TDA7496L-S20-R [UTC]
Audio Amplifier, 2 Func, Bipolar, PDSO20;型号: | TDA7496L-S20-R |
厂家: | Unisonic Technologies |
描述: | Audio Amplifier, 2 Func, Bipolar, PDSO20 光电二极管 |
文件: | 总9页 (文件大小:110K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
UNISONIC TECHNOLOGIES CO.,LTD
TDA7496L
LINEAR INTEGRATED CIRCUIT
2W+2W AMPLIFIER WITH DC
VOLUME CONTROL
ꢀ
DESCRIPTION
The UTC TDA7496L is a stereo 2W+2W class AB power
DIP-20
amplifier , specially designed for high quality sound, TV and
Monitor applications. Features of the UTC TDA7496L include linear
volume control, Stand-by and mute functions.
ꢀ
FEATURES
*2W+2W output power: RL=8Ω@THD=10%,Vcc=14V
*ST-BY and mute functions
SOP-20
*Low turn-on turn-off pop noise
*Linear volume control DC coupled with power op. amp.
*No boucherot cell
*No ST-BY RC input network
*Single supply ranging up to 15V
*Short circuit protection
*Pb-free plating product number:TDA7496LK
*Thermal overload protection
*Internally fixed gain
*Soft clipping
*Variable output after volume control circuit
ꢀ
ORDERING INFORMATION
Order Number
Package
Packing
Lead Free
Normal
TDA7496LK-S20-R
TDA7496LK-S20-T
TDA7496LK-D20-T
SOP-20
SOP-20
DIP-20
Tape Reel
Tube
TDA7496L-S20-R
TDA7496L-S20-T
TDA7496L-D20-T
Tube
ꢀ
PIN CONFIGURATION
1
2
20
19
18
17
GND
GND
GND
GND
GND
3
GND
4
INL
OUTL
Vs
VAROUT_L
VOLUME
5
16
15
14
13
12
11
6
Vs
7
OUTR
GND
MUTE
STBY
VAROUT_R
N.C.
8
INR
9
SVR
10
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TDA7496L
LINEAR INTEGRATED CIRCUIT
ꢀ
BLOCK DIAGRAM
Vs
VAROUT_R
7
GND
15,16
1,2,3,13
18,19,20
VOLUME
1000μF
14
+
INR
-
OUTR
470nF
30K
OP AMP
S1 ST-BY
+5V
STBY
11
12
17
MUTE/STBY
PROTECTIONS
10K
S_GND
+5V
MUTE
1μF
60K
VOLUME
30K
S2 MUTE
4
OUTL
INL
+
-
470nF
1000μF
OP AMP
SVR
10
5
6
470μF
VOLUME
+5V
VAROUT_L
300K
100nF
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QW-R107-020,B
TDA7496L
LINEAR INTEGRATED CIRCUIT
ꢀ
ABSOLUTE MAXIMUM RATINGS (Ta=25℃, unless otherwise specified.)
PARAMETER
SYMBOL
RATINGS
UNIT
V
DC Supply Voltage
VSS
26
Maximum Input Voltage
VIN
8
V
Volume CTRL DC Voltage
Power Dissipation (Tc =60℃)
Junction Temperature
V6
6
6
V
PD
W
TJ
125
°C
°C
°C
Operating Temperature Range
Storage Temperature Range
TOPR
TSTG
0 ~ +70
-40 ~ +150
Note:1.Absolute maximum ratings are those values beyond which the device could be permanently damaged.
Absolute maximum ratings are stress ratings only and functional device operation is not implied.
2.The device is guaranteed to meet performance specification within 0℃~70℃ operating temperature range
and assured by design from –40℃~85℃.
ꢀ
ELECTRICAL CHARACTERISTICS (Ta=25℃, V+/V-=±2.5V , unless otherwise specified.)
