M61510AFP RENESAS | Alldatasheet

Document overview

  • Manufacturer or author: Provided By www.digicamel.com(FREE DATASHEET DOWNLOAD SITE)
  • PDF pages: 23

Technical content

Features

  • Five-input selector
  • Input volume control (2 dB steps/3 bits)
  • Surround sound IC interface
  • Internal surround function (ON/OFF, High/Mid/Low)
  • Internal surround function (bass/mid/treble)
  • Internal loudness function
  • Main volume control (1 dB steps (0 to -80 dB, -∞ ))
  • Microcomputer interface Recommended Operating Conditions
  • Power supply voltage range: VCC = 4.5 to 5.5 V
  • Rated power supply voltage: VCC = 5 V System Block Diagram VOL OUT2 VOL OUT1 CLOCK DATA Microcomputer interface Tone control Surround sound IN A1 IN B1 IN C1 IN D1 IN E1 IN A2 IN B2 IN C2 IN D2 IN E2 Main volume A1 & loudness Main volume A2 & loudness Input volume Input volume Main volume B1 Main volume B2 Surround sound IC Surround sound IC

Rev.1.00, Aug.07.2003, page 2 of 22 Block Diagram and Pin Arrangement REF IN IN 1A IN 1B IN 1C IN 1D IN 1E INVOL OUT1 VSELA IN1 /REC-C1 VCC BI1 BO1 MI1 MO1 TRE1 VSELB OUT1 VOL IN1 LOUD1 VOL OUT1 DATA REC-B1/SUR2 REC-B2/SUR1 IN 2A IN 2B IN 2C IN 2D IN 2E INVOL OUT2 VSE LA IN2 /REC-C2 GND BI2 BO2 MI2 MO2 TRE2 VSELB OUT2 VOL IN2 LOUD2 VOL OUT2 CLOCK REF OUT VSELA OUT1VSELA OUT2 50k 50k 50k50k Volume input selector B1 Main volume A1 0 to -64dB,-∞ dB Main volume 1 0 to -16dB Main volume A2 0 to -64dB,-∞ dB 50k 25k 25k REF amp. Input volume 1 Input volume 2 Volume input selector A2 Volume input selector A1 50k Tone input selector 2 Tone input selector 1 Volume input selector B2 Microcomputer interfaceSurround sound Main volume 2 0 to -16dB 100k 100k 100k 100k 100k 100k 100k 100k 9.5k 9.5kD,E input ATT SW D,E input ATT SW REC-B SW REC-B SW REC-A SWREC-A SW REC-C SW REC-C SW SW41 SW42 A B A B A BAB A BAB A BAB 100k 100k 200k 200k 9.5k 9.5k Bass2 Loudness SW Loudness SW Mid2 Treble2 Bass1 Mid1 Treble1

Rev.1.00, Aug.07.2003, page 3 of 22 Pin Descliption Pin No. Pin Name Function

1 REF IN Reference amp input pin

2 REF OUT Reference amp output pin

3, 4, 5, 6, 7, 36, 37, 38, 39, 40 IN 1A, 1B, 1C, 1D, 1E, 2A, 2B, 2C, 2D, 2E Ch 1, 2 input selector input pins 8, 35 INVOL ONT1, 2 Input volume 1,2 output pins 9, 34 VSELA IN1, 2/REC-C1, 2 Volume input se lector A1, 2 input/REC-C1, 2 output pins 10, 33 VSELA OUT1, 2 Volume switching nois e reduction capacitor connection pins 11, 32 LOUD1, 2 Loudness circuitry frequency characteristic setting pins 12, 31 BI1, 2 Tone (bass) frequency characteristic setting pins 13, 30 BO1, 2 14, 29 MI1, 2 Tone (mid) frequency characteristic setting pins 15, 28 MO1, 2 16, 27 TRE1, 2 Tone (treble) frequency characteristic setting pins 17, 26 VSELB OUT1, 2 Volume input selector B1, 2 output pins 18, 25 VOL IN1, 2 Volume input pins 19, 24 VOL OUT1, 2 Volume output pins

