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MP208 Thermal printer mechanism series(Compatible APS MP208-HS)

MP208 thermal printer mechanism has the characteristics of small size, wide working voltage and high efficiency. The unique movement design makes the TP208 easy to load paper and high reliability.

    MP208 Features

    Easy loading paper

    Small size

    Light weight

    Fast print speed(max print speed 90mm/s)

    Wide working voltage

    High solution(8 dot/mm,203DPI)

    Long printing life(>50km)

    Low noise

    Thermal printer mechanism compatible APS MP208 (2)

    Specification

    Printing method Thermal

    dot printing

    Number of dots

    384dots/line

    Resolution

    8dots/mm

    Valid Printing width

    48mm

    Paper width (mm)

    58mm

    Paper feed pitch

    0.0625mm

    Dimension (mm)

    68.3x41x15

    Weight (g)

    36

    Head temperature

    By thermistor

    Paper end sensor

    By photo interrupter

    For printer head (V)

    4.2~8.5

    For logic (V)

    2.7~5.25

    Operating temperature (℃)

    0~50 (no condensation)

    Operating humidity (RH)

    20%~85% (no condensation)

    Storage temperature (℃)

    -25~70 (no condensation)

    Storage humidity (RH)

    5%~95% (no condensation)

    Thermal head specifications

    Number of Heat Elements

    384dots

    Dot density

    0.125mm

    Dot size

    0.11mm x 0.10mm

    Paper feed pitch

    0.0625mm

    Valid printing width

    48mm

    Average Resistance Value

    165Ω±4%

    Operating voltage

    4.2~8.5V

    Pulse life

    108pusle

    Mechanical life

    50KM

    Life test conditions

    25 ° C, the heating time ratio is not more than 12.5%.

    Application 

    Automotive

    Calculators

    Data terminal devices

    EFT POS

    Fiscal printers

    Hand held terminals

    Measuring instruments and analysers

    Medical equipment

    Portable printers and terminals

    Taxi meters

    Express

    MP208: The Compact Powerhouse for Speed and Clarity in Printing

    The MP208 thermal printer mechanism series is a beacon of innovation in the printing industry, offering a compact design that doesn't compromise on performance. This series is designed to provide a seamless experience in high-speed printing with a maximum speed of 90mm/s, making it ideal for environments where time is of the essence.

    The MP208's small size and light weight make it a versatile choice for a variety of applications, from automotive to medical equipment, where space is valuable. Its wide working voltage range ensures compatibility with diverse power sources, enhancing its adaptability in different devices.

    The printer mechanism's high resolution of 203 DPI, equivalent to 8 dots/mm, guarantees that every print is sharp and clear. The valid printing width of 48mm, combined with a paper feed pitch of 0.0625mm, allows for precise control over print quality. The MP208's thermal head, with 384 heat elements and a dot density of 0.125mm, provides a clear and defined printing area.

    Built to last, the MP208 boasts a mechanical life of 50KM and a pulse life of 108 pulses, ensuring long-term reliability. Its low noise operation and long printing life of over 50km make it a quiet and efficient performer, suitable for continuous use in various settings.

    The MP208 is designed to operate in a wide range of temperatures from 0°C to 50°C and humidity levels from 20% to 85% RH, making it a robust choice for various climates. Storage conditions are also flexible, with the mechanism able to withstand temperatures from -25°C to 70°C and humidity levels from 5% to 95% RH.

    The MP208's versatility extends to its applications, covering a wide spectrum from data terminal devices and EFT POS to fiscal printers and portable terminals. Its adaptability makes it a valuable asset in any industry that requires reliable and efficient printing solutions.

    Choose the MP208 for your next project and benefit from its precision, versatility, and durability in a thermal printer mechanism that is designed to meet the demands of today's dynamic printing environments.