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MT1117
1A LDO LINEAR VOLTAGE / REGULATORS
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DESCRIPTION
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The MT1117 series are low-drop-out ( LDO ) linear regulators. The devices have been optimized for applications where fast transient response and minimum input voltages are critical. The internal over-current protection and thermal protection ,makes the device extremely easy to use in a wide range of applications.
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FEATURES
* Low dropout performance * Output current of 800mA typical * Wide range input supply voltage * Thermal shutdown protection * Fixed 1.8V, 2.5V, 3.3V output voltages available * SOT-223 packages available
APPLICATIONS
* Active SCSI terminators * High efficiency linear regulators * Motherboard clock supplies
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PIN CONFIGURATIONS
TO-252
(Top View)
SOT-223
(Top View)
1
2
3
1
2
3
1: GND, 2: OUT, 3: IN
1: OUT, 2: GND, 3: IN
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ABSOLUTE MAXTMUM RETINGS
SYMBOL PARAMETER
Input supply voltage Thermal resistance junction to case SOT-223 TO-252 Thermal resistance junction to ambient SOT-223 TO-252
MAXIMUM
7 15 10
UNITS
VIN θJC
V
O
C/W
θJA
156 90
O
C/W
O TJ Operating junction temperature range 0 to 125 C O TSTG Storage temperature range - 40 to 150 C O TLEAD Lead temperature (soldering) 10sec 260 C Note 1: Exceeding these ratings could cause damage to the device. All voltages are with respect to Ground. Currents
are positive into, negative out of the specified terminal.
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MT1117
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ORDERING INFORMATION
DEVICE
MT1117A MT1117-X.X A
PACKAGE
VOUT VOLTS
X.X_ 1.5 / 1.8 / 2.5 / 2.8 / 3.0 / 3.3
TA (OC)
0~70
A
SOT-223
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POWER DISSIPATION TABLE:
Package A θJA ( C /W )
O O Df( mW/ C) O TA≥ 25 C O TA≤ 25 C Power rating(mW)
TA=70 OC Power rating(mW) 588
TA= 85 OC Power rating (mW) 478
156
7.35
919
Note :
1.θJA: Thermal Resistance-Junction to Ambient, DF : Derating factor, Po: Power consumption. Junction Temperature Calculation: TJ = TA + (PD × θJA), Po = DF × (TJ- TA) The θJA numbers are guidelines for the thermal performance of the device/PC-board system. All of the above assume no ambient airflow. 2.θJT: Thermal Resistance-Junction to Ambient, TC: case(Tab) temperature, TJ = TC + (PD × θJT) For A package, θJT = 15.0 C /W.
O
For B package, θJT = 7.0 C /W.
O
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RECOMMENDED OPERATING CONDITIONS:
Symbol VIN IO CIN COUT TJ
Input Voltage Load Current (with adequate heatsinking) Input Capacitor (VIN to GND) Output Capacitor with ESR of 10Ω max., (VOUT to GND) Junction temperature
Parameter
Recommended Operating Min. Typ. Max. 3 6 0.1 1.0 4.7 125
Units V mA μF μF
O
C
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TYPICAL APPLICATIONS:
Fixed Voltage Regulator:
VIN
MT1117-X.X
VOUT
CIN 1μF
IQ
COUT 4.7μF
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MT1117
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ELECTRICAL CHARACTERISTICS:
O
Operating Conditions: 3V≦ VIN ≦ 6V, TJ = 0~125
C unless otherwise specified. MIN TYP MAX UNITS
SYMBOL
PARAMETER
TEST CONDITION 10mA≤ IOUT≤ 1A TA=25 OC, MT1117-1.5, 3V ≤ VIN ≤ 5.5V MT1117-1.8, 3V ≤ VIN ≤ 5.5V MT1117-2.5, 3.5V ≤ VIN ≤ 5.5V MT1117-2.8, 3.8V ≤ VIN ≤ 5.5V MT1117-3.0, 4V ≤ VIN ≤ 5.5V MT1117-3.3, 4.3V ≤ VIN ≤ 5.5V (VOUT+1V) ≤ VIN ≤ 5.5V IOUT=10mA 10mA≤ IOUT≤ 1A VIN≥2V, IOUT=1A (VIN-VOUT)=2V VIN=VOUT+1.25 1.5V≤ (VIN-VOUT) ≤ 5.75V f = 120Hz,
VO
Output Voltage (1)
1.764 2.450 3.234
1.8 2.5 3.3
1.836 2.550 3.366
V V V
VSR VLR VD ICL IQ IO RA
NOTES:
Line Regulation (1) Load Regulation (1) Dropout Voltage (2) Current Limit Quiescent Current Minimum Load Current Ripple Rejection Ratio
0.005 0.5 0.65 1.5 1 0.1 75
1.0
% % V A mA mA dB
(1) Low duty cycle pulse testing with which TJ remain unchanged. (2) Δ VOUT, ΔVREF = 1%
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TYPICAL PERFORMANCE CHARACTERISTICS:
VIN= 5V,CIN=10μF,COUT= 22μF,TA=25 C unless otherwise specified.
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DROPOUT VOLTAGE vs. OUTPUT CURRENT
1.3
1.2
Dropout Voltage (V)
1.1
1
0.9
0.8
0.7
0.6
0.5 10 100 300 500 800
Output Current (mA)
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MT1117
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APPLICATION NOTE:
1. Maximum Power Dissipation Calculation: PD(max) = [(VIN(max) - VO(nom))] × IO(nom) + VIN(max) × IQ Where: VO(nom) : The nominal output voltage IO(nom) : The nominal output current, and IQ : The quiescent current the regulator consumes at IO(MAX) VIN(max) : The maximum input voltage Then θJA = (150 OC – TA) / PD
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PHYSICAL DIMENSIONS:
3-Pin Surface Mount SOT-223(A)
MILLIMETERS
D A
c
MIN A A1 B B1 c D 1.50 0.02 0.60 2.90 0.28 6.30 3.30
TYP 1.65 0.05 0.70 0.30 6.50 3.50 2.3 BSC 4.6 BSC
MAX 1.80 0.08 0.80 3.15 0.32 6.70 3.70
B1
H
E
K
L
E
A1
e e1
e e1 H L K α 6.70 0.91 1.50 0°
7.00 1.00 1.75 5° 3°
7.30 1.10 2.00 10°
B
β
Sirectifier Global Corp., Delaware, U.S.A. U.S.A.: sgc@sirectsemi.com France: ss@sirectsemi.com Taiwan: se@sirectsemi.com Hong Kong: hk@sirectsemi.com China: st@sirectsemi.com …Thailand: th@sirectsemi.com Philippines: aiac@sirectsemi.com Belize: belize@sirectsemi.com
http:// www.sirectsemi.com
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