20 VCC Power supply

21 DATA Serial data input pin

22 CLOCK Clock input pin for serial data transfer

23 GND GND

41 REC-B2/SUR1 REC-B2 output/surround external device connection pin

42 REC-B1/SUR2 REC-B1 output/surround external device connection pin

Rev.1.00, Aug.07.2003, page 4 of 22 Absolute Maximum Ratings Symbol Item Conditions Rating Unit VCC Power supply voltage 6.0 V Pd Internal power consumption Ta ≤ 25°C 960 mV K Thermal reduction rate Ta > 25 °C9 . 6 m V / °C Topr Operating temperature range −20~+75 °C Tstg Storage temperature −40~+125 °C Thermal Reduction Curve Ambient temperature Ta [˚C] Internal power consumption Pd (mW) 500 1000 0 25 50 75 100 125 150 960mW 480

Rev.1.00, Aug.07.2003, page 5 of 22 Recommended Operating Conditions (Unless otherwise specified, Ta=25°C) Item Symbol Condition MIN TYP MAX Units Power supply voltage VCC 4.5 5.0 5.5 V Logic "H" level input voltage VIH GND reference 2.4  VCC V Logic "L" level input voltage VIL GND reference GND  0.7 V Relation of Data and Clock Data signal read on clock rising edge Latch signal read on clock falling edge Latch signal: H CLOCK DATA D0 D1 D2 D3 D15 D16 D17

Rev.1.00, Aug.07.2003, page 6 of 22 Data Input Format (Data other than the following settings should not be sent) By changing the D14 and D15 slot setting states, any of four input formats can be selected. (However, each time the power is turned on, after sending the following MUTE release data, initial settings should be made for the data of all four formats.) REC-A ON : 1 OFF: 0 Loud- ness switch MUTE release data (X indicates any setting) (1) (2) Chip address 00Tone control mid Tone control bass Tone control treble (3) 0 0Second-stage main volume CH1 First-stage main volume CH1 01 0 0Second-stage main volume CH2 First-stage main volume CH2 10 (4) Volume input selector A 00Input selector Input volume 11 Volume input selec- tor B RE C-C ON : 1 OFF : 0 Surround 0 Note 1) Using external surround ("D5d=1", "D13d=0") → SW41, 42 settings fixed at B, REC-C SW fixed at OFF Using internal surround [1] ("D5d=0", "D13d=0") → SW41, 42 settings fixed at A, REC-B SW fixed at OFF, volume input selector A setting fixed at A. Note 2) The following settings are used to mute the output pin at power-on. Input selector = ALL OFF, external surround mode setting, REC-A to C SW=OFF, second-stage main volume =- ∞ (and, when D14=D15=1 and D16=D17=0, by setting D3d=D5d=1, mute can be similarly set) REC-B ON : 1 OFF: 0 Note 1) Using external surround E input ATT SW D input ATT SW Tone input selector Note2: Mute Vocal cut D/E input ATTSW -5/-8 dB D0a D1a D2a D3a D4a D5a D6a D7a D8a D9a D10a D11a D12a D13a D14 D15 D16 D17 D0b D1b D2b D3b D4b D5b D6b D7b D8b D9b D10b D11b D12b D13b D14 D15 D16 D17 D0c D1c D2c D3c D4c D5c D6c D7c D8c D9c D10c D11c D12c D13c D14 D15 D16 D17 D0d D1d D2d D3d D4d D5d D6d D7d D8d D9d D10d D11d D12d D13d D14 D15 D16 D17 D0d D1d D2d D3d D4d D5d D6d D7d D8d D9d D10dD11dD12dD13d D14D15D16D17 XXX 0 X 1 XX X X XXX 1 1 0 0 Note 1) Using internal surround [1] Note 3) Using internal surround [2] X Note 3) This function is added in the M61510AFP When using internal surround [2] ("D5d=0", "D13d=1") → SW41, 42 fixed at A, REC-B/C SW fixed at OFF, volume input selector A setting fixed at B It is the same as that of M61510FP *Regarding [1]/[2] when using internal surround *Using internal surround [1] (same function as in existing model M61510FP) In this mode only the internal surround function is used, and external circuitry is not used. *Using internal surround [2] (function unique to M61510AFP, added to this IC) In this mode the internal surround function is used, and in addition an external circuit is connected and used. (However, because REC-C is fixed at OFF, use as the REC output is not possible.)

