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Supplier: Coiling Technologies, Inc.
Description: Compression springs are in the shape of a helix made from spring wire and are primarily used in a ‘PUSH’ application. When we put a load on a compression spring, it initially compresses and then stores the energy, which in turn pushes back the load and the spring returns
- Coil Shape / Spring Type: Cross-section Compression (Garter, Meander, etc.), Straight
- Material: Nickel Base Alloy Wire, Other
- Wire Diameter: 0.0110 to 3 inch
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Supplier: Smalley
Description: Marcel Expanders are available as a custom from Smalley. Smalley engineers are available to assist with spring design. For more information, email Smalley engineering now. Expanders can also be formed in a circle. The expander will provide radial force or outward pressure. These can be
- Coil Shape / Spring Type: Cross-section Compression (Garter, Meander, etc.)
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Description: Our Maryland Precision Spring location has been a custom manufacturer of Belleville disc springs & stacks, constant & variable force springs, motor & power springs, retail PoP pushers, reel retrievers, light stampings, and electrical assemblies since 1972. A leading
- Coil Shape / Spring Type: Barrel, Conical, Cross-section Compression (Garter, Meander, etc.), Hourglass, Straight, Other / Specialty
- Material: Brass, Copper Base Alloy, Nickel Base Alloy Wire, Stainless Steel, Other
- Wire Diameter: 0.3120 inch
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Supplier: EQYO
Description: OmniShield® EMI / RFI Shielding Springs The OmniShield® product line is composed of four high-performance spring types capable of handling extreme service conditions while exhibiting excellent EMI/RFI shielding properties. Saint-Gobain has been making these cross
- Coil Shape / Spring Type: Cross-section Compression (Garter, Meander, etc.)
- End Configuration: Closed / Squared Ends
- Material: Copper Base Alloy, Nickel Base Alloy Wire, Stainless Steel
- Spring Rate: 2.6 to 15.6 lbs/in
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Supplier: EQYO
Description: OmniShield® EMI / RFI Shielding Springs The OmniShield® product line is composed of four high-performance spring types capable of handling extreme service conditions while exhibiting excellent EMI/RFI shielding properties. Saint-Gobain has been making these cross
- Coil Shape / Spring Type: Cross-section Compression (Garter, Meander, etc.)
- End Configuration: Closed / Squared Ends
- Material: Copper Base Alloy, Nickel Base Alloy Wire, Stainless Steel
- Spring Rate: 5.1 to 67 lbs/in
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Supplier: EQYO
Description: OmniShield® EMI / RFI Shielding Springs The OmniShield® product line is composed of four high-performance spring types capable of handling extreme service conditions while exhibiting excellent EMI/RFI shielding properties. Saint-Gobain has been making these cross
- Coil Shape / Spring Type: Cross-section Compression (Garter, Meander, etc.)
- End Configuration: Closed / Squared Ends
- Material: Copper Base Alloy, Nickel Base Alloy Wire, Stainless Steel
- Spring Rate: 2.1 to 24.3 lbs/in
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Supplier: EQYO
Description: OmniShield® EMI / RFI Shielding Springs The OmniShield® product line is composed of four high-performance spring types capable of handling extreme service conditions while exhibiting excellent EMI/RFI shielding properties. Saint-Gobain has been making these cross
- Coil Shape / Spring Type: Cross-section Compression (Garter, Meander, etc.)
- End Configuration: Closed / Squared Ends
- Material: Copper Base Alloy, Nickel Base Alloy Wire, Stainless Steel
- Spring Rate: 2 to 24 lbs/in
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Supplier: Lee Spring Company
Description: HEFTY™ DIE SPRINGS are heavy duty metal compression springs manufactured using round wire, specifically designed to be used as Die Springs or as heavy duty coil springs in any heavy stress, heavy load application. Lee HEFTY Die Springs are generally priced at 1/3
- Coil Shape / Spring Type: Cross-section Compression (Garter, Meander, etc.)
- Free Length: 4 inch
- Inner Diameter (ID): 0.7500 inch
- Material: Other
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Supplier: Lee Spring Company
Description: COMPRESSION SPRINGS are open-coil helical springs wound or constructed to oppose compression along the axis of wind. Helical Compression Springs are the most common metal spring configuration. Generally, these coil springs are either placed over a rod or fitted
- Coil Shape / Spring Type: Cross-section Compression (Garter, Meander, etc.)
- Free Length: 1.5 inch
- Material: Stainless Steel
- Outer Diameter (OD): 0.6500 inch
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Description: Mohawk Spring has been manufacturing high-quality, precision compression springs, extension springs, torsion springs, garter springs, and wire forms since its inception in 1960. They are integral components to a range of products including jet aircraft, missiles,
- Coil Shape / Spring Type: Barrel, Conical, Cross-section Compression (Garter, Meander, etc.), Straight, Other / Specialty
- End Configuration: Closed / Squared Ends, Ground Ends
- Material: Alloy Steel (Music Wire), Copper Base Alloy, High Carbon Steel Wire, Nickel Base Alloy Wire, Stainless Steel
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Supplier: Lee Spring Company
Description: BACKGROUND • The Lee Spring catalog has always offered springs with relatively low spring rates or workable (maximum) loads. But often, the offered diameters (outside or inside) were too small to accommodate the intended application assembly requirements. • This new "Lite
- Coil Shape / Spring Type: Cross-section Compression (Garter, Meander, etc.)
- Free Length: 1 inch
- Inner Diameter (ID): 0.3910 inch
- Material: Stainless Steel
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Supplier: GMN Bearing, USA Ltd.
Description: GMN insert element with meander shaped spring, high speed, high accuracy
- Application / Type: Industrial / General Purpose
- Bore Diameter: 0.5906 inch
- Clutch Engagement: Sprag
- Diameter: 0.9055 inch
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Electromechanical considerations in developing low-voltage RF MEMS switches
Therefore, an - meander spring has 2 pri- mary beams and 2 .
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Variable optical attenuator using planar light attenuation scheme based on rotational and translational misalignment
Additionally Fig. 1b, c show that one end of mirror is held by a meander spring , where this spring is anchored on substrate and could be bended due to the force from electrothermal actuator.
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Performance Simulation of a Microwave Micro-Electromechanical System Shunt Switch Using Chatoyant
Modal analysis of four- meander spring .
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An efficient evolutionary multi-objective framework for MEMS design optimisation: validation, comparison and analysis
An example can be seen in [66] where evolved designs, here a meandering spring , contained topologies which were infeasible due to the high level of stress placed on them.
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Tuned dual beam low voltage RF MEMS capacitive switches for X-band applications
The tunable switch is designed using two shunt beams with meander springs .
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MEMS capacitive switch with stable actuation voltage over a broad temperature range
In one device, the plate is suspended by meander springs , while in the second by straight springs.
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New H-shape soft tortion spring and its micro mirror application
The meander spring has a quite small constant kx.
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Low Voltage Rf Mems Capacitive Shunt Switches
Capacitive MEMS switch with different meander spring beam had actuation voltages of 1.9–7V [10].
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Nature Inspired Cooperative Strategies for Optimization (NICSO 2010)
The case studies experimented with are; a simple meandering spring , a meandering resonator and finally a real world example of an ADXL150 accelerometer.
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Bi-resonant scanning mirror with piezoresistive position sensor for WVGA laser projection systems
The meander spring is made from bulk silicon and is 350 x 220 µm2 in size.
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