Showing posts with label exact leak technology. Show all posts
Showing posts with label exact leak technology. Show all posts
Wednesday, August 24, 2011
Exciting Breakthrough- 0.5 micron (500 nm) Exact Leaks!
Lenox Laser has made exciting breakthroughs in the manufacturing processes of exact leaks!
Exact Leaks are calibrated microholes that are repeatedly and reliably generated in packages and/or other pharmaceutical and manufacturing goods. These microholes are commonly used in integrity testing processes.
Lenox Laser's new process allows the creation of 0.5 micron holes in a wide variety of materials; including plastics and metals.
Please visit here: Services- Exact Leaks on our website for more information.
Thursday, July 14, 2011
Lenox Laser Scholarship- "Evaluation of UV LEDs for detection of atmospheric NO2 by photolysis- chemiluminescence"
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| Lockheed WP-3D Orion. From NOAA website |
"Evaluation of ultraviolet light-emitting diodes for detection of atmospheric NO2 by photolysis- chemiluminescence"
by Ilana B Pollack, Brian M Lerner, and Thomas B Ryerson
This article was accepted to Journal of Atmospheric Chemistry in February of this year, and it details an atmospheric study done in May and June of 2010. Lenox Laser made a total of 3 parts for their studies of different LED detections systems of NO2. For some key background information if one is not familiar, I highly recommend reading this article first:
Flourescence detection of atmospheric nitrogen dioxide using a blue light-emitting diode as an excitation source by Yutaka Matsumi et al. It is much more readable and understandable.
Basically, detection of NO2 in the atmosphere relates to the ozone levels in the atmosphere. Thus, scientists of the field are interested in better, more accurate, and cheaper ways to measure NO2. One of the most recent trends to do so is to use commercially available UV-LEDs in their systems. The systems already often use a UV light source of some kind because in the chemistry of NO2 and related molecules, they will emit light in the process. Atmospheric scientists use this property, called chemiluminescence, to measure the NO2 molecules. Chemiluminescence detection is called P-CL.
In this article, the authors tested 3 UV-LEDs against each other in the P-CL system as shown in the diagram below:
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| Fig 1 from the paper- schematic of instrumental configuration |
I recommend reading the article itself to fully understand the diagram and the process. However, this is where Lenox Laser and our calibrated orifices come in. The red section where it says 700um orifice is where our first orifice was used. This is the bypass inlet, and was used to set the sample flow rate and cell pressure for the entire system. They found that the Nichia LEDs were the best overall.
So for the second part of the test, they took the Nichia LEDs on board the NOAA WP-3D aircraft with the P-CL for "on the job" training in the CalNex study. They replaced the more expensive and complicated mass flow controllers were replaced with our critical orifices and mass flow meters. In the diagram above the two places are indicated by arrows in the blue and black section. Replacing the parts in the system did improve the quality, and, as stated in the conclusion, they "eliminate mechanical components with complex flow paths that degrade time response. Replacing mass flow controllers with critical orifices and mass flow meters further simplifies the sample flow path in these laboratory test."
The NOAA WP-3D aircraft is the plane that flies into hurricanes to monitor and gather information. It took part in CalNex - a study by several universities and institutions of air quality and climate change on the west coast. Our parts were used on board and tested with the UV-LED systems during the study. They even went with the plane as it was briefly diverted from the study to the Gulf of Mexico during the oil spill.
So in conclusion, this research paper incorporates optics, chemistry, and biology with flow technologies, atmospheric studies, and research planes all together, with Lenox Laser parts in the middle of it all!
As always, check out our main website www.lenoxlaser.com to see more of what we do, as well as the rest of this blog. If you have any questions or input, email me at archives@lenoxlaser.com
Labels:
exact leak technology,
flow,
new research
Wednesday, July 30, 2008
Testing Packaging Pinhole Leaks Integrity
In today's world, packaging integrity serves the highest purpose for any food or drug company. If they are unable to deliver their products safely without tampering to the public then they would not be able to sell anything. Consumers demand that their food and drugs must be guaranteed fresh, safe, and cost effective. Companies place the highest regard to the safety and integrity of their products packaging but in today's changing environment this can be quite challenging. This is where Lenox Laser has the expertise and knowledge to help companies create standards that can be used to help test their packaging even in a production line.
