Datamax I-4212e image

Datamax I-4212e

Quick information
Brand Datamax 2007
Model Industrial, I-Class, I12-00-48900007, Peeler Rewinder, Barcode, Honeywell
Released Year 2007
Type Printers
Series I-Class Mark II
Status Discontinued
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Overview

The Datamax I-Class Mark II I-4212e is an industrial thermal transfer printer engineered for high-volume barcode and label printing applications. It operates on a 32-bit RISC processor, ensuring fast and precise print jobs. The device supports resolutions of 203, 300, or 600 dpi, which caters to diverse printing quality requirements. Equipped with a durable metal frame, it is designed for rugged industrial environments. The Peeler Rewinder accessory simplifies label application processes by peeling and rewinding labels automatically. Connectivity options include Ethernet, Serial, and USB ports for versatile integration into various systems.

This printer incorporates extensive memory configurations with up to 16 MB DRAM and 8 MB Flash memory, allowing storage of fonts, graphics, and label formats for quick access. It supports multiple barcode symbologies compliant with industry standards, ensuring compatibility across different labeling needs. The device utilizes a linerless peel option and supports ribbon widths to maximize material usage and reduce waste effectively.

Specifications

Input Type Monochrome
Output Type Black & White
Memory Standard 8 MB Flash, 16 MB SDRAM
Custom Bundle No
MPN Industrial, I-Class, I12-00-48900007, Peeler Rewinder, Barcode, Honeywell
Supported Paper Size Max Label Width: 4,65"
California Prop 65 Warning This item does NOT contain any chemicals or materials specified in the California Prop 65 list.
Type Label Printer
Printer Type Label Printer
Technology Thermal
Maximum Resolution 203 x 203 DPI
Model I-4212e
Connectivity 10/100 Ethernet, USB 2.0, RS-232 Serial
Features Industrial
Black Print Speed 12 ips
Product Line I-Class Mark II
Print method Thermal transfer and direct thermal
Print resolution 203, 300, or 600 dpi (8, 12, or 24 dots/mm)
Max print width 4.16 inches (106 mm)
Max print speed 12 inches per second (305 mm per second) at 203 dpi
Processor 32-bit RISC microprocessor
Media types Roll-fed, fanfold, die-cut or continuous labels and tag stock
Media handling Peeler, rewinder, cutter options
Dimensions 13.5 x 9 x 13 inches (343 x 229 x 330 mm)
Weight 27 lbs (12.25 kg)
Power supply 90-132 VAC or 180-264 VAC, 47-63 Hz auto-selecting
Supported barcode symbologies Code 39, Code 93, Code 128, UPC, EAN, Interleaved 2 of 5, QR Code, PDF417, Data Matrix
Operating temperature 41°F to 104°F (5°C to 40°C)
Storage temperature -40°F to 140°F (-40°C to 60°C)

Key Advantages

The I-4212e offers high-speed printing of up to 12 inches per second, enhancing productivity in demanding environments. Its modular design supports various accessories, including the Peeler Rewinder and Cutter, to adapt to specific operational needs. The printer’s robust build provides reliability and durability for continuous industrial use. With multiple connectivity options, it easily integrates with existing IT infrastructure. The high-resolution print capabilities support complex barcode and graphic designs, promoting clear and accurate labeling. Furthermore, the extensive memory capacity allows for efficient management of label formats and graphic elements, reducing workflow interruptions.

Limitations

The I-4212e’s industrial design prioritizes function over compactness, making it relatively large compared to desktop printers. Initial setup and configuration may require professional assistance due to the complexity of its advanced features. While versatile, the printer uses thermal transfer technology, which necessitates ribbon replacement, potentially increasing operational costs. Limited native support for newer connectivity protocols may require external adapters or upgrades. The printer’s firmware updates are less frequent, which could limit support for emerging barcode standards over time. Additionally, power consumption is higher than smaller office printers, which could be a consideration in energy-sensitive environments.

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