Sunday, February 17, 2008

New Light Source for All Borescopes

LED light source for borescope
Medit Inc. presents a new 3W superbright powerful light source for any type of borescopes and fiberscopes.
Medit Inc.’s Portable Superbright LED Light Sources are a convenient alternative to bulky Halogen and Metal Halide light sources, or unfocused LED light handles. Our LED light sources feature a convenient design, high intensity illumination, and low price. They combine reliability with durability by offering a low power 3W LED element, with a specially designed super-magnifying lens. This design allows for ample illumination, on average 28,000-46,000LuX, with low power consumption (3 AAA batteries for 2.5 hours of continuous illumination), and over 1,000,000 hours of lamp life per LED light source.

In addition to the outstanding illumination and low power consumption our LED light sources are available with either an ACMI or STORZ threading. This allows you to use them with a wide variety of medical, veterinary, and industrial endoscopes, fiberscopes, and borescopes, for quick and simple inspections, or in the field. It also makes our LED light source a better choice than many of the higher Watt Light Sources on the market today.

Discover the World of Medit LED Light Sources here!

Wednesday, January 30, 2008

‘Miniature Landscapes’ - Fungal art at its best (Borescope Pictures)



On the way home from work today, I stopped by the new gallery in Mann Library for the opening of Miniature Landscapes, an extraordinary exhibit by Kent Loeffler, one of three photographers who have served the Department of Plant Pathology at Cornell over the last century, and Kathie Hodge, a faculty member in that department who blogs at the Cornell Mushroom Blog.
Kent is a treasure and one of the nicest guys you’ll ever meet. He toils all day shooting diseased leaves and other mundane subjects. But he’s a great artist and photographer who is as quick to share his expertise as he is to share his smile. If you’re in the neighborhood, you owe it to yourself to view these photos.
Marasmius rotula borescope photo by Kent LoefflerKent used a borescope to get right down into the the world of fungi. He describes it as “a bit like having a fisheye lens on the end of a stick.” You can see more examples of this technique and some of the technical details at his photo lab website. Kathie’s equally fascinating videos of growing fungi and decaying fruit are running on continuous loops on retro Macs in the center of the exhibit.
Some of my favorite work of Kent’s, though, are at the other end of the spectrum — his panoramas. (You can drag yourself around Minns Garden outside my office 360 degrees.) Many have graced the cornell.edu homepage and some 6-foot-long prints of his decorate the halls of the office where my wife works in Collegetown.
Many of Kent’s works are online, but scattered all over like the spores he’s often called on to shoot. Check out these:
  • Plant Path Photo Lab website with linke to still, panoramas, time-lapse movies and some other very interesting techniques. (Check out his digital photography and PhotoShop tips.)
  • Plant Pathology Photos rescued from the old ExploreCornell site. Interesting historical stuff along with Kent’s work.
  • Ithaca 360 features more of Kent’s 360-degree panoramas from the Ithaca area.
Interesting note: If you google image search Kent’s name, you don’t get his great art. But you do get a great image we comissioned Kent to do of viburnum leaf beetle larva for our viburnum leaf beetle website.
Now what excuse can I think up to borrow Kent’s borescope?

Ceratiomyxa fruticulosa borescope photo by Kent Loeffler

You can find a wide selection of borescope for science researches at Fiberscope.net industrial store.

Sunday, January 27, 2008

Portable Monitor Type Flexible Borescope

Video Borescope ORION


Medit Inc. presents a new revolutionary unit, which offers operators a video image of the inspection area.
Often we need portable devices for inspection needs. With the help of a new Portable Monitor Type Flexible Borescope you can discover new possibilities to inspect areas. This Borescope is equipped with a powerful LED Light Source, 3.5” TFT display screen, internal CMOS camera chip in the tip. It is able to capture images and video. Though it is quite compact, this Borescope can perform all types of remote visual inspections, similar to any traditional industrial Borescope. Its working length 1 - 30 m, diameter of probe 5.5 mm. You can change videoprobes. A bright TFT monitor allows better communicating and understanding when discussing with your clients about the inspections.
The unit’s 5.5mm outer diameter can easily access small spaces including the spark plug holes of gasoline or diesel engines. The extra-wide angle camera takes pictures up to 640x480 resolution. You can save pictures and video of your inspection areas to SD card.
Discover the World of Medit Borescopes, Fiberscopes and Videoscopes!