Lenox Laser, Inc. has the unique ability to drill precise repeatable critical flow orifices in glass, vials, ampoules, lids, pouches, cans, containers, blister packs, skin packs, vacuumed sealed packs, bottle capping and advanced types of primary packaging for use in testing and a production
environment. Our critical flow orifices can be drilled directly into your product's packaging often allowing the company to replace expensive testing equipment ultimately saving thousands of dollars while increasing product safety. We also specialize in controlling product atmosphere's flow rate using our orifice technologies and calculators. We can also help develop package integrity and tamper resistant technologies that can alert the consumer if the product has been compromised. Lenox Laser is ale to drill micro holes down to the half micron which allows the smallest of flow rates that can be used to test the seals of your package. Often customers use several of our drilled products to test their products packaging while they are being packaged which saves time, energy, and money while increasing quality.
Our orifices can help with both destructive and non-destructive packaging testing for whatever applic
ation you may need. Our orifices are often used in vacuum/pressure decay testing and direct gas leak detection testing methods where flow control and detection is critical down to the smallest micron. Our small calibrated orifices can also be used to detect if there are any leaks in the seal. The quality of the packaging integrity is only as good as the strength of its seal which is often the hardest to test. Using our pinhole detection technologies, manufacturers can easily test their packages for pinholes down to the half micron thus detecting microbial barrier's to the smallest possible- as noted below the smaller the hole the harder for your packages integrity to be comprised.
stream pressures, we can calibrate your online production packaging equipment.
E-mail- quotes@lenoxlaser.com or call 410-592-3106 for more information.
Also for more information please visit -
http://www.devicelink.com/pmpn/archive/03/01/003.html
Using pinholes as tools to attain optimum modified atmospheres in packages of fresh produce
Industrial Sterilization
http://www.quartetenterprises.com/calculate_effect_of_pinhole.htm
http://www.tmelectronics.com/resources_pkgTestingFoodIndustry.htm
Lenox Laser, Inc. has the unique ability to drill precise repeatable critical flow orifices in glass, vials, ampoules, lids, pouches, cans, containers, blister packs, skin packs, vacuumed sealed packs, bottle capping and advanced types of primary packaging for use in testing and a production
environment. Our critical flow orifices can be drilled directly into your product's packaging often allowing the company to replace expensive testing equipment ultimately saving thousands of dollars while increasing product safety. We also specialize in controlling product atmosphere's flow rate using our orifice technologies and calculators. We can also help develop package integrity and tamper resistant technologies that can alert the consumer if the product has been compromised. Lenox Laser is ale to drill micro holes down to the half micron which allows the smallest of flow rates that can be used to test the seals of your package. Often customers use several of our drilled products to test their products packaging while they are being packaged which saves time, energy, and money while increasing quality.Our orifices can help with both destructive and non-destructive packaging testing for whatever applic
ation you may need. Our orifices are often used in vacuum/pressure decay testing and direct gas leak detection testing methods where flow control and detection is critical down to the smallest micron. Our small calibrated orifices can also be used to detect if there are any leaks in the seal. The quality of the packaging integrity is only as good as the strength of its seal which is often the hardest to test. Using our pinhole detection technologies, manufacturers can easily test their packages for pinholes down to the half micron thus detecting microbial barrier's to the smallest possible- as noted below the smaller the hole the harder for your packages integrity to be comprised.Recent research, such as Earl Hackett’s study explained in “How Pinholes Affect Packaging” in the July 2000 issue of PMP News, indicates that in flexible packages with breathable barrier materials, the nature of flow and the mobility of bacteria may in fact make penetration difficult with holes up to 50 µm. (According to Hackett, the data showed that essentially all particles that entered the hole exited on the far side. The flow through the entire package was split between the hole and the Tyvek or paper. The number of particles detected coming through the 100-mm diameter sample of barrier material was statistically the same with or without the hole until the hole reached a minimum diameter of 50 µm.)Please E-mail drawings with hole size or flow rate with specific gas and up/down
stream pressures, we can calibrate your online production packaging equipment.
E-mail- quotes@lenoxlaser.com or call 410-592-3106 for more information.
Also for more information please visit -
http://www.devicelink.com/pmpn/archive/03/01/003.html
Using pinholes as tools to attain optimum modified atmospheres in packages of fresh produce
Industrial Sterilization
http://www.quartetenterprises.com/calculate_effect_of_pinhole.htm
http://www.tmelectronics.com/resources_pkgTestingFoodIndustry.htm
Labels:
exact leak technology,
flow
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