PARAMETER
SYMBOL
TEST CONDITION
MIN
10
TYP
MAX
18
UNIT
V
Supply Voltage Range
Quiescent Current
VSS
IQ
25
50
mA
Output DC Offset Referred to SVR
Potenial
DCVos No Input Signal
VOUT
200
mV
V
Quiescent Output Voltage
7
2
Output Power
THD=10%
THD=1%
1.6
0.7
RL=8Ω
POUT
W
1.3
Total Harmonic Distortion
Output Peak Current
Input Signal
THD
GV=30dB,POUT=1W, f=1KHz
0.4
%
A
IO(PEAK) (internally limited)
VIN
0.9
2.8
31.5
1.5
V
Closed Loop Gain
Monitor Out Gain
GV
Vol Ctrl>4.5V
28.5
-1.5
80
30
0
dB
Vol Ctrl>4.5V, ZLOAD>30kΩ
GV(line)
dB
Attenuation at Minimum Volume
Amin VoL Vol Ctrl<0.5V
BW
dB
Bandwidth
Volume
0.6
500
100
60
MHz
μV
μV
μV
V/μs
kΩ
Ω
f=20Hz to 22KHz
800
250
150
Total Output Noise
eN
Attenuation
Mute
f=20Hz to 22KHz
f=20Hz to 22KHz
Slew Rate
Input Resistance
SR
RIN
5
8
22.5
30
Variable Output Resistance
Variable Output Load
RVAR(OUT)
RLOAD(OUT)
30
100
kΩ
2
Supply Voltage Rejection Volume
35
55
39
65
dB
dB
°C
°C
CSVR=470μF, VRIP=1V
SVR
f=1kHz
Attenuation
Thermal Muting
Thermal Shut-down
TM
Ts
150
160
MUTE STAND-BY&INPUT SELECTION FUNCTIONS
Stand-by ON Threshold
Stand-by OFF Threshold
Mute ON Threshold
VST(ON)
VST(OFF)
VM(ON)
3.5
3.5
V
V
1.5
V
Mute OFF Threshold
Quiescent Current@ Stand-by
Mute Attenuation
VM(OFF)
IQST-BY
1.5
1
V
0.6
65
mA
dB
AMUTE
50
Stand by on VST-BY=5V
IBIAS(ST-BY) VMUTE=5V
μA
80
Stand-by bias current
Mute bias current
μA
μA
μA
Play or Mute
Mute
-20
-5
1
5
2
IBIAS(MUTE)
Play
0.2
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TDA7496L
LINEAR INTEGRATED CIRCUIT
ꢀ
APPLICATION SUGGESTIONS
The recommended values of the external components are those shown on the application circuit of figure 1.
Different values can be used, the following table can help the designer.
COMP SUGGESTIO
LARGER THAN
SUGGESTION
SMALLER THAN
SUGGESTION
ONEN
T
N
PURPOSE
VALUE
300K
R1
R2
P1
C1
C2
C3
C4
C5
C6
C7
C8
C9
Volume control circuit
Mute time constant
Volume control circuit
Supply voltage bypass
Input DC decoupling
Input DC decoupling
Ripple rejection
Larger volume regulation time Smaller volume regulation time
10K
Larger mute on/off time
Smaller mute on/off time
50K
1000µF
470nF
470nF
470µF
100nF
1000µF
1µF
Danger of oscillation
Higher low frequency cutoff
Higher low frequency cutoff
Worse SVR
Lower low frequency cutoff
Lower low frequency cutoff
Better SVR
Volume control time Constant Larger volume regulation time Smaller volume regulation time
Output DC decoupling
Mute time costant
Lower low frequency cutoff
Larger mute on/off time
Lower low frequency cutoff
Higher low frequency cutoff
Smaller mute on/off time
Higher low frequency cutoff
Danger of oscillation
1000µF
100nF
Output DC decoupling
Supply voltage bypass
ꢀ
TYPICAL APPLICATION CIRCUIT
+Vs
C9
0.1μF
C1
1000μF
VAROUT R
7
Vs
PW_GND
1,2,3,13
18,19,20
15,16
1000μF
C8
VOLUME
PW_GND
OUTR
9
14
+
-
INR
C2
470nF
30K
OP AMP
S1 STBY
+5V
11
12
MUTE/STBY
PROTECTIONS
S_GND
R2 10K
C7
1μF
+5V
VOLUME
60K
S2 MUTE
4
17
+
-
INL
OUTL
PW_GND
C3
C6
1000μF
30K
OP AMP
470nF
SVR
10
C4
470μF
6
5
VOLUME
VAROUT_L
+5V
VOL
P1
50K
LOG
C5
100nF
R1
300K
TP1
FIGURE 1. APPLICATION CIRCUIT
ꢀ
MUTE STAND-BY TRUTH TABLE
MUTE
ST-BY
OPERATING CONDITION
STANDBY
H
L
H
H
L
STANDBY
H
L
MUTE
L
PLAY
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TDA7496L
LINEAR INTEGRATED CIRCUIT
ꢀ
TURN ON/OFF SEQUENCES (FOR OPTIMIZING THE POP PERFORMANCES)
(A) USING MUTE AND STAND-BY FUNCTIONS
Vs(V)
ST-BY
pin#11(V)
VSVR
pin#10(V)
2.5
MUTE
pin#12(V)
5
INPUT
(mV)
VOUT
(V)
OFF
STBY MUTE
MUTE STBY
OFF
PLAY
IQ
(mA)
(B) USING ONLY THE MUTE FUNCTION
To simplify the application, the stand-by pin can be connected directly to Ground. During the ON/OFF transitions is
recommend to respect the following conditions.
