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660nm 850nm Heating and Red Light Technology Heated Belt with 140pcs LEDs for Nutrient Delivery

660nm 850nm Heating and Red Light Technology Heated Belt with 140pcs LEDs for Nutrient Delivery

MOQ: 1 morceau
Prix: Negotiated
Emballage Standard: 36*26*6cm Carton
Période De Livraison: 7-10 jours de travail
Méthode De Paiement: L/C, T/T, espèces, virement bancaire, etc.
Capacité D'approvisionnement: Négocié
Les informations détaillées
Lieu d'origine
Guangdong, Chine
Nom de marque
Fitkang
Certification
CE, FCC, FDA, Rohs
Numéro de modèle
HK-102
Matériel:
fils de chauffage en fibre de carbone
Fonction:
Thérapie infrarouge lointaine et technologie de lumière rouge
Réglage de la température:
30 à 60 degrés Celsius
Cuir:
Cuir PU de qualité supérieure
Ajustez le temps:
10 à 60 minutes
Ajustez la longueur:
130 x 25 cm
Chauffage:
Oui
Description de produit

Far-Infrared Waist Belts: A Technological Breakthrough in Health and Wellness

Technical Overview

Far-infrared (FIR) waist belts leverage advanced textile engineering and thermal emission principles to deliver targeted health benefits. The core technology involves integrating FIR-emitting materials—such as ceramic powders, carbon fibers, or mineral composites—into the fabric structure. These materials absorb ambient energy and re-emit it as FIR radiation within the 4–14 μm wavelength range, a spectrum known for its bio-compatibility with human tissues.

Two primary manufacturing methods dominate the industry:

  1. Spun-Fiber Technology: FIR-emitting particles are embedded during fiber extrusion, ensuring uniform dispersion and durability. This method is favored for high-end products due to its consistent performance and washability.
  2. Post-Treatment Finishing: Existing fabrics undergo coating or lamination processes to incorporate FIR layers. While cost-effective, this approach may sacrifice longevity if the coating degrades over time.

Modern belts often incorporate smart features like adjustable temperature controls, USB rechargeable batteries, and ergonomic designs to enhance user comfort. For instance, models from Shenzhen Anpan Health Industry Co., Ltd., feature carbon fiber heating elements paired with FIR-emitting textiles, enabling dual-action therapy.

660nm 850nm Heating and Red Light Technology Heated Belt with 140pcs LEDs for Nutrient Delivery 0

Power And Voltage 16w 110v/220v/240V
Color Grey or others
Port Guangzhou, CN
Logo customization Support
Packaging Size 26*24*18cm
Belt Temperature 30-60 Celsius Degree
Plugs Type CN, JP, US, EU, AU, UK, Za, It, Others
Heating Element Far Infrared Carbon Fiber Heating Wires
Time 10-60 Minutes
Outer Package Carton Package

Synergistic Effects

The belt’s tri-wavelength design ensures multi-layered tissue engagement:

  • 660nm targets superficial inflammation and skin health.
  • 850nm penetrates deep muscles and joints for pain relief.
  • FIR complements with thermal effects, enhancing blood flow and nutrient delivery.

Development Prospects

  • Market Growth: The global photobiomodulation market is projected to reach $2.3 billion by 2030, driven by demand for non-invasive pain management.
  • Technological Advancements: LED-based devices (e.g., 5050 tri-chip modules) offer higher energy efficiency and portability compared to traditional lasers.
  • Clinical Validation: Ongoing studies explore combinations with electrotherapy or ultrasound for synergistic outcomes.