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TAS5760L Datasheet(PDF) 10 Page - Texas Instruments

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Part # TAS5760L
Description  Check for Samples: TAS5760L
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Manufacturer  TI [Texas Instruments]
Direct Link  http://www.ti.com
Logo TI - Texas Instruments

TAS5760L Datasheet(HTML) 10 Page - Texas Instruments

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TAS5760L
SLOS782 – JULY 2013
www.ti.com
SPEAKER AMPLIFIER IN ALL MODES (continued)
over operating free-air temperature range (unless otherwise noted)
Parameter
Test Conditions
Min
Typ
Max
Unit
fS = 44.1 kHz
-
3.7
-
fS = 48 kHz
-
4
-
-3dB Corner Frequency of High-Pass
fC
Hz
Filter
fS = 88.2 kHz
-
7.4
-
fS = 96 kHz
-
8
-
SPEAKER AMPLIFIER IN STEREO BRIDGE TIED LOAD (BTL) MODE
input signal is 1 kHz Sine, specifications are over operating free-air temperature range (unless otherwise noted)
Parameter
Test Conditions
Min
Typ
Max
Unit
PVDD = 12 V, SPK_GAIN[1:0] Pins = 00,
-
66
-
µVrms
RSPK = 8Ω, A-Weighted
ICN(SPK)
Idle Channel Noise
PVDD = 15 V, SPK_GAIN[1:0] Pins = 01,
-
75
-
µVrms
RSPK = 8Ω, A-Weighted
PVDD = 12 V, SPK_GAIN[1:0] Pins = 00,
-
14.2
-
W
RSPK = 4Ω, THD+N = 0.1%,
PVDD = 12 V, SPK_GAIN[1:0] Pins = 00,
-
8
-
W
RSPK = 8Ω, THD+N = 0.1%
Maximum Instantaneous
PO(SPK)
Output Power Per. Ch.
PVDD = 15 V, SPK_GAIN[1:0] Pins = 01,
-
21.9
-
W
RSPK = 4Ω, THD+N = 0.1%,
PVDD = 15 V, SPK_GAIN[1:0] Pins = 01,
-
12.5
-
W
RSPK = 8Ω, THD+N = 0.1%
PVDD = 12 V, SPK_GAIN[1:0] Pins = 00,
-
14
-
W
RSPK = 4Ω, THD+N = 0.1%,
PVDD = 12 V, SPK_GAIN[1:0] Pins = 00,
-
8
-
W
RSPK = 8Ω, THD+N = 0.1%
Maximum Continuous
PO(SPK)
Output Power Per. Ch.(1)
PVDD = 15 V, SPK_GAIN[1:0] Pins = 01,
-
13.25
-
W
RSPK = 4Ω, THD+N = 0.1%,
PVDD = 15 V, SPK_GAIN[1:0] Pins = 01,
-
12.5
-
W
RSPK = 8Ω, THD+N = 0.1%
PVDD = 12 V, SPK_GAIN[1:0] Pins = 00,
-
99.7
-
dB
Signal to Noise Ratio
RSPK = 8Ω, A-Weighted, -60dBFS Input
SNR(SPK)
(Referenced to THD+N =
PVDD = 15 V, SPK_GAIN[1:0] Pins = 01,
1%)
-
98.2
-
dB
RSPK = 8Ω, A-Weighted, -60dBFS Input
PVDD = 12 V, SPK_GAIN[1:0] Pins = 00,
-
0.02
-
%
RSPK = 4Ω, Po = 1 W
PVDD = 12 V, SPK_GAIN[1:0] Pins = 00,
-
0.03
-
%
RSPK = 8Ω, Po = 1 W
Total Harmonic Distortion
THD+N(SPK)
and Noise
PVDD = 15 V, SPK_GAIN[1:0] Pins = 01,
-
0.03
-
%
RSPK = 4Ω, Po = 1 W
PVDD = 15 V, SPK_GAIN[1:0] Pins = 01,
-
0.03
-
%
RSPK = 8Ω, Po = 1 W
PVDD = 12 V, SPK_GAIN[1:0] Pins = 00,
RSPK = 8Ω, Input Signal 250 mVrms, 1kHz
-
-92
-
dB
Cross-talk (worst case
Sine
X-Talk(SPK)
between LtoR and RtoL
PVDD = 15 V, SPK_GAIN[1:0] Pins = 01,
coupling)
RSPK = 8Ω, Input Signal 250 mVrms, 1kHz
-
-93
-
dB
Sine
(1)
The continuous power output of any amplifier is determined by the thermal performance of the amplifier as well as limitations placed on
it by the system around it, such as the PCB configuration and the ambient operating temperature. The performance characteristics listed
in this section are achievable on the TAS5760L's EVM, which is representative of the poplular "2 Layers / 1oz Copper" PCB
configuration in a size that is representative of the amount of area often provided to the amplifier section of popular consumer audio
electronics. As can be seen in the instantaneous power portion of this table, more power can be delivered from the TAS5760L if steps
are taken to pull more heat out of the device. For instance, using a board with more layers or adding a small heatsink will result in an
increase of continuous power, up to and including the instantaneous power level. This behavior can also been seen in the POUT vs.
PVDD plots shown in the typical performance plots section of this data sheet.
10
Copyright © 2013, Texas Instruments Incorporated
Product Folder Links: TAS5760L


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