MOSA MS6274SSGU Low power consumption Datasheet

MOSA
MS6274
Volume Controller with soft step IC
Stereo Audio Volume Controller With Soft Steps,
4 Stereo(1 quasi-differential) Inputs,
Low voltage, Gain/Loss, Low power consumption.
FEATURES
‧
‧
‧
‧
‧
‧
‧
‧
APPLICATIONS
Operation range: 2.5V~6.5V.
One quasi-differential input.
Input Gain: 0dB ~ +15dB.
Soft step volume control:-79dB ~ +15dB.
Low power consumption.
Good PSRR and low pop noise.
I2C interface.
Housed in 16 pin SSOP packages.
‧
‧
‧
‧
Multimedia system
Hi-Fi audio system.
Bluetooth.
DAB
DESCRIPTION
The MS6274 is a stereo audio volume controller IC with 4 sets of stereo inputs(1 quasi-differential Input). It has
Input gain(0 ~ +15dB), Soft step volume control(-79dB ~ +15dB) with programmable blend times. It uses CMOS
technology specially for the low voltage application with low noise, rail-to-rail output.
BLOCK DIAGRAM
MS6274
L-IN1
L-IN2
L-IN3
L-IN4/DiffL
NC/DiffG
Gain 0dB ~ 15dB
-79dB ~ +15dB
Input Gain
Volume/Mute
(With Soft step)
L-OUT
Input Gain
Volume/Mute
(With Soft step)
R-OUT
Gain 0dB ~ 15dB
-79dB ~ +15dB
INPUT
Mux
R-IN4/DiffR
R-IN3
R-IN2
R-IN1
I2C Interface
Supply
VDD
V1.5
GND
SDA
VREF
1/19
SCL
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MOSA
MS6274
Volume Controller with soft step IC
PIN CONFIGURATION
Symbol
Pin
Description
NC/DIFFG
1
No Connected /Differential Stereo Input Common
L-IN4/DIFFL
2
4th Left Channel Input / Left Differential Stereo Input
L-IN3
3
3rd Left Channel Input
L-IN2
4
2nd Left Channel Input
L-IN1
5
1st Left Channel Input
L-OUT
6
Left Channel Output
VSS
7
Ground
SDA
8
I2C Data Input
SCL
9
I2C Clock Input
VDD
10
Positive Supply Voltage
R-OUT
11
Right Channel Output
R-IN1
12
1st Right Channel Input
R-IN2
13
2nd Right Channel Input
R-IN3
14
3rd Right Channel Input
R-IN4/DIFFR
15
4th Right Channel Input / Right Differential Stereo Input
VREF
16
Reference Voltage = 1/2VDD
NC/DIFFG
1
16 VREF
L-IN4/DIFFL
2
15 R-IN4/DIFFR
L-IN3
3
14 R-IN3
L-IN2
4
MS6258
13 R-IN2
MS6274
V1.5
L-IN1
5
12 R-IN1
L-OUT
6
11 R-OUT
VSS
7
10 VDD
SDA
8
9
2/19
SCL
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MOSA
MS6274
Volume Controller with soft step IC
ORDERING INFORMATION
Package
Part number
Packaging Marking
Transport Media
16-Pin SSOP (lead free)
MS6274SSGTR
MS6274G
2.5k Units Tape and Reel
16-Pin SSOP (lead free)
RoHS Compliance
MS6274SSGU
MS6274G
100 Units Tube
ABSOLUTE MAXIMUM RATINGS
Symbol
Parameter
Rating
Unit
6.5
V
-3000 to 3000
V
Storage Temperature Range
-65 to 150
℃
TA
Operating Ambient Temperature Range
-40 to 85
℃
TJ
Maximum Junction Temperature
120
℃
TS
Soldering Temperature, 10 seconds
260
℃
RTHJA
Thermal Resistance from Junction to Ambient in Free Air
SSOP16
115.9
℃/W
VDD
Supply Voltage
VESD
Electrostatic Handling
TSTG
OPERATING RATINGS
Symbol
VDD
Parameter
Supply Voltage
Min
Typ
Max
Unit
2.5
-
6.5
V
5V ELECTRICAL CHARACTERISTICS
