Showing posts with label Precision. Show all posts
Showing posts with label Precision. Show all posts

Check Out Precision Brand #12 Unicoil Hose Bender for 3/8" Hose I.D., 0.72" Max Hose O.D. for $12.54

Precision Brand #12 Unicoil Hose Bender for 3/8" Hose I.D., 0.72" Max Hose O.D. Best




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Precision Brand #12 Unicoil Hose Bender for 3/8" Hose I.D., 0.72" Max Hose O.D. Feature


  • Bends straight hose into any shape and keeps it there
  • Helps keep hoses away from hazardous areas such as hot spots, moving machinery, walkways, etc.
  • Prevents hose kinks and reduces fatigue from repeated bending
  • Stainless Steel construction will not rust
  • Works above or below ground and underwater



Precision Brand #12 Unicoil Hose Bender for 3/8" Hose I.D., 0.72" Max Hose O.D. Overview


Precision Brand Unicoil makes quick work of just about any hose-routing problem. It requires no special tools or equipment. Simply slide the Unicoil over the hose to where the bend is required. Position the spine on the inside of the bend. Then press and bend the spine until the required bend angle is achieved. Each coil bends up to a 90 degree angle. Use additional coils to make bends of 180 degrees or more.





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*** Product Information and Prices Stored: Feb 06, 2012 04:41:04

Check Out New Trent High Capacity (7200mAh New Trent New Replacement Battery for Dell Inspiron 6000, 9200, 9300, 9400, XPS M170, XPS M1710, XPS Gen 2, E1705, Precision M90, Dell 310-6321, 310-6322, 312-0339, 312-0340, 312-0348 [Li-ion 9-cell 7200mAh Black]

New Trent High Capacity (7200mAh New Trent New Replacement Battery for Dell Inspiron 6000, 9200, 9300, 9400, XPS M170, XPS M1710, XPS Gen 2, E1705, Precision M90, Dell 310-6321, 310-6322, 312-0339, 312-0340, 312-0348 [Li-ion 9-cell 7200mAh Black] Best




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New Trent High Capacity (7200mAh New Trent New Replacement Battery for Dell Inspiron 6000, 9200, 9300, 9400, XPS M170, XPS M1710, XPS Gen 2, E1705, Precision M90, Dell 310-6321, 310-6322, 312-0339, 312-0340, 312-0348 [Li-ion 9-cell 7200mAh Black] Feature


  • Battery Type : Lithium-Ion - Capacity: 7200 mAh - Voltage: 10.8V
  • 12 Months Replacement Warranty
  • 100% OEM compatible! Guaranteed to meet or exceed OEM specifications
  • Package Includes : 1 pc laptop battery
  • Trademark New Trent Exclusively sold and marketed by IDealPoint



New Trent High Capacity (7200mAh New Trent New Replacement Battery for Dell Inspiron 6000, 9200, 9300, 9400, XPS M170, XPS M1710, XPS Gen 2, E1705, Precision M90, Dell 310-6321, 310-6322, 312-0339, 312-0340, 312-0348 [Li-ion 9-cell 7200mAh Black] Overview


This trademark New Trent is sold and marketed exclusively by iDealPoint. Maximize your battery life for more games, videos, music, and photo viewing without having to plug in your AC adapter. A standard high quality 9-cell battery.

Compatibility: Inspiron 6000, Inspiron E1505N, Inspiron XPS M170, Inspiron 9200, Inspiron E1705, Inspiron XPS M1710, Inspiron 9300, Inspiron XPS Gen 2, Precision M90, Inspiron 9400.

Replacement for part number (located at the back of the original battery):310-6321, 310-6322, 312-0339, 312-0340, 312-0348, 312-0349, 312-0350, C5974, D5318, F5635, G5260, G5266, U4873.

Replacement laptop battery is guaranteed to meet or exceed original Dell Insprion 6000, E1705 Series laptop battery specifications. Remember to look for the New Trent Logo on both retail box and battery. If you cannot find New Trent logo on either retail Box or battery, please contact iDealPoint support team ASAP. Only buy it from iDealPoint to qualify for one full year product warranty.