Rev.1.00, Aug.07.2003, page 7 of 22 Setting Codes (Data other than the following settings should not be sent) Bypass D9d (3) Volume input selector A (1) Tone control (treble/mid/bass) Volume input selector A setting OFF Surround setting D3d (11) Surround 0 0 H L (12) Input volume 0 dB Input volume setting D6d D7d D8d 000 -2 dB -4 dB 1 1 -6 dB -8 dB -10 dB -12 dB -14 dB (9) Input selector A ch B ch C ch INPUT D0d D1d D2d 000 D ch ALL OFF 11 (2) Loudness OFF ON D12dLoudness (10) REC-A,B,C switch OFF ON D11d REC output D4d 10 0 E ch (5) Tone input selector External surround input Internal surround input D12c Tone input setting Bypass 0Bypass D10d (4) Volume input selector B Volume input selector B setting Tone 0dB D13b (6) E input ATT switch E input ATT switch -5/-8 d B (7) D input ATT switch *Controllable only when D5d=1 *Controllable only when D5d = 0 0dB D12b D input ATT switch -5/-8 d B D0a D1a D2a D3a 0dB - 2 dB - 4 dB - 6 dB - 8 dB + 2dB + 4dB + 6dB + 8dB D8a D9a DAa DBa D4a D5a D6a D7a Treble Mid Bass ATT amount (8) Vocal cut switch OFF D12a Vocal cut switch ON (13) D/E input ATT amount switch -5d B D13c D/E input ATT switch(*1) -8d B Data ABC D4d D9d *REC-B controllable only when D5d = 1 REC-C controllable only when D5d = 0 and D13d = 0 (*1) ATT amount when an Rin = 12 kΩ input resistance is connected to the D/E input pin

Rev.1.00, Aug.07.2003, page 8 of 22 (14) First-stage main volume 0dB -1dB -2dB -3dB -4dB -5dB -6dB -7dB -8dB -9dB -10dB -11dB -12dB -13dB -14dB -15dB -16dB ATT amount First stage volume CH1 First stage volume CH2 D0b D1b D2b D3b D4b D0c D1c D2c D3c D4c

Rev.1.00, Aug.07.2003, page 9 of 22 (15) Second-stage main volume 0dB -1dB -2dB -3dB -4dB -5dB -6dB -7dB -8dB -9dB -10dB -11dB -12dB -13dB -14dB -15dB -16dB -17dB -18dB -19dB -20dB -21dB -22dB -23dB -24dB -25dB ATT amount Second stage volume CH1 Second stage volume CH2 D6b D6c D7b D7c D8b D8c D9b D9c D10b D10c D11b D11c -26dB -27dB -28dB -29dB -30dB -31dB D5b D5c -32dB -33dB -34dB -35dB -36dB -37dB -38dB -39dB -40dB -41dB -42dB -43dB -44dB -45dB -46dB -47dB -48dB -49dB -50dB -51dB -52dB -53dB -54dB -55dB -56dB -57dB ATT amount Second stage volume CH1 Second stage volume CH2 D6b D6c D7b D7c D8b D8c D9b D9c D10b D10c D11b D11c -58dB -59dB -60dB -61dB -62dB -63dB -64dB -∞ dB 000001 D5b D5c

