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ML2002(2008) View Datasheet(PDF) - Minilogic Device Corporation Limited

Part Name
Description
Manufacturer
ML2002
(Rev.:2008)
MINILOGIC
Minilogic Device Corporation Limited MINILOGIC
ML2002 Datasheet PDF : 13 Pages
1 2 3 4 5 6 7 8 9 10 Next Last
ML2002 Preliminary
ML2002 Series Static/Half Duty LCD COG Driver
™ Application
™ Features
‹ General Purpose Clock
‹ High quality instrument
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Telephone, mobile phone
Automotive
Handheld Device like PDA,
PMP
MP3,
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or
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AGold Bump Chip which can reduce pin count and area.
Simplest design with no charge pump to supply high voltage to
LCD
Only 5 pin is needed which can reduce space.
Low operating current
Can disable internal clock to reduce current.
Wide Logic & LCD power supply: 2.5V to 6.0V
No need to add external voltage regulator
Static or 1/2 Duty driving with 1/2 Bias
Number of segments: (Static) 48, (1/2 Duty) 96
Cascading structure to increase the number of driving
segments, it’s more flexible for different application.
Build-in LCD voltage driver, crystal oscillator,
internal RC oscillator and display control circuit.
Offer best contrast and widest viewing angle of TN LCD
technology especially in static mode.
No temperature compensation is needed for Topr = -40oC to 80oC.
™ General Description
ML2002 (COG) LCD driver can be cascaded to increase the number of segments drive, with Static
driving it can form a single piece of 48 (1 ICs) or 96 (2 ICs cascaded) segments driver. With 1/2 Duty, the
number of segment drive would be doubled. It targets at custom TN LCD COG Module product which
requires the best quality of TN LCD technology and small to medium number of segment display.
ML2002 series driver offers the best contrast, the widest viewing angle, the widest range of operating
voltage and temperature when compared to the high duty cycle driver. EMI and Noise protection circuit
has been added which tailor made for COG application.
™ Ordering Information
Part Number
ML2002-1U
ML2002-2U
Description
One ML2002 LCD driver
Two ML2002 LCD driver
Package Form
Gold Bump Die
Gold Bump Die
P1/13
Preliminary, November 2008

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