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M101PR

M101PR

M101PR

10.1" Intel® Pentium® N4200 Rugged Tablets

KEY FEATURES

  • Intel® Pentium® N4200 Apollo Lake Processor Rugged Tablets
  • 10.1” 1920 x 1200 IPS LED Panel with direct optical bonding
  • Optional 1D/2D Barcode Reader and HF RFID for data collection
  • Hot-swappable battery design with optional high capacity battery pack
  • IP65 waterproof and dustproof
  • Rated for extreme temperature use
  • Optional expansion port for USB / RS232 connection
  • 4-wire resistive touch

Download Datasheet

Stable Performance with Intel’s CPU

The M101PR uses Intel® Pentium® N4200 Processor 1.10 GHz, up to 2.50 GHz with turbo boost technology with a fanless cooling system to provide stable performance and low power consumption. The M101PR supports the latest Windows® 10 IoT Enterprise operating system fulfill increasing industrial applications requirements and providing an alternative solution for those between general consumer-grade and extremely rugged solution.

Real-Time Data and Wireless Connectivity

Real-time data access to the right information is crucial for mobile workers. The M101PR offers GPS, GLONASS, WLAN, BT, and optiona l 4G LTE to enable robust communications anytime and anywhere.

Rugged Design in Mobile Form Factor

The M101PR rugged tablet is designed to be tough and rugged, withstanding shock, vibration, and drop up to 4 ft. to concrete according to military standard MIL-STD-810G for operations in some of the harshest environments. With all-around rubber edges with battery for tablet, and covered I/O ports, the M101PR is dust-tight and waterproof. Ready for use in wet and dusty environments.

Data Collection Tools for Mobile Workforce

With optional tools for data collection, the M101PR offers
ultimate productivity for field workers. Options include
built-in 1D/2D Barcode Reader, HF RFID Reader, or add-on
modules UHF RFID Reader or Smart Card Reader. Built-in
8.0 MP camera on the rear side allows capturing photos,
videos, documents instantly, and the front 2.0 MP camera is suitable for self-video recording or video communications. With A lithium-ion battery in which lithium ions move from the negative electrode through an electrolyte to the positive electrode during discharge and back when charging. Li-ion batteries use an intercalated lithium compound as the material at the positive electrode and typically graphite at the negative electrode.