Thursday, January 24, 2008

Borescope, Connectable to PC – Nice Solution

usb inspection camera
Medit, Inc. continues to offer the best solutions for your inspection needs. Today Medit presents a new Portable USB Video Borescope.
This new industrial Flexible USB Inspection Camera is a whole new innovation. Instead of transferring analog image via optical fiber this device utilizes digital image transfer. This new USB Video Borescope provides higher image resolution than normal fiberscope. This Video Borescope can take still pictures and record video. You can easily connect this Borescope to your PC and watch an enlarged view of the inspected area.
The sphere of its application is giant. This Flexible USB Video Borescope suits perfectly to Aircraft, Marine, Locksmiths, Auto-Repair or any other industries that would require storing individual database for clients. It is very convenient to inspect whatever you need with the help of this Inspection Camera. It is the total solution for replacing traditional industrial fiberscope.
Among its characteristics we only mention its insertion tube length 36" (91 mm) and only 10 mm in outer diameter. The resolution is 400,000 pixel, which is enough for any kind of inspection needs. Each unit is packed in an aluminum case, including USB cable and CD driver.
Discover the World of Medit Borescopes, Fiberscopes and Videoscopes!

Wednesday, January 2, 2008

Borescopes - all you need to know

Have you ever heard of a borescope? Chances are you've seen them, even if you didn't know what they were called. For example, have you ever seen an engine mechanic using a small-diameter tube, with an eyepiece on the end? In any position the thin, sometimes flexible tube, in strategic locations helps them to get a good look at what is going on inside. These are borescopes.

As you might have guessed, borescopes are commonly used when inspecting machinery. For example, HVAC professionals use rigid borescopes, which have a straight-line barrel, to inspect air conditioning and heat pump components. The advantage of using a borescope is that it often eliminates the need to completely disassemble a machine in order inspect it.

How do borescopes work? Rigid borescopes, which do not bend, utilize a series of positioned optical lenses to transmit light. There are video borescopes as well, which incorporate the latest video display technology.

On the other hand, borescopes which flex, or bend, utilize a different type of technology -- fiber optics. The fiber-optic filaments used in flexible borescopes allow these models to be bent and moved -- and this is really helpful when various obstacles in the way would prevent the use of rigid borescopes. ProVision borescopes are relatively inexpensive, flexible borescopes which are widely used by mechanics in the automotive field, as well as in other fields.

It is also possible to purchase various types of borescope accessories -- for example, if you will need to use your borescope in the field, you can purchase a battery operated light source for it. You can also purchase specially-designed carrying cases, changeable diameter shafts, couplers for the connection of a camera, etc. At the Fiberscope.net specialized online store you can find a wide range of borescopes to choose from.

And since borescopes can cost thousands of dollars to purchase new, it is also possible to rent them. Borescope rental companies have sprung up, and they provide a very important service for businesses who could not otherwise afford to purchase a borescope -- or for businesses or industries who only have an occasional need to use one. Borescope rental fees are extremely reasonable, and most borescope rental companies have a wide variety of models to choose from. You can rent a borescope from the Fiberscope.net too.

An important borescope advance is the development of specialized, PC-based software applications. These specialized programs will allow you to do things like digitally record images, to document your inspections, operate your borescope from a remote location -- some of them will even help you to do your paperwork! Some companies will offer these computerized applications along with your equipment purchase, eliminating the need for an additional, expensive purchase.

Friday, December 21, 2007

Endoscopic Web Cam and Skype

I'd like to share one wonderful news that I read recently.
One man from Skype Journal offers one of the cleverest ideas for using Skype. In short he suggests hooking up a type of a digital pen camera (endoscopic camera). The device would be able to show finely detailed objects within Skype video sessions. For example, you are selling coins on eBay. Using your Endoscope, you would be able to pan over the surface of the coin, and present it to prospective buyers in a high-resolution that would be real-time rather than a series of high-res stills that simply evoke more questions from your would-be buyer.

