TDA1519BL-H09-B-T [UTC]
Audio/Video Amplifier,;型号: | TDA1519BL-H09-B-T |
厂家: | Unisonic Technologies |
描述: | Audio/Video Amplifier, |
文件: | 总7页 (文件大小:340K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
UNISONIC TECHNOLOGIES CO., LTD
TDA1519B
LINEAR INTEGRATED CIRCUIT
12W BTL OR 2×6W STEREO
CAR RADIO POWER
AMPLIFIER
DESCRIPTION
The UTC TDA1519B is an integrated class - B dual output
amplifier. It contains two identical amplifiers with differential input
stages. The gain of each amplifier is fixed at 40dB. The device is
primarily developed for car radio application.
HSIP-9B
FEATURES
* Requires very few external components for Bridge-Tied
Load (BTL) operation
* Stereo or BTL application
* High output power
* Low stand-by current (<100μ A)
* Low mute/stand-by switching current
* Load dump protection
* AC and DC short-circuit safe to ground and Vp
* Thermally protected
ORDERING INFORMATION
Ordering Number
Lead Free
Package
HSIP-9B
Packing
Tube
Halogen Free
TDA1519BG-H09-B-T
TDA1519BL-H09-B-T
TDA1519BG-H09-B-T
(1) T: Tube
(2) H09-B: HSIP-9B
(3) G: Halogen Free and Lead Free, L: Lead Free
(1)Packing Type
(2)Package Type
(3)Green Package
MARKING
L: Lead Free
G: Halogen Free
UTC
TDA1519B
Lot Code
Date Code
www.unisonic.com.tw
Copyright © 2020 Unisonic Technologies Co., Ltd
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QW-R107-029.D
TDA1519B
PIN CONFIGURATION
LINEAR INTEGRATED CIRCUIT
UTC TDA1519B
4
9
1
2
3
5
6
7
8
NINV
OUT2
GND1 RR OUT1 GND2
INV
VP M/SS
PIN DESCRIPTION
PIN NO
PIN NAME
NINV
GND1
RR
DESCRIPTION
1
2
3
4
5
6
7
8
9
Non-inverting input
Ground 1(sigal)
Supply Voltage Ripple Rejection
Output 1
OUT1
GND2
OUT2
VP
Ground 2(substrate)
Output 2
Positive Supply Voltage
Mute/Standby Switch
Inverting Input
M/SS
INV
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TDA1519B
BLOCK DIAGRAM
LINEAR INTEGRATED CIRCUIT
mute switch
1
NINV
Cm
VA
4
OUT1
power stage
18.1kΩ
Vp
8
M/SS
+
Stand-by
switch
-
stand-by
reference
voltage
VA
15kΩ
15kΩ
+
×1
mute
switch
+
-
3
RR
mute
reference
voltage
18.1kΩ
power
stage
6
OUT2
9
VA
INV
Cm
+
mute switch
input
power
ground
(substrate)
reference
voltage
signal
ground
2
7
GND1
Vp
GND2
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TDA1519B
LINEAR INTEGRATED CIRCUIT
ABSOLUTE MAXIMUM RATINGS
PARAMETER
Operating
SYMBOL
VP
RATINGS
UNIT
V
18
30
Non-operating
Supply Voltage
Load dump protected
(during 50ms, tr≥2.5ms)
45
AC and DC Short-circuit Safe Voltage
Reverse Polarity Voltage
VPSC
VRP
IOSM
IORM
PD
18
V
V
6
Non-Repetitive
Repetitive
6
4
A
Peak Output Current
A
Power Dissipation
15
W
mJ
°C
°C
Energy Handling Capability at Outputs (VP=0V)
Junction Temperature
Eo
200
TJ
+125
-40 ~ +150
Storage Temperature
TSTG
Note: 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.
DC CHARACTERISTICS
(VP=14.4V, TA=25°C, measurements taken using Fig.1, unless otherwise specified.)
PARAMETER
SYMBOL
TEST CONDITIONS
MIN
6.0
TYP
MAX
18.0
UNIT
Supply
Supply Voltage
VP
Note 1
Note 2
14.4
6.95
V
V
DC Output Voltage
VOUT
ΔV4-6
IQ(tot)
DC Output Offset Voltage
Total Quiescent Current
Mute/Stand-By Switch
Switch-On Voltage Level
Mute Condition
250
80
mV
mA
40
VSW-ON
8.5
3.3
V
Mute Voltage Level
VMUTE
Vo
6.4
20
V
Output Signal in Mute Position
DC Output Offset Voltage
Stand-By Condition
Stand-By Voltage Level
Stand-By Current
VIN=1V(max.), f=20Hz ~ 15kHz
mV
mV
ΔV4-6
250
VST-BY
IST-BY
0
2
V
100
40
μA
μA
Switch-On Current
ISW-ON
12
Notes: 1. The circuit is DC adjusted at VP =6 ~18V and AC operating at VP =8.5 ~ 18V.
