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MITSUBISHI SOUND PROCESSOR ICs M61519FP AUDIO SIGNAL PROCESSOR WITH SURROUND DESCRIPTION M61519FP is the semiconductor integrated circuit for Home Audio. M61519FP includes 2ch electronic volume, Tone control, 4 Input Selector, Bass Boost, REC output and Mic Mixing. This IC is suitable for Mini Component. FEATURES * 2ch Master Volume (L,R Independent Control) Main Volume : 0dB to -76dB (2dB or 4dB step), - Trim Volume : 0dB to -15dB (1dB step) * Tone Control (Bass/Mid/Treble) 8dB(2dB step) * 4 Input Selector with Mute * Surround Function * Vocal Cut Function * Bass Boost Function * L+R Output for Spectrum Analysis Display * L+R Output for Subwoofer * MIC Mixing Function * 2 REC output with mute * Input ATT : -5/0/+5dB * Tone Input ATT : 0/-13dB * External Input ATT : +3/0/-3/-6dB Outline 42P2R-A 0.8mm pitch 450mil ssop (8.4mmX17.5mmX2.0mm) APPLICATION Mini/Micro Component ,Radio-Cassette Recorder with CD Player,etc. RECOMMENDED OPERATING CONDITIONS Supply voltage range........................8.0 to 10.0V Recommended supply voltage.....................9.0V SYSTEM BLOCK DIAGRAM RECA1/INex1 External Input ATT RECB1 MIC 4Input selector +Mute Bypass INA1 INB1 INC1 IND1 Input ATT Bypass Tone ATT -1 Tone control (Bass/Mid/Treble) Volume BASS BOOST OUT1 Vocal cut ON/OFF 4Input selector +Mute Surround Tone control (Bass/Mid/Treble) -1 Tone ATT Bypass Volume BASS BOOST INA2 INB2 INC2 IND2 Input ATT OUT2 Bypass SUR1/DPL1 SUR2/DPL2 External Input ATT SWOUT SAOUT MCU I/F RECA2/INex2 RECB2 DATA CLOCK MITSUBISHI ELECTRIC 1 MITSUBISHI SOUND PROCESSOR ICs M61519FP AUDIO SIGNAL PROCESSOR WITH SURROUND PIN CONFIGURATION AND BLOCK DIAGRAM REF REF 1 MIC 2 INA1 3 INB1 4 INC1 5 IND1 6 RECA1/INex1 7 RECB1 8 TMI1 9 Mid SW B A -6/-3/0/+3dB V1 V2 S1 S2 42 SUR1/DPL1 41 SUR2/DPL2 40 -5/0/+3.5dB A B -5/0/+3.5dB B SW A INA2 SW1 39 INB2 38 INC2 -6/-3/0/+3dB 37 IND2 36 RECA2/INex2 B 35 RECB2 34 TMI2 Mid 33 TMO2 S 1S 2 Surround or Dolby Pro Logic Buffer A SW3 TMO1 10 TCA1 11 SW2 A SW2 B B A C V2 0/-13dB 0/-13dB A Bass& Treble 32 TCA2 31 TCB2 30 TCC2 29 TOUT2 B SW4 28 VOLIN2 A SW5 B 27 BB_A2 26 BB_B2 25 OUT2 24 SWOUT TCB1 12 TCC1 13 Bass& Treble V1 A SW4 B C TOUT 14 VOLIN1 15 BB_A1 BB_B1 16 17 VOL(0 to -87dB ,-) VOL(0 to -87dB,-) A B SW5 OUT1 18 SAOUT 19 VCC 20 DATA 21 MCU I/F 23 GND 22 CLOCK MITSUBISHI ELECTRIC 2 MITSUBISHI SOUND PROCESSOR ICs M61519FP AUDIO SIGNAL PROCESSOR WITH SURROUND PIN DESCLIPTION Pin No. 1 2 3,4,5,6 37,38,39,40 41,42 7,8,35,36 9,10,33,34 11,12,13, 30,31,32 14,29 15,28 16,17,26,27 18,25 19 24 20 23 21,22 TCA,TCB,TCC TOUT VOLIN BB_A,BB_B OUT SAOUT SWOUT VCC GND DATA,CLOCK External pins for Bass/Treble (Shelving type) Output pins of tone