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P9225-R-EVK 数据表(PDF) 29 Page - Integrated Device Technology

部件名 P9225-R-EVK
功能描述  Dual-Mode Wireless Power Receiver
PDF  34 Pages
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制造商  IDT [Integrated Device Technology]
网页  http://www.idt.com
标志 IDT - Integrated Device Technology

P9225-R-EVK 数据表(HTML) 29 Page - Integrated Device Technology

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P9225-R Datasheet
© 2018 Integrated Device Technology, Inc.
29
November 12, 2018
13. Application Information
13.1 Power Dissipation and Thermal Requirements
The use of integrated circuits in low-profile and fine-pitch surface-mount packages requires special attention to power dissipation. Many system-
dependent issues such as thermal coupling, airflow, added heat sinks, convection surfaces, and the presence of other heat-generating
components must be taken into consideration.
The P9225-R package has a maximum power dissipation of approximately 1.72W, which is governed by the number of thermal vias between
the package and the printed circuit board. The die’s maximum power dissipation is specified by the junction temperature and the package
thermal resistance. The WLCSP package has a typical θJA of 47ºC/W with 8 thermal vias and 77ºC/W with no thermal vias. Maximizing the
thermal vias is highly recommended.
The ambient temperature surrounding the R9225-R0 will also have an effect on the thermal limits of the printed circuit board (PCB) design. The
main factors influencing thermal resistance (θJA) are the PCB characteristics and thermal vias. For example, in a typical still-air environment, a
significant amount of the heat generated is absorbed by the PCB. Changing the design or configuration of the PCB changes the overall thermal
resistivity and therefore the board’s heat-sinking efficiency.
Three basic approaches for enhancing thermal performance are listed below:
Improving the power dissipation capability of the PCB design
Improving the thermal coupling of the component to the PCB
Introducing airflow into the system
First, the maximum power dissipation for a given situation should be calculated using Equation 6:
PD(MAX) =
�TJ(MAX)−TAMB
θJA
Equation 6
Where
PD(MAX) = Maximum power dissipation
θJA = Package thermal resistance (°C/W)
TJ(MAX) = Maximum device junction temperature (°C)
TAMB = Ambient temperature (°C)
The maximum recommended junction temperature (TJ(MAX)) for the P9225-R device is 125°C. The thermal resistance of the 52-WLCSP package
(AHG52) is nominally θJA=47°C/W with 8 thermal vias. Operation is specified to a maximum steady-state ambient temperature (TAMB) of 85°C.
Therefore, the maximum recommended power dissipation is
PD(MAX) =
(124°C−85°C)
47°C/W
≅0.85Watt
Equation 7
All the above-mentioned thermal resistances are the values found when the P9225-R is mounted on a standard board of the dimensions and
characteristics specified by the JEDEC 51 standard.



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