參數(shù)資料
      型號: LUCL8567AP-D
      英文描述: SLIC for Peoples Republic of China Applications
      中文描述: 為人民共和國的中國用戶接口的應(yīng)用
      文件頁數(shù): 4/42頁
      文件大小: 701K
      代理商: LUCL8567AP-D
      4
      Lucent Technologies Inc.
      Data Sheet
      August 1999
      People’s Republic of China Applications
      L8567 SLIC for
      Description
      (continued)
      General
      (continued)
      This device uses a latched parallel data input interface
      and a gated parallel output data interface. Level-sensi-
      tive data latches are used for state control inputs, and
      level-sensitive control gates are used for supervision
      outputs. Latch and gate control are through an
      ENABLE pin. When the ENABLE pin is high, input data
      is latched and the SLIC will not respond to changes at
      its logic input. When ENABLE is low, input control data
      will flow through the latch. Valid supervision data will
      appear at the NSTAT and NTSD outputs only when
      ENABLE is low. In this manner, the data input and data
      output of multiple SLICs can be serviced by a single
      control input or output. The L8567 is designed to be
      controlled/supervised using control/supervision outputs
      and inputs from the T7507 codec.
      Three relay drivers are also included. These drivers are
      meant to drive electromechanical relays (EMRs). State
      control of the relay drivers is via latched parallel data
      inputs. Like the B0/B1 and supervision data, control
      leads from the T7507 codec drive these inputs. The
      T7507 relay driver control outputs are meant to control
      the associated control input on all four of the L8567
      SLICs associated with the T7507 codec.
      If an L7583 solid-state switch is used (instead of
      EMRs), the data control outputs from the T7507 codec
      will drive the latched state control inputs of the L7583
      directly. Again, one data control output from the T7507
      will drive the corresponding data input on four channels
      of the L7583. In the case of using the L7583, tie RD1I,
      RD2I, and RD3I relay driver control inputs of the L8567
      to ground.
      Included are two supervision outputs. Both supervision
      outputs are the wire-OR of the loop closure and ring
      trip detectors. One (NSTAT) is used as a data control
      output and is gated via the EN input. The other (NLED)
      can be used to drive an LED to indicate loop states.
      The NLED driver is an open collector output, so multi-
      ple outputs may be used to drive a single LED. NLED is
      not gated, so valid supervision data appears at NLED
      regardless of the state of EN. NLED can be used as an
      alternative, nongated, data control output.
      The L8567 is available in a 32-pin PLCC or 44-pin
      PLCC package.
      Application for People’s Republic of China
      This SLIC may be used with any commercially avail-
      able codec; however, when used with the Lucent Tech-
      nologies Microelectronics Group T7507, the two
      devices form a complete line circuit optimized for
      requirements in the People’s Republic of China. The ac
      interface between the two components is extremely
      simple, requiring only a single capacitor in the transmit
      direction and a short-circuit connection, using no exter-
      nal components, in the receive direction.
      The complex 200
      + 680
      ||
      100 nF termination and
      hybrid balance is digitally synthesized by the T7507
      codec. Additionally, the tip/ring to PCM (transmit) gain
      is fixed and set digitally by the T7507 codec at
      0 dB. The PCM to tip/ring (receive) gain is also digitally
      set by the T7507 codec and is programmable via a bit
      in the codec serial data control stream to either
      –3.5 dB or –7.0 dB.
      The control interfaces of the L8567 and T7507 are
      designed for compatibility with each other.
      Both the T7507 codec and L8567 SLIC require only
      battery and +5 V to operate. When both devices are
      used, no –5 V supply is required.
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