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SPX116 Datasheet(PDF) 2 Page - Sipex Corporation

No. de Pieza. SPX116
Descripción  Low Dropout Voltage Three Terminal Regulator
Descarga  11 Pages
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Fabricante  SIPEX [Sipex Corporation]
Página de inicio  http://www.sipex.com
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SPX116 Datasheet(HTML) 2 Page - Sipex Corporation

 
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SPX116
Rev. 8/21/01
SPX116 Low Dropout Voltage Three Terminal Regulator
©Copyright 2001 Sipex Corporation
2
ABSOLUTE MAXIMUM RATINGS
RECOMMENDED OPERATING CONSITIONS
Power Dissipation (note 3)
Internally limited
Input Supply Voltage Range ............................. 3.0 to 26V
Lead Temp. (soldering, 5 Seconds)...................... 260¡C
Maximum Load Current ....................................... 180mA
Storage Temperature Range ................. -65¡C to +150¡C
Operating Junction Temperature Range........... -40
oC to 125oC
Maximum Junction Temperature....................... +125¡C
TO-92
Θ
JA .........................................................160
oC/W
Input Supply Voltage Range.......................-0.3 to +30V
SOT-89
Θ
JA .......................................................110
oC/W
ESD Rating (note 4) ............................................ 2kV
ELECTRICAL CHARACTERISTICS at VIN=6V, TA = 25¡C, IO = 1mA, COUT = 4.7
µF, unless otherwise specified.
( Note 1)
Parameter
Conditions
SPX116
Units
Min
Typ
Max
Output Voltage (note 2)
4V < VIN< 14V, IO = 10 mA.
3.201
3.300
3.399
V
Output Voltage (note 2)
4V < VIN< 14V, IO = 10 mA.
3.395
3.500
3.605
V
Line Regulation
9V < VIN < 14V
4.5V < VIN < 14V,
4.0
mV
Load Regulation
10 mA < IO < 100 mA
14
mV
Dropout Voltage
IO=10 mA
IO=100 mA
0.05
0.3
V
Quiescent Current
IO < 10 mA, 4.5V < VIN < 26V
IO = 100 mA, VIN = 14V,
0.4
15
mA
Output Noise Voltage
10Hz-100kHz, COUT=100
µF
500
µVrms
Ripple Rejection
FO = 120Hz
80
dB
Maximum Operational Input
Voltage
14
V
Current Limit
150
400
mA
Note 1: See TYPICAL APPLICATIONS notes to ensure constant junction temperature, low duty cycle pulse testing used.
Note 2: All limits are at 25
°C; operation is guaranteed over the full operating junction temperature range of -40°C to +125°C.
Note 3: The maximum power dissipation is a function of maximum junction temperature, total thermal resistance, and ambient temperature.
Note 4: Human body model, 100 pF discharged through 1.5 k
Ω.


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