Wednesday, December 12, 2007

Portable Videoscope Becomes Widely Available

Medit Inc is very glad to present its new Portable Video Borescope. 
This Portable Video Borescope is a nice solution if you need a good videoscope but not ready to pay $15,000 - $60,000 for a complete videoscope. This new borescope is designed to provide a low cost video inspection of hard-to-reach areas.
The set includes the Video Borescope with a LED light handle, RCA cable and a portable video capturing device. You can connect the borescope directly to TV monitor or use it with the portable video device. No secret how it is important to get a bright clear image of areas under inspection. A live video image is generated directly from the tip if the insertion tube, not through fiber optic cable. This solution gives you much brighter image than any fiberscope!
With the help of the video capturing device you can see real time video of your inspections and capture it for future processing, archiving or educational purposes.
Purchasing this video borescope you get everything required for portable inspections without any power cables or outlets.
Discover the World of Medit Videoscopes!

T-Ray endoscope

Source: The Engineer Online

Electrical engineers at Rice University have demonstrated what they say is the world's first endoscope for terahertz imaging.
The research, which appears in the November 18 issue of the journal Nature, presents the emerging terahertz sensing industry with a unique new technology for transporting terahertz waves from a source and directing them at a particular target of interest.
"Our wave guide opens up a whole new class of capabilities because it offers a way to get terahertz energy into places it could never reach before," said lead researcher Daniel Mittleman, associate professor of electrical and computer engineering. "Wave guide technology frees you to look around corners and get into tight places."
Metals and other electrical conductors are opaque to T-rays, but they can penetrate plastic, vinyl, paper, dry timber and glass like X-rays. Unlike X-rays, T-rays are not hazardous radiation, and in some cases T-wave sensors can reveal not only the shape of a hidden object but also its chemical composition.
T-rays lie between microwaves, whose wavelengths measure from centimeters to millimeters, and light, with wavelengths measured in nanometers. The gap between - the so-called terahertz gap - contains wavelengths from 30 to 3000 microns, or 100 GHz to 10 THz when measured in frequency. The terahertz gap has been called the "final frontier" of the electromagnetic spectrum because there's never been an easy or cheap way to either generate or measure T-rays, something that's only begun to change with the advent of new technology in the past decade.
The development of "wave guides" is a key element in the technical maturation of T-ray technology. Wave guides - like fibre optic cables for lasers and coaxial cables for microwaves - allow energy to be moved and directed where it's needed. This is particularly useful if the beam generator is bulky or temperamental.
Both fibre optic cables and coaxial cables work by confining the energy of the beam in a small space, causing it to propagate down the cable.
But coaxial cables aren't good guides for T-waves because the metal sheath absorbs T-wave energy very quickly, and fibre optics don't transmit T-waves. By blending some aspects of both these technologies, Mittleman's team devised a system to guide T-waves in and out of a confined space.
Mittleman and his student, Kanglin Wang, stumbled upon the idea for the wave guide when they noticed T-waves were moving down a wire during an experiment on a new form of terahertz microscopy. In follow-up experiments, they found they could move T-waves along a bare wire, direct those waves onto a surface, catch the reflected waves on another wire, carry those reflected waves back to a receiver and analyze the return waves to reveal information about the surface the original wave was shined upon.
"There are lots of places where T-waves would be handy but where they're difficult to use today," said Mittleman. "Free-space beams are notoriously temperamental - a shortcoming that's kept them off of some factory floors - and our endoscope technology has the potential to change that."

To see more information about current products for industrial endoscopy go to Fiberscope.net

Tuesday, December 11, 2007

Borescope use: Pratt & Whitney grind out engine repair deal

The US Naval Air Systems Command (NAVAIR) has awarded a contract to Pratt & Whitney to provide maintenance support for Rolls-Royce Pegasus F402 engines that power AV-8B Harrier fighter aircraft flown by the US Marines.
The follow-on contract is for high-pressure compressor blade repairs using blendable boroscope technology that can be applied without removing the engine from the aircraft. The equipment is made up of a borescope with miniature-grinding tools and another borescope equipped with a video camera.
The grinding tool is inserted into an engine through a servicing port and guided to the site of the damaged blades. Once found, the blades are ground smooth to restore their strength.
To repair damaged blades on a typical aircraft, the engine has to be removed from the Harrier, requiring up to 850 hours of labour and costing as much as $500,000.
With an average of 30 engine removals per year, NAVAIR estimates that the process could allow 83 more weeks of aircraft usage per year, potentially saving more than $10 million in maintenance costs.
Pratt & Whitney's latest agreement with NAVAIR follows a one-year contract where Pratt & Whitney supplied these services for Harrier aircraft flown by the US Marines from 2001-2002.
The follow-on contract is for one year (2002-2003), with options for two additional years. If fully implemented, the agreement would be worth over $2 million to Pratt & Whitney.
Borescopes allowed for inspection of Pratt & Whitney engines can be found here

