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MS6258SSTR Datasheet(PDF) 6 Page - MOSA ELECTRONICS

Part # MS6258SSTR
Description  Gain and Attenuation Volume Controller IC 4 Sets of Stereo Input, Low voltage Gain and Attenuation 15~-79dB
PDF  12 Pages
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Manufacturer  MOSA [MOSA ELECTRONICS]
Direct Link  http://www.mosanalog.com
Logo MOSA - MOSA ELECTRONICS

MS6258SSTR Datasheet(HTML) 6 Page - MOSA ELECTRONICS

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MOSA
MS6258
Gain And Attenuation Volume Controller IC
REV 1
6
www.mosanalog.com.tw
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
SDA
MSB
Acknowledge
12
3
7
8
9
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.
Timing of SDA and SCL bus lines
tf
S
tLOW
tHD;STA
tr
tHD;DAT
tSU;DAT
tf
tHIGH
tHD;STA
tSU;STA
Sr
S
P
tSP
tSU;STO
tr
tBUF
SDA
SCL
Standard mode
Symbol
Parameter
Min
Max
Unit
fSCL
SCL clock frequency
0
100
kHz
tHD:STA
Hold time (repeated) START condition.
After this period, the first clock pulse is generated
4.0
-
us
tLOW
LOW period of the SCL clock
4.7
-
us
tHIGH
HIGH period of the SCL clock
4.0
-
us
tSU:STA
Set-up time for a repeated START condition
4.7
-
us
tHD:DAT
Data hold time:
For I
2C-bus devices
0
3.45
us
tSU:DAT
Data-set-up time
250
-
ns
tr
Rise time of both SDA and SCL signals
-
1000
ns
tf
Fall time of both SDA and SCL signals
-
300
ns
tSU:STO
Set-up time for STOP condition
4.0
-
us
tBUF
Bus free time between a STOP and START condition
4.7
-
us
Cb
Capacitive load for each bus line
-
400
pF
VnL
Noise margin at the LOW level for each connected device (including
hysteresis)
0.1VDD
-
V
VnH
Noise margin at the HIGH level for each connected device (including
hysteresis)
0.2VDD
-
V



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