MITSUBISHI M62443FP

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SOUND CONTROLLER
Tone and Volume Controller with 4 Input Selector
OUTLINE
PACKAGE OUTLINE
M62443SP/FP is the tone and volume controller
with 4 input selector.
This IC can apply the broad application because of
low noise and distortion.
FEATURE
28 P 4 B ( SP )
(28pin Shrink DIP)
•TONE(Bass/Treble) control and 1dB step
volume control are enabled .
•Low noise and low distortion .
VNO= 4.5µVrms, THD=0.1% max
•4 Input selector.
•Controlling by 2 Line serial data .
PITCH : 1.778mm
SIZE : 19.0mmX6.3mmX3.3mm
APPLICATION
28 P 2 W-A( FP )
PITCH : 1.27mm
SIZE :8.4mmX17.5mmX2.0mm
•Mini-Stereo , etc
RECOMMENDED OPERATING CONDITION
•Supply voltage range
•Rated supply voltage
5.5~9.5V
9V
SYSTEM BLOCK DIAGRAM
(analog)
(analog)
4.5~5.5V (digital)
5V (digital)
RECOUT
Lch IN1
2
3
4
VOLUME
Rch IN1
2
3
4
Lch OUT
BASS TREBLE
TONE CONTROL
Rch OUT
D
A
T
C
L
K
VOLUME
BASS TREBLE
TONE CONTROL
RECOUT
MPU
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SOUND CONTROLLER
OUT2
AGND
22
21 20 19
18
17 16 15
1.8K VR3
420Ω
117K
ref
420Ω 420Ω 420Ω
SIMAMP2
CS
TRE2
24 23
DVDD
CH2IN3
CH2IN4
CH2IN2
SIMOUT2
SIMIN2
26 25
BASS2
28 27
RECOUT2
CH2IN1
AVDD
BLOCK DIAGRAM
1.8K
420Ω
VR5
200K
200K
S2 S4 S6 S8
TONE
AMP2
VR2
6.4K
ref
VOLAMP2
6.4K
6.4K
ref
CONTROL
LOGIC
VOLAMP1
6.4K
VR1
TONE
AMP1
200K
S1 S3 S5 S7
200K
VR5
5
6
7
REF
CH1IN1
RECOUT1
SIMIN1
SIMOUT1
BASS1
CH1IN2
8
9
10 11 12
MITSUBISHI
ELECTRIC
13 14
CLK
4
DAT
3
DGND
2
OUT1
1
1.8K 420Ω
TRE1
420Ω 420Ω 420Ω
1.8K VR3
420Ω
CH1IN4
ref
117K SIMAMP1
CH1IN3
ref
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SOUND CONTROLLER
PIN DESCRIPTION
PIN No.
DESCRIPTION
PIN NAME
I/O
1
REF
I
Reference voltage terminal for analog
2
CH1 IN1
I
Input terminal (ch1,select 1)
3
RECOUT1
O
4
5
SIMIN 1
I
Pin for capacitor of simulated inductor 1
SIMOUT 1
Pin for capacitor of simulated inductor 1
6
BASS1
O
I
7
TRE1
I
Pin for capacitor of ch1-side treble setting
8
CH1 IN2
I
Input terminal (ch1,select 2)
9
CH1 IN3
I
Input terminal (ch1,select 3)
10
CH1 IN4
I
Input terminal (ch1,select 4)
11
OUT1
O
12
13
14
DGND
Through output terminal (ch1)
Pin for capacitor of ch1-side bass setting
Output terminal (ch1)
Digital GND
DAT
I
I/ O terminal of DATA 2 line bus format
CLK
I
Input terminal of CLOCK 2 line bus format
CS
I
Chip select terminal
15
16
DVDD
VDD for digital circuit
17
AGND
GND for analog circuit
18
19
20
OUT2
O
TRE2
I
Pin for capacitor of ch2-side treble setting
CH2 IN4
I
Input terminal (ch2,select 4)
21
CH2 IN3
I
Input terminal (ch2,select 3)
22
23
24
25
26
27
28
CH2 IN2
I
Input terminal (ch2,select 2)
BASS2
I
SIMOUT2
O
Pin for capacitor of simulated inductor 2
SIMIN 2
I
Pin for capacitor of simulated inductor 2
RECOUT2
O
CH2 IN1
I
AVDD
Output terminal (ch2)
Pin for capacitor of ch2-side bass setting
Through output terminal (ch2)
