Ordering number : ENA0314A Monolithic Linear IC LA42052 Audio Output for TV application 5W × 2ch Power Amplifier Overview LA42052 is 5W 2-channel AF power amplifier intended for televisions. Functions • 5W × 2 channels (VCC = 18V, RL = 8Ω) • Standby function • Pop noise reduction function • Ripple filter • Thermal protection circuit LA42000 series is power IC which made Pin compatible altogether in 5 to 15W. They consist of four kinds of power ICs (mono, stereo, mono with volume function, stereo with volume function. They realized PCB layout communalization of an audio power block of TV). Model name PO LA42051 5W LA42052 5W LA42351 5W LA42352 5W LA42071 7W Channel Monaural Volume Stereo { { { { { { { LA42072 7W { LA42152 15W { Any and all SANYO Semiconductor Co.,Ltd. products described or contained herein are, with regard to "standard application", intended for the use as general electronics equipment (home appliances, AV equipment, communication device, office equipment, industrial equipment etc.). The products mentioned herein shall not be intended for use for any "special application" (medical equipment whose purpose is to sustain life, aerospace instrument, nuclear control device, burning appliances, transportation machine, traffic signal system, safety equipment etc.) that shall require extremely high level of reliability and can directly threaten human lives in case of failure or malfunction of the product or may cause harm to human bodies, nor shall they grant any guarantee thereof. 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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. 51408 MS PC/83006/42606 MS JK B8-7286 No.A0314-1/7 LA42052 Specifications Maximum Ratings at Ta = 25°C Parameter Symbol Maximum supply voltage Conditions VCC max Allowable power dissipation Pd max Maximum junction temperature Tj max Ratings unit No signal 24 V Infinitely heat sink 15 W 150 °C θjc Thermal resistance 3 °C/W Operating temperature Topr -25 to +75 °C Storage temperature Tstg -40 to +150 °C Operating Conditions at Ta = 25°C Parameter Symbol Conditions Ratings unit Recommended supply voltage VCC 18 V Recommended load resistance RL 8 Ω 5.5 to 22 V Allowable operating voltage range VCC op Electrical Characteristics at Ta = 25°C, VCC = 18V, RL = 8Ω, f = 1kHz, Rg=600Ω Parameter Symbol Ratings Conditions min Standby current ISTB Amplifier off Quiescent current ICCO Rg = 0 Output power PO Total harmonic distortion Voltage gain VO = 0dBm VNO Ripple rejection 4 33 Rg = 0, BPF = 20Hz to 20kHz SVRR 1 10 μA 50 100 mA 0.4 % 35 37 dB 0.05 0.25 50 60 60 CH Sep. Rg = 10kΩ, VO = 0dBm 50 Standby control voltage VSTB-H Amplifier on 1.0 (The Pin 5 voltage) VSTB-L Amplifier off W 0.15 Rg = 0, fR = 100Hz, VCCR = 0dBm Channel separation Input resistance max 5 PO = 1W VG Output noise voltage 18 THD = 10% THD Unit typ dB dB 5 0 Ri mVrms 21 V 0.5 V 39 kΩ 30 Package Dimensions unit : mm 3107B Pd max - Ta 2.4 1 13 0.5 2.0 1.15 1.0 min 4.5 (13.9) 2.0) 15.4max ( (10.0) 3.4 11.2 (11.8) C0.7 3.0 min 25.6 0.4 1.2 Allowable power dissipation, Pd max - W 18 16 15 14 12 11.7 Al heat sink Mounting Torque 39N⋅cm Flat washer Silicone greas applird Infinite heat sink. 100×100×1.5mm3 θj=3°C/W 10 8 6 5.8 50×50×1.5mm3 4 2 0 -20 No heat sink. 