1/4 Structure Silicone monolithic integrated circuit Product name Audio sound processor for TV Model Name BD3869AF/BD3869AS ●Features 1. Built-in loudness linked to volume attenuation amount 2. Maximum of 3 channels can be used simultaneously with I2C BUS control at the control voltage of 3.3V-5.5V 3. Use the Bi-CMOS process ●Absolute Maximum Ratings Parameter Symbol Limits Unit Applied voltage VCC 10.0 V Input voltage Vin VCC+0.3~GND-0.3 V Pd 680 *1 750 *2 mW Operating temperature Topr -40~+85 *3 C Storage temperature Tastg -55~+150 C Power Dissipation BD3869AF BD3869AS *1 At Ta=25°C or higher, this value is decreased to 5.5mW/°C. Thermal resistance ja = 181.8 (°C/W). *2 At Ta=25°C or higher, this value is decreased to 6.0mW/°C. Thermal resistance ja = 166.7 (°C/W). When Rohm standard board is mounted. Rohm standard board: size: 70×70×1.6 (mm3) material: FR4 glass-epoxy substrate (copper foil area: not more than 3%). *3 As long as voltage stays within operating voltage range, certain circuit operation is guaranteed in the operating temperature range. Allowable loss conditions are related to temperature, to which care must be taken. In addition though the standard value of its electrical characteristics cannot be guaranteed under the conditions other than those specified, original functions are maintained. ●Operating Voltage Range Parameter Symbol Min. Typ. Max. Unit Power supply voltage *4 VCC 5.3 9.0 9.5 V Basic operation shall be available at Ta=25°C. *4 As long as temperature components must be set in accordance with the operating voltage and temperature ranges before using this IC. In addition, though the standard value of its electrical characteristics cannot be guaranteed under the conditions other than those specified, original functions are maintained. REV. C 2/4 ●Function Function Front volume Loudness Bass Treble Rear Volume Specifications From 0dB to -89dB(1dB step) Volume attenuation linked type 14dB(2dB Step), 14dB(2dB Step), From 0dB to-20dB(1dB step), -25dB,-30dB,-35dB-45dB,-60dB, MUTE ●Electrical characteristics Unless specified: Ta=25℃, VCC=9V, f=1kHz, Vin=1Vrms, Rg=600Ω, RL=10kΩ, A single input, Input gain 0dB, Volume = 0dB, middle 0dB, bass = 0dB, treble = 0dB, fader 0dB Limits Parameter Symbol Unit Conditions Min. Typ. Max. IQ - 3 7 mA Maximum input voltage VIM 2.2 2.5 - Vrms Front Volume = -6dB THD(Vout)=1% Maximum output voltage VOM 2.1 2.3 - Vrms THD=1% Voltage gain GV -2 0 2 dB Gv=20log(Vout/Vin) Channel balance CB -1.5 0 1.5 dB CB = Gv1-Gv2 Total harmonic distortion THD - 0.01 0.2 % Vout=1Vrms BPF=400-30kHz Output noise voltage VNO - 2.3 15 Vrms Circuit current upon no signal Residual noise voltage Cross talk 1ch→2ch Maximum attenuation VMNO - 1.4 10 Vrms CT 70 95 - dB ATTMAX - -114 -90 dB REV. C Vin=0Vrms BPF = IHF-A Rg=0Ω Front Volume = -89dB Rear Volume = -∞, BPF = IHF-A Rg=0Ω CT = 20log(Vin/Vout), BPF=IHF-A Front Volume = -89dB Rear Volume = -∞, ATTMAX=20log(Vout/Vin) BPF=IHF-A 3/4 ●Dimensional outline drawing BD3869AS BD3869AF Lot No. LOT No Lot No. . SOP-18 (Unit : mm) SDIP-18 (Unit : mm) ●Block diagram 18 16 17 FB22 15 FB12 FB11 FB21 14 13 12 OUT1 OUT2 VCC 11 10 SCL SDA I2 C BUS Logic MUTE BASS MUTE E M RU AL EO RV BASS R A E R VCC/2 25K E M U L O V 25K T N O R F E M U L O V E L B B E R T 1 FT2 2 LOUD1 IN2 IN1 3 T N O R F E L B B E R T E M U L O V FT1 4 5 REV. C LOUD2 CHIP 6 7 FILTER GND 8 9 4/4 ●Cautions on use (1) Numbers and data in entries are representative design values and are not guaranteed values of the items. (2) Although we are confident in recommending the sample application circuits, carefully check their characteristics further when using them. When modifying externally attached component constants before use, determine them so that they have sufficient margins by taking into account variations in externally attached components and the Rohm LSI, not only for static characteristics but also including transient characteristics. (3) Absolute maximum ratings If applied voltage, operating temperature range, or other absolute maximum ratings are exceeded, the LSI may be damaged. Do not apply voltages or temperatures that exceed the absolute maximum ratings. If you think of a case in which absolute maximum ratings are exceeded, enforce fuses or other physical safety measures and investigate how not to apply the conditions under which absolute maximum ratings are exceeded to the LSI. (4) GND potential Make the GND pin voltage such that it is the lowest voltage even when operating below it. Actually confirm that the voltage of each pin does not become a lower voltage than the GND pin, including transient phenomena. (5) Thermal design Perform thermal design in which there are adequate margins by taking into account the allowable power dissipation in actual states of use. (6) Shorts between pins and misinstallation When mounting the LSI on a board, pay adequate attention to orientation and placement discrepancies of the LSI. If it is misinstalled and the power is turned on, the LSI may be damaged. It also may be damaged if it is shorted by a foreign substance coming between pins of the LSI or between a pin and a power supply or a pin and a GND. (7) Operation in strong magnetic fields Adequately evaluate use in a strong magnetic field, since there is a possibility of malfunction. REV. C Notice Notes No copying or reproduction of this document, in part or in whole, is permitted without the consent of ROHM Co.,Ltd. The content specified herein is subject to change for improvement without notice. The content specified herein is for the purpose of introducing ROHM's products (hereinafter "Products"). If you wish to use any such Product, please be sure to refer to the specifications, which can be obtained from ROHM upon request. Examples of application circuits, circuit constants and any other information contained herein illustrate the standard usage and operations of the Products. The peripheral conditions must be taken into account when designing circuits for mass production. Great care was taken in ensuring the accuracy of the information specified in this document. However, should you incur any damage arising from any inaccuracy or misprint of such information, ROHM shall bear no responsibility for such damage. The technical information specified herein is intended only to show the typical functions of and examples of application circuits for the Products. ROHM does not grant you, explicitly or implicitly, any license to use or exercise intellectual property or other rights held by ROHM and other parties. ROHM shall bear no responsibility whatsoever for any dispute arising from the use of such technical information. The Products specified in this document are intended to be used with general-use electronic equipment or devices (such as audio visual equipment, office-automation equipment, communication devices, electronic appliances and amusement devices). The Products specified in this document are not designed to be radiation tolerant. While ROHM always makes efforts to enhance the quality and reliability of its Products, a Product may fail or malfunction for a variety of reasons. Please be sure to implement in your equipment using the Products safety measures to guard against the possibility of physical injury, fire or any other damage caused in the event of the failure of any Product, such as derating, redundancy, fire control and fail-safe designs. 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