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LP3985IM5-3.3 Datasheet(PDF) 5 Page - Texas Instruments

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Part # LP3985IM5-3.3
Description  LP3985 Micropower, 150mA Low-Noise Ultra Low-Dropout CMOS Voltage Regulator
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Manufacturer  TI [Texas Instruments]
Direct Link  http://www.ti.com
Logo TI - Texas Instruments

LP3985IM5-3.3 Datasheet(HTML) 5 Page - Texas Instruments

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LP3985
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SNVS087AC – OCTOBER 2000 – REVISED MAY 2013
Absolute Maximum Ratings
(1) (2) (3)
VIN, VEN
−0.3 to 6.5V
VOUT
−0.3 to (VIN+0.3) ≤ 6.5V
Junction Temperature
150°C
Storage Temperature
−65°C to +150°C
Lead Temp.
235°C
Pad Temp.(4)
235°C
Maximum Power Dissipation
SOT23-5(5)
364mW
DSBGA(5)
314mW
ESD Rating(6)
Human Body Model
2kV
Machine Model
150V
(1)
Absolute Maximum Ratings are limits beyond which damage to the device may occur. Operating Ratings are conditions under which
operation of the device is verified. Operating Ratings do not imply verified performance limits. For verified performance limits and
associated test conditions, see the Electrical Characteristics tables.
(2)
All voltages are with respect to the potential at the GND pin.
(3)
If Military/Aerospace specified devices are required, please contact the Texas Instruments Sales Office/ Distributors for availability and
specifications.
(4)
Additional information on lead temperature and pad temperature can be found in Texas Instruments Application Note AN-
1112(SNOA401).
(5)
The Absolute Maximum power dissipation depends on the ambient temperature and can be calculated using the formula: PD = (TJ -
TA)/θJA,where TJ is the junction temperature, TA is the ambient temperature, and θ JA is the junction-to-ambient thermal resistance. The
364mW rating for SOT23-5 appearing under Absolute Maximum Ratings results from substituting the Absolute Maximum junction
temperature, 150°C, for TJ, 70°C for TA, and 220°C/W for θJA. More power can be dissipated safely at ambient temperatures below
70°C . Less power can be dissipated safely at ambient temperatures above 70°C. The Absolute Maximum power dissipation can be
increased by 4.5mW for each degree below 70°C, and it must be derated by 4.5mW for each degree above 70°C.
(6)
The human body model is 100pF discharged through 1.5k
Ω resistor into each pin. The machine model is a 200 pF capacitor discharged
directly into each pin.
Operating Ratings
(1) (2)
VIN
2.5 to 6V
VEN
0 to (VIN+0.3) ≤ 6V
Junction Temperature
−40°C to +125°C
Thermal Resistance
θJA (SOT23-5)
220°C/W
θJA (DSBGA)
255°C/W
Maximum Power Dissipation
SOT23-5(3)
250mW
DSBGA(3)
216mW
(1)
Absolute Maximum Ratings are limits beyond which damage to the device may occur. Operating Ratings are conditions under which
operation of the device is verified. Operating Ratings do not imply verified performance limits. For verified performance limits and
associated test conditions, see the Electrical Characteristics tables.
(2)
All voltages are with respect to the potential at the GND pin.
(3)
Like the Absolute Maximum power dissipation, the maximum power dissipation for operation depends on the ambient temperature. The
250mW rating for SOT23-5 appearing under Operating Ratings results from substituting the maximum junction temperature for
operation, 125°C, for TJ, 70°C for TA, and 220°C/W for θJA into PD = (TJ - TA)/θJA from above. More power can be dissipated at ambient
temperatures below 70°C . Less power can be dissipated at ambient temperatures above 70°C. The maximum power dissipation for
operation can be increased by 4.5mW for each degree below 70°C, and it must be derated by 4.5mW for each degree above 70°C.
Copyright © 2000–2013, Texas Instruments Incorporated
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