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Japanese INFLIDGE heating lamp LCB-50 supplied by Tamazaki

NegotiableUpdate on 05/07
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Overview

INFLIDGE heating lamp LCB-50 from Japan, supplied by Tamazaki, Kyoto Tamazaki Advantage Supply, and provide quotation pictures. Welcome to inquire!

Product Details

Japanese INFLIDGE heating lamp LCB-50 supplied by Tamazaki

Japanese INFLIDGE heating lamp LCB-50 supplied by Tamazaki

The INFLIDGE heating lamp LCB-50 from Japan is a halogen point heater that features efficient heat gathering and non-contact heating.

Here is a detailed introduction:
Basic parameters: There are two specifications: 12V/75W and 12V/100W, with a focal length of 35mm, a collection path of Φ 2, a maximum heating temperature of 500 ℃, an average lifespan of 2000 hours, and a mass of approximately 160 grams.
Product features: Using a high color temperature halogen lamp as the light source, paired with a full gold steaming mirror, it is easy to obtain high temperature at the focal point. The reflector is a 360 ° circular reflector that can concentrate the heat energy of halogen lamps and obtain high-efficiency energy with less power. You can also choose to install the front glass to prevent mirror contamination.
Main application: Suitable for various heat treatments that require high purity, such as semiconductor preheating, printing drying, disk heating evaluation, resin mutual fusion and melting, etc.

The nominal average lifespan of INFLIDGE LCB-50 (halogen heating lamp) is 2000 hours, but the actual lifespan is mainly affected by five factors: electrical conditions, usage mode, environment and heat dissipation, maintenance and installation, materials and manufacturing. The following is a specific analysis:

1、 Electrical conditions (core impact)

  1. voltage stabilityThe lamp has a 12V low voltage specification. For every 10% increase in voltage beyond the rated value, the filament temperature rises sharply and the tungsten filament evaporates faster, which may shorten the lifespan by 60% -70%; If the voltage is too low, the filament will work unstably and accelerate aging. Power fluctuations and current spikes from low-quality transformers can directly damage the filament.

  2. Power matchingHigh quality electronic/electromagnetic transformers that are compatible are required. Unstable output can cause high-frequency interference and current surges, significantly reducing the lifespan of the filament.

2、 Usage mode

  1. switching frequencyFrequent start stop is extremely harmful. At the moment of turning on the light, the cold resistance of the filament is small, the impulse current is large, the evaporation rate of the tungsten wire is much higher than normal operation, and the cycle efficiency of tungsten halide is low. Frequent switching can shorten the life by more than 30%.

  2. Workload and durationLong term full power continuous operation, continuous high temperature of filament, fast sublimation loss of tungsten wire; Using at temperatures exceeding 500 ℃ will accelerate the melting of the filament and the aging of the reflector and quartz shell. Reasonable intermittent work and cooling cycles can extend the lifespan.

  3. temperature controlExcessive focus temperature and uneven heat accumulation of the reflector can cause local overheating and accelerate component damage.

3、 Environment and heat dissipation conditions

  1. heat dissipation effectPoor heat dissipation at the lamp body and seal (rated tolerance ≤ 350 ℃) can cause local overheating, damaging the seal and filament; Ensure ventilation during installation to avoid sudden temperature changes caused by direct cold air blowing.

  2. environmental mediumMoisture, dust, and corrosive gases (such as special gases in semiconductor processes) can corrode quartz shells, mirrors, and electrodes, and water vapor may also cause internal short circuits; Oil stains adhere to the quartz shell, which can carbonize at high temperatures and cause local overheating, resulting in loss of transparency and shortened lifespan of the shell.

  3. Physical shock and vibrationDuring work or high temperatures, vibrations and impacts can easily cause fine tungsten wires to break, which is a common non natural cause of damage.

4、 Maintenance and installation

  1. Cleaning and maintenanceTouching the quartz shell with bare hands will leave grease residue, which can cause the shell to become cloudy and partially overheated at high temperatures; Mirror contamination can affect the heat collection efficiency and may also cause uneven heat reflection and damage to the lamp body. Regular cleaning and installation of protective glass are necessary.

  2. Installation specificationsExcessive squeezing or twisting of the lamp body during installation can damage the internal structure; Deviation in the installation of mirrors can lead to abnormal heat accumulation and accelerate component aging.

5、 Materials and Manufacturing

  1. Filament and filling gasThe purity, structure, and arrangement uniformity of the filament, as well as the ratio and purity of halogen gas filling, directly determine the natural loss rate; Poor quality filaments are prone to uneven heating and early melting problems.

  2. Shell and reflectorThe purity and uniformity of the quartz shell, as well as the coating quality of the all gold steaming mirror, can affect the heat collection efficiency and heat resistance, and inferior components can accelerate aging.