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TDA8588J Datasheet, PDF (24/54 Pages) NXP Semiconductors – I2C-bus controlled 4 x 50 Watt power amplifier and multiple voltage regulator
Philips Semiconductors
I2C-bus controlled 4 × 50 Watt power
amplifier and multiple voltage regulator
Product specification
TDA8588J; TDA8588xJ
SYMBOL
αcs
SVRR
CMRR
Vcm(max)(rms)
Vn(o)(LN)
Vn(o)(amp)
Gv(amp)
Gv(LN)
Zi
αmute
Vo(mute)
Bp
PARAMETER
CONDITION
channel separation (crosstalk)
supply voltage ripple rejection
common mode ripple rejection
maximum common mode voltage
level (rms value)
f = 1 Hz to 10 kHz; Rsource = 600 Ω
Po = 4 W; f = 1 kHz
f = 100 Hz to 10 kHz;
Rsource = 600 Ω
amplifier mode;
Vcommon = 0.3 V (p-p);
f = 1 kHz to 3 kHz; Rsource = 0 Ω
f = 1 kHz
noise output voltage in line driver
mode
noise output voltage in amplifier
mode
voltage gain in amplifier mode
filter 20 Hz to 22 kHz;
Rsource = 600 Ω
filter 20 Hz to 22 kHz;
Rsource = 600 Ω
single-ended in to differential out
voltage gain in line driver mode single-ended in to differential out
input impedance
mute attenuation
output voltage mute
power bandwidth
CIN = 220 nF
VO(on)/VO(mute)
VIN = 1 V (RMS)
−1 dB; THD = 1 %
MIN. TYP. MAX. UNIT
50 60 −
dB
−
80 −
dB
55 70 −
dB
40 70 −
dB
−
−
0.6 V
−
25 35 µV
−
50 70 µV
25 26 27 dB
19 20 21 dB
55 70 −
kΩ
80 90 −
dB
−
70 −
µV
−
20 −
kHz
Voltage regulator section
Tamb = 25 °C; VP = 14.4 V; measured in the test circuit Fig.26; unless otherwise specified.
SYMBOL
PARAMETER
CONDITIONS
MIN.
TYP.
Supply
VP
supply voltage
regulator 1, 3, 4 and 5 on 10.0
14.4
regulator 2
switched on
4
−
in regulation
6.3
−
overvoltage for shut-down 18.1
22
Iq(tot)
total quiescent supply standby mode; note 1
−
150
current
Reset output (push-pull stage, pin RST)
VREG2(th)(r)
VREG2(th)(f)
Isink(L)
Isource(H)
tr
tf
rising threshold voltage
of regulator 2
falling threshold voltage
of regulator 2
LOW-level sink current
HIGH-level source
current
rise time
fall time
VP is rising;
IO(REG2) = 50 mA
VP is falling;
IO(REG2) = 50 mA
VRST ≤ 0.8 V
VRST = VO(REG2) − 0.5 V;
VP = 14.4 V
note 2
note 2
VO(REG2)
− 0.2
VO(REG2)
− 0.25
1
200
−
−
VO(REG2)
− 0.1
VO(REG2)
− 0.15
−
600
2
10
MAX. UNIT
18
V
−
V
50
V
−
V
190
µA
VO(REG2)
V
− 0.04
VO(REG2)
V
− 0.1
−
mA
−
µA
50
µs
50
µs
2004 Feb 24
24