(Ta=25℃, All stages 0dB, f=1kHz, CREF =1uF, refer to the application circuit; unless otherwise specified)
Symbol
Parameter
Conditions
Min
Typ
Max
Unit
Supply
IQ
Quiescent Current
VIN=0V
IPD
Power down current
VIN=0V
PSRR
Power Supply Rejection Ratio
CREF = 1uF, f = 100Hz
-
4.2
-
mA
-
120
-
uA
55
58
-
dB
Input Selectors
RIN
Input Resistance
Input 1,2,3,4
100
kΩ
RIN-Diff
Input Resistance
Differential
100
kΩ
GIN
Input Gain Range
Gain
GSTEP
Step Resolution
ERRG
Gain Setting error
CMRR
Common mode rejection ratio
V1.5
VCM = 1Vrms @ 1KHz
VCM = 1Vrms @ 10KHz
3/19
0
-
15
dB
-0.2
40
40
1
-
dB
0
55
55
0.2
-
dB
dB
dB
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MOSA
MS6274
Volume Controller with soft step IC
Volume control
CRVOL
Volume Control Range
Attenuation & Gain
-79
-
+15
dB
RESVOL
Volume Step Resolution
-
1
-
dB
ERRVOL
Volume Setting Error
Av = +15 to -40dB
-0.5
0
1
dB
Av = -40 to -79dB
-1
0
5
dB
MUTE
Mute Attenuation
Vin=0dBV
VOMAX
Maximum Output Voltage Swing
(THD+N)/S <0.1%
-
1.59
-
Vrms
THD+N
Total Harmonic Distortion Plus
Noise
VOUT = 1Vrms
-
-75
0.0177
-
dB
%
S/N
Signal-to-Noise Ratio
VOUT = 1Vrms
-
93
-
dB
CS
Channel Separation Left/Right
90
94
-
dB
VIH
Bus High Input Level
1.8
-
-
V
VIL
Bus Low Input Level
-
-
0.8
V
-90
dB
General
Bus Input
3.3V ELECTRICAL CHARACTERISTICS
(Ta=25℃, All stages 0dB, f=1kHz, CREF =1uF, refer to the application circuit; unless otherwise specified)
Symbol
Parameter
Conditions
Min
Typ
Max
Unit
Supply
IQ
Quiescent Current
VIN=0V
-
3.6
-
mA
IPD
Power down current
VIN=0V
-
80
-
uA
PSRR
Power Supply Rejection Ratio
CREF = 1uF, f = 100Hz
65
70
-
dB
VOMAX
Maximum Output Voltage Swing
(THD+N)/S <0.1%
-
1
-
Vrms
THD+N
Total Harmonic Distortion Plus
Noise
VOUT = 0.707Vrms
-
-70
0.03
-
dB
%
S/N
Signal-to-Noise Ratio
VOUT = 0.707Vrms
-
90
-
dB
CS
Channel Separation Left/Right
90
93
-
dB
General
2.5V ELECTRICAL CHARACTERISTICS
(Ta=25℃, All stages 0dB, f=1kHz, CREF =1uF, refer to the application circuit; unless otherwise specified)
Symbol
Parameter
Conditions
Min
Typ
Max
Unit
Supply
IQ
Quiescent Current
VIN=0V
IPD
Power down current
VIN=0V
PSRR
Power Supply Rejection Ratio
CREF = 1uF, f = 100Hz
VOMAX
Maximum Output Voltage Swing
THD+N
-
3.3
-
mA
-
60
-
uA
60
65
-
dB
(THD+N)/S <0.1%
-
0.8
-
Vrms
Total Harmonic Distortion Plus
Noise
VOUT = 0.707Vrms
-
-67
0.04
-
dB
%
S/N
Signal-to-Noise Ratio
VOUT = 0.707Vrms
-
90
-
dB
CS
Channel Separation Left/Right
90
93
-
dB
General
V1.5
4/19
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MOSA
MS6274
Volume Controller with soft step IC
TYPICAL PERFORMANCE CHARACTERISTICS
(Ta=25℃, RL=10k, CREF = 1uF; unless otherwise specified)
f=20Hz
f=1kHz
f=1kHz
f=20kHz
f=20kHz
f=20kHz
VDD=5V
THD+N (%)
f=20Hz
THD+N (%)
THD+N (%)
f=20Hz
f=1kHz
VDD=3.3V
VDD=2.5V
OUTPUT VOLTAGE (dBV)
OUTPUT VOLTAGE (dBV)
OUTPUT VOLTAGE (dBV)
THD+N vs. output voltage
THD+N vs. output voltage
THD+N vs. output voltage
VDD=3.3V
