Part Number Hot Search : 
ARD5004H MAX9158 214013 120M20 G15N120 741G07 1800A PSN0930A
Product Description
Full Text Search
 

To Download M61503 Datasheet File

  If you can't view the Datasheet, Please click here to try to view without PDF Reader .  
 
 


  Datasheet File OCR Text:
 MITSUBISHI SOUND PROCESSORS
M61503FP
TONE CONTROL/VOLUME CONTROL
DESCRIPTION
The M61503FP is a sound controller IC with the "BBE sound" sound technology. It can realize articulation of reconstruction sound by BBE surround built-in reproduce tone more naturally.
(Note) This device is producted under license from BBE sound Lab,Inc.(USA) and avilable to only licenses.
FEATURES
Built-in "BBE surround" sound technology Electronic volume. 0 ~ -84dB,the infinitesimal 2-band tone control Bass(0 ~ +21dB/3dB STEP) Treble(0 ~ +9dB/3dB STEP)
RECOMMENDED OPERATING CONDITIONS
Supply voltage range + 2.25~+ 2.75V
SYSTEM BLOCK DIAGRAM
MIC AMP REC OUT1 MIC MIC ALC TAPE CH2 INPUT TUNER CD AUX TAPE TUNER CD AUX
Electronic vol
REC OUT2
VOLUME
Treble
Bass
POWER AMP
4-mode selector (stereo/ mono SW)
BBE
Electronic vol
SPEAKER
Treble
Bass
CH1 INPUT
MITSUBISHI ELECTRIC
(
1 / 11 )
BLOCK DIAGRAM
INA1 INB1 INC1 IND1 INE1
1 Mono.SW 2 3 4 5 VOL VOL
24 23 22 21 20
INA2 INB2 INC2 IND2 INE2
MUTE
Treble boost
Treble boost
BBE HP 1 BBE LP1 TONEH1 TONEL1
6
19
BBE HP 2 BBE LP2 TONEH2 TONEL2 OUT 2 VSS CONT
BBE
7 8 9 10 11 12 Control logic
Bass boost Bass boost
18
ATT
ATT
17 16 15 14 13
OUT 1 GND VDD
Units Resistance :ohm Capacitance: F MITSUBISHI ELECTRIC
(2
/ 11
)
PIN DESCRIPTION
Pin No. Name Function
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24
IN A1 IN B1 IN C1 IN D1 IN E1 BBE HP1 BBE LP1 TONEH1 TONEL1 OUT1 GND VDD CONT VSS OUT2 TONEL2 TONEH2 BBE HP2 BBE LP2 IN E2 IN D2 IN C2 IN B2 IN A2
INPUTs of the channel 1 The swich of INE can be controlled independently. Please set"ALL OFF"mode when the switch of E is only ON. BBE high pass filter 1 BBE low pass filter 1 Treble control adjustment of the channel 1 Bass control adjustment of the channel 1 OUTPUT of the channel 1 Ground Supply voltage(+) Control data input from a microcontroller Supply voltage(-) OUTPUT of the channel 2 Bass control adjustment of the channel 2 Treble control adjustment of the channel 2 BBE high pass filter 2 BBE low pass filter 2 The swich of INE can be controlled independently. Please set "ALL OFF" mode when the switch of E is only ON. INPUTs of the channel 2
MITSUBISHI ELECTRIC
(
3
/ 11
)
ABSOLUTE MAXIMUM RATONGS (Ta=25 C,unless otherwise noted)
Symbol
VDD-VSS K Pd Topr Tstg
Parameter
Supply voltage Thermal derating Power dissipation Operating temperature Storage temperature
Test conditions
Note:1
Rating
6.0 5 500 -20 ~ 75 -40 ~ 125
Unit
V mW/ C mW C C
Thermal derating(maximum rating)
0.75
Note.1 reference PC Board
Size :70mmX70mm Thickness:1.6mm Material :glass epoxy
0.5 Copper pattern dimension Width :0.25mm Length :25 ~ 30mm/lead Thickness:18um
0.25
0 0 25 50 75 100 125 150 Ambient temperature Ta [ C ]
Recommended operating conditions
Symbol
VDD VSS CONT
Parameter
Supply voltage(+) Supply voltage(-)
Control date input voltage
Pin No.
12 14 13
Condition
min.
2.25 -2.75 GND
Limits typ.
2.5 -2.5
max.
2.75 -2.25 VDD
Unit
V
MITSUBISHI ELECTRIC
(4
/ 11
)
CONTROL SIGNALS SPECIFICATION Threshold of the internal (1) Wave form DATA(H/L)
Dn+0 (CLOCK, H DATA, M STROBE) L Dn+1 Dn+10 t Dn+11
or
Threshold of the internal STROBE.
1.25V 0V DATA:L DATA:H
