New England Wire Technologies, electric wire manufacturer produces multiconductor cable, multiconductor cord, custom wire and cable, and custom cables. Leading electrical wire manufacturer features custom litz wire, flat braided wire, and high temperature electronic wire, among others.


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New England Wire Technologies News

Customized Medical Device Components


9/16/2008 8:57:28 AM

New England Wire Technologies and its subsidiary, New England Catheter, design and manufacture customized components for the medical device market. Our specialty products include wire and cables; braid reinforced tubing, catheter shafts with lubricious lining materials and hybrid tubing with multi-lumen and electrical conductors integral to the wall of the tubing. Our advanced extrusion expertise and extensive wire processing capabilities enable us to provide the most technologically advanced cables and reinforced catheters in the industry. Capabilities include thin-wall, close tolerance tubing, bonding layers of thermoplastic to fluoropolymer and braiding all types of round and flat wire. Spirally reinforced tubing offers the ability to increase flexibility, traceability and crush resistance as compared to braid reinforced tubing. New England Catheters’ (www.necatheter.com) custom built spiral reinforcing machines can manufacture reinforced tubing in a continuous process. The machines are capable of manufacturing reinforced tubing in diameters from .025” (0,635 mm) to .367” (9.33 mm). The reinforcing material can be round or flat wire, hard or soft temper or plastic monofilaments. Stainless steel wire in diameters from .0025” to .010” and in a number of flat configurations are commonly used. Our systems are quite flexible and adaptable allowing us to run short prototype runs or longer production runs. Each product is custom designed by our design team who make use of the wide variety of design configurations and materials to enhance the products’ performance characteristics and meet your specific product requirements.


New Offices Opening Soon in California


8/12/2008 4:40:24 PM

New England Wire Technologies will open new sales offices in Calinfornia. Watch this page for more news.


Now available directly from the manufacturer…custom wire and cable solutions.


1/14/2008 8:58:37 AM

New England Wire Technologies of Lisbon, New Hampshire, is pleased to announce that, effective immediately, we will have in-house teams of technical wire and cable experts available to work directly with our customers in Arizona, California, Colorado, New Mexico, Oregon, Utah and Washington.

After many years of serving this area through an exclusive distributorship, New England Wire is now promoting its manufacturing capabilities directly to potential customers in this area. We are working with manufacturers, researchers and OEMs to provide the technical expertise necessary to design cutting edge wire and cable solutions.

This change in business practice allows New England’s technical sales teams to work side-by-side with your engineers and technical professionals to design and develop custom wire and cable manufactured for your specific applications. Please visit us at www.newenglandwire.com and watch for the opening of our California sales offices later in 2008.


NEW Contributes to First Fusion Reactor


11/14/2007 2:50:58 PM

Reprint with permission Fosters Sunday Edition

Fosters Sunday Edition
Article by Chloe Johnson, published Nov 11, 2007

The perfect fuel: N.H. helping to outfit the first fusion reactor

A New Hampshire company is playing a part in a multibillion-dollar, international research project that aims to prove there''s a way to replicate the power of the sun for use on Earth.

The ITER project hopes to demonstrate the scientific and technological feasibility of fusion energy, using sea water to create an inexhaustible, environmentally friendly energy source. The acronym for International Thermonuclear Experimental Reactor also means "the way" in Latin.

The project is being designed and built by a partnership of the European Union, India, Japan, China, South Korea, Russia, and the United States. The device will be constructed at Cadarache in southeastern France on nearly 100 acres of land.

Some of the prototype parts are being manufactured by New England Wire Technologies in the North Country town of Lisbon, west of Franconia Notch State Park. The specialty cable manufacturer has been contracted to make sample strands of superconductor cable for evaluation.

"It''s an opportunity for us to prove we can manufacture it," said Art Greene, engineering director at New England Wire.

The product design group at the company is being led by Craig Simpson, an engineer responsible for prototype cable manufacturing.

If successful, the full contract would be for nine cables 765 meters long, or a little less than half a mile, and 18,000 pounds each, to be manufactured in mid-2008. The cables are less than two inches in diameter, but contain more than 1,000 strands of wire.

The cable contract would be worth several million dollars, which Greene called a significant contribution to the local economy. New England Wire is the largest employer in Lisbon, with more than 350 employees in a town of about 1,640 people.