control Input pins of electronic volume External pins for Bass boost Output pins Mix pins for spectrum Analyzer (L+R/2) Mix pin for super woofer Internal analog ,power pin for digital circuit Internal analog ,GND pin for digital circuit DATA for serial data,Clock input pin INA to IND SUR/DPL RECA/Inex,RECB TMI,TMO Input Selector External pins for surround,Switching use with DPL Input pin Output pins for REC,RECA can switch mute function and external Input pins (At external input,RECA Switch is fixed mute position.) External pins for Mid (sympathetic vibration type ) Symbol REF MIC Function Input pin of internal reference (REF=4.5V) Input pin of MIC Mixing MITSUBISHI ELECTRIC 3 MITSUBISHI SOUND PROCESSOR ICs M61519FP AUDIO SIGNAL PROCESSOR WITH SURROUND ABSOLUTE MAXIMUM RATINGS Symbol VCC Pd K Topr Tstg Parameter Supply voltage Power dissipation Thermal derating Operating temperature Storage temperature Ta < 25C = Ta > 25C Conditions Limits 10.5 850 8.6 -20 to +75 -40 to +125 Units V mW mW/ C C C THERMAL DERATING 1.0 0.85W Power Dissipation Pd [W] 0.75 0.5 0.42 0.25 0 0 25 50 75 100 125 150 Ambient Temperature Ta [C] MITSUBISHI ELECTRIC 4 MITSUBISHI SOUND PROCESSOR ICs M61519FP AUDIO SIGNAL PROCESSOR WITH SURROUND RECOMMENDED OPRETING CONFITION (Ta=25C, unless otherwise noted. ) Parameter Symbol Condition MIN TYP MAX Unit Supply Voltage AVDD 8 9 10 V Logic "H"level Input voltage Logic "L"level Input voltage VIH 2.2 5.5 V VIL 0 0.6 V RERATIONSHIP BETWEEN DATA AND CLOCK AND LATCH Latch signal="H" DATA D0 D1 D2 D3 D4 D5 D6 D7 D15 CLOCK DATA signal is read at the rising edge of CLOCK Latch signal is read at the falling edge of CLOCK MITSUBISHI ELECTRIC 5 MITSUBISHI SOUND PROCESSOR ICs M61519FP AUDIO SIGNAL PROCESSOR WITH SURROUND DATA TIMING(Recommended conditions) tcr CLOCK tr 75% 25% tf tWHC tWLC 75% DATA tSD tHD DIGITAL BLOCK TIMING REGULATION Limits typ Symbol tcr tWHC tWLC tr tf tSD tHD Parameter CLOCK cycle time CLOCK pulse width ("H"level) CLOCK pulse width ("L"level) CLOCK rise time CLOCK fall time DATA setup time DATA hold time Min 4 1.6 1.6 Max Unit 0.4 0.4 0.8 0.8 sec MITSUBISHI ELECTRIC 6 MITSUBISHI SOUND PROCESSOR ICs M61519FP AUDIO SIGNAL PROCESSOR WITH SURROUND DIGITAL CONTROL SPECIFICATION Prohibit using except specified Data code as follows. (At power on,initial position is mark's setting.) Input direction D0 A D1 D2 D3 D4 D5 D6 D7 D8 D9 D10 D11 D12 D13 D14 D15 Input Selector Tone Control SW Input ATT Tone Ccontrol Bass Vocal cut Tone ATT Tone bypass Mic MIX RECA/ External Input Surround/ DPLIN 0 0 B Tone control Mid Bass Boost 0 0 0 Tone control Treble 0 0 0 0 0 0 0 1 1 1 0 1 C Lch Trim Volume Lch Master Volume Rch Trime Volume D Rch Master Volume (1)Input selector