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MIC5206BMM Datasheet(PDF) 4 Page - Micrel Semiconductor

Part # MIC5206BMM
Description  150mA Low-Noise LDO Regulator
Download  8 Pages
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Manufacturer  MICREL [Micrel Semiconductor]
Direct Link  http://www.micrel.com
Logo MICREL - Micrel Semiconductor

MIC5206BMM Datasheet(HTML) 4 Page - Micrel Semiconductor

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MIC5206
Micrel
MIC5206
4
January 2000
Note 1:
Exceeding the absolute maximum rating may damage the device.
Note 2.
The device is not guaranteed to function outside its operating rating.
Note 3:
The maximum allowable power dissipation at any T
A (ambient temperature) is PD(max) = (TJ(max) – TA) ÷ θJA. Exceeding the maximum
allowable power dissipation will result in excessive die temperature, and the regulator will go into thermal shutdown. The
θ
JA of the
MIC5205-x.xBM5 (all versions) is 220
°C/W, and the MIC5206-x.xBMM (all versions) is 200°C/W, mounted on a PC board (see “Thermal
Considerations” for further details).
Note 4:
Output voltage temperature coefficient is defined as the worst case voltage change divided by the total temperature range.
Note 5:
Regulation is measured at constant junction temperature using low duty cycle pulse testing. Parts are tested for load regulation in the load
range from 0.1mA to 150mA. Changes in output voltage due to heating effects are covered by the thermal regulation specification.
Note 6:
Dropout Voltage is defined as the input to output differential at which the output voltage drops 2% below its nominal value measured at 1V
differential.
Note 7:
Ground pin current is the regulator quiescent current plus pass transistor base current. The total current drawn from the supply is the sum of
the load current plus the ground pin current.
Note 8:
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 150mA load pulse at V
IN = 16V for t = 10ms.
Note 9:
The error flag comparator includes 3% hysteresis.
-100
-80
-60
-40
-20
0
1E+1 1E+2 1E+3 1E+4 1E+5 1E+6 1E+7
FREQUENCY (Hz)
Power Supply
Rejection Ratio
I
OUT = 100µA
C
OUT = 1µF
V
IN = 6V
V
OUT = 5V
10
100
1k
10k 100k 1M 10M
-100
-80
-60
-40
-20
0
1E+1 1E+2 1E+3 1E+4 1E+5 1E+6 1E+7
FREQUENCY (Hz)
Power Supply
Rejection Ratio
I
OUT = 100µA
C
OUT = 2.2µF
C
BYP = 0.01µF
V
IN = 6V
V
OUT = 5V
10
100
1k
10k 100k 1M 10M
0
10
20
30
40
50
60
0
0.1
0.2
0.3
0.4
VOLTAGE DROP (V)
Power Supply Ripple Rejection
vs. Voltage Drop
I
OUT = 100mA
10mA
1mA
C
OUT = 1µF
-100
-80
-60
-40
-20
0
1E+1 1E+2 1E+3 1E+4 1E+5 1E+6 1E+7
FREQUENCY (Hz)
Power Supply
Rejection Ratio
I
OUT = 1mA
C
OUT = 1µF
V
IN = 6V
V
OUT = 5V
10
100
1k
10k 100k 1M 10M
-100
-80
-60
-40
-20
0
1E+1 1E+2 1E+3 1E+4 1E+5 1E+6 1E+7
FREQUENCY (Hz)
Power Supply
Rejection Ratio
I
OUT = 1mA
C
OUT = 2.2µF
C
BYP = 0.01µF
V
IN = 6V
V
OUT = 5V
10
100
1k
10k 100k 1M 10M
0
10
20
30
40
50
60
70
80
90
100
0
0.1
0.2
0.3
0.4
VOLTAGE DROP (V)
Power Supply Ripple Rejection
vs. Voltage Drop
I
OUT = 100mA
10mA
1mA
C
OUT = 2.2µF
C
BYP = 0.01µF
Typical Characteristics


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