Rev.1.00, Aug.07.2003, page 10 of 22

Electrical Characteristics

(Unless otherwise specified, Ta = 25°C, VCC = 5.0 V, f = 1 kHz, the input main volume = 0 dB, surround and loudness are OFF, the volume input selector A, B settings =BYPASS, and tone input selector =BYPASS; see the application circuit example) (1) Power supply characteristics Ratings Item Symbol Conditions MIN TYP MAX Unit Circuit current Aldd No signal  35 60 mA (2) I/O characteristics (total) Ratings Item Symbol Conditions Min typ Max Unit Input resistance Rin 3 ~5 pin, 38~4 0 p i n 2 23 34 8k Ω VIMt (input to pins 3-5, 38-40) pin 19, 24 output, first stage main volume setting =-2 dB RL = 10 kΩ , THD = 1% 1.2 1.4  VrmsMaximum input voltage VIMtDE (pin 6, 7, 36, 37 i nput) pin 19, 24 output Note) Input resistance =12 kΩ , RL = 10 kΩ , THD = 1% D, E ch ATT switch = -8 dB setting, input VOL=-2 dB setting 2.8 4.4  Vrms Maximum output voltage VOMt (pin 3, 40 input) pin 19, 24 output, RL = 10 k Ω , THD = 1% 1.0 1.25  Vrms Pass gain Gvt Gain across (pins 3-6, 37-40)-pins 19, 24, Vi=0.5 Vrms, FLAT −2.0 0 2.0 dB Total harmonic distortion THDA (pin 3, 40 input) pin 19, 24 output, DIN-AUDIO, Vi=0.5 Vrms, RL = 30 kΩ ,  0.006 0.07 % THDB Volume input selector B settings THDA: bypass, THDB: tone  0.009 0.09 % pin 19, 24, Rg = 0 Ω , JIS-A Main volume setting =-∞  2.5 6 µVrmsNoA pin 19, 24, Rg = 0 Ω , JIS-A Main volume setting = 0 dB  51 0 µVrms pin 19, 24, Rg = 0 Ω , JIS-A Volume input selector B: tone  71 5 µVrms Output noise voltage NoB pin 19, 24, Rg = 0 Ω , JIS-A Volume input selector B: tone, tone input selector: surround  10 20 µVrms Crosstalk between channels CT Vo = 0.5 Vrms, RL = 10 k Ω , JIS-A, Across pins 19-24, Rg = 0 Ω , − 80 −65 dB Maximum volume attenuation ATTmax Vi = 1 Vrms, JIS-A, Main volume setting =-∞  − 80 dB Note: The 12 k Ω input resistance should be inserted in series with the pin.

Rev.1.00, Aug.07.2003, page 11 of 22 (3) Tone control characteristics (Unless otherwise specified, Vi=0.2 Vrms, 9.34 PIN input, 17.26 PIN output, volume input selector A: external surround input, tone input selector: BYPASS, volume input selector B: TONE). Ratings Item Symbol Conditions Min typ Max Unit Boost amount (bass) G(BASS)B f = 100 Hz Tone base set to +8 dB 6 8 10 dB Cut amount (bass) G(BASS)C f = 100 Hz Tone base set to -8 dB –10 –8 –6 dB Boost amount (mid) G(MID)B f = 1 kHz Tone mid set to +8 dB 6 8 10 dB Cut amount (mid) G(MID)B f = 1 kHz Tone mid set to -8 dB –10 –8 –6 dB Boost amount (treble) G(TRE)B f = 10 kHz Tone treble set to +8 dB 6 8 10 dB Cut amount (treble) G(TRE)B f = 10 kHz Tone treble set to -8 dB –10 –8 –6 dB Channel balance BALT When each boost amount is +8, -8 dB −20 + 2d B

