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 Ordering number:ENN4033A
Monolithic Linear IC
LA4536M
5V CD Headphone-stereo Power Amplifier
The LA4536M is a low noise, low distortion headphonestereo power IC designed for use on a portable CD.
Package Dimensions
unit:mm 3086A-MFP10S
10 6
0.625
Features
* Less current drain. * Accept 16 load drive. * Excellent voltage reduction characteristic. * Excellent ripple rejection. * Power switch function and built-in muting circuit. * Low noise (7V), low gain (11dB).
[LA4536M]
1.8 max
1 5.1
5
0.15
0.35
1.0
0.55
0.1
1.5
SANYO : MFP10S
Specifications
Absolute Maximum Ratings at Ta = 25C
Parameter Maximum supply voltage Allowable power dissipation Operating temperature Storage temperature Symbol VCC max Pd max Topr Tstg No signal Conditions Ratings 6.0 300 -20 to +75 -40 to +125 Unit V mW
C C
Operating Characteristics at Ta = 25C
Parameter Recommended supply voltage Operating supply voltage range Recommended load impedance Symbol VCC VCC op RL Conditions Ratings 5.0 4.0 to 6.0 16 to 32 Unit V V
Any and all SANYO products described or contained herein do not have specifications that can handle applications that require extremely high levels of reliability, such as life-support systems, aircraft's control systems, or other applications whose failure can be reasonably expected to result in serious physical and/or material damage. Consult with your SANYO representative nearest you before using any SANYO products described or contained herein in such applications. SANYO 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 SANYO products described or contained herein.
SANYO Electric Co.,Ltd. Semiconductor Company
TOKYO OFFICE Tokyo Bldg., 1-10, 1 Chome, Ueno, Taito-ku, TOKYO, 110-8534 JAPAN
O3098HA (KT)/62598RM (KI) No.4033-1/9
5.15 6.4
4.4
LA4536M
Operating Characteristics at Ta = 25C, RL=16, Rg=600
Parameter Symbol ICCO1 Quiescent current Voltage gain Voltage gain variations Total harmonic distortion Output power Crosstalk Rpple rejection Output noise voltage Power off effect Mute effect Power on current sensitivity Power off voltage sensitivity Mute off current sensitivity Mute on voltage sensitivity ICCO2 ICCO3 VG VG1 VG2 THD PO CT SVRR VNO VO(off) VO(MT) I1(on) V1(off) I10(off) V10(on) Conditions VCC=5.0V, no signal VCC=6.0V, pin 10, GND VCC=6.0V, pin 1, GND VCC=5.0V, f=1kHz, VO=-10dBm VCC=5.0V, f=1kHz, VO=-10dBm VCC=4.0V, f=1kHz, VO=-20dBm VCC=5.0V, f=1kHz, PO=1mW VCC=5.0V, f=1kHz, THD=10% VCC=5.0V, f=1kHz, Rg=1k, VO=-10dBm VCC=4.0V, f=100Hz, Rg=1k, VO=-20dBm, BPF=100Hz VCC=6.0V, Rg=1k, BPF=20Hz to 20Hz VCC=4.0V, f=100Hz, Pin 1 to GND, VIN=-10dBm VCC=4.0V, f=100Hz, Pin 1 to GND, VIN=-10dBm VCC=5.0V, V50.85V 40 40 45 0.02 100 60 65 7 20 -80 -80 0.05 0.5 0.5 0.6 0.2 0.65 2.0 2.0 9 Ratings min typ 1.0 1.1 11 max 20 4.0 1.0 13 1.0 1.0 0.24 Unit mA mA A dB dB dB % mW dB dB V dBm dBm A V A V Note
VCC=5.0V, V50.1V VCC=5.0V, V50.85V VCC=5.0V, V50.1V
*1 : Quiescent current is the current flowing into pin 6. The current flowing into pin 1 and pin 10 is at the maximum value and calculated from the equation (V pin-0.5V)/16[V/k], increasing total current.
Equivalent Circuit Block Diagram
P/SW
1
POWER SWITCH
MUTE CIRCUIT
10
MT/SW
IN 1
2
Amp1
9
OUT 1
PRE GND
3
8
POWER GND
IN 2
4
Amp2
7
OUT 2
REF
5
BIAS
6
VCC
A11160
No.4033-2/9
LA4536M
Test Circuit
I1 2 3 1 2 V1 4 1 P/SW 1 MT/SW 4 2 3
I10
1 2 3
P/SW
MT/SW
10 9
V10 220F + RL 16 RL 16 VR VCC DC RIPPLE
A11161
IN 1 PRE GND
OUT 1
0.1F 2.2 2.2 0.1F 4.7F
Rg 1k 1 2 SG Rg 1k 22F +
LA4536M POWER 8 GND
OUT 2
4 5
IN 2
7 6
+ 220F +
REF
VCC
A
ICC
Sample Application Circuit
ON OFF VR
P/SW
1 2 3
P/SW
MT/SW
10 9 8 7 6
MT/SW
OFF ON
IN 1 PRE GND
OUT 1
+ 0.1F 2.2 2.2 0.1F 4.7F
220F RL 16 RL 16
LA4536M POWER GND
OUT 2
VR SG 1 SG 2 22F +
4 5
IN 2
+ 220F +
- VCC +
A11162
REF
VCC
No.4033-3/9
LA4536M
Pin Functions (VCC=5.0V)
Pin No. Symbol Pin voltage Equivalent circuit Pin function * The system runs on when the VCC is applied to this pin and turns off by connectiong this pin to GND.
