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SSM2250RM-R2 数据表(PDF) 9 Page - Analog Devices

部件名 SSM2250RM-R2
功能描述  Mono 1.5 W/Stereo 250 mW Power Amplifier
PDF  12 Pages
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制造商  AD [Analog Devices]
网页  http://www.analog.com
标志 AD - Analog Devices

SSM2250RM-R2 数据表(HTML) 9 Page - Analog Devices

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SSM2250
Rev. A | Page 9 of 12
OUTPUT POWER (W)
0.35
0.3
0.25
0.2
0.15
0.1
0.05
0
0
0.3
0.2
0.1
0.4
VDD = 5V
RL = 16Ω
RL = 8Ω
RL = 4Ω
Figure 16. Power Dissipation vs. Single-Ended Output Power (VDD = 5 V)
The maximum power dissipation for a single-ended output is
L
DD
MAX
DISS
R
V
P
2
2
,
=
(5)
Because the SSM2250 is designed to drive two single-ended
loads simultaneously, the worst-case maximum power
dissipation in SE mode is twice the value of Equation 5.
A thorough mathematical explanation behind Equation 4 and
Equation 5 is provided in the SSM2211 data sheet.
Example
Given worst-case stereo headphone loads of 32 Ω, the maxi-
mum power dissipation of the SSM2250 in SE mode with a 5 V
supply is
()
mW
V
P
MAX
DISS
79
32
2
5
2
2
,
=
Ω
π
=
(6)
With an 8 Ω internal speaker attached, the maximum power
dissipation in BTL mode is (from Equation 4)
()
mW
V
P
MAX
DISS
633
8
5
2
2
2
,
=
Ω
π
×
=
(7)
It can easily be seen that power dissipation from BTL mode
operation is of greater concern than SE mode.
Solving for Maximum Ambient Temperature
To protect the SSM2250 against thermal damage, the junction
temperature of the die should not exceed 150°C. The maximum
allowable ambient temperature of the application can be easily
found by solving for the expected maximum power dissipation
in Equation 4 and Equation 5, and using Equation 8.
Continuing from the previous example, the θJA of the SSM2250
14-lead TSSOP package on a 4-layer board is 140°C/W. To
ensure that the SSM2250 die junction temperature stays below
150°C, the maximum ambient temperature can be solved using
Equation 8.
(
C
W
W
C
C
P
C
T
MAX
DISS
JA
MAX
AMB
o
o
o
o
61
633
.
0
/
140
150
150
,
,
+
=
×
+
=
×
θ
+
=
)
(8)
The maximum ambient temperature must remain below 61°C
to protect the device against thermal damage.
Another method for finding the maximum allowable ambient
temperature is to use the power derating curve in Figure 17.
The y-axis corresponds to the expected maximum power
dissipation, and the x-axis is the corresponding maximum
ambient temperature. Either method returns the same answer.
AMBIENT TEMPERATURE (°C)
1.0
0.8
0.6
0.4
0.2
0
07
50
25
100
5
14-LEAD TSSOP
θ
JA = 140°C/W
10-LEAD MSOP
θ
JA = 180°C/W
TJMAX = 150°C/W
FREE AIR
NO HEAT SINK
Figure 17. Maximum Power Dissipation vs. Ambient Temperature
Maximum Output Power
The maximum amount of power that can be delivered to a
speaker is a function of the supply voltage and the resistance of
the speaker. Figure 17 shows the maximum BTL output power
possible from the SSM2250. Maximum output power is defined
as the point at which the output has greater than 1% distortion.



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