufacturer:
MICREL/麦瑞
Quantity:
20 000
Part Number:
MIC29150 S-3.3
Manufacturer:
MICREL/麦瑞
Quantity:
20 000
Part Number:
MIC29150-3.3
Manufacturer:
MIC
Quantity:
71
Part Number:
MIC29150-3.3
Manufacturer:
ST
0
Part Number:
MIC29150-3.3BT
Manufacturer:
MICREL
Quantity:
20 000
Part Number:
MIC29150-3.3BU
Quantity:
571
Part Number:
MIC29150-3.3BU
Manufacturer:
INTEL
Quantity:
57
Part Number:
MIC29150-3.3BU
Manufacturer:
MICREL/麦瑞
Quantity:
20 000
Part Number:
MIC29150-3.3BUTR
Manufacturer:
FUJI
Quantity:
1 000
Part Number:
MIC29150-3.3WU
Manufacturer:
MICREL31
Quantity:
164
Company:
Part Number:
MIC29150-3.3WU
Quantity:
30
Part Number:
MIC29150-3.3WU-TR
Manufacturer:
Microchip
Quantity:
220
Part Number:
MIC29150-3.3WUTR
Manufacturer:
MICREL
Quantity:
221
Part Number:
MIC29150-3.3WUTR
Manufacturer:
MICREL/麦瑞
Quantity:
20 000
Company:
Part Number:
MIC29150-5.0BU
Quantity:
1 500
Company:
Part Number:
MIC29150-5.0WT
Quantity:
10
Notes
Note 1:
Note 2:
Note 3:
Note 4:
Note 5:
Note 6:
Note 7:
Note 8:
Note 9:
Note 10: V
Note 11: When used in dual supply systems where the regulator load is returned to a negative supply, the output voltage must be diode clamped to
Block Diagram
Typical Applications
5V
March 2000
MIC29150/29300/29500/29750
5%
FLAG
Maximum positive supply voltage of 60V must be of limited duration (<100msec) and duty cycle ( 1%). The maximum continuous supply
voltage is 26V.
Full Load current (I
Dropout voltage is defined as the input-to-output differential when the output voltage drops to 99% of its nominal value with V
to V
V
minimize temperature rise.
Ground pin current is the regulator quiescent current. The total current drawn from the source is the sum of the load current plus the ground
pin current.
Output voltage temperature coefficient is defined as the worst case voltage change divided by the total temperature range.
Thermal regulation is defined as the change in output voltage at a time T after a change in power dissipation is applied, excluding load or line
regulation effects. Specifications are for a 200mA load pulse at V
V
Comparator thresholds are expressed in terms of a voltage differential at the Adjust terminal below the nominal reference voltage measured at
6V input. To express these thresholds in terms of output voltage change, multiply by the error amplifier gain = V
example, at a programmed output voltage of 5V, the Error output is guaranteed to go low when the output drops by 95 mV x 5V/1.240 V = 384
mV. Thresholds remain constant as a percent of V
7.7% guaranteed.
ground.
IN
REF
EN
EN
IN
IN
= V
Figure 1. Fixed output voltage.
0.8V and V
OUT (nominal)
V
OUT
MIC29500-3.3
(V
IN
IN
FL
+ 1V. For example, use V
– 1 V), 2.3V
) is defined as 1.5A for the MIC29150, 3A for the MIC29300, 5A for the MIC29500, and 7.5A for the MIC29750 families.
26V, V
OUT
= 0.
V
IN
26V, 10mA < I
1.180V
IN
47µF
= 4.3V for a 3.3V regulator or use 6V for a 5V regulator. Employ pulse-testing procedures to
Reference
3.3V
OUT
as V
L
1% @ 5A
I
1.240V
FL
OUT
, T
J
is varied, with the dropout warning occurring at typically 5% below nominal,
IN
5
T
= 20V (a 4W pulse) for T = 10ms.
J MAX.
Figure 2. Adjustable output voltage configuration. For
best results, the total series resistance should be small
enough to pass the minimum regulator load current.
* Feedback network in fixed versions only
Adjustable version only
Thermal
Shut-
down
V IN
V OUT = 1.240V
28V
O.V.
I
R2
R1
LIMIT
MIC29150/29300/29500/29750
[1 + (R1 / R2)]
OUT
/V
REF
V OUT
= (R1 + R2)/R2. For
R1*
R2*
OUT
OUT
ADJ
GND
+ 1V applied
Micrel

Related parts for MIC29150