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*** Product Information and Prices Stored: Jan 30, 2012 18:40:57

Ondrives Releases Commercial/Precision Gear Range

A commercial and precision gear range is the latest addition to Ondrives' product portfolio, enhancing the company's transmission series. The range of products offered consists of bevel gears, worms and wheels, anti-backlash wormwheels, internal gears, anti-backlash gears, parallel and crossed helical gears, spur gears, pinion shafts, timing pulleys and belts, and sprockets and chains.

These are all contained within a separate gears and gearboxes catalogue, released for the first time at Total Processing and Packaging. A choice of MOD sizes is available, ranging from 0.5 to 8 MOD, along with various material types to suit different applications and environments. 214M15/045M10 steel is said to be the most popular, with Delrin also available to order. Standards are mainly stocked on the shelf for gears and gearboxes. There is a range of sizes, ratios, torques and materials available.

Triad Processor Has Precision Analogue Features

Triad has launched what is said to be the first ARM Cortex-M0 processor combined with high-resolution, high-precision analogue resources: 16-bit ADC and 12-bit DAC and uncommitted op-amps. The TSX1001, implemented on the Mocha-1 platform, provides the performance and low-power 32-bit processing of the ARM Cortex-M0 processor, combined with high-precision analogue features.

Mocha-1 is based on Triad's silicon-proven via-configurable array (VCA) technology, which allows embedded system designers to customise processor, analogue and digital features with lower power consumption and greater system cost savings than last-generation ASIC solutions.

The TSX1001 is a single-chip, mixed-signal processor that an embedded product developer can use to measure sensors and control actuators in products such as accelerometers, automatic meter readers, temperature sensors, capacitive touch inputs, touch screens, medical sensors and other devices requiring analogue and processor resources integrated into small spaces using small, low-power batteries.

AE Develops Precision Amplifier For EMC Testing

AE Techron has developed the 7224 precision amplifier for the EMC compliance testing market. The precision amplifier can be used in a range of susceptibility test standards, including Ford EMC-CS-2009, DO-160, MIL STD 461 and T1.315-2001. Depending on the configuration, the 7224 can produce up to 1,500W and has an operating bandwidth of DC to 200kHz and a 70V/ms slew rate.

The precision amplifier can produce up to 30A of 13.5VDC with 2Vs peak to peak of line disturbances from DC to 150kHz. It can also produce up to 160Vp and 50Ap. The 7224 features a small chassis size (2U rack space, 45lb) for bench-top or rack-mounted operation. The amplifier will be available from 1 March 2010.

LTC2463 ADC Integrates Precision Reference

Linear Technology has introduced the LTC2463, a 16-bit delta sigma ADC that integrates a precision reference in 12-lead 3 x 3mm DFN and 4 x 5mm MSOP packages. With the device's integrated reference (2ppm/C typical, 10ppm/C maximum), the LTC2463 allows precise measurements with no need for an external reference. The LTC2463 communicates via a two-wire I2C interface and is a complete analogue solution for portable sensors, compact systems or power-supply monitoring.

Operating from a single 2.7 to 5.5V supply, the LTC2463 measures a +/-1.25V differential input range at output rates up to 60Hz, enabling measurement of temperature, pressure, voltage or other low-frequency sensor signals. The LTC2463 achieves 16-bit DC performance of 1LSB (typical) integral nonlinearity error, 2.2uVRMS transition noise and 0.01 per cent gain error (typical). This ADC has an internal oscillator, another space-saving feature.

The LTC2463 draws 2.5mA (max) supply current at the 60Hz maximum sample rate with the internal reference active. After each conversion, the ADC enters nap mode, reducing supply current to less than 1.5mA. Supply current can be further reduced to less than 2uA (max) in sleep mode. The LTC2463 incorporates an input sampling network that reduces the dynamic input current to less than 50nA, enabling a range of external-input-protection and filter circuits. It is offered alongside the LTC2461, a 16-bit I2C ADC that measures single-ended inputs between 0 and 1.25V.

Barden Provides Super-Precision Bearings

The Barden Corporation offers custom-designed, super-precision bearings for use in a wide variety of high-performance air handling systems. Certain technologies demand custom-engineered, high-precision bearings rather than standard catalogue bearings. Air handling or air movement systems, for example, often require high-precision bearings, especially if the application is critical or requires a bearing solution that offers long life, high reliability and high speeds.