Selector D0A D1A D2A INA INB INC IND Mute 0 0 0 0 1 0 0 1 1 * 0 1 0 1 * (5)MIC Mixing Mic Mixing OFF ON D8A 0 1 (8) Switching of Tone control Switching Lch and Rch Lch only Rch only D0B D1B 0 0 1 0 1 0 (6)RECA / External Input Switching D9A D10A D11A External Input Of f RECA-OFF RECA-ON +3dB 0 0 1 1 1 1 * * 0 0 1 1 0 1 0 (9)Tone control (Bass,Mid,Treble) Tone D2,6,10B D3,7,11B D4,D8,12B D5,D9,13B +8dB 1 1 1 1 0 0 0 0 0 1 0 0 0 0 0 0 0 1 0 1 1 0 0 0 1 1 0 0 1 0 1 0 1 0 1 0 (2)Input ATT Input ATT D3A -5dB 0dB +3.5dB 0 0 1 D4A 0 1 0 External Input ON +6dB 0dB -3dB -6dB 1 0 1 +4dB +2dB 0dB -2dB -4dB (3)Tone ATT * At external Input setting ,RECA is OFF. Tone ATT -13dB 0dB D5A 0 1 (7)Surround / DPLIN Switching D12A D13A Bypass Surround 0 0 1 0 1 0 -6dB -8dB (11)Bass boost Bass Boost D8C OFF ON 0 1 (4)Vocal cut & Tone bypass Switching Vocal cut OFF,Tone Bypass Vocal cut OFF,Tone ON Vocal cut ON,Tone Bypass D6A 0 0 1 D7A 0 1 * DPLIN MITSUBISHI ELECTRIC 7 MITSUBISHI SOUND PROCESSOR ICs M61519FP AUDIO SIGNAL PROCESSOR WITH SURROUND (10)Trim volume (Lch and Rch) Trim 0dB -1dB -2dB -3dB -4dB -5dB -6dB -7dB -8dB -9dB -10dB -11dB -12dB -13dB -14dB -15dB D0,4C 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1 D1,5C 0 0 0 0 1 1 1 1 0 0 0 0 1 1 1 1 D2,6C 0 0 1 1 0 0 1 1 0 0 1 1 0 0 1 1 D3,7C 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 Master 0dB -2dB -4dB -6dB -8dB -10dB -12dB -14dB -16dB -18dB -20dB -22dB -24dB -26dB -28dB -30dB -32dB -34dB -36dB -38dB -40dB -42dB -44dB -48dB -52dB -56dB -60dB -64dB -68dB -72dB -76dB -dB * Total level is fixed at -87dB, on condition that the total level of Trim and Master volume is under "-87dB". (example:Trim -15dB, Master -76dB Total level is -87dB) (12)Master volume(L,Rch) D0,5D 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 D1,6D 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1 D2,7D 0 0 0 0 1 1 1 1 0 0 0 0 1 1 1 1 0 0 0 0 1 1 1 1 0 0 0 0 1 1 1 1 D3,8D 0 0 1 1 0 0 1 1 0 0 1 1 0 0 1 1 0 0 1 1 0 0 1 1 0 0 1 1 0 0 1 1 D4,9D 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 MITSUBISHI ELECTRIC 8 MITSUBISHI SOUND PROCESSOR ICs M61519FP AUDIO SIGNAL PROCESSOR WITH SURROUND ELECTRICAL CHARACTERISTICS Unless otherwise noticed, Ta=25C,VCC=9V,f=1kHz,, Surround bypass,tone bypass and bass boost=OFF Parameter Voltage Analog positive power circuit current Input resistance Maximum input voltage Symbol Test Condition At VCC=9.0V,20 pin terminal current and no signal Input pin 3-6pin,37-40pin,2pin (3,40)pin IN,(8,35)pin OUT RL=10k, THD=1%,Input ATT=-5dB (3,40)pin IN,(18,25)pin OUT Bass boost ON,f=100Hz,RL=10k, THD=5% (3,40)pin IN,(7,8)(35,36)pin OUT RL=47k, THD=1%,Input ATT=+3.5dB At No signal,(18,25)pin OUT At No signal,(8,35)pin OUT Vi=1Vrms,FLAT, Gain from (3-18 pin) to (40-25 pin),Input ATT=0dB Vo=1Vrms,(18,25)pin OUT JIS-A,Vol.