WM8350GEB/V Wolfson Microelectronics, WM8350GEB/V Datasheet - Page 13

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WM8350GEB/V

Manufacturer Part Number
WM8350GEB/V
Description
Audio CODECs Audio CODEC plus pwr management
Manufacturer
Wolfson Microelectronics
Datasheet

Specifications of WM8350GEB/V

Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Production Data
4
w
THERMAL CHARACTERISTICS
Thermal analysis must be performed in the intended application to prevent the WM8350 from
exceeding maximum junction temperature. Several contributing factors affect thermal performance
most notably the physical properties of the mechanical enclosure, location of the device on the PCB
in relation to surrounding components and the number of PCB layers. Connecting the nine central
GND balls through thermal vias and into a large ground plane will aid heat extraction.
Three main heat transfer paths exist to surrounding air:
The temperature rise T
The junction temperature T
The worst case conditions are when the WM8350 is operating in a high ambient temperature, with
low supply voltage, high duty cycle and high output current. Under such conditions, it is possible that
the heat dissipated could exceed the maximum junction temperature of the device. Care must be
taken to avoid this situation. An example calculation of the junction temperature is given below.
The minimum and maximum operating junction temperatures for the WM8350 are quoted in
Section 5. The maximum junction temperature is 125°C. Therefore, the junction temperature in the
above example is within the operating limits of the WM8350.
-
-
-
-
-
-
-
-
-
-
-
-
Package top to air (radiation).
Package bottom to PCB (radiation).
Package leads to PCB (conduction).
P
Ө
and is therefore a measure of heat transfer from the die to surrounding air.
For WM8350, Ө
T
P
Ө
T
T
T
A
R
A
J
D
D
JA
JA
, is the ambient temperature.
= T
= P
is the power dissipated by the device.
= 85°C (example figure)
= 1W (example figure)
is the thermal resistance from the junction of the die to the ambient temperature
= 32°C/W
A
D
R
+T
* Ө
is given by T
R
JA
J
= 117°C
is given by T
= 32°C
JA
= 32°C/W
R
= P
J
D
= T
* Ө
A
JA
+ T
R
PD, March 2010, Rev 4.2
WM8350
13

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