Other factors that make high-precision custom bearings essential to many applications are high temperatures, high pressures, poor lubrication, low vibration levels or abnormal contamination levels. Air handling systems are commonly found in every industry sector. Examples include axial and radial flow fans, compressors, turbomolecular pumps, dry pumps, emergency magnetic touchdown systems, turbochargers, air conditioning systems and cooling systems used on military aircraft for engine, avionics or infrared weapon systems.

Barden's manufacturing plant in Plymouth has more than 1,700m2 of cleanrooms for contaminant-free assembly and inspection of bearings. The company designs and manufactures super-precision bearings to a minimum of P4/ABEC 7 quality standards. Bearing sizes range from 5mm to 180mm outside diameter. Most bearing solutions are angular contact or deep groove and are available as hybrid (steel races with ceramic balls) depending on the individual application. Barden is capable of manufacturing bearings to a geometric tolerance of P2 or better and envelope dimensions to P4 or better.

Raceway roundness is better than half a micron, with raceway surface finish better than one micro inch Ra. For the aerospace and defence sector, Barden provides bearing solutions for the relatively small fans that are used in electronics cooling systems on aircraft, as well as bearings for the larger, more powerful axial and radial flow fans, which are frequently found in military aircraft start-stop air handling applications. Super-precision angular-contact and deep-groove ball bearings are also used in cooling systems for avionics bays and for military aircraft and helicopter engines.

On military aircraft, Barden bearings are also being used on the latest advanced weapons ejection systems. The bearing solution, which may include special flanges, threads or tapped holes, is custom engineered for the specific application, enabling the customer to quickly fit the bearing assembly into their own pneumatic ejection system. Often, the bearing assembly is so critical to the overall product that none of the system can be assembled without the bearing.

Multiple bearing solutions may need to be engineered to suit the customer's different product variants. The bearing solution may also help to reduce the customer's overall design and assembly costs. Air conditioning systems on aircraft also use super-precision bearings. Bleed valves, which are designed for flow and pressure regulation, take the air from the aircraft engines and move hot or cold air around the aircraft. While this particular application may not require the very high-precision levels offered by Barden, they benefit from material combinations such as Cronidur/ceramic in order to survive arduous operating conditions.

Once the bleed air has been used to control the temperature of the cabin air, it must then be moved around the aircraft. The fan speeds here are moderate but the bearings are critical in ensuring that the fan can deliver the correct mixture of hot or cold air to the required location on the aircraft at the right time. Turbochargers are another important application area for super-precision bearings. Barden is currently producing a high-speed ball bearing cartridge for use in automotive turbochargers.

The bearing itself incorporates two rows of balls built to a controlled end float. The design of the cartridge includes features for delivery of lubricating oil directly to the raceways and also for an oil film around the outside diameter of the bearing, which provides damping from high levels of vibration. The high speed of the turbocharger creates its own challenges and requires a bearing cage that is mechanically strong in order to resist the high ball-to-cage contact loads, but that is suitably compliant to ensure that wear is not a limiting factor.

Another growing air handling application for super-precision bearings is in fuel-cell technologies, where the fuel cell requires a compressor for the hydrogen used in the reaction. Barden engineers bearing solutions for a number of different high-performance pump manufacturers, for use in extreme, hostile environments. By using new materials, special coatings and by adding real value to the customer's own design, Barden can help the customer reduce design costs, minimise component count, reduce assembly time, as well as optimise the overall efficiency and reliability of the air handling system.

In turbomolecular pumps, for example, the most important requirements are long life, reliability and high-speed performance. Used predominantly to create high vacuum conditions for semiconductor, analysis and SEM applications, these bearings typically require a solution that comprises ceramic balls, a special coating, is greased for life and that has a special high-quality raceway finish. Semiconductors, solar panels and flat-panel displays all require a production process that is clean and free of any contaminants that may adversely affect the process.

Working chambers are normally flooded with gas and evacuated using dry vacuum pumps to create a working vacuum. In semiconductor manufacturing, the etching tools need to operate in a vacuum chamber while they etch miniature grids of electronic circuitry onto silicon wafers. This type of operation is so intricate that all contaminants must be removed from the production chamber before work can begin. It is therefore common to see rows of dry vacuum pumps installed under production floors in many semiconductor manufacturing plants.

