Maintenance/ Discontinued

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1 ICs for Audio Common Use AN -W BTL audio power amplifier Overview The AN is an audio power amplifier IC with -ch output. The BTL (Balanced Transformer-Less) method can provide fewer external parts and more easy design for applications. Features -W output (8 Ω) with supply voltage of V On-chip standby function On-chip muting function Applications Televisions, radios, and personal computers Block Diagram Output Output GND (for output) 8 8 db 8 db Attenuator to Ripple rejection circuit Thermal shutdown Attenuator control.±..±. DIP8-P-K ±. Standby.±..89±.. Unit: mm.±. Input GND Mute includes following four Product lifecycle stage. planed Publication date: November SDCBEB

2 AN Pin Descriptions Pin No. Description Standby (standby state if this pin is open.) Input Ground (for input) Muting (muting on if this pin is open.) Supply voltage + Output Ground (for output ch.) 8 Output Absolute Maximum Ratings Parameter Symbol Rating Unit Supply voltage * V Supply current I CC. A Power dissipation * P D mw Operating ambient temperature * T opr to + C Storage temperature * T stg to + C Note) *: Except for the operating ambient temperature and storage temperature, all ratings are for T a = C. *: At no signal *: The power dissipation shown is the value for T a = C. Recommended Operating Range Parameter Symbol Range Unit Supply voltage. to. V Electrical Characteristics at =. V,, f = khz, T a = C ± C Parameter Symbol Conditions Min Typ Max Unit Quiescent circuit current I CQ V IN = mv ma Standby current I STB V IN = mv µa includes following four Product lifecycle stage. planed Output noise voltage * V NO R g = kω.. mv[rms] Voltage gain G V P O =. W db Total harmonic distortion THD P O =. W.. % Maximum output power P O THD = %.8. W Ripple rejection ratio * RR R g = kω, V R =. V[rms], f R = Hz db Output offset voltage V OFF R g = kω mv Muting effect * MT P O =. W 8 db Note) *: In measuring, the filter for the range of Hz to khz ( db/oct) is used. SDCBEB

3 AN Terminal Equivalent Circuits Pin No. Pin name Equivalent circuit Voltage Standby pin V Ω kω kω kω Input pin kω GND V Muting pin kω kω kω kω Ω Ω Ω µa kω kω kω µa To the shock sound prevention circuit V RF ( ) / To the constant current circuit includes following four Product lifecycle stage. planed Ref. =. V To Mute SDCBEB

4 AN Terminal Equivalent Circuits (continued) Pin No. Pin name Equivalent circuit Voltage. V + Output pin. V / 8 Ω kω Ω GND V 8 Output pin. V / 8 Ω kω Ω Ω Ω 8 Usage Notes Please avoid the short circuit to, ground, or load short circuit. Please connect the cooling fin with the GND potential. The thermal shutdown circuit operates at about T j = C. However, the thermal shutdown circuit is reset automatically if the temperature drops. Please carefully design the heat radiation especially when you take out high power at high. Please connect only the ground of signal with the signal GND of the amplifier in the previous stage. includes following four Product lifecycle stage. planed SDCBEB

5 AN Technical Data. Package power dissipation P D T a. Main characteristics Output power P O (W) 8 Power dissipation P D (mw) P O PO (8 Ω) 9 8 f = khz THD = % Hz HPF khz LPF Rg = kω VSTB = V VMUTE = V 8 Supply voltage (V) Independent IC without a heat sink Rth(j-a) = 8 C/W PD = 8 mw ( C) Ambient temperature T a ( C) 9 8 I CQ, I STB Quiescent circuit current I CQ (A) I STB I CQ 8 Supply voltage (V) R g = kω V STB = V/ V V MUTE = V includes following four Product lifecycle stage. planed 9 8 Standby current I STB (µa) SDCBEB

6 AN Technical Data (continued). Main characteristics (continued) P O, THD V IN P C, I CC P O Output power P O (W) Voltage gain G V (db) Voltage gain G V (db) = V f = khz Hz HPF khz LPF. R g = kω THD ( khz) V MUTE = V. Input voltage V IN (mv[rms]) G V, P O f P O THD ( khz). 9 8 GV PO = V.8 PO =. W Rg = kω THD = % VSTB = V RL = 8 Ω VMUTE = V Hz HPF khz LPF... Frequency f (Hz) G V, THD. THD Total harmonic distortion THD (%) Output power P O (W) Power consumption P C (W) Total harmonic distortion THD (%) P C (8 Ω) I CC (8 Ω) = V f = khz RL = 8 Ω Hz HPF khz LPF Rg = kω VSTB = V VMUTE = V THD Output power P O (W) THD f = V Rg = kω PO =. W VSTB = V RL = 8 Ω VMUTE = V Hz HPF khz LPF G V P O =. W f = khz Hz HPF khz LPF R g = kω V MUTE = V Total harmonic distortion THD (%). 8 Frequency f (Hz) RR includes following four Product lifecycle stage. planed Ripple rejection ratio RR (db) RR R g = kω V MUTE = V V RIPPLE = V[rms] f RIPPLE = Hz Supply current I CC (A) Supply voltage (V) Supply voltage (V) SDCBEB

