| Marka Adı: | Hoan |
| Model Numarası: | JGX-2228D-665B |
| Adedi: | 4 Adet |
| Ödeme Koşulları: | T/T, L/C, PayPal, Western Union |
The JGX-2228D-665B wire rope vibration isolator is purpose-engineered for applications where electromagnetic compatibility (EMC) and magnetic field cleanliness are critical operational requirements. This model from the JGX-2228 series utilizes 22.2mm diameter stainless steel AISI 304 stranded cable — in its fully annealed, non-magnetic condition — threaded through aluminum alloy 6061-T6 retaining bars to form an 8-loop helical isolation assembly with a 665kg maximum static load rating in compression.
The spring function is created by the elasticity inherent in the flexing of a cable preformed into a helical loop. Each cable loop acts as a non-linear spring element, providing a compliant initial response for vibration isolation that progressively stiffens under increasing load to prevent excessive displacement during shock events. The damping function is the result of relative friction between the cable's individual wire strands. The 7*19 strand construction creates hundreds of inter-wire contact points where Coulomb friction converts dynamic mechanical energy into distributed low-grade thermal dissipation — a purely passive, maintenance-free energy management mechanism.
The cables, which are made of stainless steel AISI 304 in the annealed condition, exhibit superb water-proof characteristics, exceptional corrosion resistance, and steady, predictable mechanical performance. With their corrosion resistant, all-metal construction, Xi'an Hoan's wire rope vibration isolators are environmentally stable, high-performance devices that are unaffected by temperature extremes, chemicals, oils, ozone, UV radiation, and abrasive media.
Conventional vibration isolators frequently incorporate ferrous alloys, magnetic stainless steel grades, or embedded steel components that can distort local magnetic fields, generate eddy currents in time-varying fields, or introduce passive intermodulation (PIM) distortion in RF environments. The JGX-2228D-665B eliminates these risks through deliberate, application-driven material selection:
One of the most challenging scenarios in vibration isolation is the management of transient shock pulses — short-duration, high-amplitude mechanical impulses that can overwhelm conventional dampers before they have time to respond. The JGX-2228D-665B addresses this through an inherent multi-stage shock energy dissipation cascade that activates within microseconds of wavefront arrival:
| Model | JGX-2228D-665B |
| Series | JGX-2228 (Heavy-Duty Helical Cable Isolator) |
| Cable Diameter | 22.2mm (7/8 inch) |
| Cable Construction | 7*19 Strand Pattern, Stainless Steel AISI 304 (Annealed) |
| Cable Magnetic Permeability | < 1.02 μr (Non-Magnetic Classification) |
| Bar Material | Aluminum Alloy 6061-T6 (Non-Magnetic, μr = 1.0) |
| Number of Loops | 8 |
| Max Static Load (Compression) | 665kg |
| Surface Treatment | Hard Anodizing (Standard, Electrically Insulating), White Anodizing (Optional) |
| EMC Emissions | Zero (Passive Mechanical Device — No Electronics) |
| Damping Mechanism | Inter-Strand Coulomb Friction (Passive, Amplitude-Dependent) |
| Damping Ratio | 0.15-0.25 (Amplitude-Dependent) |
| Resonant Frequency | 8-12Hz (Load-Dependent) |
| Isolation Efficiency | >90% Above 25Hz |
| Operating Temperature Range | -40°C to +120°C (-40°F to +248°F) |
| Shock Resistance Rating | 20g / 11ms Half-Sine Pulse |
| Mounting Hole Diameter | M12 (12mm Through-Hole) |
| Electrical Isolation | Available (Hard Anodized Bars + Optional Non-Conductive Bushings) |
| Net Weight | 0.5KG |
| Mounting Orientation | Compression, Shear, 45° Compression, Roll |
Material of Mounting Bars: Stainless Steel or Aluminum can be selected. Aluminum alloy 6061-T6 is the standard recommendation for EMC-sensitive applications due to its inherently non-magnetic properties (μr = 1.0) and the electrical insulation provided by the hard anodized surface layer. Stainless steel 304 in the annealed condition is available as an option for highly corrosive environments where the additional strength of steel is required — note that annealed 304 maintains non-magnetic classification (μr < 1.02).
