Shipping included*
Exclusions
Additional shipping fees may apply in rare circumstances for deliveries outside standard service areas. In most cases, this only potentially affects shipments to the Northwest Territories and Yukon, as well as certain heavy or oversized items.
Original Datamax-O'Neil PHD104976 Printhead - Thermal Transfer & Direct Thermal for P1120N Printer
Business volume discounts
Technical guidance
Preparation & staging
QC · ON · AB · BC
Product Features
Technical Overview
This printhead supports both thermal transfer and direct thermal printing technologies, offering versatility for various labeling and printing needs. Thermal transfer printing uses a ribbon to produce durable, long-lasting images, while direct thermal printing creates images directly on heat-sensitive media without ribbons.
The printhead is engineered to deliver precise heat distribution across the print line, ensuring sharp text, barcodes, and graphics. Its design focuses on reliability and consistent performance under continuous use in industrial and commercial printing environments.
Key Product Advantages
Choosing the Datamax-O'Neil PHD104976 printhead provides several key benefits for maintaining optimal printer performance. As an original manufacturer part, it guarantees compatibility and reliability, reducing the risk of print quality issues or printer damage.
Genuine Compatibility
Designed specifically for the Datamax-O'Neil P1120N printer, this printhead ensures perfect fit and function without modification or adjustment requirements.
- Exact mechanical alignment
- Precise electrical interface
- Manufacturer-tested performance
Dual Printing Technology
Supports both thermal transfer and direct thermal methods, providing flexibility for different media types and application requirements.
- Thermal transfer for durable labels
- Direct thermal for cost-effective printing
- Consistent heat distribution
Deployment / Use Cases
The PHD104976 printhead is ideal for maintenance and repair scenarios where the existing printhead in a Datamax-O'Neil P1120N printer requires replacement due to wear, damage, or declining print quality.
Common deployment environments include warehouse labeling systems, retail point-of-sale printing, manufacturing floor labeling, and logistics operations where reliable barcode and label printing is essential for inventory management and tracking.
Highlights
- Genuine Datamax-O'Neil original printhead
- Manufacturer part number PHD104976
- Supports thermal transfer and direct thermal printing
- Compatible with Datamax-O'Neil P1120N printer
- Designed for reliable performance in demanding environments
- Maintains manufacturer quality standards
- Critical component for printer maintenance
- Ensures consistent print quality
Specifications
| Specifications | |
|---|---|
| Manufacturer | Honeywell International, Inc |
| Manufacturer Part Number | PHD104976 |
| Brand Name | Datamax-O'Neil |
| Product Name | Printhead |
| Product Condition | Original |
| Product Type | Printhead |
| Technical Information | |
| Print Technology | Thermal Transfer,Direct Thermal |
| Miscellaneous | |
| Compatibility | Datamax-O'Neil P1120N Printer |
FAQ
What printer models is the PHD104976 printhead compatible with?
The Datamax-O'Neil PHD104976 printhead is specifically compatible with the Datamax-O'Neil P1120N printer. This original manufacturer part is designed to provide exact fit and functionality with this particular printer model.
What printing technologies does this printhead support?
This printhead supports both thermal transfer and direct thermal printing technologies. Thermal transfer uses a ribbon to create durable printed images on various media types, while direct thermal printing creates images directly on heat-sensitive paper without requiring ribbons.
Why should I choose an original Datamax-O'Neil printhead over compatible alternatives?
Original Datamax-O'Neil printheads like the PHD104976 ensure perfect compatibility, reliable performance, and consistent print quality. They maintain the manufacturer's engineering specifications, reducing the risk of printer damage or suboptimal printing results that can occur with third-party alternatives.