Rev.1.00, Aug.07.2003, page 12 of 22 Explanation of Functions (1) Main volume This IC includes two independent low-distortion, low-noise electronic volume systems. The attenuation can be set from 0 dB to -∞ dB in 1 dB steps. Also, the attenuation can be set between 0 and -16 dB for the first stage, and between 0 and -64 dB for the second stage, and both can be controlled independently. Equivalent circuit diagram for main volumes 1, 2 VOL IN1,2 18,25p in VOL OUT1,2 19,24p in 0dB to -64dB:1dB steps Tone and surround block 0dB to -16dB: in 1dB steps VSELB OUT1,2 17,26 p in Volume input selector A Volume input selector B Switching noise-reduction capacitor VSELA OUT1,2 17,26 p in (2) Input selector, input volume Two channels of 5-input selectors, and two channels of input volume controls for input trimmers, are incorporated. The D and E inputs of the input selectors can select either 0 dB or -8 dB input levels for an input resistance of 12 kΩ using the ATT switch. The input volume can be set between 0 and -14 dB in 2 dB steps. 0dB to -14dB: 2dB steps To volume input selector A E input ATT SW (0dB/-8dB) 100k 100k 100k A B C D E 50k 9.5k Note 1) The input resistance for the D and E inputs changes according to the ATT SW setting as follows. D, E input ATT -8dB : 20 kΩ (TYP) 0dB : 60 kΩ (TYP) Note 2) When the input selector is A-C or E or is ALL OFF, the D input ATT SW is set to -8 dB. When the input selector is A-D or is ALL OFF, the E input ATT SW is set to -8 dB. 9.5k D input ATT SW (0dB/-8dB) 12k 12k Note 4) When the external 12 kΩ resistance is eliminated, the D and E input ATT amounts are set as follows. 0dBsetting: 1.87dB -8dBsetting: 0dB Note 3) The D and E input ATT amounts shown are the values when a D and E input resistance Rin=12 kΩ is connected.

Rev.1.00, Aug.07.2003, page 13 of 22 (3) Tone control equivalent circuit 3-1 Bass, mid (boost mode) f0 = Q ≅ Gv = 2 π R1(R2+R3)C1C2 C1+C2

1 C1C2R2

(Hz) (dB)R1 C1 C2 R2R3 3-2 Bass, mid (cut mode) IN OUT f0 = Q ≅ Gv = 2 π R1(R2+R3)C1C2 C1+C2 (Hz) (dB) C2 C1 R3R2 IN OUT *Internal resistance values (units: Ω ) <Boost> <Cut> Setting R2 R3 R2 R3 +2dB 10.6k 27.3k +4dB 19.1k 18.8k +6dB 25.8k 12.1k +8dB 31.1k 6.8k +2dB 10.6k 27.3k +4dB 19.1k 18.8k +6dB 25.8k 12.1k +8dB 31.1k 6.8k Setting

Rev.1.00, Aug.07.2003, page 14 of 22 3-3 Treble (boost) 3-4 Treble (cut) Gv = 20lo g R1+R2 R1 (dB) IN OUT Gv = 20lo g R1+R2 (dB) IN OUT 0dB +8dB 100 1k 10k Frequency f (Hz) <Characteristic curves> Bass Mid Treble +8 dB setting Tone voltage gain Gv (dB)-8dB –8 dB setting Setting R1 R2 +2dB 16.0k 4.4k +4dB 12.6k 7.8k +6dB 9.7k 10.7k +8dB 7.1k 13.3k R1 R2 –2dB 16.0k 4.4k –4dB 12.6k 7.8k –6dB 9.7k 10.7k –8dB 7.1k 13.3k *Internal resistance values (units: Ω ) <Boost> <Cut> Setting

Rev.1.00, Aug.07.2003, page 15 of 22 (4) Vocal cut equivalent circuit diagram This IC incorporates a circuit which uses a tone control midrange circuit to lower the midrange gain, to easily realize a vocal cut function. However, when the vocal cut function is on, the tone control midrange cannot be used. Vocal cut switch C2 C1 IN OUT 0dB +10dB 100 1k 10k Frequency f (Hz) Tone voltage gain Gv (dB) Tone voltage gain Gv (dB) <Characteristic curves> -30dB -20dB -10dB External resistances: The frequency characteristics when vocal cut is on can be set as shown below through the constants R1, C1, and C2. Vocal cut switch When vocal cut is on: switch off When vocal cut is off: switch on f0=550Hz Gv=-30dB 550 R2 R3 R2+R3=200kΩ 20lo g R2+R3 R1 +2 (dB) 2 π R1(R2+R3)C1C2 (Hz)f0 = Gv = 0dB +10dB 100 1k 10k Frequency f (Hz) -30dB -20dB -10dB f0=530Hz Gv=-20dB 550 R=3kΩ C1=C2=0.012µF 1. Emphasis on vocal cut characteristic R=10kΩ , C1=C2=6800pF 2. Emphasis on tone control mid characteristic Tone midrange waveform when vocal cut is off Vocal cut waveform when vocal cut is on Tone midrange waveform when vocal cut is off Vocal cut waveform when vocal cut is on 8dB setting 8dB setting