Saturday, December 8, 2007

New Videoscope System from Medit


Medit Inc presents a new powerful Alpha-V1 videoscope system as best solution to all of your inspection needs. Videoscope has many advantages and it pays for itself. The Alpha-V1 gives you a portable system that is lightweight to improve inspection time. The videoscope system provides high resolution still or moving images which help to improve detection any flaws. This system is a complete system with picture and video capabilities. You can save them to a CompactFlash™ memory card. Then you can download images to your computer for archiving or data processing. A carrying case provides a complete protection for your Alpha-V-1 video system. 24 watt Metal Halide light source gives you a bright image. You can view pictures on a large 6.5” TFT display. The diameter of probe is 4 mm, and with its 2000 mm length the system can reach the most difficult places for inspection.
You can find more professional videoscopes to choose from here

Thursday, December 6, 2007

How To Select Borescope and Fiberscope

1. You have to select a diameter of the scope that will fit in the smallest diameter access hole or port you intend to inspect.

2. Then determine the correct length. This distance is how far inside the borescope or fiberscope must reach to provide full inspection viewing. Do you have access to both ends of the assembly or piping? (purchase a scope that is 1/2 the length needed) Is the access only from one end? (Full length). Then compare the fiberscopes we offer to find closest matching borescopes. Rule of thumb: Longer better then shorter.

3. Do you need flexibility of the scope, so it would be able to bent. If so - choose fiberscopes not rigid scopes. But if you dont need flexibility, then better choice is rigid scopes cause it gives superior image quality.

4. Do you need that scope has ability to articulate a tip while you doing inspection ? Or if you need to pass complicated corners or tubes. If so, choose an articulated flexible borescope (fiberscope) or videoscope.

5. Define the area being inspected and unknown condition. Will you have enough light at a given distance? Will the light reflect internally (polished surface) or will it be absorbed (coal black or carburization). Will you be close enough for proper magnification or far enough away for overall viewing?

6. Define how close the scope tip will be from the area of interest. The closer you are, the increased magnification you achieve. The depth of field of most borescopes is huge compared to many other lens systems. Most scopes stay in focus without adjustment from a couple millimeters from the tip all the way to infinity. The common working range is within 1-2mm from the tip to approx. 5"-6" away.

7. Will the test results need permanent documentation from still photos or video? If so, you will need a scope with this capability either a videoscope or rigid borescope or flexible borescope (fiberscope) with a video kit.

8. Does a image quality is a main concern? Then choose videoscopes! videoscopes has CCD or CMOS on the tip and image quality is compatible with professional video cameras.

Since you decided what device is convenient for your job, you can go and shop for rigid borescopes here, and portable video scopes here.

Tuesday, November 27, 2007

Versatile use of borescope


Fiberscopes are useful inspection devices in the automotive field. Auto technicians and automotive warranty inspectors are discovering new uses for fiber optic borescopes everyday. Engine combustion chambers are accessed through the spark plug holes to check for damage to valves and pistons without the removal of the heads. Some of the less obvious uses for automotive applications are:


  • Inspecting water pump weep holes for a coolant leak
  • Inspecting radiators for restrictions
  • Pinpointing coolant leaks around intake manifolds
  • Retrieving serial numbers from Honda radio's without removal, for anti-theft code look up
  • Preliminary brake pad inspection without removing the wheels
  • Checking evaporators for refrigerant leaks with UV Dye in the system
  • Locksmiths view numbers on the rear of door lock cylinders without removal, for key code look up
  • With a magnet attachment auto technicians retrieve dropped nuts, bolts and tools
  • While performing smoke tests on an evaporative system, inspection around the fuel tank is possible without lowering the tank

  • We have noticed an increase in sales to other fields besides automotive. HVAC technicians use fiberoptic borescopes to inspect for mold in ducts and on evaporator coils. Law enforcement uses them to check for contraband and controlled substances under rear seats, consoles and trim panels. Plumbers use fiber optic bore scopes to pinpoint the source of leaks and identify the cause of blocked drains. Electricians use fiberoptic borescopes to see snaked wires through walls, some even attach a hook to retrieve the wire once it is spotted. Exterminators and home inspectors use fiber optic borescopes for termite inspections. Exterminators also use this tool for follow up after an application to verify its effectiveness. Welders use borescopes to check inside vessels or tanks to look for "burn through". Carpenters use them to check walls for plumbing or electrical before using fasteners.

