TDA8595 All information provided in this document is subject to legal disclaimers. © NXP B.V. 2013. All rights reserved.
Product data sheet Rev. 5 — 11 June 2013 31 of 51
NXP Semiconductors
TDA8595
I
2
C-bus controlled 4 45 W power amplifier
f
SCL
SCL clock frequency - 400 - kHz
R
ADSEL
resistance on pin ADSEL I
2
C-bus address
A[6:0] = 110 1100
155 - - k
I
2
C-bus address
A[6:0] = 110 1101
42 51 57 k
I
2
C-bus address
A[6:0] = 110 1111
71015k
legacy mode - - 0.5 k
Diagnostic
V
OL(DIAG)
LOW-level output voltage
on pin DIAG
fault condition; I
DIAG
= 1 mA - - 0.3 V
V
O(offset_det)
output voltage at offset
detection
1.5 1.75 2.2 V
THD
clip
total harmonic distortion
clip detection level
IB2[D7:D6] = 10 5 10 16 %
IB2[D7:D6] = 01 3 5 7 %
IB2[D7:D6] = 00 1 2 3 %
THD
clip
total harmonic distortion
clip detection level
variation
between IB2[D7:D6] = 10 and
IB2[D7:D6] = 01
149%
between IB2[D7:D6] = 01 and
IB2[D7:D6] = 00
13.56%
T
j(AV)(pwarn)
pre-warning average
junction temperature
IB3[D4] = 0 135 145 155 C
IB3[D4] = 1 112 122 132 C
T
j(AV)(G(0.5dB))
average junction
temperature for 0.5 dB gain
reduction
V
i
= 0.05 V 150 155 160 C
T
j(pw-G(0.5dB))
prewarning to 0.5 dB gain
reduction junction
temperature difference
71013C
T
j(G(0.5dB)-off)
difference in junction
temperature between
0.5 dB gain reduction and
off
10 15 20 C
G
(th_fold)
gain reduction of thermal
foldback
all channels will switch off - 20 - dB
Z
th(load)
load detection threshold
impedance
I
2
C-bus mode
normal load detection - - 20
line driver load detection 100 - 800
Z
th(open)
open load detection
threshold impedance
I
2
C-bus mode 5000 - -
I
th(o)det(load)AC
AC load detection output
threshold current
I
2
C-bus mode
AC load bit is set 460 - - mA
AC load bit is not set - - 230 mA
Table 17. Characteristics
…continued
Refer to test circuit (see Figure 30) at V
P
=V
P1
=V
P2
= 14.4 V; R
L
=4
; f = 1 kHz; R
S
=0
; normal mode; unless otherwise
specified. Tested at T
amb
= 25
C; guaranteed for T
amb
=
40
C to +105
C.
Symbol Parameter Conditions Min Typ Max Unit
TDA8595 All information provided in this document is subject to legal disclaimers. © NXP B.V. 2013. All rights reserved.
Product data sheet Rev. 5 — 11 June 2013 32 of 51
NXP Semiconductors
TDA8595
I
2
C-bus controlled 4 45 W power amplifier
Amplifier
P
o
output power R
L
=4 ; V
P
= 14.4 V;
THD = 0.5 %
18 20 - W
R
L
=4 ; V
P
= 14.4 V;
THD = 10 %
23 25 - W
R
L
=4 ; V
P
= 14.4 V; maximum
power; V
i
= 2 V (RMS) square
wave
37 40 - W
R
L
=4 ; V
P
= 15.2 V; maximum
power; V
i
= 2 V (RMS) square
wave
41 45 - W
R
L
=2 ; V
P
= 14.4 V;
THD = 0.5 %
29 32 - W
R
L
=2 ; V
P
= 14.4 V;
THD = 10 %
37 41 - W
R
L
=2 ; V
P
= 14.4 V; maximum
power; V
i
= 2 V (RMS) square
wave
58 64 - W
THD total harmonic distortion P
o
= 1 W to 12 W; f = 1 kHz;
R
L
=4
- 0.01 0.1 %
P
o
= 1 W to 12 W; f = 10 kHz - 0.09 0.3 %
P
o
= 1 W to 12 W; f = 20 kHz - 0.14 0.4 %
line driver mode; V
o
=1V(RMS)
and 5 V (RMS),
f = 20 Hz to 20 kHz; complex
load; see Figure 32
- 0.02 0.05 %
cs
channel separation f = 1 kHz; R
S
= 1 k;
R
ACGND
=250
[5]
65 80 - dB
f = 10 kHz; R
S
=1 k;
R
ACGND
=250
