Abstract:
A method of manufacturing a sealed-beam type electric bulb comprises steps of inserting external lead wires of a halogen lamp having a filament inside into two through holes formed in a plastic base plate, filling said through holes with a flowable adhesive, shifting said halogen lamp so that said filament is positioned at a predetermined position, curing said adhesive to bond said external lead wires to said plastic base plate after shifting said halogen lamp thereby fixing the halogen lamp to said plastic base plate and inserting said plastic base plate with said halogen lamp mounted thereon into an opening formed at the rear end portion of a plastic reflector, and fixing said plastic base plate at the rear end of said reflector, thereby positioning said halogen lamp within said reflector.
Abstract:
A sealed beam lamp is provided, comprising a lamp envelope comprised of a reflector having an open front and a lens attached to the edge of the reflector, and a halogen bulb attached to the lamp envelope so as to face the lens and having a straight filament arranged along a direction of the diameter thereof and substantially parallel with the lens and a bulb envelope whose upper end surface portion is covered with a light-shielding layer except for those side wall portions of the bulb envelope facing the ends of the straight filaments.
Abstract:
A halogen incandescent lamp performing halogen cycle in operation, comprising a bulb formed of light-transmitting material in which gas containing halogen atoms and inert gas are enclosed, a tungsten filament with working temperature of 2,800.degree. K. or more contained in the bulb, at least a pair of lead-in wires connected to or integrally formed on both ends of the tungsten filament, respectively, and having a part sealed in the bulb, the lamp characterized in that the light-transmitting material is aluminosilicate glass having a strain point of 660.degree. C. or higher and an average thermal expansion coefficient of 41.times.10.sup.-7 to 48.times.10.sup.-7 cm/cm/.degree.C. at a temperature of 100.degree. to 300.degree. C., and that at least filament-side seal portions of the lead-in wires have a diameter of 0.2 to 0.6 mm.
Abstract translation:一种在操作中进行卤素循环的卤素白炽灯,包括由包含卤素原子和惰性气体的气体被包封的透光材料形成的灯泡,灯泡中包含的工作温度为2800°K或更多的钨丝,在 至少一对引入线分别连接到或一体地形成在钨丝的两端,并且具有密封在灯泡中的部分,该灯的特征在于,透光材料是铝硅酸盐玻璃,其应变点为 660℃以上,平均热膨胀系数为41×10 -7〜48×10 -7 cm /℃/℃,在100〜300℃的温度下, 引入线的直径为0.2至0.6mm。
Abstract:
A headlamp unit having a high intensity discharge lamp disposed at about the focus of a parabolic reflector and an incandescent lamp disposed at about the focus of a parabolic reflector.
Abstract:
An illuminating apparatus including a casing having an open side, a light reflective surface formed on the interior of the casing, a light diffusive transmission member on the casing and covering the open side, a discharge lamp mounted in the casing underneath the light diffusive transmission member, a first heating element disposed between the discharge lamp and the light reflective surface and a second heating element disposed between the discharge lamp and the light diffusive transmission member.
Abstract:
In an operating apparatus of a high-pressure discharge lamp of the invention, power is supplied to a heater provided in a high-pressure discharge lamp from a battery. The battery is charged by a charger which is driven by a power section. The power section is started by an ON operation of a switch which is turned on/off synchronously with the operation of a control switch. The control switch allows power supply from the battery to the heater when it is turned on. Therefore, always while power is supplied to the heater, the battery is being charged by the charger so that the voltage of the battery will not be lowered.