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RLOD#45 (2020.08.21) 1962 Philips LL103137E Zn

Electric discharge lamps filled with a single radiating element are useful in special applications such as spectroscopy, interferometry and refractomery, which require a well-defined line spectrum. Transition metals such as mercury, cadmium, and zinc are commonly used to that end and while the high volatility of mercury enables a high source brightness, the very low volatility of zinc limits the discharge operation to a low-pressure regime characterized by a low power dissipation. Philips used an unique burner design in order to ensure the highest vapor pressure possible of that element and to prevent its condensation on the wall between the electrodes: a quartz vessel stretched so as to maximize its wall thermal load, which is needed given than the LL103137E dissipates 13 W only. Typical of the company’s spectral lamps, the arc tube in this lamp is also provided with a pair of quartz diaphragms which keeps the cold-spot temperature high and limits the rate of burner blackening over time. The model shown here is a particularly early one, featuring an arc tube with vacuum-shrunk end seals and a frame supported at both ends of the bulb.


Keywords: Lamps

RLOD#45 (2020.08.21) 1962 Philips LL103137E Zn


Electric discharge lamps filled with a single radiating element are useful in special applications such as spectroscopy, interferometry and refractomery, which require a well-defined line spectrum. Transition metals such as mercury, cadmium, and zinc are commonly used to that end and while the high volatility of mercury enables a high source brightness, the very low volatility of zinc limits the discharge operation to a low-pressure regime characterized by a low power dissipation. Philips used an unique burner design in order to ensure the highest vapor pressure possible of that element and to prevent its condensation on the wall between the electrodes: a quartz vessel stretched so as to maximize its wall thermal load, which is needed given than the LL103137E dissipates 13 W only. Typical of the company’s spectral lamps, the arc tube in this lamp is also provided with a pair of quartz diaphragms which keeps the cold-spot temperature high and limits the rate of burner blackening over time. The model shown here is a particularly early one, featuring an arc tube with vacuum-shrunk end seals and a frame supported at both ends of the bulb.

2020-08-21_Philips_LL103137E.jpg 2020-08-19_Tungsram_HgMIG_2000W21S.jpg 2020-07-24_Radium_HRI_2000W_D1.jpg 2020-07-20_Thorn_CID_2500W.jpg 2020-07-17_SPO_22Svetotekhnika22_DRLF_400-2.jpg
Lamp/Fixture Information
Manufacturer:Philips
Model Reference:LL103137E
Lamp
Lamp Type:low-pressure discharge
Filament/Radiator Type:Nonthermal discharge in argon and zinc vapor
Base:E27
Shape/Finish:Tubular clear
Burning Position:Vertical base down
Electrical
Wattage:13 W
Voltage:19 V
Current:0.9 A
Physical/Production
Factory Location:Eindhoven, the Netherlands
Fabrication Date:February 1962
Application/Use:Spectroscopy
File information
Filename:2020-08-21_Philips_LL103137E.jpg
Album name:Max / Random lamp of the day
Keywords:Lamps
Filesize:330 KiB
Date added:29 Aug 2026
Dimensions:1200 x 800 pixels
Displayed:8 times
URL:https://trad-lighting.net/gallery/displayimage.php?pid=1397
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Comment 1 to 5 of 5
Page: 1

Drew   [Sun 30 Aug 2026 at 00:59]
That looks incredible! 13W is almost hard to believe, I don't see a getter but I would imagine the outer fill is in some way altered for a lamp this small. Those specs seem difficult to replicate with an accessible ballast, short of just a bunch of parallel chokes. Very nice looking arc tube
Max   [Sun 30 Aug 2026 at 10:18]
13 Watts is not much indeed. What I did not mention is that some later variants of this lamp feature a barium getter in order to maintain a high vacuum in the bulb. As a result the arc tube diameter between the electrodes is a bit wider than here, where the lamp outer jacket is filled with nitrogen at low pressure.
Tuopeek   [Sun 30 Aug 2026 at 10:23]
The Philips range of spectral lights for educational and scientific purposes were truly second to none. I wish I had managed to find more in my travels.
Max   [Sun 30 Aug 2026 at 18:53]
They sure were excellent and unique, typical of the quality and attention to details that prevailed at Philips decades ago. I'm really grateful that I could manage to assemble a complete collection of those lamps, but that was really due to chance more than anything else. I'll post more pictures of them in the (near) future.
Ria   [Mon 31 Aug 2026 at 08:55]
These are interesting lamps, we have a set of 10, see here Cool
Interestingly, our zinc one does seem to have a getter Wonder

Comment 1 to 5 of 5
Page: 1