0 20 40 60 80 100 120 140 160 Ambient temperature, Ta - °C (0.8) SANYO : SIP13H No.A0314-2/7 LA42052 Block Diagram Standby VCC 5 7 Input amplifier Output amplifier IN1 2 12 OUT1 PRE 3 GND Thermal protection circuit 10 Power GND 8 OUT2 REF amplifier IN2 4 Input amplifier Output amplifier Ripple Filter Block Pop noise prevention Block 1 Ripple Filter 6 P.P Application Circuit Example LA42052 Ripple Filter 1 C3 + 100μF /16V * IN1 PRE GND IN2 STB 2 3 4 5 C1 1μF /10V * C2 1μF /10V P.P 6 C4 + 4.7μF /16V VCC OUT2 N.C. 7 8 9 C5 1000μF C6 /25V + 470μF /16V + RL PWR GND N.C. OUT1 N.C. 10 11 12 13 C7 + 470μF /16V RL No.A0314-3/7 LA42052 External Components C1, C2 : Input coupling capacitors, which are recommended to be 1.0μF or less. The input pin voltage 2VBE ( about 1.4V). Determine the polarity orientation of these capacitors based on the DC current from the circuit connected to the LA42052 front end. C3 : The recommended value for the Ripple filter capacitor is 100μF. C4 : The recommended value for the P.P capacitor 4.7μF. It is a capacitor for there being small Pop sound. C5 : Power supply capacitor. C6, C7 : The recommended value for the output capacitor is 470μF. 1. Standby Function (Pin 5) By means of controlling pin 5 to high and low, the power Supply can be set to ON and OFF. Control Voltage of pin 5 Pin 5 voltage Amplifier 0 to 0.5 OFF Standby ON 1.0 to 5.0 ON OFF When the impression voltage of VS is high, I want to stop 5 pin inflow current. Restriction resistance (RSTB) is inserted in a case. VS RSTB 2kΩ 5 2kΩ VS = 5V, RSTB = 5.1kΩ 5 pin inflow current = about 750µA 5 pin voltage = about 1.2V 2. Ripple filter and Mute function (Pin 1) Pin voltage is approx. 1/2 VCC The recommended value for the Ripple filter capacitor is 100µF. Muting : The output signal can be controlled by connecting pin 1(Ripple filter) to ground via a resistance of 300 to 500Ω. If resistance is higher than 750Ω, the suppression ratio will decrease. 3. Input Pin (Pin 2,4) Voltage at the input pins is approx. 2VBE(about 1.4V) Determine the polarity orientation of these capacitors based on the DC current from the circuit Connected to the LA42052 front end. Input resistance is approx. 30kΩ (typ) The recommended value for the input capacitor is 1.0µF. 4. P.P (Pin 6) The Pin 6 is Terminal for there being small pop sound at the time of power supply ON/OFF. C4 recommends 4.7µF. When capacitance is higher 10µF, the sound will not be cut off when setting the power supply OFF. VCC 5kΩ 6 VCC – VCE (about 0.3V) – 5.6V Pin 6 voltage = +5.6V 2 C4 + 4.7μF 5kΩ No.A0314-4/7 LA42052 Usage Notes 1. Lightening (power supply - output short-circuit) and ground fault (GND - output short-circuit) protective circuits are not incorporated. Due care must be taken during handling of the product. 2. The thermal protective circuit is incorporated and activated when the junction temperature (Tj) rises above about 160°C. This circuit controls the output gradually to the attenuated condition. 