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PDF M204SD02AJ Data sheet ( Hoja de datos )

Número de pieza M204SD02AJ
Descripción VACUUM FLUORESCENT DISPLAY MODULE
Fabricantes Futaba 
Logotipo Futaba Logotipo



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No Preview Available ! M204SD02AJ Hoja de datos, Descripción, Manual

AN-E-2266A
APPLICATION NOTEwww.datasheet4u.com
VACUUM FLUORESCENT DISPLAY MODULE
CHARACTER DISPLAY MODULE
M204SD02AJ
GENERAL DESCRIPTION
Futaba Vacuum Fluorescent Display Module M204SD02AJ, with
Futaba VFD 204-SD-02GN display, produces 20 digits×4rows with 5×8
dot matrix.
Consisting of a VFD, one chip controller, DC-DC/AC converter, the
module can be operated by a parallel interface or a synchronous serial
interface, and only 5 voltage power source is required to operate the
module.

1 page




M204SD02AJ pdf
2-3. ABSOLUTE MAXIMUM SPECIFICATIONS
Item Symbol
Supply Voltage
Vcc
Input signal Voltage VIN
Min.
-0.3
-0.3
Max.
6.5
Vcc+0.3
Table-3
Unit
V
V
www.datash2ee-4t4.u.DcoCm ELECTRICAL SPECIFICATIONS
Table-4
Item Symbol Min. Typ. Max. Unit
Supply Voltage
Vcc 4.5 5.0 5.5 V
Supply Current
Icc
300 400 mA
Power Consumption
− − 1.5 2.2 W
High - Level Input Voltage(see Note) VIH 0.7Vcc
Vcc V
Low - Level Input Voltage
VIL 0
0.2Vcc V
High - Level Output Voltage
(IOH = -0.1mA)
Low - Level Output Voltage
(IOL = 0.1mA)
Input Current (see Note)
VOH Vcc-0.5
VOL
II -500
V
0.5 V
1.0 µA
Note: A 10K ohm pull-up resistor is provided on each input line.
2-5. AC ELECTRICAL SPECIFICATIONS
2-5-1. MOTOROLA M68-TYPE PARALLEL INTERFACE TIMING
(See Fig. 1 and 2)
Item
Symbol Min.
Max.
RS, R/W Setup Time
tAS 20
RS, R/W Hold Time
tAH 10
Input Signal rise Time
tr 15
Input Signal Fall Time
tf 15
Enable Pulse Width High
PWEH
230
Enable Pulse Width Low
PWEL
230
Write Data Setup Time
tDS 80
Write Data Hold Time
tDH 10
Enable Cycle Time
tCYCLE
500
Read Data Delay Time
tDD 160
Read Data Hold Time
tDHR
5
Note: All timing is specified using 20% and 80% of Vcc as the reference points.
Table-5
Unit
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
AN-E-2266A [2/19]

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M204SD02AJ arduino
3-1-2. INTEL I80-TYPE MODE
This mode uses the Read (RD/) and Write (WR/) control signals to transfer information.
Instructions/data are written to the module on the rising edge of WR/ and are read from
the module after the falling edge of RD/.
RS
www.datasheet4u.com
WR/
RD/
DB7
DB6
IB7
IB6
IB7 BF=“0” DB7
IB6 IB6 DB6
DB0
IB0 IB0 IB0 DB0
Write Instruction
Write Instruction
Read Instruction
Write Data
Fig. 9. Typical 8-Bit Parallel Interface Sequence Using I80-Type Mode
3-2. SYNCHRONOUS SERIAL INTERFACE MODE
In the synchronous serial interface mode, instructions and data are sent between the host
and the module using 8-bit bytes. Two bytes are required per read/write cycle and are
transmitted MSB first. The start byte contains 5 high bits, the Read/Write (R/W) control bit,
the Register Select (RS) control bit, and a low bit. The following byte contains the
instruction/data bits. The R/W bit determines whether the cycle is a read (high) or a write
(low) cycle. The RS bit is used to identify the second byte as an instruction (low) or data
(high).
This mode uses the Strobe (STB) control signal, Serial Clock (SCK) input, and Serial I/O
(SI/SO) line to transfer information. In a write cycle, bits are clocked into the module on
the rising edge of SCK. In a read cycle, bits in the start byte are clocked into the module on
the rising edge of SCK. After the minimum wait time, each bit in the instruction/data byte
can be read from the module after each falling edge of SCK. Each read/write cycle begins
on the falling edge of STB and ends on the rising edge. To be a valid read/write cycle, the
STB must go high at the end of the cycle.
AN-E-2266A [8/19]

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