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 UNISONIC TECHNOLOGIES CO., LTD 3544
HEADPHONE AMPLIFIER FOR CD-ROMS
DESCRIPTION
As a dual headphone amplifier the UTC 3544 is digital-source. The UTC 3544 has a steady gain of 6dB and so it is unnecessary for external gain setting. The UTC 3544 has internal mute function so that it is greatly simplified for prevention of the popping sound when power is turned on and off. To prevent damage from short circuits the UTC 3544 is equipped with thermal shutdown circuit.
LINEAR INTEGRATED CIRCUIT
FEATURES
* Internal mute function to prevent popping sounds when *the power is turned on and off. * Built-in thermal shutdown circuit (150C) to prevent *damage to the IC if a short circuit occurs.
ORDERING INFORMATION
Ordering Number Lead Free Halogen Free 3544L-D08-T 3544G-D08-T 3544L-S08-R 3544G-S08-R Package DIP-8 SOP-8 Packing Tube Tape Reel
www.unisonic.com.tw Copyright (c) 2009 Unisonic Technologies Co., Ltd
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PIN DESCRIPTIONS
PIN NO. PIN NAME I/O PIN VOLTAGE
LINEAR INTEGRATED CIRCUIT
INTERNAL EQUIVALENT CIRCUIT
Vcc
FUNCTION
1
OUT1
O
2.1V
1
Output pin
10k
7
OUT2
O
2.1V (VCC=5V)
7
2
MUTE
I
0.1V (When open)
Mute control pin (set to low for prevention of popping noise when power is turned on and off). Operating: High Muting: Low(open)
Vcc
3
IN1
I
2.1V
3
Input pin
180k BIAS
5
IN2
I
2.1V (VCC=5V)
5
6
BIAS
I/O
2.1V (VCC=5V)
Bias pin (the external 47F capacitor also serves as the anti-pop time constant, therefore make the proper considerations be changing it).
4 8
GND VCC
I I
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www.unisonic.com.tw
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BLOCK DIAGRAM
LINEAR INTEGRATED CIRCUIT
UNISONIC TECHNOLOGIES CO., LTD
www.unisonic.com.tw
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ABSOLUTE MAXIMUM RATINGS (Ta=25C)
PARAMETER Applied Voltage Power Dissipation Derate above 25C
LINEAR INTEGRATED CIRCUIT
SYMBOL VMAX PD
RATINGS 7.0 450
UNIT V mW
4.5 mW/C Operating Temperature TOPR -25 ~ +75 C Storage Temperature TSTG -55 ~ +125 C 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.
RECOMMENDED OPERATING CONDITIONS (Ta=25C)
PARAMETER Power Supply Voltage SYMBOL VCC MIN 2.8 TYP MAX 6.5 UNIT V
ELECTRICAL CHARACTERISTICS (Ta=25C, VCC=5.0V, RL=32, VIN= -6dBV, f=1kHz)
PARAMETER Mute Pin Control Voltage Quiescent Current Voltage Gain Voltage Gain Difference Between Channels Total Harmonic Distortion Rated Output 1 Rated Output 2 Output Noise Voltage Channel Separation Mute Attenuation Ripple Rejection SYMBOL VTM IQ Gv Gv(DIFF) THD Po1 Po2 eN CS ATT RR CONDITIONS VIN=0Vrms MIN 0.3 4 4 -0.5 25 50 82 70 50 TYP 0.7 7 6 0 0.02 31 62 -93 90 80 57 MAX 1.6 10 8 0.5 0.1 UNIT V mA dB dB % mW mW dBV dB dB dB
BW=20~20kHz RL=32,THD<0.1% RL=16,THD<0.1% BW=20~20kHz,Rg=0 Rg=0 Rg=0 fRR=100Hz, VRR= -20dBV
-85
UNISONIC TECHNOLOGIES CO., LTD
www.unisonic.com.tw
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MEASUREMENT CIRCUIT
32 1 16 SW7 2 330
+
LINEAR INTEGRATED CIRCUIT
SW5 1 2 VIN2
V V2AC 1 47
+ +
A IQ SW8B
10
Vcc 8
OUT2 7
BIAS 6 BIAS 6dB
IN2 5
TSD SW8A VRR 6dB 1 2 + MUTE Vcc 32 SW1 16 1 2 V1AC V
+
90K + 90K
1 OUT1 VTM
2 MUTE
3 IN1 1 1 2
4
GND
330
SW3
VIN1
MEASUREMENT CONDITIONS
SIGNAL IQ VTM GVC Gvc THD Po1 Po2 VNO CS 1 1 2 1 1 1 1 1 2 2 2 1 1 2 2 1 2 2 2 1 2 1 2 1 1 1 2 1 1 1 1 1 2 2 2 2 2 2 2 1 ON ON ON ON ON ON ON ON V1AC,V2AC V1AC,V2AC V1AC,V2AC V1AC,V2AC V1AC,V2AC V1AC,V2AC V1AC,V2AC V1AC,V2AC fin=1kHz,VIN2= -6dBV, VTM=1.6V fin=1kHz,VIN1= -6dBV, VTM=1.6V fin=1kHz,VIN1/2= -6dBV, VTM=0.3VB VRR= -20dBV, fRR=100Hz 5 of 10
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SW1 1 1
SW3 1 2
SW TABLE SW5 SW7 1 1 2 1
SW8A 2 2
SW8B OFF ON
MONITOR IQ V1AC,V2AC
CONDITIONS
f=1kHz,VIN1/2=-6dBV, VTM=1.6V GVC1 - GVC2 fin=1kHz,VIN1/2= -6dBV, VTM=1.6V fin=1kHz,VIN1/2= -6dBV, VTM=1.6V fin=1kHz,VIN1/2= -6dBV, VTM=1.6V
ATT RR
UNISONIC TECHNOLOGIES CO., LTD
www.unisonic.com.tw
3544
CIRCUIT OPERATION
Rising edge timing
LINEAR INTEGRATED CIRCUIT
Rising period
A
Play period
A
Descending period
Vcc
B
C
OUT
VMUTE
A: MUTE period(use with MUTE=Low to prevent the popping noise when the power is turned on and off ). B: MUTE release time(used to prevent the popping noise at the release of MUTE with the external C 2 and R2 and therefore possesses a time constant ,so be careful of the timing). C: MUTE start time(also possesses a time constant like the MUTE release time ).