[5]
60 65 - dB
SVRR supply voltage ripple
rejection
100 Hz to 10 kHz; R
S
=1k;
R
ACGND
=250
[5]
55 70 - dB
CMRR common mode rejection
ratio
normal mode; V
cm
= 0.3 V (p-p);
f = 1 kHz to 3 kHz, R
S
= 1 k;
R
ACGND
=250
[5]
45 65 - dB
V
cm(max)(rms)
maximum common mode
voltage (RMS value)
f = 1 kHz - - 0.6 V
V
n(o)
output noise voltage filter 20 Hz to 22 kHz; R
S
=1k
mute mode - 19 26 V
line driver mode - 22 29 V
normal mode - 45 65 V
G
v
voltage gain single ended in; differential out
normal mode 25.5 26 26.5 dB
line driver mode 15.5 16 16.5 dB
Table 17. Characteristics
…continued
Refer to test circuit (see Figure 30) at V
P
=V
P1
=V
P2
= 14.4 V; R
L
=4
; f = 1 kHz; R
S
=0
; normal mode; unless otherwise
specified. Tested at T
amb
= 25
C; guaranteed for T
amb
=
40
C to +105
C.
Symbol Parameter Conditions Min Typ Max Unit
TDA8595 All information provided in this document is subject to legal disclaimers. © NXP B.V. 2013. All rights reserved.
Product data sheet Rev. 5 — 11 June 2013 33 of 51
NXP Semiconductors
TDA8595
I
2
C-bus controlled 4 45 W power amplifier
[1] Operation above 16 V in a 2 mode with reactive load can trigger the amplifier protection. The amplifier switches off and will restart
after 16 ms resulting in an ‘audio hole’.
[2] V
STB
depends on the current into the STB pin: minimum = (1429 I
STB
) + 5.4 V, maximum = (3143 I
STB
)+5.6V.
[3] The times are specified without leakage current. For a leakage current of 10 A on the SVR pin, the delta time is specified. If the
capacitor value on the SVR pin changes with 30 %, the specified time will also change with 30 %. The specified times include an
ESR of 15 for the capacitor on the SVR pin.
[4] Standard I
2
C-bus specification: maximum LOW-level = 0.3 V
DD
, minimum HIGH-level = 0.7 V
DD
. To comply with 5 V and 3.3 V logic
the maximal LOW-level is defined by V
DD
= 5 V and the minimum HIGH-level by V
DD
=3.3V.
[5] For optimum channel separation (
cs
), supply voltage ripple rejection (SVRR) and common mode rejection ratio (CMRR), a resistor
should be in series with the ACGND capacitor.
12. Performance diagrams
Z
i
input impedance T
amb
= 40 C to +105 C 507095k
T
amb
= 0 C to 105 C 607095k
mute
mute attenuation V
o
/V
o(mute)
; V
i
=50mV 8092- dB
V
o(mute)(RMS)
RMS mute output voltage V
i
= 1 V (RMS);
filter 20 Hz to 22 kHz
-25-V
B
p
power bandwidth 1 dB - 20 to
20000
-Hz
Table 17. Characteristics
…continued
Refer to test circuit (see Figure 30) at V
P
=V
P1
=V
P2
= 14.4 V; R
L
=4
; f = 1 kHz; R
S
=0
; normal mode; unless otherwise
specified. Tested at T
amb
= 25
C; guaranteed for T
amb
=
40
C to +105
C.
Symbol Parameter Conditions Min Typ Max Unit
R
ACGND
R
S
4
------
=
V
P
=14.4V.
(1) f = 10 kHz.
(2) f = 1 kHz.
(3) f = 100 Hz.
Fig 18. Total harmonic distortion as a function of output power; 4 load
001aad139
10
1
10
2
10
1
10
2
THD
(%)
10
3
P
o
(W)
10
2
10
2
1010
1
1
(1)
(2)
(3)

TDA8595J/N2S,112

Mfr. #:
Manufacturer:
NXP Semiconductors
Description:
Audio Amplifiers I2C-BUS CONTROLLED 4X45 W POWER AMP
Lifecycle:
New from this manufacturer.
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