Press release
ILME AXYR Tool-Less Connector Technology

ILME AXYR series featuring tool-less spring push-in termination for high-density industrial connectors.
The AXYR series, a spring push-in termination technology for rectangular connectors, is engineered to bridge that gap. The concept is simple: insert solid or stranded wires directly into the terminal, and the spring clamp automatically secures the connection. No specialized skill. No secondary verification step.
Why It Matters Beyond Convenience
Tool-less termination is not new, but it has traditionally come at the expense of contact density. The AXYR is designed to match the density of crimp contacts within the same connector housing footprint-an important distinction for engineers working within fixed enclosure dimensions.
The technology supports rigid and stranded conductors, prepared (ferrule-terminated) and unprepared wires, within a single contact design. One contact size covers the full cross‐sectional range supported by the series. Connections are also rewirable, which reduces the cost and time impact of wiring changes during commissioning or maintenance.
The AXYR contacts are resistant to mechanical stress and vibrations, a baseline requirement for connectors used in machine-mounted or mobile industrial applications.
Coverage Across Common Industrial Configurations
The AXYR series products support the pole counts and current ratings commonly used in industrial automation:
CQY & CDY series - Compact inserts for lower pole counts and current ratings
CQEY series - High-density inserts from 10 to 46 poles, intermateable with corresponding crimp models when uncoded
MIXO modules - Modular solutions for custom mixed-signal connections
All standard and double-connector sizes in the CQEY series are intermateable and combinable with uncoded crimp counterparts. This allows engineers to introduce AXYR termination into existing installations without replacing connector housings or enclosures.
The Operational Case
For procurement and operations teams, the AXYR spring push-in termination reduces dependencies: fewer tool SKUs to manage, no crimp-tool calibration cycles, and a wiring process that is far less sensitive to operator variability. For engineers, it preserves the contact density and mechanical reliability expected from heavy‐duty rectangular connectors in demanding industrial environments.
The rectangular insert series with the AXYR spring push-in termination are available as part of the ILME heavy-duty rectangular connectors portfolio distributed in the U.S. by Mencom Corporation, headquartered in Oakwood, Georgia.
Please visit www.mencom.com for more details.
5750 McEver Rd.
Oakwood GA 30566
USA
Founded in 1987, Mencom Corporation provides high-quality, cost-effective solutions that meet industrial electrical connector requirements. Our highly trained staff of experts utilize decades of electrical and electronic industry-related experience to develop the highest quality products available. In addition, this vast expertise allows us to assist OEM customers in selecting the best products to meet their unique connection requirements. This ensures our customers receive the most cost-effective solution possible, plus one that requires minimal installation time, reducing the customer's total installed costs. Mencom is also the North American Master Distributor for ILME rectangular connectors. Mencom's headquarters and warehouse facilities are located in Oakwood, Ga., just north of Atlanta. To speak with one of Mencom's Territory Account managers, simply Contact Us today.
This release was published on openPR.
Permanent link to this press release:
Copy
Please set a link in the press area of your homepage to this press release on openPR. openPR disclaims liability for any content contained in this release.
You can edit or delete your press release ILME AXYR Tool-Less Connector Technology here
News-ID: 4500400 • Views: …
More Releases from Mencom Corporation
The Shift Toward Hybrid Power and Data in Collaborative Robotics
Collaborative robots combine mechanical movement with motors, sensors, controls, feedback devices, and communication systems. Each function requires an electrical connection, but those connections do not necessarily have the same requirements.
Power circuits may require different contacts and conductors than low-voltage signal circuits, while communication networks may require specialized connectors, shielding, and conductors to support reliable data transmission. When each function uses a separate cable and connector, the resulting wiring architecture can…
Brownfield Networking: Shielding Ethernet Upgrades
Plant engineers upgrading older production lines with modern networking face a constraint that new facilities rarely encounter: limited cable pathways. In many existing plants, new Ethernet lines must run close to heavy motor power cables, variable frequency drives, and other equipment that was never designed with data transmission in mind. This proximity creates electromagnetic interference (EMI), which can degrade signal integrity and contribute to communication errors or packet loss on…
Engineered Connectivity for Maximum Industrial Uptime
In modern manufacturing environments, uptime depends on thousands of interconnected components working together seamlessly. While major equipment and control systems receive much of the attention, long‐term operational reliability is often determined at the connection points where power, signal, and data come together under industrial conditions.
Because connectors operate at every interface exposed to vibration, temperature changes, environmental contaminants, and frequent handling, their design and quality directly influence maintenance demands, troubleshooting time,…
Selecting the Right AWG Wire for Smarter, Safer Industrial Performance
In today's world of advanced manufacturing and automation, every detail matters, especially when it comes to wiring. Choosing the right wire gauge might seem like a small decision, but it has a big impact on how safely and efficiently your systems run. The correct wire gauge ensures that your equipment receives the proper amount of power without overheating or energy loss. It not only keeps operations reliable and safe but…