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LV4904 Datasheet(PDF) 2 Page - ON Semiconductor

Part # LV4904
Description  Digital Input Class-D Power Amplifier
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Manufacturer  ONSEMI [ON Semiconductor]
Direct Link  http://www.onsemi.com
Logo ONSEMI - ON Semiconductor

LV4904 Datasheet(HTML) 2 Page - ON Semiconductor

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LV4904V
No.A1963-2/25
Specifications
Absolute Maximum Ratings
at Ta
= 25°C
Parameter
Symbol
Conditions
Ratings
Unit
Power cell power supply
PVD
Externally applied power supply
-0.3 to 24
V
Logic power supply
VDD
Externally applied power supply
-0.3 to 4.0
V
Maximum junction temperature
Tj max
125
°C
Operating temperature
Topr
-30 to +70
°C
Storage temperature
Tstg
-50 to +150
°C
Recommended Operating Range
at Ta
= 25°C
Parameter
Symbol
Conditions
Ratings
Unit
min
typ
max
Power cell power supply
PVD
Externally applied power supply
8
13
20
V
Logic power supply
VDD
Externally applied power supply
3.0
3.3
3.6
V
Load
RL
Speaker load
8
-
-
Ω
Electrical Characteristics
Parameter
Symbol
Conditions
Ratings
Unit
min
typ
max
Digital/Ta=25
°C, VDD=3.3V, PVD=13V
Standby current
IPD
-
1
10
μA
Operating current
IOP
-
12
30
mA
H input voltage
VIHHIS
0.8VDD
-
5.5
V
L input voltage
VILHIS
-0.3
-
0.2VDD
V
H input current
IIH
VIN=VDD
--
10
μA
L input current
IIL
VIN=GND
-10
-
-
μA
Output pin current
IOH
VOUT=VDD-0.4V
-0.8
-
-
mA
IOL
VOUT=0.4V
1
-
-
mA
Power/Ta=25
°C, VDD=3.3V, PVD=13V, RL=8Ω, L=22μH(TOKO:A7040HN-220M), C=33μF, Fin=1kHz
Standby current
IST
PVD, RSTB=Low
-1
10
μA
Mute on current
IMUTE
PVD, ENABLE=Low
-
1
10
mA
Quiescent current
ICCO
PVD, 50% duty
-
16
60
mA
Power Tr. ON resistance *1
RDSON
ID=1A
-
300
-
m
Ω
Output power
Pout1
8
Ω, 15V, THD+N=10%, Modulation index
87.5%
9
10
-
W
Pout2
8
Ω, 18V, THD+N=10%, Modulation index
87.5%
12
14
-
W
Output noise
VN
IHF-A
-
4
10
mV
THD+N
THD
PO=1W, 1kHz, 8Ω
-0.1
0.3
%
Channel separation
CHSEP
PO=1W, 1kHz, 8Ω
40
60
-
dB
*1 : The maximum power transistor ON resistance(RDSON) is 360mΩ(design guarantee value).
Note : The value of these characteristics were measured in Our test environment. The actual value in an end system will vary depending on the printed circuit
board pattern, the components used, and other factors.
Stresses exceeding Maximum Ratings may damage the device. Maximum Ratings are stress ratings only. Functional operation above the Recommended Operating
Conditions is not implied. Extended exposure to stresses above the Recommended Operating Conditions may affect device reliability.


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