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LC823450XBTBG

  • Available: 13017

Reference Price(In US Dollars)

QtyUnit PriceExt.Price
1+US $22.18440US $22.18
10+US $16.63830US $166.38
30+US $14.41986US $432.60
100+US $12.75603US $1275.60
500+US $11.97958US $5989.79
1000+US $11.09220US $11092.20

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  • Description
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Description
Overview
The LC75857E and LC75857W are 1/3 duty and 1/4 duty LCD display drivers that can directly drive up to 164 segments and can control up to four general-purpose output ports.
These products also incorporate a key scan circuit that accepts input from up to 30 keys to reduce printed circuit board wiring.
Features
• Key input function for up to 30 keys (A key scan is performed only when a key is pressed.)
• 1/3 duty and 1/4 duty drive schemes can be controlled from serial data.
• 1/2 bias and 1/3 bias drive schemes can be controlled from serial data.
• Capable of driving up to 126 segments using 1/3 duty and up to 164 segments using 1/4 duty.
• Sleep mode and all segments off functions that are controlled from serial data.
• Switching between key scan output and segment output can be controlled from the serial data.

The key scan operation enabled/disabled state can be controlled from the serial data.
• Switching between segment output port and general-purpose output port can be controlled from serial data.

The common and segment output waveform frame frequency can be controlled from the serial data.
• Switching between RC oscillator mode and external clock mode can be controlled from the serial data.
• Serial data I/O supports CCB format communication with the system controller.
• Direct display of display data without the use of a decoder provides high generality.
• Independent VLCD for the LCD driver block. (When the logic block supply voltage VDD is in the range 3.6 to 6.0 V, VLCD can be set to a voltage in the range 0.75 × VDD to 6.0 V, and when VDD is in the range 2.7 to 3.6 V, VLCD can be set to a voltage in the range 2.7 to 6.0 V.)
• Provision of an on-chip voltage-detection type reset circuit prevents incorrect displays.
Alternatives

Functional Equivalent (FE) materials, including Fused Filament Fabrication (FFF) form, assembly, and functionally compatible substitute materials.

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