Input terminal (ch2,select 1)
VCC for analog circuit
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SOUND CONTROLLER
ABSOLUTE MAXIMUM RATINGS
SYMBOL
PARAMETER
AVdd
CONDITION
LIMITS
UNIT
Analog supply voltage
10.0
V
DVdd
Digital supply voltage
7.0
V
Pd
Power dissipation
Ta
25°C
K
Thermal Derating ratio
Ta
25°C
850(SP)
750(FP)
8.5(FP)
7.5(FP)
mW
mW/°C
Topr
Operating temperature
-20~+75
°C
Tstg
Storage temperature
-40~+125
°C
Power dissipation pd [mW]
Thermal Derating
1000
SP
850mW
800
750mW
FP
600
425mW
375mW
400
200
0
0
25
50
75
100
125
150
Ambient temperature Ta [°C]
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SOUND CONTROLLER
RECOMMENDED OPERATING CONDITION
( Ta=25°C unless otherwise noted )
TYP
MAX
AVDD
5.5
9.0
9.5
V
DVDD
4.5
5.0
5.5
V
VIH
0.7 DVDD
VDD
V
VIL
0
0.3 DVDD
V
SYMBOL
Analog
supply voltage
Digital
supply voltage
H level input voltage
(logic circuit)
UNIT
MIN
ITEM
CONDITION
L level input voltage
(logic circuit)
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SOUND CONTROLLER
ELECTRIC CHARACTERISTICS
( Ta=25°C, AVDD=9V,DVDD=5V and bass and treble=0dB
unless otherwise noted )
( 1 ) SUPPLY VOLTAGE
ITEM
SYMBOL
Analog supply current
Icc
Digital supply current
Idd
CONDITION
Min
•AVdd=9.0V
•measure terminal=28 pin
•no signal input
•DVdd= 5V
•measure terminal=16 pin
•no signal input
LIMIT
typ
Max
UNIT
10
20
mA
0
2
µA
( 2 ) I / O CHARACTERISTICS
ITEM
LIMIT
typ Max
UNIT
SYMBOL
CONDITION
Min
Maximum input voltage
VIM
2,27pin input11,18pin output
RL=10KΩ, THD=1%,f=1kHz
ATT=-6dB
2.0
3.2
Output voltage
Vodc
11pin,18pin,
no signal
4.35
4.5
4.65
V
-2
0
2
dB
4.5
10
µ Vrms
Gain
Output noise voltage
Gv
Vono
Total harmonic distortion
THD
Channel separation
CT
Vin=0dBm,FLAT,f=1kHz
2- 11PIN 27-18PIN gain
IHF-A filter
no signal
Rg=10KΩ
11,18pin
11pin,18pin f=1kHz
Vo=0.5Vrms , RL=10KΩ
LPF=30kHz
RL=10KΩ
S:Vin=1Vrms,f=1kHz
M:Rg=10kΩ,IHF-A filter
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Vrms
0.007 0.1
%
-100 -70
dB
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SOUND CONTROLLER
( 3 ) TONE CHARACTERISTICS
ITEM
SYMBOL
CONDITION
Tone control gain
(bass)
Gbassb
Gbassc
f=100Hz
Tone control gain
(treble)
Gtrebb
Gtrebc
f=10KHz
Min
LIMIT
typ
Max
9
-15
9
-15
12
-12
12
-12
15
-9
15
-9
Min
LIMIT
typ
Max
UNIT
dB
dB
dB
dB
( 4 ) VOLUME CHARACTERISTICS
ITEM
SYMBOL
Maximum attenuation
ATTmax
Minimum attenuation
ATTmin
CONDITION
f=1KHz, Vin=0dBm
2pin~11pin
27pin~18pin gain
IHF-A-filter
MITSUBISHI
ELECTRIC
-108
-1.5
UNIT
dB
-100 -80
0
dB
1.5
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SOUND CONTROLLER
FUNCTION EXPLANATION
( 1 ) EQUIVALENT CIRCUIT OF TONE CONTROL
The resonance circuit is able to construct by using built-in
amplifier for simulated inductor. (Shows the constant as
follow)
Inside IC
Center frequency
f0 = 1 / 2π
R3
C1 • C2 • R1 • R2 [Hz]
C1
Q=
R1
(=1.8KΩ)
C2
( C2 • R2 ) / ( C1 • R1 )
.