Surface Treatment Selection of Aluminum Mounting Bars:
| Application Sector | Typical Equipment Protected | Vibration & Shock Sources | EMC / Non-Magnetic Advantages |
|---|---|---|---|
| Medical Imaging Facilities | MRI scanner support equipment, CT gantry bearings, PET scanner cooling pumps, X-ray generator mounting platforms | Gantry rotation imbalance, cryocooler-induced oscillation, cryogen boil-off vibration, floor-borne structural vibration | Non-magnetic materials prevent image artifacts and field distortion; zero EMI preserves diagnostic signal integrity; suitable for Zone III/IV MRI suite installation |
| Scientific Research Instrumentation | Scanning electron microscopes (SEM), transmission electron microscopes (TEM), mass spectrometers, laser interferometer tables, atomic force microscopes, vacuum chamber support frames | Turbo-molecular pump vibration, acoustic noise coupling, seismic micro-tremor, thermal expansion and contraction cycling | Ultra-low magnetic permeability (<1.02 μr) prevents electron beam deflection; passive design eliminates ground loop noise; zero particulate generation maintains vacuum integrity |
| Telecommunications Infrastructure | Satellite earth station equipment, microwave relay tower electronics, fiber optic transmission racks, cellular base station radio units | Wind-induced tower oscillation, traffic-induced ground vibration, equipment cooling fan vibration, thermal cycling of outdoor enclosures | Zero RF interference preserves signal-to-noise ratio; non-ferrous materials eliminate passive intermodulation (PIM) sources; all-metal construction handles outdoor exposure |
| Data Center & Server Infrastructure | Server rack isolation platforms, storage array mounting frames, UPS system vibration isolation, precision cooling system mounts | Fan-induced harmonic vibration, seismic event protection, mechanical coupling through raised floor structures, compressor vibration transmission | Non-conductive mounting option prevents ground potential differences between racks; passive design adds zero heat load to the data center environment |
| Semiconductor & Precision Manufacturing | Lithography stepper platforms, wafer inspection stations, CNC coordinate measurement machines, optical alignment benches, laser drilling systems | Pump pulsation, material handling system vibration, adjacent machinery operation, HVAC duct rumble, internal stage motion reaction forces | Non-magnetic materials eliminate sub-micron measurement drift; zero particulate generation maintains cleanroom Class 100/ISO 5 compatibility; no outgassing |
| Marine Electronics & Navigation | Dynamic positioning system consoles, navigation radar and sonar equipment, bridge communication systems, gyrocompass mounting platforms | Wave-induced hull vibration, main engine harmonic excitation, propeller cavitation, storm loading, docking impact | Corrosion-resistant non-magnetic materials; EMI-free operation near sensitive navigation receivers; all-axes protection against multi-directional vessel motion |
| Renewable Energy Electronics | Wind turbine pitch control cabinets, solar farm inverter stations, tidal generator instrumentation pods, battery energy storage management systems | Blade-pass frequency vibration, tower resonance, wave slam impact, thermal expansion, grid-frequency mechanical coupling | Outdoor-rated non-magnetic materials; zero maintenance for remote/offshore installations; wide temperature range handles all climate zones |
| EMC Test & Calibration Laboratories | Anechoic chamber equipment support, EMC susceptibility test fixtures, calibration standard platforms, vibration-isolated optical tables | Shaker table reaction forces, ambient building vibration, acoustic excitation from test signals, personnel footfall vibration | Known, quantifiable non-magnetic signature for calibration traceability; zero parasitic EMI contribution during EMC susceptibility testing; documented material certifications available |
Q: Is the JGX-2228D-665B truly non-magnetic? Can it be used near an MRI scanner?
A: Yes. Both the AISI 304 stainless steel cable (annealed condition, μr < 1.02) and the aluminum alloy 6061-T6 bars (μr = 1.0) are classified as non-magnetic materials. The isolator produces no measurable magnetic field distortion and has been specified for ancillary equipment installations in MRI suite equipment rooms. We provide material certifications documenting magnetic permeability upon request.
Q: How does transient shock wave dissipation differ from regular vibration damping?
A: Regular vibration damping addresses continuous, lower-amplitude oscillation. Transient shock dissipation targets short-duration, high-intensity mechanical impulses. The JGX-2228D-665B handles both through different mechanisms: the cable loop elasticity isolates steady-state vibration, while the multi-path inter-strand Coulomb friction cascade dissipates shock energy within microseconds of wavefront arrival. The non-linear stiffness curve provides progressively increasing resistance that prevents bottoming under shock without sacrificing isolation at normal vibration levels.
Q: Does the JGX-2228D-665B require electrical grounding or shielding?
A: No. The JGX-2228D-665B is a completely passive mechanical device. It requires no electrical power, no grounding connection, and no shielding. The hard anodized surface treatment on the aluminum bars actually provides electrical insulation between the equipment and the mounting surface, preventing ground loop formation — a common source of noise in sensitive measurement systems.
Q: Can the JGX-2228D-665B be customized for specific EMC requirements?
A: Yes. Our engineering team can configure the bar material, surface treatment, bushing material, and mounting hole pattern to meet your specific EMC, magnetic cleanliness, and mechanical requirements. We regularly supply custom configurations for medical imaging OEMs, semiconductor equipment manufacturers, and scientific instrument builders. Contact us with your specifications for a technical consultation.
Q: What documentation is available for EMC/MRI compliance verification?
A: We provide material certificates to EN 10204 3.1 including magnetic permeability test data, ISO 9001:2015 quality system certification, RoHS compliance documentation, and CE marking where applicable. Custom test reports for specific material properties can be arranged for OEM qualification programs.
Xi'an Hoan Microwave Co., Ltd. is the professional manufacturer of vibration isolators and mounts, providing top quality energy absorption and vibration isolation solutions to a variety of commercial, industrial, and heavy industry sectors.
Our products cover a wide range, including wire rope vibration isolators, elastomeric shock mounts, friction dampers, and shock absorbers, as well as LC filters and microwave communication components. Established in 2005, with fast development over two decades, we have grown to more than 500 employees including over 100 engineering and technical experts. The company is headquartered in Xi'an High-tech Zone, Shaanxi, China, operating 800 square meters of dedicated production and R&D facilities.
Now, we serve customers across more than 31 provinces in China and almost 25 overseas countries, providing vibration isolation solutions for motor drives, fan systems, punch machines, elevators, compressors, chemical processing equipment, railway and subway systems, bridge engineering, mechanical equipment, large-scale construction, recording studios, theaters, vehicles, vessels, and industrial machinery of all types.
Contact us today to see how our products can benefit your specific equipment application needs, or alternatively you may find one of our many representatives to help you meet your product requirements. We specialize in application-specific isolation design with particular expertise in EMC-compatible and magnetically-clean installations for medical, scientific, and telecommunications environments.