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Incandescent reflector Infrared heat lamps/healthcare

Incandescent reflector Infrared heat lamps/healthcare Features Infrared radiation in the IR-B. 90% of energy is transmitted as (medium Infrared : - 3 m) and Infrared IR-C (long Infrared : 3 m - 1 mm). Instant, accurately controllable ranges is absorbed in the top layers radiant heat of the skin. Because of the low Special filament design for a thickness of these layers, the result is concentrated beam a relatively strong heating effect with High IR-A radiation level for a high temperature up to the pain deeper penetration of muscles threshold at approximately 45 C. and veins being reached rapidly. The shorter-wavelength IR-A. Benefits radiation (780 - 1400 nm) has a Enhanced blood circulation greater penetrating power. relieves muscular pain This means that the heat is Concentrated heat can be applied dissipated in a larger skin volume, to where it is needed creating a more pleasant and diffuse warmth.

1 Incandescent reflector Infrared heat lamps/healthcare Infrared radiation in the IR-B (medium infrared:1.4 - 3 µm) and IR-C (long infrared:3 µm - 1 …

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Transcription of Incandescent reflector Infrared heat lamps/healthcare

1 Incandescent reflector Infrared heat lamps/healthcare Features Infrared radiation in the IR-B. 90% of energy is transmitted as (medium Infrared : - 3 m) and Infrared IR-C (long Infrared : 3 m - 1 mm). Instant, accurately controllable ranges is absorbed in the top layers radiant heat of the skin. Because of the low Special filament design for a thickness of these layers, the result is concentrated beam a relatively strong heating effect with High IR-A radiation level for a high temperature up to the pain deeper penetration of muscles threshold at approximately 45 C. and veins being reached rapidly. The shorter-wavelength IR-A. Benefits radiation (780 - 1400 nm) has a Enhanced blood circulation greater penetrating power. relieves muscular pain This means that the heat is Concentrated heat can be applied dissipated in a larger skin volume, to where it is needed creating a more pleasant and diffuse warmth.

2 Optimum heating economy and efficiency The Philips Infrared heating lamps R95E E27 Philips Infrared lamps provide an have a wavelength spectrum with a excellent solution for localised heat pronounced peak at approximately treatment to provide relief from 1000 nm in the deep-penetrating muscular pain. IR-A range. They can also be used to treat This radiation characteristic makes ailments like lumbago, neuralgia and them ideal radiant heat sources for myalgia and colds. treating deeper-seated muscular This form of heat therapy has also ailments and sports injuries. been shown to speed the healing of different kinds of injuries, including Choice of lamp types sports injuries and non-infected Philips offers a choice of two wounds, and in many cases to Infrared lamp types for use in heat provide rapid and effective pain radiation equipment in therapeutic relief.

3 Applications: the R95 blown-bulb PAR38E E27 Dimensions in mm types with a 100W power rating, 121 nom. The benefits of this form of heat and the 150W PAR38 pressed glass 95 nom. therapy are based on a vasodilatory reflector lamps. response in the skin which locally For optimum directional control of enhances the blood circulation. the heat radiation, the PAR38 lamps This results in an increased have concentric rings in the front metabolic rate and transport of glass. All types have a red lacquered 136 max. 130 max. metabolites and other essential front to reduce visible light emission, biochemical compounds. thereby virtually eliminating Benefits are also gained by deeper disturbing glare. penetration of heat which provides The red filter also cuts off light a gentle and pleasant warming below 600 nm to reduce radiation effect.

4 Which would be absorbed by the R95E E27 PAR38E E27 blood haemoglobin (prevention of The effects of heating in the skin are haemolysis). All types have a 300. Wavelength (nm) related to the different layers of hour lifetime at 100% output. 0 1000 2000 3000 4000 5000 6000 7000 which the skin is composed, which Epidermis Infraphil' lamps are intended 1 have different light-absorbing specifically for use with heat characteristics. radiation equipment marketed by Penetrationdepth (mm). Dermis 2. The epidermis or outer part of the Philips Domestic Appliances for 95% absorption 3. skin is itself made of two layers: the Division, while the Philips Infrared '. 4. stratum corneum or horny layer, lamps can be used with any suitable 5 with a thickness of 8 - 20 m, and equipment. Subcutis 6 the stratum malphigi, with a All types have a universal burning 7 thickness of 50 - 150 m.

5 Position. Below the epidermis is the dermis, The penetration depth in the IR-A Region is optimal and becomes very low in the which varies in thickness between Applications IR-B and IR-C. IR-C is already absorbed in the horny layer. 1 and 4 mm. Providing relief from muscular pain All these layers have different Providing relief from ailments such refractive indices and different as rheumatism, lumbago, neuralgia, reflection, transmission and and colds scattering characteristics, depending Stimulating recovery from injury on the wavelength of the light. Comfort and cosmetic care 1. Incandescent reflector Infrared heat lamps/healthcare Type Wattage Voltage Cap/ Finish lamp Nett Ordering EOC. base life weight number 100%. W V h g PAR38 E INFRAPHIL. INFRAPHIL PAR38E 150W 125-130V E27 RED 300 9238 049 35600 128843.

6 INFRAPHIL PAR38E 150W 230V E27 RED 300 9238 049 44200 601032. INFRAPHIL PAR38E 150W 240V E27 RED 300 9238 049 45500 128867. PAR38 E Infrared . Infrared PAR38E 150W 230V E27 RED 300 9238 066 44200 128874. R95 E INFRAPHIL. INFRAPHIL R95E 100W 230V E27 RED 300 9232 441 44200 136916. INFRAPHIL R95E 100W 240V E27 RED 300 9232 441 45500 126771. R95 E Infrared . Infrared R95E 100W 110-120V E27 RED 300 9232 442 32200 149695. Infrared R95E 100W 230V E27 RED 300 9232 442 44200 145598. Radiation intensity at 30 cm from the front of the bulb Radiation intensity at 30 cm from the front of the bulb R95-E 100W / 230V PAR38-E 150W / 230V. 300 300. 2. 2. mW per cm mW per cm 225 225. 150 150. 75 75. 0. 5 10 0 5 10 Distance from axis of lamp in cm Distance from axis of lamp in cm Radiation distributions R95-E 230V 100W.

7 Irradiance at 1m (W/ (m2. nm)). 0. 1000 1500 2000 2500. Wavelength in nm Spectral power distribution R125 blown-bulb Infrared heat lamps 10. 8. mW per 10 nm per W. 6. Tk = 2450 K. 4. IR-A IR-B. 2. IR-C. 0. 700 1000 1400 2000 3000 4000. Wavelength in nm Spectral power distribution 2.


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