( EX ) BASS band ( f=100Hz
)
.
R1=1.8KΩ , R2=117KΩ
C1=0.47µ , C2=0.022µ
SIMAMP
R2
(=117KΩ)
ref
FIG1.
The circuit used simulated inductor.
FIG1 is equal to FIG2.
The following relation is concluded.
L=C2 • ER1 • ER2
ref
L
C1
R3
FIG2. The equivalent circuit used L.
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SOUND CONTROLLER
INPUT DATA FORMAT
Input direction
D0
D1
D2
D3
0/1 0/1
D4
D5
D6
D7
D8
VOLUME
TREBLE
D9
D10
0/1
0
INPUT
SELECTOR
BASS
D11 D12
0
0/1
1
0
*(Notice1)
0: BOTH
1: ONLY 1CHANNEL These functions
are effective only
VOLUME data.
0: 1ch
1: 2ch
*(Notice1)
INPUT SELECTOR
D8
D9
SELECT
1
1
0
1
IN1
IN2
1
0
IN3
0
0
IN4
0:MUTE OFF
1:MUTE ON
DATA SELECT
0: VOLUME/MUTE
1: BASS/TREBLE
If CS PIN(15 PIN) is
"L" 0,
and if "H" 1.
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SOUND CONTROLLER
( 3 ) -1: volume control
VOLUME CODE
ATT
D2
D3
D4
D5
D6
ATT
D7
D8
0dB
-4dB
-8dB
-12dB
-16dB
-20dB
-24dB
-28dB
-32dB
-36dB
-40dB
-44dB
-48dB
-52dB
-56dB
-60dB
-64dB
-68dB
-72dB
-76dB
-80dB
-∞dB
H
L
L
L
L
L
H
H
H
L
H
H
H
L
L
L
L
H
H
H
0dB
-1dB
-2dB
-3dB
H
L
H
L
H
H
L
L
L
H
L
H
L
L
H
H
L
L
H
H
H
H
L
L
L
L
H
H
H
H
L
L
L
H
H
H
H
H
H
H
L
L
L
H
H
L
L
H
H
L
L
L
L
H
H
H
H
L
L
L
L
H
H
L
L
L
L
L
L
L
L
H
L
H
L
H
L
H
L
H
L
H
L
L
L
L
L
L
L
L
L
L
L
L
L
L
L
L
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SOUND CONTROLLER
( 4 ) -2 : tone level control
TONE CODE
BASS
12dB
10dB
8dB
6dB
4dB
2dB
0dB
-2dB
-4dB
-6dB
-8dB
-10dB
-12dB
TREBLE
D7
D6
D5
D4
D3
D2
D1
D0
L
L
L
L
L
L
L
H
H
H
H
H
H
H
H
H
L
L
L
L
L
L
L
H
H
H
H
L
L
H
H
L
L
L
H
H
L
L
L
H
L
H
L
H
L
H
L
H
L
H
L
L
L
L
L
L
L
L
H
H
H
H
H
H
H
H
H
L
L
L
L
L
L
L
H
L
L
H
H
L
L
L
H
H
L
L
L
H
L
H
L
H
L
H
L
H
L
H
L
H
H
H
H
H
NOT USED HHHH
LHHH
HLLL
( 4 ) -3 : MUTE CONTROL
On condition D9=1,MUTE can be set up.