    Shop selection of borescopes for different application at Fiberscope.net

    Monday, November 19, 2007

    Borescope helps to check a car engine

    I found an article about borescope use to check engine. It illustrates how a borescope can be used.


    "If there's evidence of coolant loss, ask the customer to leave the vehicle overnight. Safely vent the cooling system pressure at the pressure cap, then install a cooling system pressure tester. Apply pressure to the cooling system with the tester, then allow the engine to cool down. If the pressure tester appears to be losing pressure as the engine cools, keep adding it with the pressure tester. When the engine has cooled completely, begin looking for coolant leaks.
    Remove the spark plug first. If you're lucky and the leak is large enough, yon may be able to see coolant leaking into the combustion chamber. It may even give you a shower when the ping is removed. A borescope would be handy here, as it would allow you to identify the precise source of the leak by looking through the spark plug hole. Potential leak sites could include a cracked cylinder head or a blown head gasket. You'll be able to see the coolant leak dripping from the head crack or gasket fault with the borescope".

    Original text can be seen here

    Find more about borescopes using to check car engines at Fiberscope.net Automotive Industry directory.

    Monday, November 12, 2007

    Fiberscope helps checking valves

    In the case when a car has an interference engine (Daewoo Lanos), if the timing belt failed, there is a strong possibility the pistons hit valves before the engine stopped completely. First perform a compression test, if the valves are bent they will not seal properly and the compression readings will be low. Keep in mind if the timing belt is broken or not installed correctly, this could cause cylinders to have low compression also. Inspect with a fiber optic borescope through the spark plug holes, look for impressions in the piston tops. 
    The fiber optic borescope can help by giving an indication of the damage that may have occured without disassembly.
    To read more about using fiberscopes in automotive industry go here

    Monday, November 5, 2007

    Fiberscope - Super Thin Micro

    I would like to present a new device - Super Thin Micro Fibrescope from Medit, Inc. This fiberscope can be used for all kinds of Non-Destructive Testing and in other areas. Its small diameter 1.9 mm provides excellent opportunities to study the most tiny places. Its high resolution 30,000 pixels allows effective inspection. It is equipped with Portable Super Bright LED light source included. Illumination is very effective with this diod based light source.
    The unique features of this device help it repaid a hundredfold!
    Micro borescope from Medit Inc
    You can review the characteristics of the fiberscope and purchase it here

    Tuesday, October 23, 2007

    What is your choice: rigid borescope, fiberscope or videoscope?

    Some advice for your choice:
    To determine the correct instrument for your application, please take into consideration
    • Size (diameter) of entry point.
    • The necessary length needed to reach the area of inspection.
    • Does the area to be inspected have a clear straight path or is there obstructions or curved or radius areas where the instrument would have to negotiate.
    • Does your application require image documentation?
    Videoscope has more advantages compared to optical borescopes:
    where a borescope or fiberscope is adaptable to video the image produced has greater resolution and higher magnification. It is very good if many people view the image displayed on a monitor and allows for less eye fatigue than using them in the visual mode. It is also cost effective to attach a borescope or fiberscope to video as long as sufficient illumination is available.

    At the Fiberscope.net specialized web store for RVI equipment you can find some more information about and shop for rigid borescopes and videoscopes.

    Tuesday, October 16, 2007

    VIDEO BORESCOPE EVOLUTION

    I found interesting facts about evolution of videoscopes:

