SCN68681

Features: S68000 bus compatible Dual full-duplex asynchronous receiver/transmitter Quadruple buffered receiver data registers Programmable data format¤ 5 to 8 data bits plus parity¤ Odd, even, no parity or force parity¤ 1, 1.5 or 2 stop bits programmable in 1/16-bit increments Programmable baud r...

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SCN68681: Features: S68000 bus compatible Dual full-duplex asynchronous receiver/transmitter Quadruple buffered receiver data registers Programmable data format¤ 5 to 8 data bits plus parity¤ Odd, even, no p...

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Part Number:
SCN68681
Supply Ability:
5000

Price Break

  • Qty
  • 1~5000
  • Unit Price
  • Negotiable
  • Processing time
  • 15 Days
Total Cost: $ 0.00

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Upload time: 2024/12/27

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Product Details

Description



Features:

S68000 bus compatible
Dual full-duplex asynchronous receiver/transmitter
Quadruple buffered receiver data registers
Programmable data format
¤ 5 to 8 data bits plus parity
¤ Odd, even, no parity or force parity
¤ 1, 1.5 or 2 stop bits programmable in 1/16-bit increments
Programmable baud rate for each receiver and transmitter selectable from:
¤ 22 fixed rates: 50 to 115.2k baud
¤ Non-standard rates to 115.2kb
¤ Non-standard user-defined rate derived from programmable counter/timer
¤ External 1X or 16X clock
16-bit programmable Counter/Timer
Parity, framing, and overrun error detection
False start bit detection
Line break detection and generation
Programmable channel mode
¤ Normal (full-duplex)
¤ Automatic echo
¤ Local  loopback
¤ Remote loopback
Multi-function programmable 16-bit counter/timer
Multi-function 6-bit input port
¤ Can serve as clock or control inputs
¤ Change-of-state detection on four inputs
¤ 100k typical pull-up resistors
Multi-function 8-bit output port
¤ Individual bit set/reset capability
¤ Outputs can be programmed to be status/interrupt signals
Versatile interrupt system
¤ Single interrupt output with eight maskable interrupting conditions
¤ Interrupt vector output on interrupt acknowledge
¤ Output port can be configured to provide a total of up to six separate wire-ORable interrupt outputs
Maximum data transfer rates: 1X - 1MB/sec, 16X - 125kB/sec
Automatic wake-up mode for multidrop applications
Start-end break interrupt/status
Detects break which originates in the middle of  a character
On-chip crystal oscillator
Single +5V power supply
Commercial and industrial temperature ranges available
DIP and PLCC packages



Pinout

  Connection Diagram


Specifications

SYMBOL

PARAMETER

RATING

UNIT

TA


Operating ambient temperature range2

See Note 4

 

TSTG

Storage temperature range

-65 to +150

 

 


All voltages with respect to ground3

-0.5 to +6.0

V




Description

The Philips Semiconductors SCN68681 Dual Universal Asynchronous Receiver/Transmitter (DUART) is a single-chip MOS-LSI communications device that provides two independent full-duplex asynchronous receiver/transmitter channels in a singlepackage. It is compatible with other S68000 family devices, and can also interface easily with other microprocessors.  The DUART can be used in polled or interrupt driven systems.

The operating mode and data format of each channel SCN68681 can be programmed independently. Additionally, each receiver and transmitter can select its operating speed as one of eighteen fixed baud rates, a 16X clock derived from a programmable counter/timer or an external 1X or 16X clock.  The baud rate generator and counter/timer can operate directly from a crystal or from external clock inputs.  The ability to independently program the operating speed of the receiver and transmitter make the DUART particularly attractive for dual-speed channel applications such as clustered terminal systems.

Each receiver SCN68681 is quadruply buffered to minimize the potential of receiver overrun or to reduce interrupt overhead in interrupt driven systems.  In addition, a flow control capability is provided to disable a remote DUART transmitter when the buffer of the receiving device is full.

Also provided on the SCN68681 are a multipurpose 6-bit input port and a multipurpose 8-bit output port.   These can be used as general purpose I/O ports or can be assigned specific functions (such as clock inputs or status/interrupt outputs) under program control.




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