Datasheet

AC ELECTRICAL CHARACTERISTICS
AC ELECTRICAL CHARACTERISTICS
TAS5602
SLAS593B JUNE 2008 REVISED NOVEMBER 2008 ...................................................................................................................................................
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T
A
= 25 ° C, V
CC
= 24 V, R
L
= 8 (unless otherwise noted)
PARAMETER TEST CONDITIONS MIN TYP MAX UNIT
K
SVR
Supply Ripple Rejection 200 mV
PP
ripple at 20 Hz 20 kHz, BTL 50%
60 dB
duty cycle PWM at inputs
BTL R
L
= 8 , THD+N = 7%, f = 1 kHz,
20
V
CC
= 18 V
P
O
Continuous output power W
SE R
L
= 4 , THD+N = 10%, f = 1 kHz,
19
V
CC
= 24 V
Total Harmonic Distortion + Noise (SE) V
CC
= 24 V, f = 1 kHz, P
O
= 10 W 0.08%
THD+N
V
CC
= 18 V, R
L
= 8 , f = 1 kHz,
Total Harmonic Distortion + Noise (BTL) 0.04%
Po = 10 W (half-power)
125 µ V
20 Hz to 22 kHz, A-weighted filter, BD
V
n
Output Integrated Noise
modulation
78 dBv
Crosstalk Po = 1 W, f = 1 kHz 70 dB
Max. Output at THD+N < 1%, f = 1 kHz,
SNR Signal-to-noise ratio 99 dB
A-weighted, V
CC
= 18 V
Thermal trip point (output shutdown,
150 ° C
unlatched fault)
Thermal warning trip ( THERM_WARN = Low) 125 ° C
Thermal hysteresis 20 ° C
t
r
PWM Input rise time PWM_xx pins 5 ns
t
f
PWM Input fall time PWM_xx pins 5 ns
T
A
= 25 ° C, V
CC
= 12 V, R
L
= 8 (unless otherwise noted)
PARAMETER TEST CONDITIONS MIN TYP MAX UNIT
K
SVR
Supply Ripple Rejection 200 mV
PP
ripple at 20 Hz 20 kHz, BTL 50%
60 dB
duty cycle PWM at inputs
BTL R
L
= 8 , THD+N = 10%, f = 1 kHz, 9.5
P
O
Continuous output power W
SE R
L
= 4 , THD+N = 10%, f = 1 kHz, 4.5
0.04
Total Harmonic Distortion + Noise (SE) V
CC
= 12 V, f = 1 kHz, P
O
= 2 W (half-power)
%
THD+N
V
CC
= 12 V, R
L
= 8 , f = 1 kHz,
0.07
Total Harmonic Distortion + Noise (BTL)
%
P
O
= 5 W (half-power)
125 µ V
20 Hz to 22 kHz, A-weighted filter, BD
V
n
Output Integrated Noise
modulation
78 dBv
Crosstalk P
O
= 1 W, f = 1 kHz 70 dB
Max. Output at THD+N < 1%, f = 1 kHz,
SNR Signal-to-noise ratio 96 dB
A-weighted
Thermal trip point (output shutdown, unlatched
150 ° C
fault)
Thermal warning trip ( THERM_WARN = Low) 125 ° C
Thermal hysteresis 20 ° C
t
r
PWM Input rise time PWM_xx pins 5 ns
t
f
PWM Input fall time PWM_xx pins 5 ns
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