Rev.1.00, Aug.07.2003, page 16 of 22 (5) Loudness This IC incorporates a center-tap loudness circuit. VOL IN1,2 18,25p in VOL OUT1,2 19,24p in 0dB to -16dB: 1dB steps VSELB OUT1,2 17,26p in Volume input selector A Volume input selector B Loudness circuitry Loudness SW LOUD1,2 11,32pin Tone and surround block 0dB to -64dB:1dB steps <Characteristic curves> Frequency f (Hz) Voltage gain Gv (dB) -10dB 0dB -20dB -16dB 100 10k 1kfo=32 The loudness circuitry fo is determined by the 50 kΩ internal resistance and the external capacitor C, represented by the following equation. fo = 1/ (2π × 50kΩ × C) Hz When C = 0.1 µF, fo = 1/(2π × 50kΩ × 0.1µF) = 32 Hz (6) Equivalent circuit with surround on Ch2 Ch1 Out1 Out2 External 5k 5k 10k 5k5k 200k 200k

Rev.1.00, Aug.07.2003, page 17 of 22 (7) IC internal configuration (7-1) Using external surround (surround IC) <"D5d=1" → SW41, 42 fixed at B, REC-C SW fixed to OFF> Volume input selector B TONE SURROUND TONE Volume input selector B Input selector Input selector Volume input selector A Volume input selector A Tone input selector Tone input selector CH2 input CH1 input A B A B B A A B A B A B A B A B REC-A SW REC-A SW REC-C SW REC-B SW REC-B SW REC-C SW OUT2 OUT1 SW41 SW42 Fixed at B Surround IC REC-A OUT A B C D E A B C D E M61510AFP Surround IC REC-A OUT REC-B OUT Fixed at OFF Fixed at OFF (7-2) Using internal surround [1] <"D5d=0", "D13d=0" → Volume input selector A fixed at A, SW41, 42 fixed at A, REC-B SW fixed to OFF> Volume input selector B TONE SURROUND TONE Volume input selector B Input selector Input selector Volume input selector A Volume input selector A Tone input selector Tone input selector CH2 input CH1 input A B A B B A A B A B A B A B A B REC-A SW REC-A SW REC-C SW REC-B SW REC-B SW REC-C SW OUT OUT1 SW41 SW42 Fixed at A REC-A OUT A B C D E A B C D E M61510AFP Fixed at OFF Fixed at OFF Fixed at A Fixed at A REC-C OUT REC-A OUT REC-C OUT

Rev.1.00, Aug.07.2003, page 18 of 22 (7-2) Using internal surround [2] <"D5d=0", "D13d=1" → Volume input selector A fixed at B, SW41, 42 fixed at A, REC-B/C SW fixed to OFF> Volume input selector B TONE SURROUND TONE Input selector Input selector Volume input selector A Volume input selector A Tone input selector Volume input selector BTone input selector CH2 input CH1 input A B A B B A A B A B A B A B A B REC-A SW REC-A SW REC-C SW REC-B SW REC-B SW REC-C SW OUT2 OUT1 SW41 SW42 Fixed at A A B C D E A B C D E M61510AFP Fixed at OFF Fixed at OFF Fixed at B Fixed at B External circuit REC-A OUT External circuit REC-A OUT *M61510AFP Only

