TDA8944JN1 NXP Semiconductors, TDA8944JN1 Datasheet - Page 15

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TDA8944JN1

Manufacturer Part Number
TDA8944JN1
Description
Manufacturer
NXP Semiconductors
Datasheet

Specifications of TDA8944JN1

Operational Class
Class-AB
Audio Amplifier Output Configuration
2-Channel Stereo
Output Power (typ)
7x2@8OhmW
Audio Amplifier Function
Speaker
Total Harmonic Distortion
0.03@8Ohm@1W%
Single Supply Voltage (typ)
12V
Dual Supply Voltage (typ)
Not RequiredV
Power Supply Requirement
Single
Power Dissipation
18W
Rail/rail I/o Type
No
Single Supply Voltage (min)
6V
Single Supply Voltage (max)
18V
Dual Supply Voltage (min)
Not RequiredV
Dual Supply Voltage (max)
Not RequiredV
Operating Temp Range
-40C to 85C
Operating Temperature Classification
Industrial
Mounting
Through Hole
Pin Count
17
Lead Free Status / RoHS Status
Compliant
15. Test information
Philips Semiconductors
9397 750 06861
Product specification
14.2 Thermal behaviour and heatsink calculation
15.1 Quality information
15.2 Test conditions
The measured maximum thermal resistance of the IC package, R
A calculation for the heatsink can be made, with the following parameters:
At V
see
dissipation - is: 150 – 50 = 100 C.
The calculation above is for an application at worstcase (stereo) sine-wave output
signals. In practice music signals will be applied, which decreases the maximum
power dissipation to approximately half of the sine-wave power dissipation (see
Section
To increase the lifetime of the IC, T
heatsink of approximately 12 K/W for music signals.
The General Quality Specification for Integrated Circuits, SNW-FQ-611D is
applicable.
T
unless otherwise specified.
Remark: In the graphs as function of frequency no bandpass filter was applied; see
Figure
amb
T
V
T
R
including the heatsink. In the heatsink calculations the value of R
P
R
R
P
R
R
amb(max)
j(max)
CC
th(tot)
th(tot)
th(h-a)
th(tot)
th(h-a)
CC
Figure
= 25 C; V
R
R
= 12 V and R
7,
= 12 V and R
th(tot)
th(tot)
8.2.2). This allows for the use of a smaller heatsink:
= 150 C.
is the total thermal resistance between the junction and the ambient
= 100/8 = 12.5 K/W
= 100/4 = 25 K/W
= R
= R
12
11. For T
= 50 C
and 13.
= 100 C
= 100 C
th(tot)
th(tot)
CC
Rev. 02 — 14 February 2000
– R
– R
= 12 V; f = 1 kHz; R
L
j(max)
L
= 8
th(j-mb)
th(j-mb)
= 8
= 150 C the temperature raise - caused by the power
= 12.5 – 6.9 = 5.6 K/W.
the measured worstcase sine-wave dissipation is 8 W;
= 25 – 6.9 = 18.1 K/W.
j(max)
L
should be reduced to 125 C. This requires a
= 8 ; audio pass band 22 Hz to 22 kHz;
2 x 7 W stereo BTL audio amplifier
© Philips Electronics N.V. 2000. All rights reserved.
TDA8944J
th(j-mb)
th(mb-h)
is 6.9 K/W.
is ignored.
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