Know the monitoring cable

SYV 75-5-1 (A, B, C)
S: RF Y: polyethylene insulation V: PVC sheath A: 64 series B: 96 series C: 128 series 75: 75 ohms 5: cable outer diameter is 5MM 1: representative single core SYWV 75-5-1
S: RF Y: polyethylene insulation W: physical foam V: PVC sheath 75: 75 ohm 5: cable outer diameter is 5MM 1: represents a single core For example: RVVP2 × 32 / 0.2 RVV2 × 1.0 BVR
R: flexible wire VV: double-sheathed wire P shield 2: 2: 2-core multi-strand wire 32: 32 copper wires per core 0.2: each copper wire diameter is 0.2mm
ZR-RVS2 × 24 / 0.12
ZR: flame retardant R: flexible wire S: twisted pair 2: 2 core multi-strand wire 24: 24 copper wires per core 0.12: each copper wire diameter is 0.12mm
Model, name RV copper core vinyl chloride insulated connecting cable (wire)
AVR tinned copper core polyethylene insulated flat connection flexible cable (wire)
RVB copper core PVC flat connection wire RVS copper core PVC stranded connection wire RVV copper core PVC insulated PVC sheathed round connection flexible cable ARVV tinned copper core PVC insulated PVC sheath Flat connection flexible cable RVVB copper core PVC insulated PVC sheathed flat connection flexible cable RV-105 copper core heat-resistant 105oC PVC insulated PVC insulated connection flexible cable AF-205AFS-250AFP-250 silver-plated poly Chloroethyl fluoride plastic insulated high temperature resistant-60oC ~ 250oC connecting flexible wire

UV accelerated aging test chamber

A UV accelerated aging test chamber is a specialized piece of equipment used to simulate the effects of long-term exposure to ultraviolet (UV) radiation on various materials and products. It is commonly used in industries such as automotive, aerospace, cosmetics, and electronics to evaluate the durability and performance of materials under accelerated aging conditions.

The chamber typically consists of a controlled environment with UV lamps that emit high-intensity UV radiation, simulating the UV exposure that materials would experience over an extended period. The UV lamps produce a spectrum of UV light, including UVA, UVB, and UVC, which can be adjusted to mimic specific environmental conditions.

The test specimens or products are placed inside the chamber, and the UV lamps are turned on to initiate the aging process. The chamber may also incorporate other environmental factors such as temperature, humidity, and airflow to simulate real-world conditions more accurately.

The accelerated aging process allows manufacturers to assess the effects of UV radiation on the materials' physical, chemical, and mechanical properties. It helps determine the degradation, discoloration, embrittlement, cracking, or other changes that may occur over time due to UV exposure.

UV accelerated aging test chambers are essential for quality control, product development, and compliance with industry standards and regulations. They enable manufacturers to evaluate the performance and lifespan of materials, optimize formulations, and make informed decisions about product design, materials selection, and UV protection measures.

UV aging test chamber, UV accelerated aging test chamber, UV test chamber

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