THD+N (%)
CMRR (dB)
VDD=5V
VDD=5V , Vo = 0dBV
FREQUENCY (Hz)
FREQUENCY (Hz)
FREQUENCY (Hz)
THD+N vs. frequency
CMRR vs. frequency
Channel separation vs. frequency
CAP=1uF
PSRR (dB)
CAP=10uF
CAP=1uF
PSRR (dB)
CAP=10uF
CAP=1uF
PSRR (dB)
CAP=10uF
VDD = 5V
VRR =-20dBV
V1.5
CHANNEL SEPARATION (dB)
VDD=2.5V , Vo = -3dBV
VDD=3.3V , Vo = -3dBV
VDD = 3.3V
VRR =-20dBV
VDD = 2.5V
VRR =-20dBV
FREQUENCY (Hz)
FREQUENCY (Hz)
FREQUENCY (Hz)
PSRR vs. frequency
PSRR vs. frequency
PSRR vs. frequency
5/19
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V1.5
MS6274
Volume Controller with soft step IC
Attenuation (dB)
QUIESCENT CURRENT (mA)
MOSA
SUPPLY VOLTAGE (V)
FREQUENCY (Hz)
Quiescent current vs. supply voltage
Mute vs. frequency
6/19
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MOSA
MS6274
Volume Controller with soft step IC
I2C BUS DESCRIPTION
Start and stop conditions
A start condition is activated when the SCL is set to HIGH and SDA shifts from HIGH to LOW state. The stop
condition is activated when SCL is set to HIGH and SDA shifts from LOW to HIGH state. Please refer to the timing
diagram below.
SCL
SDA
Start
Stop
SCL : Serial Clock Line, SDA : Serial Data Line
Data validity
A data on the SDA line is considered valid and stable only when the SCL signal is in HIGH state. The HIGH and
LOW states of the SDA line can only change when the SCL signal is LOW. Please refer to the figure below.
SDA
SCL
Data line
stable,
Data valid
Data
change
allowed
Byte format
Every byte transmitted to the SDA line consists of 8 bits. Each byte must be followed by an acknowledge bit.
The MSB is transmitted first.
Acknowledge
During the Acknowledge clock pulse, the master (up) put a resistive HIGH level on the SDA line. The peripheral
(audio processor) that acknowledges has to pull-down (LOW) the SDA line during the Acknowledge clock pulse so that
the SDA line is in a stable LOW state during this clock pulse. Please refer to the diagram below.
SCL
1
2
3
7
8
9
SDA
MSB
Acknowledge
Start
The audio processor that has been addressed has to generate an Acknowledge after receiving each byte, otherwise,
the SDA line will remain at the HIGH level during the ninth (9 th) clock pulse. In this case, the master transmitter can
generate the STOP information in order to abort the transfer.
V1.5
7/19
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MOSA
MS6274
Volume Controller with soft step IC
BUS INTERFACE
Data are transmitted to and from the MCU to the MS6274 via the SDA and SCL. The SDA and SCL make up the
BUS interface. It should be noted that pull-up resistors must be connected to the positive supply voltage.
VDD
Rp
Rp
Pull up resistors
SDA (Serial Data Line)
SCL (Serial Clock Line)
MCU
MS62674
Interface protocol
The format consists of the following
•A START condition
•A chip address byte including the MS6274 address. (7bits)
•The 8th bit of the byte must be “0”.