1
20k
P/SW1
1
A11164
* Input pin connection. Input impedance is 10k.
2 4
IN1 IN2
2.1
500
2
2.1
4
10k
A11165
3
PRE GND * 2.1V fixed bias is applied to this pin.
5
REF
2.1
5
23k
A11166
6
VCC * Output pin connection.
7 9
OUT2 OUT1
2.1 2.1
7 9
4.7k
A11167
8
POWER GND * The muting function turns on when this pin is connected to GND and turns off by applying the VCC to this pin.
10
MT/SW
20k
10
A11168
No.4033-4/9
LA4536M
20 10 0
VO - VIN
Total harmonic distortion, THD - %
10
THD - PO
VCC=5.0V RL=16
f=1kHz RL=16
VCC=6.0V 5.0V 4.0V
7 5 3 2 1.0 7 5 3 2 0.1 7 5
Output, VO - dBm
THD=10%
--10 --20 --30 --40 --50 --60 --70 --70
--60
--50
--40
--30
--20
--10
0
10
20
3 2 0.1
2
3
5
7 1.0
2
3
5
7 10
2
3
5
7 100
2
3
Input voltage, VIN - dBm
1000 7 5 3 2 100 7 5 3 2 10 7 5 3 2 1.0 7 5 3 20 1 2 3 4 5 6 7
Output power, PO - mW
10 7 5 3 2 1.0 7 5 3 2 0.1 7 5 16
PO,THD - VCC
f=1kHz RL=16 THD=10% PO=1mW PO
VG - fIN
VCC=4.0V VO=-10dBm RL=16 VG
Total harmonic distortion, THD - %
14
Output power, PO - mW
Voltage gain, VG - dB
12
10
8
THD
3 2 0.01 7 5 3 2 8
6 + 4 2 10 220F OUT 16
23
5 7 100
23
5 7 1k
23
5 7 10k
23
5 7100k
Power supply voltage, VCC - V
160
Frequency, fIN - Hz f=1kHz RL=16
Current drain, ICC - mA
3 2
VG - VCC
20dBm V O=- -10dBm
ICC - PO
VCC=5.0V f=1kHz RL=16 2 output on
T =1 HD 0%
140
Voltage gain, VG - dB
100 7 5 3 2
120
100
80
10 7 5 3
60
40
0
1
2
3
4
5
6
7
8
2
2
3
5
7 1.0
2
3
5
7 10
2
3
5
7 100
2
3
5
Power supply voltage, VCC - V
2
Output power, PO - mW
100
Pd - PO
f=1kHz RL=16 2 output on
Crosstalk, CT - dB
CT - fIN
VCC=4.0V RL=16 Rg=1k VO=-10dBm
- mW
1000 7 5 3 2
80
=10 CREF
0F
F 22
Power dissipation, Pd
V
.0 =6 CC
V
60
5.0
100 7 5 3 2 23 5 7 1.0 2 3 5 7 10
V
40
20
2
3
5 7 100
2
3
0 2 3 5 7 100 2 3 5 7 1k 2 3 5 7 10k 2 3 57
Output power, PO - mW
Frequency, fIN - Hz
No.4033-5/9
LA4536M
--20 --30 --40
SVRR - VCC
Output noise voltage, VNO - V
VR=-20dBm fR=-100Hz Rg=1k
100 7 5 3 2 10 7 5 3 2 0.1 7 5 3 2
VNO - VCC
Flat Rg=0 Rg=1k RL=16
Ripple rejection, SVRR - dBm
--50 --60 --70 --80
DIN Rg=0
CREF=22F
--90 --100 0
1
2
3
4
5
6
7
8
0
1
2
3
4
5
6
7
8
Supply voltage, VCC - V
100 7
Supply voltage, VCC - V
1.2
VNO - Rg
Pin off voltage, VPIN(OFF) - V
RL=16 VCC=5.0V
VPIN - VCC
VIN=0 Rg=1k Pin V5 0.1V
Output noise voltage, VNO - V
5 3 2
1.0
Flat
0.8
0.6
10 7 5 3 22 3 5 7 100 2 3 5 7 1k 2 3 5 7 10k 2 3 5 7
OFF ONON Pin 1 (P/SW)PWR is OFF
Pin 10 (MT) MT is
DIN AUDIO
0.4
0.2
0
0
1
2
3
4
5
6
7
8
Signal source impedance, Rg -
Supply voltage, VCC - V RL=16(Dual Ope) tput 0% at ou Rg=1k THD=1 100 f=1kHz 7
5 3 2 10 7 5 3 2 1.0 7 5 3 2 0 3 2
1.0 7 5
IPIN(ON) - VCC
VIN=0 Rg=0 Pin V5 0.5V
Pin 10 (M T)
ICC - VCC
Pin on current, IPIN(ON) - A
0.1 7 5 3 2 0.01 7 5 3 2 0 1 2 3 4 5 6 7 8
Current drain, ICC - mA
3 2
No si
=0 gnal V IN
Pin 1 (P/SW)
I CM on Mute on C
1
2
3
4
5
6
7
8
Supply voltage, VCC - V
7 5 3 2 1.0 7 5 3 2 0.1 7 5 3 2 0.01 7 5 3 2 0 0 1 2 3 4 5 6 7 8 0 1
Supply voltage, VCC - V
4.0
ICCOP OFF - VCC
VIN=0 Rg=1k Mute switch on
VDC - VCC
Rg=1k VIN=0
Quiescent current, ICCOP OFF - mA
3.0
Voltage, VDC - V
PWR SW OFF
V5,V7,V9
2.0
V5 : VREF V7,V9 : POWER OUT
1.0
2
3
4
5
6
7
8
Supply voltage, VCC - V
Supply voltage, VCC - V
No.4033-6/9
LA4536M
200 180
PO - Ta
Voltage gain deviation, VG - dB
=6.0 VCC V
16
VG - Ta
VCC=5.0V VO=-10dBm RL=16 (Dual Ope) f=1kHz
14
Output power, PO - mW
160 140 120
5.0V
12
4.0V
100 80 60 40
10
8
20 --40
f=1kHz THD=10% RL=16 (Dual Ope)
--20 0 20 40 60 80 100
6
4 --40
--20
0
20
40
60
80
100
Ambient temperature, Ta - C
2.4 2.3 2.2
Ambient temperature, Ta - C
16 14 12 10 8 6 4 2 0 --40
VDC - Ta
Quiescent current, ICCO - mA
Rg=1k VIN=0 VCC=5.0V