Rev.1.00, Aug.07.2003, page 19 of 22 Application Circuit Example Units Resistance : Ω Capacitance : F 0.1µ 0.1µ 8200p 8200p 2700p 2.2µ 0.1µ 7.5k 7.5k 0.1µ 0.1µ 8200p 8200p 2700p 2.2µ 0.1µ 7.5k 7.5k DATACLOCK 10µ 10µ 10µ10µ (1) Using external surround (surround IC) ("D5d=1" → SW41, 42 fixed at B) However, with these specifications, internal surround cannot be used. REC-A1 REC-B2 REC-B1 Surround IC Surround IC REC-A2 50k 50k 50k50k Volume input selector B1 Main volume 1 0 to -64dB,-∞ dB Main volume 1 0 to -16dB Main volume 2 0 to -64dB,-∞ dB 50k 25k 25k REF amp Input volume 1 Input volume 2 Volume input selector A2 Volume input selector A1 50k Tone input selector 2 Loudness switch Loudness switch Tone input selector 1 Volume input selector B2 Microcomputer interfaceSurround Treble 1Mid 1Bass 1 Main volume 2 0 to -16dB 100k 100k 100k 100k 100k 100k 100k 100k 9.5k 9.5kD,E input ATT SW D,E input ATT SW REC-B SW REC-B SW REC-A SWREC-A SW REC-C SW REC-C SW SW41 SW42 A B A B A BAB A BAB A BAB 100k 100k 200k 200k 9.5k 9.5k 12k 12k 12k 12k Treble 2Mid 2Bass 2

Rev.1.00, Aug.07.2003, page 20 of 22 Units Resistance : Ω Capacitance : F 0.1µ 0.1µ 8200p 8200p 2700p 2.2µ 0.1µ 7.5k 7.5k 0.1µ 0.1µ 8200p 8200p 2700p 2.2µ 0.1µ 7.5k 7.5k DATACLOCK REC-C1 10µ 10µ 10µ10µ (2) Using internal surround [1] <"D5d=0", "D13d=0" → SW41, 42 fixed at A, volume input selector A fixed at A> REC-A1 REC-C2 REC-A2 50k 50k 50k50k Tone input selector 1 Volume input selector B1 Main volume 1 0 to -64dB,-∞ dB Main volume 1 0 to -16dB Main volume 2 0 to -64dB,-∞ dB 50k 25k 25k REF amp Input volume 1 Input volume 2 Volume input selector A2 Volume input selector A1 50k Tone input selector 2 Volume input selector B2 Main volume 2 0 to -16dB 100k 100k 100k 100k 100k 100k 100k 100k 9.5k D,E input ATT SW D,E input ATT SW REC-B SW REC-B SW REC-A SWREC-A SW REC-C SW REC-C SW SW41 SW42 A B A B A BAB A BAB A BAB 100k 100k 200k 200k 9.5k 9.5k 12k 12k 12k 12k Treble 2Mid 2 Microcomputer interfaceSurround Bass 2 Loudness switch Loudness switch Treble 1Mid 1Bass 1

Rev.1.00, Aug.07.2003, page 21 of 22 Units Resistance: Ω Capacitance: F 0.1µ 0.1µ 8200p 8200p 2700p 2.2µ 0.1µ 7.5k 7.5k 0.1µ 0.1µ 8200p 8200p 2700p 2.2µ 0.1µ 7.5k 7.5k DATACLOCK 10µ 10µ 10µ10µ (2) Using internal surround [2] (also using external circuit) <"D5d=0", "D13d=1" → SW41, 42 fixed at A, REC-C switch fixed at OFF, volume input selector A fixed at B> 50k 50k 50k50k Tone input selector 2 Volume input selector B1 Main volume 1 0 to -64dB,-∞ dB Main volume 1 0 to -16dB Main volume 2 0 to -64dB,-∞ dB 50k 25k 25k REF amp Input volume 1 Input volume 2 Volume input selector A2 Volume input selector A1 50k Tone input selector 2 Volume input selector B2 Treble 1Mid 1Bass 1 Main volume 2 0 to -16dB 100k 100k 100k 100k 100k 100k 100k 100k 9.5k D,E input ATT SW D,E input ATT SW REC-B SW REC-B SW REC-A SWREC-A SW REC-C SW REC-C SW SW41 SW42 A B A B A BAB A BAB A BAB 100k 100k 200k 200k 9.5k 9.5k 12k 12k 12k 12k REC-A1 External circuit REC-A2 External circuit *M61510AFP only Treble 2Mid 2Bass 2 Loudness switch Loudness switch Surround Microcomputer interface

