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PDF LC450210PCH Data sheet ( Hoja de datos )

Número de pieza LC450210PCH
Descripción 1/8 to 1/16 Duty Dot Matrix LCD Controller Driver
Fabricantes ON Semiconductor 
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Ordering number : ENA2310A
LC450210PCH
CMOS LSI
1/8 to 1/16 Duty Dot Matrix LCD
Controller Driver
http://onsemi.com
Overview
The LC450210PCH is the 1/8 to 1/16 duty dot matrix LCD controller driver. By controlling this driver with a
microcontroller, it is used in applications such as character display and simple graphic display etc. This driver can
drive a LCD panel of up to 3,200 dots (16 16 dot font: 1-line display of up to 12 digits and 128 segments,
5 7 dot font: 2-line display of up to 40 digits). The operating temperature range is from -40 to +105 [C].
Features
1. Selectable duty ratio by serial data: 1/8 duty to 1/16 duty
1/8 duty: 8 200 = 1,600 dots
1/11 duty: 11 200 = 2,200 dots
1/14 duty: 14 200 = 2,800 dots
1/9 duty: 9 200 = 1,800 dots
1/12 duty: 12 200 = 2,400 dots
1/15 duty: 15 200 = 3,000 dots
1/10 duty: 10 200 = 2,000 dots
1/13 duty: 13 200 = 2,600 dots
1/16 duty: 16 200 = 3,200 dots
2. Selectable LCD bias voltage ratio by serial data: 1/4 bias or 1/5 bias
3. Selectable inversion drive of LCD drive waveform by serial data: line inversion or frame inversion
4. Adjustable frame frequency of common and segment output waveforms and clock frequency of voltage booster by
serial data, for preventing interference with the frequency of the backlight.
5. Selectable operation modes by serial data: power-saving mode (maintains display data),
the state of display (ON, all ON, all OFF, all forced OFF)
6. Built-in oscillator circuit (built-in resistor and capacitor for oscillation)
7. Selectable fundamental clock operating modes by serial data: internal oscillator operating mode or external clock
operating mode
8. Input of serial data supports CCB* format (for 5V and 3V)
9. Selectable voltage range of power supply for logic block by setting REGE pad
(VDD): +4.5V to +5.5V (5V power supply (REGE=VDD))
+2.7V to +3.6V (3V power supply (REGE=VSS))
10. Built-in quadruple and quintuple voltage booster with discharge function
Base voltage of boosting (VBTI2): +3.2V (Typ.) (5V power supply (REGE=VDD))
(VBTI1=VBTI2): +2.7V to VDD[V] (3V power supply (REGE=VSS))
11. Power supply for LCD driver block (VLCD): +16.0V (Typ.) (VDD=5V, Quintuple voltage booster is used.)
+16.5V
(VDD=3.3V, Quintuple voltage booster is used.)
+4.5V to +16.5V (range with external power supply)
Continued on next page.
CCB is ON Semiconductor® ’s original format. All addresses are managed
by ON Semiconductor® for this format.
CCB is a registered trademark of Semiconductor Components Industries, LLC.
ORDERING INFORMATION
See detailed ordering and shipping information on page 53 of this data sheet.
Semiconductor Components Industries, LLC, 2014
May, 2014
51214HK 20140430-S00001/42114HKPC No.A2310-1/53

1 page




LC450210PCH pdf
Continued from preceding page.
Parameter
Symbol
PAD
IDD1
VDD
Power current
IDD2
VDD
ILCD
VLCD
LC450210PCH
Conditions
<Power-saving mode>
VDD = 3.6V (REGE = VSS),
communication inactive,
Input level is VSS or VDD.
< Power-saving mode >
VDD = 5.5V (REGE = VDD),
communication inactive,
Input level is VSS or VDD.
<Normal mode>
VDD = 3.6V (REGE = VSS),
display on (normal display),
internal oscillator operating mode,
communication inactive,
Input level is VSS or VDD.
< Normal mode >
VDD = 5.5V (REGE = VDD),
display on (normal display),
internal oscillator operating mode,
communication inactive,
Input level is VSS or VDD.
< Normal mode >
VLCD = 16.5V (with external supply),
display on (normal display),
Voltage booster is not used.
Contrast adjuster is used.
LCD drive bias voltage generator is used.
Common and segment outputs are open.
Ratings
Unit
Min. Typ. Max.
15
50 120
100 500
A
150 600
500 1,000
Product parametric performance is indicated in the Electrical Characteristics for the listed test conditions, unless otherwise noted. Product performance may not be
indicated by the Electrical Characteristics if operated under different conditions.
No.A2310-5/53

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LC450210PCH arduino
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No.A2310-11/53

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