3. Always ensure the sufficient margin for the supply voltage, etc. to operate the product within the area where the maximum rating will never be exceeded. Namely, the maximum rating may be exceeded due to the slight change in conditions, resulting in damage, if the product is used around the maximum rating. No.A0314-5/7 LA42052 ICCO – VCC PO – VCC 10 RL = 8Ω Rg = 0 Rg = 600Ω f = 1kHz THD = 10% 8 60 Output power, PO – W Quiescent current, ICCO – mA 80 40 20 6 4 2 0 0 2 4 6 8 10 12 14 16 18 20 22 0 4 24 6 8 100 7 5 3 2 THD – PO 10 7 5 3 2 10kHz 1kHz 0.1 7 5 3 2 100Hz 0.01 0.1 3 5 7 2 1 3 5 7 3 2 22 3 2 1 7 5 3 2 0.1 7 5 3 2 2 3 5 7 100 2 3 –6 –8 – 10 VCC = 18V RL = 8Ω Rg = 600Ω VO = 0dBm (at f = 1kHz) – 14 – 16 2 3 5 7 100 2 3 5 7 1k 2 3 5 7 10k 2 3 Channel separation, CH Sep. – dB –4 – 12 5 7 1k 2 3 5 7 10k 2 3 5 7100k 2 3 5 7100k CH Sep. – f 0 0 Response – dB 20 Frequency, f – Hz –2 VCC = 18V RL = 8Ω VO = 0dBm Rg = 10kΩ – 10 – 20 – 30 – 40 ch2 →c h1 ch1 →c h2 – 50 – 60 – 70 5 7100k 10 2 3 5 7 100 2 3 Frequency, f – Hz 5 7 1k 2 3 5 7 10k Frequency, f – Hz VNO – Rg SVRR – VCC 0 VCC = 18V RL = 8Ω DIN AUDIO Ripple rejection ratio, SVRR – dB Output noise voltage, VNO – mVrms 18 10 7 5 10 10 Response – f 0.2 0.1 0 100 16 0.01 2 2 0.3 14 VCC = 18V RL = 8Ω Rg = 600Ω PO = 1W Output power, PO – W 10 12 THD – f 100 7 5 VCC = 18V RL = 8Ω Rg = 600Ω 1 7 5 3 2 10 Supply voltage, VCC – V Total harmonic distortion, THD – % Total harmonic distortion, THD – % Supply voltage, VCC – V RL = 8Ω Rg = 0Ω fr = 100Hz VCCR = 0dBm CVCC = 1μF – 10 – 20 – 30 – 40 – 50 – 60 – 70 – 80 2 3 5 7 1k 2 3 5 7 10k 2 3 Resistance for signal generation, Rg – Ω 5 7 100k 4 6 8 10 12 14 16 18 20 22 24 Supply voltage, VCC – V No.A0314-6/7 LA42052 – 10 – 20 SVRR – fr 0 VCC = 18V RL = 8Ω Rg = 0Ω VCCR = 0dBm CVCC = 1μF Ripple rejection ratio, SVRR – dB Ripple rejection ratio, SVRR – dB 0 – 30 – 40 – 50 – 60 – 70 – 80 10 2 3 5 7 100 2 3 5 7 1k 2 3 5 7 10k Ripple frequency, fr – Hz 8 Power dissipation, Pd – W 7 – 10 – 20 SVRR – VCCR VCC = 18V RL = 8Ω Rg = 0Ω fr = 100Hz CVCC = 1μF SVRR = 20log (VO/VCCR) – 30 – 40 – 50 – 60 – 70 – 80 0 0.2 0.4 0.6 0.8 1 1.2 1.4 1.6 1.8 2 2.2 Power supply ripple voltage, VCCR – Vrms Pd – PO RL = 8Ω Rg = 600Ω f = 1kHz 6 5 4 3 2 1 0 0.1 2 3 5 7 1 2 3 5 7 10 Output power, PO – W SANYO Semiconductor Co.,Ltd. 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 Semiconductor Co.,Ltd. products described or contained herein. SANYO Semiconductor Co.,Ltd. strives to supply high-quality high-reliability products, however, any and all semiconductor products fail or malfunction with some probability. It is possible that these probabilistic failures or malfunction could give rise to accidents or events that could endanger human lives, trouble that could give rise to smoke or fire, or accidents 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 Semiconductor Co.,Ltd. products described or contained herein are controlled under any of applicable local export control laws and regulations, such products may require the export license from the authorities concerned in accordance with the above law. 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SANYO Semiconductor Co.,Ltd. shall not be liable for any claim or suits with regard to a third party's intellctual property rights which has resulted from the use of the technical information and products mentioned above. This catalog provides information as of May, 2008. Specifications and information herein are subject to change without notice. PS No.A0314-7/7