In MUTE,VOLUME LEVEL is set up
VOL=-∞automatically.
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SOUND CONTROLLER
DATA and CLOCK
CLK
D0
D1
D2
D3
D10
D11
D12
DAT
DATA is read by CLK rise edge.
Latch signal "H"
Latch signal is read by CLK fall edge.
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SOUND CONTROLLER
BUS LINE TIMING SPECIFICATION
tcr
75%
25%
tr
tf
tWHC
tWLC
tSD
Parameter
tHD
Symbol
MIN
tcr
CLK clock frequency
MAX
Units
4
-
µs
The HIGH period of the clock
tWHC
1.6
-
µs
The LOW period of the clock
tWLC
1.6
-
µs
Rise time of CLK line
tr
-
0.4
µs
Fall time of CLK line
tf
-
0.4
µs
Set -up time DATA
tSD
0.8
-
µs
Hold time DATA
tHD
0.8
-
µs
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SOUND CONTROLLER
LEVEL DIAGRAM
INPUT TERMINAL
CH1 IN1
CH1 IN2
G1
6.4KΩ
6.4KΩ
-12dB ~ +12dB
G2
CH1 IN3
VOLAMP1
CH1 IN4
ref
TONEAMP1
G1
OUTPUT
TERMINAL
CH1 OUT
0dB ~ -∞dB
OUTPUT TERMINAL
RECOUT1
117K
ref
1.8K
INPUT TERMINAL
CH2 IN1
CH2 IN2
CH2 IN3
Same to CH 1
OUTPUT
TERMINAL
CH2 OUT
CH2 IN4
OUTPUT TERMINAL
RECOUT2
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SOUND CONTROLLER
LOGIC CIRCUIT
Analog Block
ref
VOLAMP1
TONE
AMP1
Level Shifter
Level Shifter
Decoder,latch
for volume control
CS
<D3>
<D2>
<D5>
<D4>
<D0>
<D1>
<D2>
<D3>
<D4>
<D5>
<D6>
<D7>
<D8>
<D9>
<D10>
<D11>
Timing
Generator
<D12>
DAT
CLK
<D7>
<D6>
<D8>
<D1>
<D0>
<D3>
<D2>
<D7>
<D6>
<D5>
<D4>
Decoder,latch
for tone control
Shift Register
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SOUND CONTROLLER
0.033µF
APPLICATION EXAMPLE
CH2IN4
CH2IN3
CH2IN2
RECOUT2
OUT2
ref
DVDD
2.2µF
2.2µF
2.2µF
2.2µF
AGND
0.47µF
0.022µF
CH2IN1
DVDD or GND
VCC
28 27
26 25
24 23
22
21 20 19
18
17 16 15
1.8K VR3
1.8K
420Ω
420Ω 420Ω 420Ω
SIMAMP2
ref117K
420Ω
VR5
200K
200K
S2 S4S6 S8
TONE
AMP2
VR2
6.4K
ref
VOLAMP2
6.4K
6.4K
ref
CONTROL
LOGIC
VOLAMP1
6.4K
VR1
TONE
AMP1
200K
S1 S3S5 S7
200K
VR5
ref
ref
117K SIMAMP1
420Ω
Reference circuit
example
1
470µ F
4.7K
4.7K
2
3
1.8K VR3 420Ω 420Ω 420Ω
4
0.022µF
6
7
8
9
2.2µF
420Ω
10 11 12
13 14
0.47µF
Reference
voltage
2.2µF
CH1IN1
5
1.8K
DGND
2.2µF
2.2µF
ref
CH1IN2
CH1IN3
RECOUT1
CH1IN4
MPU
OUT1
0.033µF
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