•The MS6274 must always acknowledge the end of each transmitted byte.
•A data sequence (N-bytes + Acknowledge)
•A STOP condition
MSB
Start
1
LSB
0
0
0
1
0
0
0
ACK
Sub Address
ACK
Data
ACK
STOP
MS6274 Address
Chip Address
The chip address of the MS6274 is 88H.
1
0
0
0
1
0
0
0
MS6274 address
SubAddress
MSB
LSB
Function
A7
A6
A5
A4
A3
A2
A1
A0
0
0
0
0
0
0
0
0
Soft-step time / ON/OFF , SE/DIFF Selector
0
0
0
0
0
0
0
1
L-channel Input selector / Input Gain Control
0
0
0
0
0
0
1
0
R-channel Input selector / Input Gain Control
0
0
0
0
0
0
1
1
Both channels Input selector / Input Gain Control
0
0
0
0
0
1
0
0
L-channel Volume Control
0
0
0
0
0
1
0
1
R-channel Volume Control
0
0
0
0
0
1
1
0
Both channels Volume Control
0
0
0
0
0
1
1
1
Power management
V1.5
8/19
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MOSA
MS6274
Volume Controller with soft step IC
Soft-step time / ON / OFF , SE/DIFF Selector (0H)
MSB
D7
LSB
D6
D5
D4
D3
D2
D1
D0
0
0
0
0
1
1
1
1
0
0
1
1
0
0
1
1
0
1
0
1
0
1
0
1
Function
Soft-step Time
0.64ms
1.28ms
2.56ms
5.12ms
10.24ms
20.48ms
40.96ms
81.92ms
Soft-step
On
Off
0
1
SE/DIFF
Differential
Single-ended
0
1
The initial condition is Single-ended, Soft-step Off, Soft-step time 40.96ms.
Input selector & Gain Control (01H , 02H , 03H)
MSB
D7
LSB
D6
D5
0
0
1
1
D4
D3
D2
D1
D0
Function
Input selector
IN 1
IN 2
IN 3
IN 4 / DIFF
0
1
0
1
Input Gain
0
0
0
0
0dB
0
0
0
1
1dB
0
0
1
0
2dB
0
0
1
1
3dB
0
1
0
0
4dB
0
1
0
1
5dB
0
1
1
0
6dB
0
1
1
1
7dB
1
0
0
0
8dB
1
0
0
1
9dB
1
0
1
0
10dB
1
0
1
1
11dB
1
1
0
0
12dB
1
1
0
1
13dB
1
1
1
0
14dB
1
1
1
1
15dB
The initial condition is IN4, 14dB. We suggest the gain is set as the power is up. For example, set and fix the gain
+10dB, the volume range will be controlled from -69dB to +25dB.
V1.5
9/19
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MOSA
MS6274
Volume Controller with soft step IC
Volume Control (04H , 05H , 06H)
MSB
LSB
D7
D6
0
0
:
0
0
0
:
0
0
:
0
0
:
0
1
:
1
1
:
1
1
The initial condition is Mute.
D5
0
0
:
0
0
0
:
0
1
:
1
1
:
1
0
:
0
0
:
0
1
D4
0
0
:
0
1
1
:
1
0
:
0
1
:
1
0
:
0
1
:
1
X
D3
1
1
:
0
0
0
:
1
0
:
1
0
:
1
0
:
1
0
:
1
X
D2
1
1
:
0
0
0
:
1
0
:
1
0
:
1
0
:
1
0
:
1
X
D1
1
1
:
0
0
0
:
1
0
:
1
0
:
1
0
:
1
0
:
1
X
D0
1
0
:
0
0
1
:
1
0
:
1
0
:
1
0
:
1
0
:
1
X
Function
+15dB
+14dB
:
0dB
0dB
- 1dB
:
-15dB
-16dB
:
-31dB
-32dB
:
-47dB
-48dB
:
-63dB
-64dB
:
-79dB
Mute
Power management (07H)
MSB
D7
LSB
D6
D5
D4
D3
D2
D1
0
1
0
X
1
1
The initial condition is Power down , VREF = GND.
