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MCP1824-ADJEOT Datasheet(PDF) 7 Page - Microchip Technology

Part # MCP1824-ADJEOT
Description  300 mA, Low Voltage, Low Quiescent Current LDO Regulator
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Manufacturer  MICROCHIP [Microchip Technology]
Direct Link  http://www.microchip.com
Logo MICROCHIP - Microchip Technology

MCP1824-ADJEOT Datasheet(HTML) 7 Page - Microchip Technology

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© 2007 Microchip Technology Inc.
DS22070A-page 7
MCP1824/MCP1824S
1.0
ELECTRICAL
CHARACTERISTICS
Absolute Maximum Ratings †
Input Voltage, VIN.............................................................6.5V
Maximum Voltage on Any Pin ... (GND – 0.3V) to (VIN + 0.3)V
Maximum Power Dissipation......... Internally-Limited (Note 6)
Output Short Circuit Duration ................................ Continuous
Storage temperature .....................................-65°C to +150°C
Maximum Junction Temperature, TJ ........................... +150°C
Operating Junction Temperature, TJ .............-40°C to +125°C
EESD protection on all pins
........... ≥ 4kV HBM; 300V MM
† Notice: Stresses above those listed under “Maximum Rat-
ings” may cause permanent damage to the device. This is a
stress rating only and functional operation of the device at
those or any other conditions above those indicated in the
operational listings of this specification is not implied. Expo-
sure to maximum rating conditions for extended periods may
affect device reliability.
AC/DC CHARACTERISTICS
Electrical Specifications: Unless otherwise noted, VIN = VOUT(MAX) + VDROPOUT(MAX), Note 1, VR = 1.8V for Adjustable Output,
IOUT = 1 mA, CIN = COUT = 4.7 µF (X7R Ceramic), TA = +25°C.
Boldface type applies for junction temperatures, TJ (Note 7) of -40°C to +125°C
Parameters
Sym
Min
Typ
Max
Units
Conditions
Input Operating Voltage
VIN
2.1
6.0
V
Output Voltage Range
VOUT
0.8
5.0
V
Input Quiescent Current
Iq
120
220
µA
IL = 0 mA, VOUT = 0.8V to
5.0V
Input Quiescent Current for
SHDN Mode
ISHDN
—0.1
3
µA
SHDN = GND
Maximum Continuous Output
Current
IOUT
300
——
mA
VIN = 2.1V to 6.0V
VR = 0.8V to 5.0V
Line Regulation
ΔVOUT/
(VOUT x ΔVIN)
±0.05
±0.17
%/V
(Note 1)
≤ VIN ≤ 6V
Load Regulation
ΔVOUT/VOUT
-1.0
±0.5
1.0
%IOUT = 1 mA to 300 mA,
(Note 4)
Output Short Circuit Current
IOUT_SC
720
mA
RLOAD <0.1Ω, Peak Current
Dropout Voltage
VDROPOUT
200
320
mV
Note 5, IOUT = 300 mA,
VIN(MIN) =2.1V
Pulsed Applications
Maximum Pulsed Output
Current
IPULSE
500
mA
VIN = 2.1V to 6.0V
VR = 0.8V to 5.0V,
Duty Cycle
≤ 60%,
Period < 10 ms
Note
1:
The minimum VIN must meet two conditions: VIN ≥ 2.1V and VIN ≥ VOUT(MAX) + VDROPOUT(MAX).
2:
VR is the nominal regulator output voltage for the fixed cases. VR = 1.2V, 1.8V, etc. VR is the desired set point output
voltage for the adjustable cases. VR = VADJ * ((R1/R2)+1). Figure 4-1.
3:
TCVOUT = (VOUT-HIGH – VOUT-LOW) *10
6 / (V
R * ΔTemperature). VOUT-HIGH is the highest voltage measured over the
temperature range. VOUT-LOW is the lowest voltage measured over the temperature range.
4:
Load regulation is measured at a constant junction temperature using low duty-cycle pulse testing. Load regulation is
tested over a load range from 1 mA to the maximum specified output current.
5:
Dropout voltage is defined as the input-to-output voltage differential at which the output voltage drops 2% below its
nominal value that was measured with an input voltage of VIN = VOUT(MAX) + VDROPOUT(MAX).
6:
The maximum allowable power dissipation is a function of ambient temperature, the maximum allowable junction
temperature and the thermal resistance from junction to air. (i.e., TA, TJ, θJA). Exceeding the maximum allowable power
dissipation will cause the device operating junction temperature to exceed the maximum +150°C rating. Sustained
junction temperatures above 150°C can impact device reliability.
7:
The junction temperature is approximated by soaking the device under test at an ambient temperature equal to the
desired junction temperature. The test time is small enough such that the rise in the junction temperature over the
ambient temperature is not significant.


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