Release time: September 15, 2025
Views: 64
Medical cold therapy devices are medical equipment that combines cold/heat therapy with compression to apply localized cold/heat and pressure to injured tissue. This process helps reduce temperature to alleviate pain, diminish swelling, and prevent fluid seepage. Also known as cold compress devices, semiconductor cold therapy machines, or cryotherapy units, these systems generally consist of a main unit and peripheral accessories. The main unit includes a cooling system, a temperature control system, and a water circulation system. The peripheral accessories typically comprise insulated hoses and specialized water pads designed for different body parts.
Medical Cold Therapy Devices Utilizing Semiconductor Thermoelectric Cooling Technology
Medical cold therapy devices employ a semiconductor-based cooling system to provide a cold source that chills the water within a reservoir. The temperature control system regulates the water temperature to meet clinical requirements, and the water circulation system then pumps this chilled water to a specialized pad or wrap. This pad makes contact with the patient's body, and the circulating water carries away heat, creating a localized low-temperature environment to achieve therapeutic effects such as pain relief through cooling and reduction of swelling and exudation.
Medical cold therapy devices equipped with semiconductor cooling systems offer the following advantages and features:
1. Semiconductor cooling operates without any refrigerant, eliminating a potential source of pollution. These systems can work continuously for extended periods and have a long service life. Their simple installation leads to more stable instrument performance and easier maintenance.
2. A semiconductor cooling module (TEC) can both cool and heat, allowing a single component to replace separate heating and cooling systems. This enables the device to integrate both cold and heat therapy functions into one unit.
3. Semiconductor cooling chips are current-operated energy conversion devices. By precisely controlling the input current, highly accurate temperature regulation is achieved. This allows the instrument to precisely adjust temperatures and maintain full automatic constant temperature control.
4. Semiconductor cooling chips exhibit very low thermal inertia, resulting in extremely rapid cooling and heating rates. Under conditions of effective heat dissipation on the hot side and no load on the cold side, the cooling chip can reach its maximum temperature differential in less than one minute after power is applied. This significantly reduces the instrument's preparation time, easing the workload for medical staff.
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