ICCO - Ta
VIN=0 Rg=1k VCC=5.0V
Voltage, VDC - V
2.1 2.0 1.9 1.8 1.7 1.6 --40
--20
0
20
40
60
80
100
--20
0
20
40
60
80
100
Ambient temperature, Ta - C P.SW OFF VCC=5.0V
Ambient temperature, Ta - C
Output AC waveform, VIN=0
Output AC
waveform
P.SW DC waveform
P.SW DC waveform
P.SW OFF P.SW ON VCC=5.0V
P.SW OFF
Output AC waveform Output AC waveform, VIN=0
P.SW DC waveform
P.SW DC waveform
P.SW ON
P.SW ON
No.4033-7/9
LA4536M
M.SW OFF VCC=5.0V Output AC waveform Output AC waveform, VIN=0
M.SW DC waveform
M.SW DC waveform
1V/div M.SW OFF M.SW ON VCC=5.0V
M.SW OFF
Output AC waveform, VIN=0
Output AC waveform
M.SW DC waveform
M.SW DC waveform
1V/div M.SW ON
M.SW ON
Application Notes Popping noise reduction The switching sequence shown below can minimize the popping noise.
PWR.SW
VCC t3 PWR, Mute SW t1 t2
A11163
To minimize poping noise, the PWR mute switch should be turned on t1 (about 0.1s) after power-on and turned off t2 (about 0.1s) before power-off. Turn on and off the PWR mute switch by applying VCC with the PWR be in no state.
No.4033-8/9
LA4536M
Specifications of any and all SANYO products described or contained herein stipulate the performance, characteristics, and functions of the described products in the independent state, and are not guarantees of the performance, characteristics, and functions of the described products as mounted in the customer's products or equipment. To verify symptoms and states that cannot be evaluated in an independent device, the customer should always evaluate and test devices mounted in the customer's products or equipment. SANYO Electric Co., Ltd. strives to supply high-quality high-reliability products. However, any and all semiconductor products fail with some probability. It is possible that these probabilistic failures could give rise to accidents or events that could endanger human lives, that could give rise to smoke or fire, or that could cause damage to other property. When designing equipment, adopt safety measures so that these kinds of accidents or events cannot occur. Such measures include but are not limited to protective circuits and error prevention circuits for safe design, redundant design, and structural design. In the event that any or all SANYO products(including technical data,services) described or contained herein are controlled under any of applicable local export control laws and regulations, such products must not be expor ted without obtaining the expor t license from the authorities concerned in accordance with the above law. No part of this publication may be reproduced or transmitted in any form or by any means, electronic or mechanical, including photocopying and recording, or any information storage or retrieval system, or otherwise, without the prior written permission of SANYO Electric Co., Ltd. Any and all information described or contained herein are subject to change without notice due to product/technology improvement, etc. When designing equipment, refer to the "Delivery Specification" for the SANYO product that you intend to use. Information (including circuit diagrams and circuit parameters) herein is for example only ; it is not guaranteed for volume production. SANYO believes information herein is accurate and reliable, but no guarantees are made or implied regarding its use or any infringements of intellectual property rights or other rights of third parties.
This catalog provides information as of June, 2003. Specifications and information herein are subject to change without notice.
PS No.4033-9/9


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