Another example of where high-precision custom bearings are used for air handling is in emergency touch-down bearings for active magnetic bearings (AMBs). AMBs use actively controlled electromagnetic forces to control the motion of a rotor or other ferromagnetic body, providing a practical method of suspending shafts (both axially and radially) in numerous applications, including compressors, blowers, air conditioning systems, gas expanders (used as venting devices in gas pipelines) and in energy storage systems as emergency back-up power.

However, as most AMBs require continuous power input and an active control system to hold the load stable, if this system fails then high-performance rolling element back-up bearings, such as those produced by Barden, are needed to help control the system and bring it safely to a stop.

Laser Welding Suits Precision-Welding Processes

Laser Lines has explained the key advantages of laser welding. Nylon welding processes are split into two categories: low-energy-density, and high-energy-density processes. Low-energy-density processes are those such as traditional arc and resistance welding technologies that rely on heat conduction through the material from a surface point to provide melting. High-energy-density processes using lasers create a heating filament, known as the keyhole, which penetrates the depth and offers 2D line heating, causing a highly efficient heat transfer into the weld joint.

The key advantages of laser welding are a small heat-affected zone (HAZ), accurate control of heat input, and the ability to direct the beam precisely to the weld point. This means reduced thermal distortion, the ability to weld close to heat-sensitive parts, and precision welding capabilities. Major applications for sub-kilowatt lasers are in precision-welding and heat-sensitive welding processes, such as hermetic sealing, because the typical focused beam diameter of 100 microns localises temperature rises around the weld to fractions of an inch. These stainless-steel coupons were welded using the Firestar f400 laser. The 0.9mm (0.036in) thick stainless steel was fixtured with the ends tightly aligned to create a butt-type weld.

Because most laser-welding processes do not use filler wire, but instead rely on the molten material to create the weld joint, part fit-up for a laser weld must be free of any gaps or voids in order to achieve strong, consistent joints. As with conventional welding processes, creating initial spot welds at intervals along the joint helps to prevent material separation during the actual weld pass. Full weld penetration through the stainless steel was achieved using 400W of power at a weld speed of 1.9m/min (75in/min).

Beam delivery for this application was accomplished using a 63.5mm (2.5in) positive meniscus lens, which produced a 100-micron (0.004in) spot and 1.8mm (0.07in) depth of focus. During welding, argon shield gas at a flow rate of 1.0 SCFM prevents the molten weld pool from reacting with the surrounding atmosphere. At this material thickness and weld speed, there is no difference between argon and helium assist. When welding thicker stainless material at higher speeds, helium shielding provides deeper weld penetration due to its higher ionisation potential and smaller weld plume.

Precision Micro Invests In Laser Direct Imaging

Precision Micro, a West Midlands-based specialist photochemical machining (PCM) company, has installed laser direct imaging (LDI) in its quest for continuous process improvement. PCM is the process of manufacturing sheet-metal components using a photo resist and etchants to remove the unwanted material.

The process can accurately produce highly complex parts with very fine detail and can provide an economical alternative to stamping, punching, laser or waterjet cutting or wire electrical discharge machining (EDM) for thin gauge precision parts. 'Next-generation' LDI is used in the manufacture of minute advanced electronics components. LDI is said to have already provided benefits to customers, allowing them to develop designs that were previously prohibitive on either technical or economic grounds.

Anthony Marrett, managing director, said: 'LDI has enabled us to deliver rapid prototyping even quicker and tool modifications can be carried out in a matter of minutes. 'Dimensional and positional accuracy across large formats are at new levels with a fourfold improvement in pitch accuracy across an 800mm x 600mm sheet. 'We have also noted that the improved capability has led to substantial yield improvements,' he added.

The LDI system is reported to have created an increase in demand for tight tolerance components as a result of the machine's ability to image ultra-fine, 15-micron features. Its charge-coupled-device (CCD) cameras and image recognition system also provide exceptionally precise front-to-back feature alignment. Precision Micro is believed to be the first specialist etching operation to utilise the LDI process.

Precision Micro Gains AS 9100 Certification

Precision Micro, the UK precision-components manufacturer, has been certified to AS 9100, the quality-management standard developed for the aviation, space and defence industries. AS 9100 is a single, common quality-management system for the whole aerospace industry, satisfying DOD, NASA and FAA quality requirements.