Rev.1.00, Aug.07.2003, page 22 of 22 Package Dimensions SSOP42-P-450-0.80 Weight(g) JEDEC CodeEIAJ Package Code Lead Material Cu Alloy+42 Alloy 42P2R-E Plastic 42pin 450mil SSOP Symbol Min Nom Max A b c D E L y Dimension in Millimeters HE .250 .050 .130 .317 .28 .6311 .30 .271 .02 .30 .150 .517 .48 .80 .9311 .50 .7651 .4311 .42 .40 .20 .717 .68 .2312 .70 .150 b2 — 0.5 — 0° 10 ° e e b2 Recommended Mount Pad —Z1 0.75 0.9 z MMP 42 22 211 HE E e y F A A2 A1 L c Detail F G b D Detail G z

© 2003. Renesas Technology Corp., All rights reserved. Printed in Japan. Colophon 1.0 Keep safety first in your circuit designs! 1. Renesas Technology Corp. 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) placem ent of substitutive, auxiliary circuits, (ii) use of nonflammable material or (iii) prevention against any malfunction or mishap. Notes regarding these materials 1. These materials are intended as a reference to assist our customers in the selection of the Renesas Technology Corp. 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 Renesas Technology Corp. or a third party. 2. Renesas Technology Corp. 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. 3. All 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 Renesas Technology Corp. without notice due to product improvements or other reasons. It is therefore recommended that customers contact Renesas Technology Corp. or an authorized Renesas Technology Corp. product distributor for the latest product information before purchasing a product listed herein. The information described here may contain technical inaccuracies or typographical errors. Renesas Technology Corp. assumes no responsibility for any damage, liability, or other loss rising from these inaccuracies or errors. Please also pay attention to information published by Renesas Technology Corp. by various means, including the Renesas Tech nology Corp. Semiconductor home page (http://www.renesas.com). 4. When 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. Renesas Technology Corp. assumes no responsibility for any damage, liability or other loss resulting from the information contained herein. 5. Renesas Technology Corp. semiconductors are not designed or manufactured for use in a device or system that is used under circumstances in which human life is potentially at stake. Please contact Renesas Technology Corp. or an authorized Renesas Technology Corp. product distributor when considering the use of a product contained herein for any specific purposes, such as apparatus or systems for transportation, vehicular, medical, aerospace, nuclear, or undersea repeater use. 6. The prior written approval of Renesas Technology Corp. is necessary to reprint or reproduce in whole or in part these materials. 7. If these products or technologies are subject to the Japanese export control restrictions, they must be exported under a license from the Japanese government and cannot be imported into a country other than the approved destination. An y diversion or reexport contrary to the export control laws and regulations of Japan and/or the country of destination is prohibited. 8. Please contact Renesas Technology Corp. for further details on these materials or the products contained therein. Sales Strategic Planning Div. Nippon Bldg., 2-6-2, Ohte-machi, Chiyoda-ku, Tokyo 100-0004, Japan http://www.renesas.com Renesas Technology America, Inc. 450 Holger Way, San Jose, CA 95134-1368, U.S.A Renesas Technology Europe Limited. Dukes Meadow, Millboard Road, Bourne End, Buckinghamshire, SL8 5FH, United Kingdom Tel: <44> (1628) 585 100, Fax: <44> (1628) 585 900 Renesas Technology Europe GmbH Dornacher Str. 3, D-85622 Feldkirchen, Germany Tel: <49> (89) 380 70 0, Fax: <49> (89) 929 30 11 Renesas Technology Hong Kong Ltd. 7/F., North Tower, World Finance Centre, Harbour City, Canton Road, Hong Kong Tel: <852> 2265-6688, Fax: <852> 2375-6836 Renesas Technology Taiwan Co., Ltd. FL 10, #99, Fu-Hsing N. Rd., Taipei, Taiwan Renesas Technology (Shanghai) Co., Ltd. 26/F., Ruijin Building, No.205 Maoming Road (S), Shanghai 200020, China Renesas Technology Singapore Pte. Ltd. 1, Harbour Front Avenue, #06-10, Keppel Bay Tower, Singapore 098632 Tel: <65> 6213-0200, Fax: <65> 6278-8001 RENESAS SALES OFFICES