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UPD16681 查看數據表(PDF) - NEC => Renesas Technology

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UPD16681 Datasheet PDF : 56 Pages
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Figure 4-3. Using Internal Power Supply Select and D/A Converter
VDD
VDD
DACHA
AMPIN(+)
OPEN
D/A
converter
VREF
+
To internal drive circuit
AMPIN()
AMPOUT
Rth
VLC1
R2
R1
C1
µPD16681
4.2.3 When using an external power supply (VEXT = H)
When an external power supply is used for the LCD driver voltage, the op amp incorporate in the µPD16681 (used
for the LCD driver voltage) is in OFF mode. Consequently, the LCD driver’s op amp and D/A converter function
cannot be used when using an external power supply. Instead, regulate the LCD driver voltage by inputting directly
to the VLCD and VLC1 pins.
Cautions 1. Maintain the following relation for the voltage input to the VLCD and VLC1 pins : VLCD > VLC1
2. Since the DACHA, AMPIN(+), and AMPIN() pins are CMOS inputs, they should be fixed either high or
low.
3. The AMPOUT pin should be left unconnected.
4.3 Reference Voltage
4.3.1 When using internal power supply (VEXT = L)
When using the internal power supply, the µPD16681’s on-chip divider resistor is used to create the six-level
potential (VLC1, VLC2, VLC3, VLC4, VLC5, and VSS) required for the LCD driver.
4.3.2 When using an external power supply (VEXT = H)
When use of an external power supply has been selected, the op amp incorporated in the µPD16681 for the LCD
driver level power supply is in OFF mode, so a reference potential must be directly input to VLC1, VLC2, VLC3, VLC4, and
VLC5.
Ordinarily, these levels are generated by dividing the resistance. Since large resistance values result in poorer LCD
display quality, be sure to select a resistance value that suits the type of LCD panel to be used.
The display quality can be improved by connecting capacitors between the level pins and ground pins. As with the
resistance values described above, the capacitance values of the capacitors should be selected to suit the divided
resistance values and the type of LCD panel to be used.
10
Data Sheet S13104EJ5V0DS00

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