It encompasses ISO 9001, combining it with additional requirements designed to address regulatory compliance and other aerospace-sector specific issues. Precision Micro already holds a raft of approvals from the Civil Aviation Authority (CAA) and major international companies including TRW Aeronautical, Goodrich, BAE Systems, Raytheon, Thales and Westland.

Ondrives Catalogue Details Precision Gears

Ondrives has introduced a range of in-house manufactured products in its latest catalogue. Precision gears that have been made to standard DIN3961, with Grade 7 accuracy are available; for example, spur gears from 0.5Mn up to 3Mn, worms, wheels and helical gears.

Specials and modifications are also available, with production runs and smaller quantities welcomed on a just-in-time basis. Standard materials available include high-quality stainless steel, steel, aluminium, bronze and plastics. Most materials can be sourced by Ondrives to suit customers' designs and applications.

Precision Micro Develops Etching Process

A team at Precision Micro has developed a process to make Elgiloy, an austenitic super alloy, 'etchable'. Elgiloy is based on cobalt and is an erosion and corrosion-resistant stainless steel. Photo etching is a manufacturing technology that produces intricate, burr free, stress free, high-precision profiles by a process of controlled erosion. On the face of it, Elgiloy and photo etching should be incompatible.

This was the case until the process development team at Birmingham-based Precision Micro came up with a process route that the company claims has solved the problem. 'The solution does not just involve a combination of etchant chemicals,' said Bob Crutchley, director. 'A methodology has been developed, whereby a treatment is applied prior to etching and a catalyst is introduced during the etching process itself,' he added.

The process utilises standard photo resist materials and chemicals that have no exceptional hazard risk. It is designed to enable engineers to utilise Elgiloy in a wider range of applications in the medical, aerospace, automotive and advanced engineering industries. Elgiloy offers high corrosion resistance, temperature resistance and high elasticity modulus.

Reconditioned Driller / Borer Has High Precision

Obled-Sacsum has reconditioned its Poreba boring and drilling machine using a Dualdrive rack-and-pinion-drive system from Redex Andantex. This subcontractor of complex components now has a high capacity, precision machine capable of holding workpieces of up to 100 tonnes, with dimensions of 10m x 6m and a precision of +/-2/100mm on positioning. High speed is a fundamental characteristic of this type of large capacity machine since it can work continuously on the same product for three weeks.

It contributes directly to the profitability of the production equipment. The cost of the refurbished model is six or seven-times less than that of an equivalent new machine. Obled-Sacsum, having first invested in the latest generation of numerical control, then dedicated its research efforts into precision and productivity benefits. In this area, it is clearly mechanical drives that have largely contributed to the machine's improved performance.

The critical axis is the 10,000mm stroke X-axis, which is why the company decided to install a rack and pinion Dualdrive system from Redex Andantex. The specifications were essential for circular profiles (circular interpolation on two synchronised axis). 'Before, this was impossible for us as the contours had to be carved,' said M Basile, head of maintenance. 'At present we are attaining tolerances of +/-2/100mm.' To guarantee this simultaneous rigidity, high level of precision and elevated dynamic capacity, Obled-Sacsum chose Dualdrive from Redex.

'We were satisfied with our first experience of Redex, which concerned the modification of the Z-axis on a large engine lathe with 8m stroke,' added Basile. 'On this machine we used a Dualdrive rack-and-pinion-drive system with mechanical preload.' Dualdrive has two fundamental characteristics: very high stiffness and rigidity, which allows assured, continuous servo control up to the load limit; and zero backlash, eliminated by using two pinions - one to drive the axis and one to preload.

In such a system, two parallel-mounted servo planetary reducers are electrically coupled. The electrical preload uses a servomotor to drive each reducer, in order to simultaneously apply a frictional torque to the two pinions (to eliminate backlash) and a resulting torque for the overall drive of the system. The high rigidity of the Dualdrive is derived from its design: the output bearings, which are reinforced by two tapered roller bearings, preloaded and generously oversized; and the output shaft pinion, which is machined directly on the output shaft.

The bearing itself is designed to support the pinion as close as possible to the applied force. These features mean the Dualdrive offers exceptional rigidity for all axes, often allowing twice the loads and speeds of existing systems. The Dualdrive design reduces radial deflection, which is the cause of 60 per cent of overall distortion. In the case of Obled-Sacsum, the position is controlled in a closed loop by a linear encoder positioned on the X axis.