V1.5
Function
D0
Release of VREF to GND.
Set the voltage of VREF to middle of supply voltage.
All devices Active
Power down
10/19
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MOSA
MS6274
Volume Controller with soft step IC
Example
Soft-step Time 10.24ms , Soft-step ON , Single-ended Mode.
MSB
Start
1
LSB
0
0
0
1
0
0
0
Data byte
ACK
0
0
MS6274 address
0
0
0
Data byte
0
0
0
ACK
1
0
0
0
0
1
0
0
ACK
Stop
0
1
ACK
Stop
0
0
ACK
Stop
ACK
Stop
SubAddress
Soft-step Time 10.24ms
Soft-step ON
Single-ended Mode
Data byte
Data byte
Set the 1/2VDD , All device active.
MSB
Start
1
LSB
0
0
0
1
0
0
0
ACK
0
0
MS6274 address
0
0
0
1
1
1
ACK
0
0
0
0
0
0
Set the 1/2VDD
All device active
SubAddress
Set Input gain of both channels at +4dB , select Input as IN1.
MSB
Start
1
LSB
0
0
0
1
0
0
0
Data byte
ACK
0
0
MS6274 address
0
0
0
Data byte
0
1
1
ACK
0
0
0
0
0
1
SubAddress
Both-channels , IN1 , +4dB
Data byte
Data byte
Set Volume of both-channels at -15dB
MSB
Start
1
LSB
0
0
0
1
0
MS6274 address
V1.5
0
0
ACK
0
0
0
0
0
1
SubAddress
11/19
1
0
ACK
0
0
0
1
1
1
1
1
Both-channels , -15dB
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MOSA
MS6274
Volume Controller with soft step IC
Soft-step volume
When the volume-level is changed audible clicks could appear at the output. The root cause of those clicks could be the
sudden change of the envelope of the audio signal. With the Soft-step feature, this click could be reduced to a minimum.
Soft-step supports N dB volume change, including mute.
Example
Soft-Step Time = 5.12ms
0dB  -16dB  0dB
Vin = 1Vrms @ 1KHz
Vin = 1Vrms @ 2KHz
V1.5
12/19
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MOSA
MS6274
Volume Controller with soft step IC
+8dB  -16dB  +8dB
Vin = 0.5Vrms @ 1KHz
0dB  Mute 0dB
Vin = 1Vrms @ 1KHz
V1.5
13/19
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MOSA
MS6274
Volume Controller with soft step IC
APPLICATION INFORMATION
Basic application example(Single-ended Mode)
MS6274
8
SDA
VDD
10
MCU
2.2uF
Stereo Signal 1
2.2uF
2.2uF
Stereo Signal 2
2.2uF
2.2uF
Stereo Signal 3
2.2uF
2.2uF
Stereo Signal 4
Supply
0.1uF
2.2uF
9
SCL
5
L-IN1
12
R-IN1
4
L-IN2
13
R-IN2
3
L-IN3
VSS
7
VREF
16
10uF
1uF
L-OUT
6
10uF
10k
14
R-IN3
R-OUT
2
L-IN4
15
R-IN4
11
10uF
Power
Amplifier
10k
NC
1
Basic application example(Differential Mode)
MS6274
8
SDA
VDD 10
9
SCL
VSS 7
5
L-IN1
12
R-IN1
4
L-IN2
13
R-IN2
3
L-IN3
14
R-IN3
MCU
0.1uF
2.2uF
Stereo Signal 1
2.2uF
2.2uF
Stereo Signal 2
2.2uF
2.2uF
Stereo Signal 3
2.2uF
2.2uF
2.2uF
Differential Signal
2.2uF
V1.5
Supply
10uF
VREF 16
1uF
L-OUT
6
10uF
10k
R-OUT
2
DIFFL
1
DIFFG
15
DIFFR
11
10uF
Power
Amplifier
10k
14/19
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MOSA
MS6274
Volume Controller with soft step IC
Basic application flowchart
Power Up
Power off
[Volume down to mute]
[Power up]
VDD = 5V
volume down to mute
step by step
[Initial Conditions]
[Release of CAP to GND]
(IN4, 14dB, Mute
Powerdown, Vref = 0V)