= - JIS-A,At no signal,Rg=0 (18.25)pin OUT Vol.=0dB Vol.=- Vrecno Distortion factor THD THDrec Cross talk between channels Bass voltage gain Mid voltage gain Trebble voltage gain Balance between channel Super woofa output gain MIX Signal CT CT rec Gbassb Gbassc Gmidb Gmidc Gtrebb Gtrebc BALton GvSW BW:400-30kHz,Vo=0.5Vrms,RL=10k BW:400-30kHz,Vo=0.5Vrms,RL=47k Vo.=0.5Vrms,RL=10k,JIS-A,Rg=0k Vo.=0.5Vrms,RL=47k ,JIS-A,Rg=0k -8dB +8dB -8dB f=1kHz -8dB +8dB f=10kHz -8dB At each boost value of -8dB and +8dB, Vo=1Vrms,(14,29)pin OUT f=100kHz Vi=1Vrms,FLAT, Gain from (3-18 pin) to (40-25 pin), Input ATT=0dB BW:400-30kHz,Vo=0.3Vrms,RL=47k 15pin IN,24pin OUT JIS-A,At no signal ,Rg=0,24pin OUT Vi=1Vrms,FLAT,Input ATT=0dB,3pin IN, 19pin OUT 6 -10 6 -10 -2 -10 -2 0.02 0.01 -70 -70 8 -8 8 -8 8 -8 0 0.05 0.05 55 55 10 6 10 6 10 6 2 % % dB dB dB dB dB dB dB dB dB JIS-A,At no signal,Rg=0W (8.35)pin OUT Min. 30 1.8 Limits Typ. Max. 25 60 2.2 40 90 Unit Alcc Rin VIM mA k Vrms VOM Maximum output voltage VrecOM Output terminal voltage Pass gain Maximum attenuation Vodc Vrecdc Gv ATT 1.8 2.2 - Vrms 1.6 4.0 4.0 -2.0 - 2.0 4.5 4.5 0.0 -92 10.0 4.0 6.0 5.0 5.0 2.0 -87 20.0 8 12 Vrms V V dB dB Vrms Vrms Vrms Input and Output Output noise voltage Vono Tone Control -8 -6.0 -4 dB distortion factor Output noise voltage Output gain for spectrum Analyzer Display THDSW VnoSW GvSP -8.0 0.03 20 -6.0 0.1 -4.0 % Vrms dB *Mix Signal Characteristics is provided only CH1 Input.(CH2 Rg=0) MITSUBISHI ELECTRIC 9 MITSUBISHI SOUND PROCESSOR ICs M61519FP AUDIO SIGNAL PROCESSOR WITH SURROUND FUNCTION DISCRIPTION (1)Equivalent circuit of tone control (a)Mid Boost Mode IN fo = + R3 R2 OUT 1 2 R1(R2+R3)C1C2 (Hz) C1 R1 C2 C1C2R2 R1 R2+R3 +2 R1 Gv = 20log R3 +2 R1 ~ Q= 1 C1+C2 R3=0 (C1=C2) (dB) Cut Mode IN + R2 OUT R3 fo = ~ Q= 1 2 R1(R2+R3)C1C2 1 C1+C2 C1C2R2 R1 (Hz) (R3=0) (C1=C2) (dB) C2 R1 C1 R3 +2 R1 Gv = 20log R2+R3 +2 R1 (b)Bass Boost Mode IN + R1 R2 OUT fo = R+R1 (Hz) 2 CR(R1+R2) R+R1+R2 R+R1 (dB) C R Cc Gv = 20log Cut Mode IN + R2 OUT R1 fo = R+R1 (Hz) 2CR(R1+R2) R+R1 R+R1+R2 (dB) C R Cc Gv=20log MITSUBISHI ELECTRIC 10 MITSUBISHI SOUND PROCESSOR ICs M61519FP AUDIO SIGNAL PROCESSOR WITH SURROUND (c)Treble Boost Mode IN + R1 R2 OUT fo = 1 (Hz) 2 CR1 R1+R2 R1 (dB) Gv = 20log C Cut Mode IN OUT R2 R1 fo = 1 (Hz) 2CR1 R1 R1+R2 (dB) Gv = 20log C (d)Characteristic Curve of Tone Control Tone control setting= +8, -8dB (Bass,Mid,Treble) This characteristic curve is as a result of circuit Simulation. MITSUBISHI ELECTRIC 11 MITSUBISHI SOUND PROCESSOR ICs M61519FP AUDIO SIGNAL PROCESSOR WITH SURROUND (2)Equivalent circuit of bass boost Input Output + - Q=4(G=10dB) G0 Decrease Circuit of Switching noise 0dB R1 f0 VOUT VIN C1 C2 K R2 K=1 Reference Table Q 1 2 4 5 10 G0 0 to 1dB 6dB 10dB 13dB 20dB The Internal IC have built-in R2 resistance.