2.5V t WH tr tf tr t WH tf t WL t WH tr
2.5V
Threshold of the internal CLOCK.
The internal DATA latch at the falling edges of this clock signal.
(2) Voltage control signal
Digital input signal
L signal M signal H signal L M H
Condition
VDD=2.5V,VSS=-2.5V VDD=2.5V,VSS=-2.5V VDD=2.5V,VSS=-2.5V
min.
GND 1.0 2.1
Limits typ.
1.25 (VDD/2)
max.
0.4 1.5 VDD
Unit
V
(3) Timing control signal
Symbol
t cr t WH t WLC tr tf
Parameter
Cycle time of digital signal Pulse width of digital signal("H"level) Pulse width of digital signal("L"level) Rise time of digital signal Fall time of digital signal
Limits min typ max Unit
4 1.6 1.6 0.4 0.4 usec
(4) Control signal example(Refer to page 6 on the control data)
An example of the mode control VOL/TREBLE SHARE AMP GAIN:20dB INPUT :INA, VOLUME :0dB MUTE :OFF BBE EFFECT:High level(+3dB) MODE:STEREO BASS:18dB TREBLE:6dB RECOUT:ON(INE)
(MSB)
2.5V 1.25V 0V (GND)
D111 D131 D01 D11D21D31 D41D51D61D71D81D91D101 D121 STROBE
D112 D132 D02 D12 D22D32 D42D52D62D72D82D92 D102 D122 STROBE
MITSUBISHI ELECTRIC
(5
/ 11
)
CONTROL DATA FORMAT
*It's nessesary to set up the all control data affer power on.
(1) INPUT DATA
(MSB)
D01 Slot1 0 Input order D11 0 D21
0:20dB 1:18dB 2:16dB 3:14dB
D31
D41
INPUT 0:IN A 1:IN B 2:IN C 3:IN D
D51
D61
D71
D81
D91 D101 D111
MUTE ON/OFF
D121 D131
CHIP/SLOT SELECT
Vol/Treble share amp gain S W
D2 to D6:(a)Master volume condition
0:OFF 1:ON
(INPUT ALL OFF)
0:select 1:no select 2:no select 3:no select
D02 Slot2 0
D12 0
D22
D32
D42
D52
D62
D72
D82
D92 D102 D112
IN E
D122 D132
CHIP/SLOT SELECT
BBE effect
Mode select 0:stereo 1:mono1 only 2:mono2 only 3:mono1+2
Bass(boost) 0:0dB, 1:3dB, 2:6dB, 3:9dB, 4:12dB, 5:15dB, 6:18dB, 7:21dB
Treble(boost) 0:0dB,1:3dB 2:6dB,3:9dB
ON/OFF
0:OFF 1:ON
0:no select 1:no select 2:no select 3:select
(a)Master volume
ATT
-0.0dB -2.0dB -4.0dB -6.0dB -8.0dB -10.0dB -12.0dB -14.0dB -16.0dB -18.0dB -20.0dB -22.0dB -24.0dB -26.0dB -28.0dB -30.0dB -32.0dB -34.0dB -36.0dB -40.0dB -44.0dB -48.0dB -52.0dB -56.0dB -60.0dB -64.0dB -68.0dB -72.0dB -76.0dB -80.0dB -84.0dB
the infinitesimal
(b) Input select
D71
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
D61
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
D81
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
D91
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
D101
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
Input select IN A IN E IN B IN C off IN D
IN A to D all OFF
D41
0 1 0 1 A: 0 B: 1 C: 0 D: 1
D51 D111 D112
0 0 1 1 0 0 1 1
0 1 0
0 1 *1
*2
*
*
IN A-D select
IN E on
1
*1) The input impedance is about 5k as input INE. *2) INE can be controlled independently. It can be used as Rec output.
(c)Mode control
Mode stereo mono1 only mono2 only mono1+2
(d)Treble control
D52 0 0 1 1
Treble
D42 0 1 0 1
D92 D102 0 1 0 1 0 0 1 1
0dB 3dB 6dB 9dB
(e)Bass control
Bass
D62 0 1 0 1 0 1 0 1
D72 D82 0 0 1 1 0 0 1 1 0 0 0 0 1 1 1 1
(f)Chip/Slot control
Chip/Slot
select(slot1)
0dB 3dB 6dB 9dB 12dB 15dB 18dB 21dB
D12* 0 1 0 1
D13* 0 0 1 1
no select no select
select(slot1)
(g)Treble amp gain SW
Gain SW
(i)BBE effect
Effect
D21
0 1 0 1
D31
0 0 1 1
D22
0 1 0 1
D32
0 0 1 1
20dB 18dB 16dB 14dB
Bypass
BBE1 high level +3dB BBE2 high level +7dB BBE3 high level +11dB
MITSUBISHI ELECTRIC
(
6
/ 11
)