At the turn-on, the transition mute - play must be made when the SVR pin is higher than 2.5V.
At the turn-off, the TDA7496L must be brought to mute from the play condition when the SVR pin is higher than
2.5V.
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QW-R107-020,B
TDA7496L
LINEAR INTEGRATED CIRCUIT
ꢀ
PIN DESCRIPTION
PIN: SVR
Vs
Vs
Vs
+
OUT L
-
30K
1K
20K
6K
6K
SVR
1K
20K
30K
-
OUT R
+
100μA
PINS: INL,INR
PINS: VAROUT_L,VAROUT_R
Vs
Vs
500μA
6K
VAROUT_
L
INn
30K
SVR
PIN: VOLUME
PIN: MUTE
Vs
Vs
10μA
200
10K
MUTE
VOL
50μA
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QW-R107-020,B
TDA7496L
LINEAR INTEGRATED CIRCUIT
ꢀ
PIN DESCRIPTION(cont.)
PINS: VAROUT-L,VAROUT-R
Vs
PINS: PW_GND,S_GND
Vs
OUT
GND
PIN: STBY
Vs
10μA
STBY
200
65K
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QW-R107-020,B
TDA7496L
LINEAR INTEGRATED CIRCUIT
ꢀ
TYPICAL CHARACTERICS
Quiescent current vs.Supply Voltage
Output DC Voltage vs.Supply Voltage
Vodc (V)
IQ (mA)
34
32
30
10
9.5
9
Vi=0
Vi=0
8.5
8
7.5
7
28
26
24
22
20
6.5
6
5.5
5
4.5
4
18
16
10
11
12
13
14
15
16
17
18
10
11
12
13
14
15
16
17
18
Supply Voltage(V)
Supply Voltage(V)
Output DC Offset vs.Supply Voltage
Output Power vs.Supply Voltage
Output Power (W)
Vodc-Vsvr (V)
300
280
4
3.5
3
Vi=0
RL=8 Ohm
f=1KHz
260
240
220
THD=10%
2.5
2
200
180
160
140
1.5
1
THD=1%
0.5
0
10
120
100
11
12
13
14
15
16
17
18
10
11
12
13
14
15
16
17
18
Supply Voltage(V)
Supply Voltage(V)
Closed Loop gain vs.Frequency
Closed Loop Gain (dB)
Distortion vs.Output Power
Distortion (%)
32
31
30
29
28
27
26
10
1
Vs=12V
RL=8 Ohm
f=15KHz
RL=8 Ohm
Pout=0.5W
Cin=470nF
Cout=1000uF
Csvr=470uF
25
24
23
22
21
20
0.1
f=1KHz
0.2 0.4
0.01
0
0.8
0.6
1
1.2 1.4 1.6 1.8
2
2
20
0.02
0.2
Frequency(KHz)
Output Power(W)
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TDA7496L
LINEAR INTEGRATED CIRCUIT
ꢀ
TYPICAL CHARACTERICS (Cont.)
Mute Attenuation vs.Vpin 12
St-By Attenuatio vs.Vpin 11
Stand-by Attenuation (dB)
Mute Attenuation (dB)
20
10
0
20
10
0
-10
-20
-30
-40
-10
-20
RL=8 Ohm
0dB@Pout=1W
-30
-40
-50
-60
-70
-80
-90
-100
RL=8 Ohm
0dB@Pout=1W
-50
-60
-70
-80
-90
-100
-110
-120
-130
-140
-110
-120
0.4 0.8
2.8
3.2 3.6
0
1.2 1.6 2
2.4
4
4.4 4.8 5.2
0
0.5
1
4
1.5
2
2.5
3
3.5
4.5
5
Vpin#12(V)
Vpin#11(V)
UTC assumes no responsibility for equipment failures that result from using products at values that
exceed, even momentarily, rated values (such as maximum ratings, operating condition ranges, or
other parameters) listed in products specifications of any and all UTC products described or contained
herein. UTC products are not designed for use in life support appliances, devices or systems where
malfunction of these products can be reasonably expected to result in personal injury. Reproduction in
whole or in part is prohibited without the prior written consent of the copyright owner. The information
presented in this document does not form part of any quotation or contract, is believed to be accurate
and reliable and may be changed without notice.
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QW-R107-020,B
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