7 AN Technical Data (continued). Main characteristics (continued) RR V RIPPLE RR f RIPPLE Ripple rejection ratio RR (db) Output noise voltage V NO (mv[rms]) Muting effect MT (db) 8 RR = V V MUTE = V khz LPF V RIPPLE = V[rms] R g = kω f RIPPLE = Hz 8 Power supply ripple voltage V RIPPLE (mv[rms]) V NO V NO VNO (FLAT) Supply voltage (V) MT MT R g = kω DIN audio filter V MUTE = V P O =. W f = khz RL = 8 Ω Hz HPF khz LPF Rg = kω VSTB = V VMUTE = V 8 Supply voltage (V) Ripple rejection ratio RR (db) Output noise voltage V NO (mv[rms]) 8 = V R g = kω V MUTE = V V RIPPLE = V[rms] f RIPPLE = Hz 8 Power supply ripple frequency f RIPPLE (Hz) V NO R g VNO (FLAT) Muting effect MT (db) V NO 9 8 Input impedance R g (Ω) MT V IN = V f = khz Hz HPF khz LPF R g = kω V MUTE = V RR VCC = V VSTB = V V MUTE = V R g = kω DIN audio filter includes following four Product lifecycle stage. planed MT Input voltage V IN (mv[rms]) SDCBEB

8 AN Technical Data (continued). Main characteristics (continued) Muting effect MT (db) MT f MT Frequency f (Hz). Example of PCB pattern Out + Out GND VCC = V P O =. W R g = kω V MUTE = V Quiescent circuit current I CQ (A) 8 8 I CQ V STB I CQ Standby voltage V STB (V) = V RL = 8 Ω Rg = kω VMUTE = V includes following four Product lifecycle stage. planed GND Mute V IN Standby 8 SDCBEB

9 AN Application Circuit Example Out 8 Ω µf 8 8 kω Standby kω kω V IN. µf kω Mute kω includes following four Product lifecycle stage. planed SDCBEB 9

10 Request for your special attention and precautions in using the technical information and semiconductors described in this book () If any of the products or technical information described in this book is to be exported or provided to non-residents, the laws and regulations of the exporting country, especially, those with regard to security export control, must be observed. () The technical information described in this book is intended only to show the main characteristics and application circuit examples of the products, and no license is granted under any intellectual property right or other right owned by our company or any other company. Therefore, no responsibility is assumed by our company as to the infringement upon any such right owned by any other company which may arise as a result of the use of technical information described in this book. () The products described in this book are intended to be used for standard applications or general electronic equipment (such as office equipment, communications equipment, measuring instruments and household appliances). Consult our sales staff in advance for information on the following applications: Special applications (such as for airplanes, aerospace, automobiles, traffic control equipment, combustion equipment, life support systems and safety devices) in which exceptional quality and reliability are required, or if the failure or malfunction of the products may directly jeopardize life or harm the human body. Any applications other than the standard applications intended. () The products and product specifications described in this book are subject to change without notice for modification and/or improvement. At the final stage of your design, purchasing, or use of the products, therefore, ask for the most up-to-date Product Standards in advance to make sure that the latest specifications satisfy your requirements. () When designing your equipment, comply with the range of absolute maximum rating and the guaranteed operating conditions (operating power supply voltage and operating environment etc.). Especially, please be careful not to exceed the range of absolute maximum rating on the transient state, such as power-on, power-off and mode-switching. Otherwise, we will not be liable for any defect which may arise later in your equipment. Even when the products are used within the guaranteed values, take into the consideration of incidence of break down and failure mode, possible to occur to semiconductor products. Measures on the systems such as redundant design, arresting the spread of fire or preventing glitch are recommended in order to prevent physical injury, fire, social damages, for example, by using the products. () Comply with the instructions for use in order to prevent breakdown and characteristics change due to external factors (ESD, EOS, thermal stress and mechanical stress) at the time of handling, mounting or at customer's process. When using products for which damp-proof packing is required, satisfy the conditions, such as shelf life and the elapsed time since first opening the packages. () This book may be not reprinted or reproduced whether wholly or partially, without the prior written permission of Matsushita Electric Industrial Co., Ltd. includes following four Product lifecycle stage. planed

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