( R2 = 214k) fo = 1 2 R1R2C1C2 (Hz) Q= R1R2C1C2 R1(C1+C2)+(1-K)R2C2 Amplitude characteristic of secondary high pass filter *Characteristic Curve of bass boost R1=680,R2=214k, C1=C2=0.22F(fo *=* 60Hz,Q =* 8.9) * This characteristic curve is a result of circuit simulation. * MITSUBISHI ELECTRIC 12 MITSUBISHI SOUND PROCESSOR ICs M61519FP AUDIO SIGNAL PROCESSOR WITH SURROUND (3) Equivalent circuit of vocal cut Gain Setting CH1 Selector Input ATT Tone control Vocal Cut Output CH2 Selector Input ATT Tone control * Tone control cannot use at Vocal cut mode. * Tone control can use only Bass & Treble mode.(Mid mode is 0dB fixed.) Output difference of Tone control CH1 and CH2, The characteristic to cut only Middle part of Phase Input Signal is realized. * Characteristic curve example (Phase signal input CH1,CH2 ) * A; CH1 bass = +8dB,Treble = +8dB CH2 bass = +4dB,Treble = +4dB * B; CH1bass = +8dB,Treble = +8dB CH2bass = +4dB,Treble = +6dB A B MITSUBISHI ELECTRIC 13 MITSUBISHI SOUND PROCESSOR ICs M61519FP AUDIO SIGNAL PROCESSOR WITH SURROUND (4) Surround equivalent circuit 10k CH1 IN 10k External part 10k 10k CH1 OUT 0.047F 10k 10k 10k 10k CH2 IN CH2 OUT 10k * Characteristic curve example (Only CH1 Input) * This characteristic curve is the result as circuit simulation. Amplitude characteristic CH1OUT CH2OUT Phase characteristic CH1OUT CH2OUT MITSUBISHI ELECTRIC 14 MITSUBISHI SOUND PROCESSOR ICs M61519FP AUDIO SIGNAL PROCESSOR WITH SURROUND (5) Total equivalent circuit ( signal flow diagram ) (a) Surround bypass , Tone bypass , Bass boost ON Maximum Output Voltage (Typ:2.0Vrms) RECA RECB Selector(4+MUTE) Surround bypass Maximum output voltage ( Typ:2.2Vrms ) Tone Bypass Input ATT +3.5/0/-5dB INA to IND Surround Maximum Input Voltage ( Typ:2.2Vrms ) Mic Mix ( MIX level 0dB) Input ATT 0/-13dB Tone control OUT Volume Bass boost Output for Spectrum Analyzer(L+R/2) Super woofer output (L+R/2) (b) Surround ON, Tone ON, Bass boost ON Maximum Output Voltage(Typ:2.0Vrms) RECA RECB Selector(4+MUTE) Surround ON Maximum output voltage (Typ:2.2Vrms) Tone ON Input ATT +3.5/0/-5dB INA to IND Surround Maximum Input Voltage ( Typ:2.2Vrms ) Mic MIX(MIX level 0dB) Tone ATT 0/-13dB Tone control Volume OUT Bass boost Output for Super woofer (L+R/2) Output for Spectrum Analyzer(L+R/2) (c)DPL Input setting,Tone bypass, Bass boost ON Maximum output voltage(Typ:2.0Vrms) RECA DPLOUT Mute Selector(4+Mute) DPLSetting Maximum Output Voltage(Typ:2.2Vrms) Input ATT +3.5/0/-5dB Tone bypass INA to IND Maximum Input