UNISONIC TECHNOLOGIES CO., LTD
www.unisonic.com.tw
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APPLICATION EXAMPLE
LINEAR INTEGRATED CIRCUIT
C6
Vcc + 330 + Vcc C1 8 OUT2 7
+
47 BIAS IN2 5 BIAS
1 VIN2
C3
6
TSD 6dB
90K +
6dB
+
90K
MUTE
C7
+ 330 VMUTE H:Active L:Mute
1 OUT1
2 MUTE
3 IN1
4 GND 1 VIN1
R2
100k
C2
1
C5
EXPLANATION OF EXTERNAL COMPONENTS
(1)Input coupling capacitor (C3 and C5) First determined by the low-band cut-off frequency. Because the input impedance is 180k for this IC, it can be determined by this formula C3(C5)=1/(2x180kxf) But make sure taking the fluctuations, ambient temperature, etc into consideration. A multi-layered ceramic capacitor is recommended. (2)BIAS capacitor(C6) 47F when Vcc=5V, and 33F when Vcc=3V. Before changing these values take the sufficient considerations.It is because the electrical characteristics will be adversely affected and popping noise may occur if the capacitance is lowered too much. (3)MUTE pin for anti-pop measures (R2 and C2) An impedance of 190k must be possessed with respect to GND, so the MUTE mode may become unable to be released if R2 is increased too much. (4)Output coupling capacitor(C1 and C7) Also determined by the low-band cutoff frequency. Like the output load resistance value RL (a resistor Rx will be inserted ,assuming that for output protection or current limiting), it can be calculated by this formula C1(C7)=1/(2x(RL+Rx) xf) (5)Input gain adjustment resistor(R3 and R4) External resistors R3 and R4 can perform input gain adjustment .The desired gain can be calculated by this formula Gv=6+20log(90k/(90k+R3))[dB]
UNISONIC TECHNOLOGIES CO., LTD
www.unisonic.com.tw
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TYPICAL CHARACTERISTICS
Quiescent Current vs. Power Supply Voltage 10 9
Quiescent Current, IQ (mA)
LINEAR INTEGRATED CIRCUIT
Pin DC Current vs. Power Supply Voltage 5 Ta=25 RL=32 5
Ta=25 RL=32
Bias DC Voltage, VBIAS (V)
7 6 5 4 3 2 1 0
MUTE: OFF
3
3
2
2
MUTE: ON
1
1
0 0 2 4 6 8 10 0 2 4 6 8 10 Supply Voltage, Vcc (V) Output Voltage vs. Mute Control Voltage Supply Voltage, Vcc(V) Voltage Gain vs. Frequency 8 Ta=25 RL=32 Vcc=5V VIN=0dBV f=1kHz 6 4 Voltage Gain, Gv (dB) 2 0 -2 -4 -6 -8 -10 0 0.4 0.8 1.2 1.6 2 -12 10 100 1k Frequency, F(Hz) Ta=25 RL=32 Vcc=5V 10k
0
10 0
Output Voltage, VOUT (dBV)
-10 -20 -30 -40 -50 -60 -70 -80 -90
100k
Mute Control Voltage, VTM (V)
Total Harmonic Distortion vs. Output Voltage ( I ) 10 Ta=25 RL=32 Vcc=5V 1 f=10kHz 0.1 f=1kHz 0.01 f=100Hz 0.001 -40 -10 0 -30 -20 Output Voltage, VOUT (dBV) 10
Total Harmonic Distortion vs. Output Voltage ( II ) 10 Ta=25 RL=32 Vcc=3V 1 f=10kHz 0.1 f=1kHz
0.01
f=100Hz
0.001 -40
-30
-10 0 -20 Output Voltage, VOUT (dBV)
10
UNISONIC TECHNOLOGIES CO., LTD
www.unisonic.com.tw
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Output DC Voltage, VOUT (V)
8
4
4
3544
TYPICAL CHARACTERISTICS(Cont.)
LINEAR INTEGRATED CIRCUIT
UNISONIC TECHNOLOGIES CO., LTD
www.unisonic.com.tw
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LINEAR INTEGRATED CIRCUIT
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.
UNISONIC TECHNOLOGIES CO., LTD
www.unisonic.com.tw
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