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PCA85133(2009) Hoja de datos - NXP Semiconductors.

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Número de pieza
PCA85133

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44 Pages

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Fabricante
NXP
NXP Semiconductors. NXP

General description
The PCA85133 is a peripheral device which interfaces to almost any Liquid Crystal Display (LCD)1 with low multiplex rates. It generates the drive signals for any static or multiplexed LCD containing up to four backplanes and up to 80 segments and can easily be cascaded for larger LCD applications. The PCA85133 is compatible with most microprocessors or microcontrollers and communicates via a two-line bidirectional I2C-bus. Communication overheads are minimized by a display RAM with auto-incremental addressing, by hardware subaddressing, and by display memory switching (static and duplex drive modes).
AEC-Q100 compliant for automotive applications.


FEATUREs
■ Single-chip LCD controller and driver
■ Selectable backplane drive configuration: static, 2, 3, or 4 backplane multiplexing
■ Selectable display bias configuration: static, 1⁄2, or 1⁄3
■ Selectable frame frequency: 82 Hz or 110 Hz
■ Internal LCD bias generation with voltage-follower buffers
■ 80 segment drives:
    ◆ Up to 40 7-segment alphanumeric characters
    ◆ Up to 21 14-segment alphanumeric characters
    ◆ Any graphics of up to 320 elements
■ 80 × 4 bit RAM for display data storage
■ Auto-incremental display data loading across device subaddress boundaries
■ Display memory bank switching in static and duplex drive modes
■ Versatile blinking modes
■ Independent supplies possible for LCD and logic voltages
■ Wide power supply range: from 1.8 V to 5.5 V
■ Wide LCD supply range for low-threshold LCDs, for guest-host LCDs, and high-threshold (automobile) twisted nematic LCDs: from 2.5 V to 8.0 V
■ Low power consumption
■ 400 kHz I2C-bus interface
■ Compatible with 4-bit, 8-bit, or 16-bit microprocessors or microcontrollers
■ May be cascaded for large LCD applications (up to 5120 segments possible)
■ No external components needed
■ Compatible with Chip-On-Glass (COG) technology
■ Manufactured using silicon gate CMOS process

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