2. At 18V<VP<30V, the DC output voltage is ≤0.5Vp
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TDA1519B
LINEAR INTEGRATED CIRCUIT
AC CHARACTERISTICS (VP=14.4V, TA=25°C, f=1kHz, unless otherwise specified.)
PARAMETER
SYMBOL
TEST CONDITIONS
MIN
TYP
MAX UNIT
Stereo Application (measurements taken using Fig.1), RL=4Ω
ON
RS=0Ω
150
250
120
60
μV
Noise Output Voltage
(RMS value)
ON
Vno(rms)
f=20Hz~20kHz RS=10kΩ
500
75
μV
μV
kΩ
MUTE
(Note 6)
Input Impedance
Output Power
|Zi|
50
4
THD=0.5%
THD=10%
THD=0.5%
THD=10%
ON
5
POUT
(Note 1)
(Note 1)
W
W
5.5
6.0
3.5
4.8
Output Power at Vp=13.2V
POUT
RR
f =100Hz (Note 3)
f=1kHz ~ 10kHz (Note 3)
(Note 3, 4, 5)
40
45
45
80
39
20
ON
dB
dB
dB
dB
kHz
Hz
%
Supply Voltage Ripple
Rejection
MUTE
STAND-BY
(Note 3, 4, 5)
Close Loop Voltage Gain
High Frequency Roll-Off
Gv
fH
40
41
1
-1dB
Low Frequency Roll-Off (Note 2)
Total Harmonic Distortion
Channel Separation
fL
-3dB
45
THD
α
△Gv
POUT=1W
RS=10kΩ
0.1
40
dB
dB
Channel Unbalance
0.1
BTL Application (measurements taken using Fig.2), RL=8Ω
ON
Rs=0Ω
150
350
180
30
μV
μV
μV
kΩ
Noise Output Voltage
(RMS value)
ON
Vno(rms)
f=20Hz~20kHz Rs=10kΩ
700
38
MUTE
Note 6
Input Impedance
Output Power
|Zi|
25
8
THD=0.5%
THD=10%
THD=0.5%
THD=10%
ON
10
POUT
(Note 1)
(Note 1)
W
W
11
12
7.5
10
Output Power at VP=13.2V
POUT
RR
Notes 3, f =100Hz
Notes 3, f=1kHz ~ 10kHz
(Note 3, 4, 5)
34
48
48
80
45
20
dB
dB
dB
dB
dB
kHz
Hz
%
ON
Supply Voltage Ripple
Rejection
MUTE
STAND-BY
(Note 3, 4, 5)
Close Loop Voltage Gain
High Frequency Roll-Off
Gv
fH
46
47
-1dB
Low Frequency Roll-Off (Note 2)
Total Harmonic Distortion
fL
-1dB
45
0.1
THD
Po=1W
THD=0.5%, Po=-1dB
w.r.t 15W
35 ~
15000
Power Bandwidth
BW
Hz
Notes: 1. Output power is measured directly at the output pins of the device.
2. Frequency response externally fixed.
3. Ripple rejection measured at he output with a source impedance of 0Ω(maximum ripple amplitude of 2V).
4. Frequency f =100Hz
5. Frequency between 1kHz and 10kHz
6. Noise output voltage independent of RS (VIN=0V)
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TDA1519B
LINEAR INTEGRATED CIRCUIT
TYPICAL APPLICATION CIRCUIT
Stereo application diagram
Standby
switch
100nF
VP
+
100μF
2200μF
+
7
8
3
+
Input
Internal
1/2Vp
reference
voltage
-
+
-
40dB
40dB
220nF
220nF
9
Non-Inverting
input
Inverting
input
1
+
2
5
4
6
Power
ground
RL=4Ω
Signal
ground
RL=4Ω
+
1000uF
BTL application diagram
Standby
switch
100nF
VP
2200μF
+
3
7
8
+
Input
reference
voltage
Internal 1/2Vp
-
+
40dB
+
40dB
220nF
Non-inverting
9
-
input
1
To pin 1
2
5
4
6
To pin 9
Power
ground
Signal
ground
RL=8Ω
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TDA1519B
LINEAR INTEGRATED CIRCUIT
TYPICAL CHARACTERISTICS
Fig.4 Output Power
Fig .3 Total Quiescent Current
As a Function Of The Supply Voltage
As a Function Of The Supply Voltage
10
60
50
stereo application
RL=4Ω, f=1kHz
THD=10%
5
40
30
THD=0.5%
0
8
0
4
12
16
20
0
4
8
12
16
20
Vp (V)
Vp (V)
Fig.6 Total Harmonic Distortion
As a Function Of The Operating Frequency
Fig.5 Total Harmonic Distortion
As a Function Of The Output Power
12
8
0.6
stereo application
RL=4Ω, f=1kHz
stereo application
RL=4Ω, Po=1W
0.4
0.2
0
4
0
0.1
10
104
105
102
1
10
103
f (Hz)
Po (W)
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. UTC reserves the right to
make changes to information published in this document, including without limitation specifications and
product descriptions, at any time and without notice. This document supersedes and replaces all
information supplied prior to the publication hereof.
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