Instrukcja obsługi Microchip TC7660H
                    Microchip
                    
                    Niesklasyfikowane
                    
                    TC7660H
                
                                
    Przeczytaj poniżej 📖 instrukcję obsługi w języku polskim dla Microchip TC7660H (4 stron) w kategorii Niesklasyfikowane. Ta instrukcja była pomocna dla 11 osób i została oceniona przez 6 użytkowników na średnio 5.0 gwiazdek
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© 2002 Microchip Technology Inc. DS00782A-page 1
AN782
TC7660 Powers RS-232 Data Loop Low Cost Adapter
The RS-232 input voltage spec is ±3V. The minimum input resis-
tance of the TC232, a typical RS-232 transceiver, is about 3kΩ.
Therefore, 1mA of current must be supplied, and R1 must be:
R1 =                 = 2kΩ
For  reliable  operation  the  optoisolator  should  be  biased  to
saturation, so:
IOPTO =           +           = 2kΩ
Since the optoisolator’s current transfer ratio is only 20%, the LED
current must be:
ILED =                            = 33mA
For interfacing to lower-power devices a higher gain optoisolator
can  be  substituted.  The  4N33  Darlington,  for  example,  has  a
current transfer ratio of 500%, which reduces input drive current
requirements to only 1.3mA.
For a cable length of six feet, the circuit operates properly up to
9600 baud. Unfortunately, high baud rates are not always useable.
This  is  because  many  computer  prototyping  boards  seem  to
have  software  serial-communications  routines  which  are  de-
signed for 100 baud teleprinters. These routines do not make use
of the handshakings signals which RS-232 provides. Unless the
serial communications routines are rewritten, lower baud rates
may be required for proper operation.
10k       5V
2kΩ       3kΩ
FIGURE 1:  This low cost circuit converts TTL-level signals to an RS-232 level without the expense of a negative power supply. The
TC7660’s –5V output permits the optoisolator to swing to RS-232 levels at up to 9600 baud.
  Author: Wes Freeman,
Microchip Technology, Inc.
INTRODUCTION
The introduction of single-voltage EPROMS and dynamic RAMs
has  permitted  designers  to  produce  complete  digital  systems
powered by a single 5V supply. One area which has not yielded
to single-supply operation, however, is the RS-232 interface. If a
system must communicate with an RS-232 serial device, such as
a  printer  or  another  computer,  a  separate  power  supply  is
required.
The circuit in Figure 1 provides an RS-232 driver without requiring
a second power supply. Originally built for downloading files from
an IBM PC to an IAM-65, the circuit is applicable to a wide variety
of single-board computers as well as single chip microcontrollers
such  as  Microchip's  PIC16C745.  In  100-piece  quantities  the
component cost is less than $3, and pc board space is only a little
more  than  is  occupied  by  a  20-pin  socket.Understanding  the
circuit’s operation is easy. U1 is the CMOS TC7660 DC-to-DC
converter. It contains an oscillator and matrix of switches which
convert  the  +5V  supply  to  –5V.  The  optoisolator  converts  the
TTL-level input current into voltage which swings between the
plus and minus supply rails, producing RS-232 compatible output
levels.
Resistor R1 determines the RS-232 output voltage swing. R1’s
value  is  determined  by  the  input  specifications  of the receiving
device, current transfer ratio of the optoisolator, and the driving
circuit’s  output  current  capability.
5V – 3V
   1mA
6.6mA  . 100%
20%
Single Board Computer
or Other Serial
Communications Device
GND
+5V
Serial
Data
Output
(TTL Level)
100Ω
10µfd
2
1
4
5
4N25
Optioisolator R1
2kΩ
8
2
3
5
V+
GND
CAP+
CAP–
V
OUT
–5V
10µfd
4
Serial Data
Output
(RS-232)
3*
7Signal
Ground
Transmitted
Data
RS-232
DB-25
Connector
* Configures the Single Board Computer
as DAA Communications Equipment (DCE)
TC7660
DC-DC
Converter
+
+
Specyfikacje produktu
| Marka: | Microchip | 
| Kategoria: | Niesklasyfikowane | 
| Model: | TC7660H | 
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