參數(shù)資料
型號: MSM7580
廠商: OKI SEMICONDUCTOR CO., LTD.
英文描述: ITU-T G.721 ADPCM TRANSCODER
中文描述: ITU - T的G.721差分PcM碼器
文件頁數(shù): 4/18頁
文件大?。?/td> 207K
代理商: MSM7580
4/17
Semiconductor
MSM7580
PIN AND FUNCTIONAL DESCRIPTIONS
GND
Ground, 0 V.
SIP1, SOP1
PCM serial data input (SIP1) and output (SOP1) for Channel 1.
SOP1 is an open-drain output, which goes into a high impedance state after a continuous 8-bit
serial data output.
SIP2, SOP2
PCM serial data input (SIP2) and output (SOP2) for Channel 2.
SOP2 is an open-drain output, which goes into a high impedance state after a continuous 8-bit
serial data output.
PAD/
MUTE
Control input for the selection of PAD or MUTE mode.
When digital "1" is input, the PAD mode is selected and when digital "0" is input, the MUTE mode
is selected.
THR1, THR2
Control pins for the data through modes.
THR1 and THR2 are for Channel 1 and Channel 2, respectively. The data-through mode is
selected when digital “1” is applied to THR1 and THR2. In this mode, 8-bit serial input data
applied to SIA1 and SIA2 (ADPCM data input) is passed to the PCM serial data output pins,
SOP1 and SOP2, without any data modification. SOP1 and SOP2 go to the high impedance state
after the output of 8-bit data has been applied to SIA1 and SIA2.
Conversely 8-bit serial input data applied to SIP1 and SIP2 (PCM data input) is passed to
ADPCM serial data output pins, SOA1 and SOA2, without any data modification.
SOA1 and SOA2 go to the high impedance state after the output of 8-bit data has been applied
to SIP1 and SIP2.
Since ADPCM and PCM data interfaces have the mutually independent signal input pins for
synchronizing signals the time slots for data input and output can be exchanged between them.
Some timing at which data may be deleted or duplicated as described in "Notes on Usage" should
not be used.
MUTE1, MUTE2
Setting a digital "1"at these pins sets the PCM output to the idle pattern state regardless of the
ADPCM input data, when the MUTE mode is selected by the PAD/
MUTE
pin.
When the PAD mode is selected, the PCM output has a 12 dB loss.
Normally, these pins are set to a digital "0".
When the data through mode is selected, the function of these pins is invalid.
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