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TPS73250DBVTG4 Datasheet(PDF) 5 Page - Texas Instruments

No. de pieza TPS73250DBVTG4
Descripción Electrónicos  250-mA Low-Dropout Regulator
Download  39 Pages
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Fabricante Electrónico  TI1 [Texas Instruments]
Página de inicio  http://www.ti.com
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TPS73250DBVTG4 Datasheet(HTML) 5 Page - Texas Instruments

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TPS732
www.ti.com
SBVS037P – AUGUST 2003 – REVISED DECEMBER 2015
6.4 Thermal Information
TPS732(3)
DRB [SON]
DCQ
DBV [SOT23]
THERMAL METRIC(1)(2)
UNIT
[SOT223]
8 PINS
6 PINS
5 PINS
RθJA
Junction-to-ambient thermal resistance
58.3
53.1
205.9
RθJC(top)
Junction-to-case (top) thermal resistance
93.8
35.2
119
RθJB
Junction-to-board thermal resistance
72.8
7.8
35.4
°C/W
ψJT
Junction-to-top characterization parameter
2.7
2.9
12.7
ψJB
Junction-to-board characterization parameter
25
7.7
34.5
RθJC(bot)
Junction-to-case (bottom) thermal resistance
5
N/A
N/A
(1)
For more information about traditional and new thermal metrics, see the IC Package Thermal Metrics application report, SPRA953.
(2)
For thermal estimates of this device based on PCB copper area, see the TI PCB Thermal Calculator.
(3)
Thermal data for the DRB, DCQ, and DRV packages are derived by thermal simulations based on JEDEC-standard methodology as
specified in the JESD51 series. The following assumptions are used in the simulations:
(a)
i. DRB: The exposed pad is connected to the PCB ground layer through a 2 × 2 thermal via array.
. ii. DCQ: The exposed pad is connected to the PCB ground layer through a 3 × 2 thermal via array.
. iii. DBV: There is no exposed pad with the DBV package.
(b) i. DRB: The top and bottom copper layers are assumed to have a 20% thermal conductivity of copper representing a 20% copper
coverage.
. ii. DCQ: Each of top and bottom copper layers has a dedicated pattern for 20% copper coverage.
. iii. DBV: The top and bottom copper layers are assumed to have a 20% thermal conductivity of copper representing a 20% copper
coverage.
(c) These data were generated with only a single device at the center of a JEDEC high-K (2s2p) board with 3-inch × 3-inch copper area.
To understand the effects of the copper area on thermal performance, see the Power Dissipation section of this data sheet.
Copyright © 2003–2015, Texas Instruments Incorporated
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