07H, 00H
Wait 0.5 sec
[All device power down]
[Pop Noise Free]
07H, 06H
wait 0.5 sec
[Set the default function]
Power off
VDD = 0V
(Soft-step Time,ON/OFF
differential Input ON/OFF
Input selection , Gain)
[Set to standby Mode
& ½ VDD]
07H,05H
Wait 0.5 sec
[All device Active]
07H,01H
[Volume Control]
volume up/down
V1.5
15/19
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MOSA
MS6274
Volume Controller with soft step IC
EXTERNAL DIMENSIONS
SSOP16
D
Detail A
Symbol
A
A1
A2
b
c
e
D
E
E1
L
h
L1
ZD
R1
R
θ
θ1
θ2
E1 E
H x 45
c
ZD
A2 A
θ 2
e
A1
b
Dimension in mm Dimension in inch
Min
Max
Min
Max
1.35
1.75
0.053
0.069
0.10
0.25
0.004
0.010
1.50
0.059
0.20
0.30
0.008
0.012
0.18
0.25
0.007
0.010
0.635 BASIC
0.025 BASIC
4.80
5.00
0.189
0.197
5.79
6.20
0.228
0.244
3.81
3.99
0.150
0.157
0.41
1.27
0.016
0.050
0.25
0.50
0.010
0.020
0.254 BASIC
0.010 BASIC
0.229 REF
0.009 REF
0.20
0.33
0.008
0.013
0.20
0.008
o
o
o
0
8
0
8o
0o
0o
5o
15o
5o
15o
θ 1
R1
L1
R
θ
Detail A
TAPE AND REEL
L
(Unit : mm)
SSOP16
2.0
0.30
0.05
0.05
1.5+0.1/-0.0 DIA
4.0
1.75
0.3R MAX
5.5
0.05
12.0 0.3
5.4
3.0
3.6
8.0
6.9
1.5 MIN
0.5 Radius Typical
2.0 1.7
V1.5
16/19
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MOSA
MS6274
Volume Controller with soft step IC
DEMO BOARD
The demo board used IR technique controller to control the MS6274. The default states of demo board are INPUT1,
Input Gain 0dB, Volume 0dB, SE Mode, Softstep off, Mute off .
1
3
5
2
1
4
Label 1: Supply Voltage
The AVDD and DVDD should be the same supply voltage, the supply range is 2.5 ~ 6.5 VDC.
Label 2: LED Indicator
The LED indicates the power status and the IR received status. It is red-dark blink once when the MCU has received the
function code correctly.
Label 3: MCU Reset
The MS6274 will be loaded the default values by MCU. The default states of demo board :
INPUT1, Input Gain 0dB, Volume 0dB, SE Mode, Softstep off, Mute off.
Label 4: Input Section
Please input stereo audio signal, as music or sine wave.
Label 5: Output Section
Please connected to a post-power-amplifier, as active speaker.
V1.5
17/19
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MOSA
MS6274
Volume Controller with soft step IC
IR Controller
Gain+/-:The gain control keys.
The gain control in 1dB/step as the switch is pressed once, the range is 0dB to 15dB.
Vol+/-:The volume control keys.
The volume control in 1dB/step as the switch is pressed once, the range is –79dB to +15dB.
MUTE:The mute key controls all speaker outputs
Press the key once to set mute-on or mute-off.
SE/Diff Mode:The Input Mode control Keys.
SoftStep:The SoftStep key.
Press the key once to set Softstep on or SoftStep off.
IN1~IN4:Stereo channel selection
There are four sets, stereo 1 to 4. The default channel is stereo 1 on initial status.
V1.5
18/19
www.mosanalog.com
MOSA
MS6274
Volume Controller with soft step IC
Circuit
V1.5
19/19
www.mosanalog.com
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