James Van Dam is the chief scientist for the U.S. ITER Project Office at Oak Ridge National Laboratory in Tennessee, which is responsible for procuring hardware and other duties.He is also the director of the Institute for Fusion Studies at the University of Texas at Austin, and the U.S. Burning Plasma Organization, a national group that coordinates and promotes research and development on "burning plasma" science, a method for producing fusion energy. Fusion generates the sun and stars'' energy. Laboratory fusion on Earth aims to show that it can be used to generate electricity in a safe and environmentally friendly way to meet the energy demands of the growing population, Van Dam wrote in an e-mail to Foster''s. Fusion energy produced by the project could generate 10 times what it takes to create it, he said.

The facility is expected to be operating by 2016. The construction site in France has been cleared, and work will start next year leveling the land and building concrete platforms. Procurement packages for materials and equipment will be released for contract bid in the coming months, according to Bonnie Hebert, spokeswoman for U.S. ITER. The ITER device is based on the "tokamak" concept, in which plasma is confined in a doughnut-shaped vessel using a magnetic field. The gas is heated to more than 100 million degrees and should produce 500 megawatts of fusion power. The challenge ITER faces is putting out more energy than is put into it, said Amitava Bhattacharjee, professor of space science at the University of New Hampshire Institute for the study of Earth, Oceans, and Space. He said researchers have been trying since the late 1950s to duplicate the kind of nuclear fusion reactions that occur in the core of the sun. Some have been able to produce a nuclear reaction but weren''t able to maintain it long enough to harness the energy.

"This is the first time people will try to break the break-even condition," he said.

It may also be the first step toward commercialization of the energy produced, but he said that could take a few decades of work. Plasma is distinct from other states of matter — solid, liquid, and gas — in that it is heated to a point beyond gas. Bhattacharjee said the energy in plasma is difficult to contain because it''s unstable./p>

"I really think that ITER will meet its goals, but it still has challenges ahead," said Bhattacharjee.

Commercializing the energy should become more feasible as the technology becomes more powerful and less pricey, he added. The project potentially could create "virtually inexhaustible energy" using heated sea water as fuel, he said. Superconductor cables run "almost for free" once charged because they carry an electric current without resistance, said Greene, of New England Wire. But they must be kept at cryogenic temperatures, or minus-238 degrees. There is a cooling channel in the middle of the cable and chrome plating for insulation on the outside. The wires are made of metals that include copper and niobium-tin.

The company was asked to bid on the cable near the beginning of the year, and beat out a few competitors in the spring for the initial work. Greene said this is one of the largest science projects the company has contributed to, though it is known for such work.

"If we could create an environmentally friendly method for producing energy, it would be a great triumph," Greene said.



9/20/2006 9:45:35 AM


New England Wire Introduces New Catalog


9/20/2006 9:04:16 AM

New England Wire Technologies releases it 2006 Product Guide and Catalog. Available in hard copy and on line, we anticipate that our customers will find this a valuable tool in the design of new cables for their current projects and a jumping off place for future requirements. The catalog also introduces New England’s line of trademark products designed specifically to solve the design challenges of a wide variety of industry applications.

NEWtuf® Reinforced Jackets boast high flexibility, performance at high temperatures and ease of sterilization making it the silicone rubber of choice for many of our medical customers.

NEWtral® low-noise cables are designed specifically for small signal applications where noise-free transmission lines are necessary to maintain signal integrity. Typical applications include medical equipment, test and measurement equipment, charge amplifiers, vibration analyzers and oscilloscopes.

NEWcel® is a closed-cell dielectric material specifically designed for ultraminiature and miniature coaxial, triaxial and twinaxial cables requiring low dielectric medium and high air concentration. NEWcel® is the perfect solution for customers requiring reduced diameter and same attenuation or same diameter with reduced attenuation.

NEWwind® Specialty Winding Wire is UL60950/IEC 60950 approved. By insulating conductors with thin layers of insulation, NEWwind® eliminates the need for interleaved insulation providing the smallest possible diameter. NE-F1 is our Electrical Insulation System which is UL 1446 compliant.

COLDflex Ground Cable™ was specifically designed for flexible, low-temperature ground cable applications down to -40° C, is UV resistant and available in standard sizes 250 kCMA to 4 AWG.

HYflext™ Power Distribution Cables incorporate a uniquely designed, high performance compound specifically formulated for use heavy duty diesel hybrid vehicles and high strand count, flexible conductors to produce cables ideally suited for applications where flexibility, long life and performance are critical.


 

Custom cables, litz wire, flat braided wire, multiconductor cable from custom wire and cable, and electric wire manufacturer New England Wire Technologies.
 
Click here for our custom wire and cable design form. Click here for our catheter design form. Click here for our client login form.