Voltage(Typ:2.2Vrms) Tone ATT 0/-13dB Tone Control Volume OUT Bass boost Mic MIX (MIX Level 0dB) Super woofer Output(L+R/2) Output DPLIN for Spectrum Analyzer(L+R/2) MITSUBISHI ELECTRIC 15 MITSUBISHI SOUND PROCESSOR ICs M61519FP AUDIO SIGNAL PROCESSOR WITH SURROUND (d)External Input Setting, Surround ON, Tone ON, Bass boost ON Maximum Output Voltage (Typ:2.0Vrms) INex RECB External Input ATT +3/0/-3/-6dB Selector (4+MUTE) Surround ON Maximum Output Voltage (Typ:2.2Vrms) Input ATT +3.5/0/-5dB Tone ON INA to IND Surround Maximum Input Voltage(Typ:2.2Vrms) MIC MIX (Mix Level 0dB) Tone ATT 0/-13dB Tone Control Volume OUT Bass boost Output for Supectrum Analyzer (L+R/2) Super woofer Output (L+R/2) (e) Vocal Cut ON,Surround Bypass,Bass boost ON Maximum Output Voltage (Typ:2.0Vrms) RECA RECB Maximum Output Voltage (Typ:2.2Vrms) Selector (4+MUTE) Vocal Cut ON Surround Bypass Input ATT +3.5/0/-5dB INA to IND Surround Maximum Input Voltage (Typ:2.2Vrms) Tone ATT 0/-13dB Volume OUT Bass boost Tone control MIC MIX (MIX Level 0dB) Output for Spectrum Analyzer (L+R/2) Super woofer Output(L+R/2) MITSUBISHI ELECTRIC 16 MITSUBISHI SOUND PROCESSOR ICs M61519FP AUDIO SIGNAL PROCESSOR WITH SURROUND APPLICATION EXAMPLE SW1; A:Vocal Cut OFF SW2; A:Surround SW3; A:Vocal Cut OFF B:Corresponded to Dolby Pro Logic B:Vocal Cut ON B:Vocal Cut ON C:Bypass SW4; A: Corresponded to Tone control B:Corresponded to Vocal Cut and Tone bypass 100 1 SW5 A:Bass boost OFF B:Bass boost ON At Input Dolby Pro Logic 10 10k 10 10k DPL1 DPL2 REF V1 V2 S1 S2 or At Surround ON 42 41 40 10 39 10 38 10 -6/-3/0/+3dB MIC 10 2 3 4 10 5 6 7 10 10 0.022 8 9 Mid 0.022 10 10k 11 SW2 Bass& Treble V1 A 14 10 15 0.22 16 17 18 10 A B SW5 SW4 B VOL(0 to -87dB,- ) -6/-3/0/+3dB 0.047 10k INA1 10 -5/0/+3.5dB -5/0/+3.5dB INA2 INB2 INC2 IND2 10 RECA2/INex2 10 INB1 INC1 IND1 RECA1/INex1 10 10 SW1 SW1 A B B A 37 S 1S 2 36 B Surround or Dolby Pro Logic Buffer A SW3 RECB1 B 35 34 Mid 33 0.022 10 0.022 RECB2 SW3 A 2.2k 2.2k SW2 10 C A B A B C V2 A Bass& Treble 32 31 30 4700p 29 10 28 A SW5 B 27 26 25 24 0.22 10k 10 0.047 0.047 12 13 4700p 0/-13dB 0/-13dB VOL(0 to -87dB,- ) B SW4 0.22 680 0.22 680 10 SWOUT SAOUT 19 VCC=9V OUT1 20 MCU I/F 10 10 23 22 CLOCK DATA 21 OUT2 MITSUBISHI ELECTRIC 17 42P2R-A Plastic 42pin 450mil SSOP Weight(g) 0.63 e b2 22 MMP Lead Material Alloy 42/Cu Alloy EIAJ Package Code SSOP42-P-450-0.80 JEDEC Code - 42 HE E e1 DETAILED DIAGRAM OF PACKAGE OUTLINE F Symbol 21 Recommended Mount Pad 1 A D L1 L MITSUBISHI ELECTRIC A2 y b G A1 e A A1 A2 b c D E e HE L L1 z Z1 y c Detail F b2 e1 I2 z M61519FP AUDIO SIGNAL PROCESSOR WITH SURROUND MITSUBISHI SOUND PROCESSOR ICs Z1 Detail G Dimension in Millimeters Min Nom Max 2.4 - - - - 0.05 - 2.0 - 0.5 