Gas light emitting diode (GLED) technology response

Gas-emitting diode (Gas-LED, GLED), its technical effects are:

1. The appearance of incandescent lamps

It is obvious that the shape of the integrated arc-discharge ball excited by the GLED's e-spinning discharge matches the traditional incandescent bulb shell.

2. The effect of energy saving lamps

The reason why energy-saving lamps are energy-saving is mainly due to the use of rare earth fluorescent materials (three primary color phosphors). The compact fluorescent lamp-energy-saving lamp produced by the three-primary phosphor realizes a good uniformity of high light efficiency and high color rendering, and can replace the incandescent lamp with it, and can achieve a certain energy-saving effect. This energy-saving effect is only because its glass tube is coated with three primary color phosphors, which makes the color feel fresh and bright, like the brightness is increased by 30%, and has nothing to do with the design of the lamp!

When the energy-saving lamp is turned on at a high frequency, the luminous efficiency of the lamp is significantly higher than that at 50 (60) Hz. This is due to the disappearance of the oscillation of the electrode in the half cycle as the anode, which reduces the electrode drop loss, rather than the efficiency of the positive column region. Studies on some fluorescent lamps have found that the luminous efficiency of fluorescent lamps can be increased by 10% when the AC power supply frequency is increased from 50 Hz to above 20 kHz.

GLED adopts DC lighting, the electrode does not oscillate at all, and the bulb is also coated with three primary color phosphors, which can be achieved by energy saving of about 40%.

3. Life of the electrodeless lamp

The return of the emitter coated by the discharge lamp means that the molecules of the emitted material are ionized into positive ions after leaving the cathode, and the emitted matter is returned to the cathode under the action of an electric field directed to the cathode. In the case where the cathode thermal emission capability is sufficiently large, about 85 ∽ 90% of the thermally evaporated emissive material returns to the cathode, which greatly reduces the rate of emission of the emissive material.

GLED uses DC lighting, the columnar anode points to the Ω cathode has a constant DC electric field, and the thermal evaporation of the emitting material is about 85∽90% returning to the cathode, which makes the cathode electron powder almost no loss, and its lifetime is comparable to that of the electrodeless lamp. .

Innovative electric light source - GLED has created a new field of lighting, which has the opportunity to reorganize the technology of incandescent and fluorescent lamps. At the same time, the manufacture and sale of its products will be an outstanding business opportunity for the lighting industry.

The inventor of GLED is about to return home. In order to promote the patent technology to be transformed into real productivity as soon as possible, according to the relevant provisions of the Patent Law of the People's Republic of China, the following patents can be used for trial purposes (see attachment). After the test is successful, the manufacturer who has obtained the conditions for the implementation of the inventor's assessment will pay the ordinary license (which should be licensed) to pay the price sufficient to maintain the validity of the patent. For a discussion about GLED, please visit the “Chen Suran Blog”. The homepage is:

Http://chensuoran.blog.lightingchina.com

annex:

Related patents

ZL2007100859867 (authorization announcement number: CN101110338B); ZL2008201794766 (authorization announcement number: CN201340803Y);

2009101269762 (invention publication number: CN101825679A); 2009101522224 (invention publication number: CN101944465A);

ZL2009101673366 (authorization announcement number: CN101996831B); 2009101684267 (invention publication number: CN101996845A);

ZL2011202536621 (authorization announcement number: CN202160322U); ZL2008201794751 (authorization announcement number: CN201323177Y);

ZL2008200021737 (authorization announcement number: CN201156516Y); ZL2006200026939 (authorization announcement number: CN200953339Y);

ZL2006201215302 (authorization announcement number: CN201282111Y); ZL2008201794747 (authorization announcement number: CN201323176Y);

ZL2004200581783 (authorization announcement number: CN2751437Y);

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