(2) NOTICE OF CONTROL DATA 1.Input only the control data at (1) INPUT DATA. 2.It's necessary to set up the all control data after poweron,although the internal circuit is forced as belows,when (VDDVSS)<3.3V(TYP). = 3.The interval of data transmission from the microcontroller is over 0.1 sec.This is waiting time for soft-switching to reduce the shocknoise.
Parameter
Condition
18dB Gain SW Input select ALL OFF Master volume the infinitesimal ON(Input ALLOFF) MUTE BBE effect Bypass stereo Mode select 0dB Bass 0dB Treble ON IN E
MITSUBISHI ELECTRIC
(7
/ 11
)
ELECTRICAL CHARACTERISTICS
(VDD=2.5V,VSS=-2.5V,f=1kHz,Vi=100mV(rms),VOL=0dB,BASS=0dB,TREBLE=0dB,VOL/TREBLE SHARE AMP=18dB,SURROUND=BYPASS,RL=10K,Ta=25 C,unless otherwise noted)
Limits Symbol
IDD ISS Gv1 Gv2 Vomax THD No1 No2 ATTmax GB1 GB2 GB3 GB4 GB5 GB6 GB7 GT1 GT2 GT3 BBE1 BBE2
Low level boost(f=20Hz) High level boost(f=10kHz) Maximum attenuation
Parameter
Circuit current of positive power supply Circuit current of negative power supply Voltage gain (selector) Voltage gain (tone control) Maximum output voltage Total harmonic distortion
Condition Quiescent Quiescent
Vol/Treble share amp gain=18dB Bypass Vol/Treble share amp gain=18dB Q surround mode Vi=20mVrms RL=10k,THD=1% BW=400 ~ 30kHz JIS-A,Rg=5.1k,VOL=the infinitesimal BYPASS JIS-A,Rg=5.1k,VOL=the infinitesimal BBE3(High level+11dB) mode Output referencelevel(Vo=1Vrms), ATT= the infinitesimal ,JIS-A
min.
typ.
30 -30
max.
45 -45 20 29.5
Unit
mA mA dB dB Vrms
16 25.5 1.2
18 27.5 1.6 0.02 8 15 -95
0.08 20 40 -90 4.5 7.5 10.5 13.5 16.5 19.5 22.5 4.5 7.5 10.5
% uVrms uVrms dB
Output noise voltage
3dB 6dB 9dB Bass boost 12dB 15dB 18dB 21dB 3dB Treble boost 6dB 9dB
f=1kHz, Vo=80mVrms
1.5 4.5 7.5 10.5 13.5 16.5 19.5
3 6 9 12 15 18 21 3 6 9 3 11
dB
f=1kHz, Vo=80mVrms
1.5 4.5 7.5
f=20Hz,Vo=80mVrms f=10kHz,Vo=80mVrms
dB
MITSUBISHI ELECTRIC
(8
/ 11
)
FUNCTION DESCRIPTION
(1) Equivalent circuit of the bass boost
1 IN Fo= 2 1 C1+C2
(Hz)
R1(R2+R3)C1C2 C1C2R2 R1 R2+R3 R1 R3 R1 +2
(dB)
R3
R2
Q=.
.
9,16
10,15
(C1=C2)
TONEL
OUT C1 C2 R1
Gv=20log
+2
R2,R3 (typical)
Bass boost
3dB
6dB
9dB 12dB 15dB 18dB 21dB 46 0
Resistor (k)
R2 15.4 25.7 32.9 38.7 41.6 44.2 R3 30.6 20.3 13.1 7.3 4.4 1.8
(2) Equivalent circuit of the treble boost
IN OUT Fc=.
.
1 2
. .R2 C1 (Hz)
R1 Gv=20log R3 R2
1 Zc= j
R1+ (R2+Zc)//R3 (R2+Zc)//R3
(ohm)
(dB)
C1
8,17
R2 (typical)
Treble boost
TONEH
C1
3dB 5.3
6dB 2.2
9dB 1.2
R2 (k)
R1,R3 (typical)
Gain
14dB 16dB 18dB 20dB 10.88 13.65 17.21 21.60 2.72 2.57 2.48 2.40
R1 (k) R3 (k) MITSUBISHI ELECTRIC
(
9
/ 11
)
APPLICATION EXAMPLE
INA1 INB1 INC1 IND1 INE1
1 Mono.SW 2 3 4 5 VOL VOL MUTE
24 23 22
INA2 INB2 INC2 IND2 INE2
21 20
3900p
Treble boost
Treble boost
3900p
6
0.033u
19
BBE
7 18
0.033u
0.033u
0.033u
8
0.22u 2.2K 0.22u
ATT
ATT
17 16
0.22u 2.2K 0.22u
9 10 11 12 Control logic
Bass boost Bass boost
15 14
OUT1
OUT2
VSS= -2.5V
13
VDD=2.5V
Units
Resistor : ohm Capacitor: F
MITSUBISHI ELECTRIC
( 10
/ 11
)
OUTLINE
MITSUBISHI ELECTRIC
( 11
/ 11
)


▲Up To Search▲   

 
Price & Availability of M61503

All Rights Reserved © IC-ON-LINE 2003 - 2022  

[Add Bookmark] [Contact Us] [Link exchange] [Privacy policy]
Mirror Sites :  [www.datasheet.hk]   [www.maxim4u.com]  [www.ic-on-line.cn] [www.ic-on-line.com] [www.ic-on-line.net] [www.alldatasheet.com.cn] [www.gdcy.com]  [www.gdcy.net]


 . . . . .
  We use cookies to deliver the best possible web experience and assist with our advertising efforts. By continuing to use this site, you consent to the use of cookies. For more information on cookies, please take a look at our Privacy Policy. X