0.4 0.35 0.2 0.15 0.13 17.7 17.5 17.3 8.6 8.4 8.2 - 0.8 - 12.23 11.93 11.63 0.7 0.5 0.3 - 1.765 - - 0.75 - - - 0.9 0.15 - - 0 - 10 - 0.5 - - 11.43 - - 1.27 - I2 18 MITSUBISHI SOUND PROCESSOR ICs M61519FP AUDIO SIGNAL PROCESSOR WITH SURROUND Keep safety first in your circuit designs! lMitsubishi Electric Corporation puts the maximum effort into making semiconductor products better and more reliable, but there is always the possibility that trouble may occur with them. Trouble with semiconductors may lead to personal injury, fire or property damage. Remember to give due consideration to safety when making your circuit designs, with appropriate measures such as (i) placement of substitutive, auxiliary circuits, (ii) use of nonflammable material or (iii) prevention against any malfunction or mishap. Notes regarding these materials lThese materials are intended as a reference to assist our customers in the selection of the Mitsubishi semiconductor product best suited to the customer's application; they do not convey any license under any intellectual property rights, or any other rights, belonging to Mitsubishi Electric Corporation or a third party. lMitsubishi Electric Corporation assumes no responsibility for any damage, or infringement of any third-party's rights, originating in the use of any product data, diagrams, charts, programs, algorithms, or circuit application examples contained in these materials. lAll information contained in these materials, including product data, diagrams, charts, programs and algorithms represents information on products at the time of publication of these materials, and are subject to change by Mitsubishi Electric Corporation without notice due to product improvements or other reasons. It is therefore recommended that customers contact Mitsubishi Electric Corporation or an authorized Mitsubishi Semiconductor product distributor for the latest product information before purchasing a product listed herein. The information described here may contain technical inaccuracies or typographical errors. Mitsubishi Electric Corporation assumes no responsibility for any damage, liability, or other loss rising from these inaccuracies or errors. Please also pay attention to information published by Mitsubishi Electric Corporation by various means, including the Mitsubishi Semiconductor home page (http://www.mitsubishichips.com). lWhen using any or all of the information contained in these materials, including product data, diagrams, charts, programs, and algorithms, please be sure to evaluate all information as a total system before making a final decision on the applicability of the information and products. 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