    • Mid 1980s: 10 mm (0.4 in.) diameter tip articulating industrial CCD video borescope, black and white chip with red, green and blue color sequencing.
    • 1985: 38 mm (1.5 in.) diameter nonarticulating (pipe scope), full color CCD industrial video borescope.
    • 1986: first portable system case video system - the internal dimensional analysis kit. Built in color monitor with compatible keyboard; image freeze and video discontinuity measurement; digital video image phone linkage to transmit test images stored on floppy disk.
    • 1990: 11 mm (0.43 in.) diameter, articulating, full color CCD video borescope. Second generation portable system case, built in cathode ray tube, keyboard, analog to digital conversion, internal 100 MB hard drive or floppy disk; image comparison, internal modem image transmission, video cursor measurement, menu driven image processing, floppy disk loadable upgrade software and case with handle.
    • 1991: first battery powered, over the shoulder portable, CCD video borescope system. Shadow reference line projection measurement, joystick activated motorized cable pull versus hand knob operated scope tip articulation; 8 mm (0.3 in.) diameter, articulating, full color CCD video borescope; third generation portable system case, built in miniature computer, digital zoom, miniature cathode ray tube, light source, camera control unit, three dimensional computer aided design wire frame measurement of stored digital images, case and handle; remote visual testing report software, text template, digital images and digital voice annotated inspector comments.
    • 1992: video borescope curvilinear pipe wall pit measurement using pipe axis alignment correction; three dimensional computed aided design wire frame discontinuity measurement by video borescope.
    • 1993: fourth generation portable case system with built in or remote liquid crystal display, scope camera control unit, light source, memory card and SCSI port for external digital accessory expansion options; optical borescope eyepiece discontinuity measurement using digital processor with interchangeable off the shelf CCD eyepiece camera, developed and patented in the US.
    • 1995: 6 mm (0.24 in.) diameter, articulating, full color CCD video borescope.
    • 1996: live transcontinental US Air Force F100 engine test via digital image exchange between Savannah, Georgia, and Berlin, Germany.
    • 1997: digital store measure industrial miniature computer for scope systems; unique architecture utilizing miniature ball grid array digital signal processing to meet stringent small size specifications; simultaneous live digitized eddy current impedance plane read out on live video image; video borescope with stereoscopic measurement of discontinuity size using dual objective base line separation calculations, scope handle thumb mouse for menu navigation, internal microphone for annotation of stored images and compatible miniature liquid crystal display; hands free goggles to view tests.
    • 1999: 5 mm (0.2 in.) diameter, articulating, full color CCD video borescope.
    • 2000: smallest system case to date; brightest internal light source; integral system liquid crystal display in scope handle.
    • 2002: fifth generation system case video borescope with live digital motion capture; USB fast digital communications port; removable plug in image storage media; personal computer programmable and activated scope articulation; depth perception and three dimensional viewing of test object's internals; 4 mm (0.16 in.) diameter, articulating, full color CCD video borescope.
    You can purchase these fifth generation videoscopes here

    Sunday, October 7, 2007

    New Medit Video Camera

    Today it is difficult to find anything to perplex our mind. Orbital telescopes penetrate the space abyss, and high precision cameras are installed in the smallest devices like mobile phones. But for industrial purposes a new Medit camera gives an outstanding example of high tech device.
    This camera
    is designed to be used in a wide variety of Scientific Imaging, Endoscopy and Microscopy applications.

    You can read more about these interesting devices here.

    Here I'd like to present some pictures made with the help of this camera.

    First, Camera plus Microscope


    Borescope camera captures made within Microscope

    Then, Camera plus Optical Borescope

    Borescope camera captures made by optical borescope

    Saturday, October 6, 2007

    Videoscopes: Where You Cannot See

    Video inspection systems are widely used in the industry. From piping systems to aircraft engines, a videoscopes allow to see places that are otherwise impossible to get inside.
    The most important component of a video inspection system is called a borescope. It is a tube that has a camera on one end and a viewing system on the other. Video borescope works pretty is designed like a pipe or tube that can be inserted in small, tight, out-of-the-way spaces.
    Video inspection systems are of particular value in the medical industry, particularly in the diagnosis and surgical field. The advent of video inspection systems allowed doctors to see inside a body and make accurate diagnoses. Many types of medical instruments can be attached to the camera end of an endoscope that allows it to perform precise surgical procedures.
    Nowadays videoscopes are getting more sophisticated use as borescopes become smaller and powerful. It is interesting to see what kind of devices would help us in the future.
    If you are interested in these devices (borescopes, videoscopes) you can find more information at this site.

    Thursday, October 4, 2007

    Use of a borescope to inspect building cavities


    A good example how a borescope can be used in building industry.

    Sometimes it is necessary to check for mold inside building constructions.
    Unless a building area is already visibly damaged or moldy, we proceed with as little damage or "invasiveness" as possible. Often no invasive cuts are needed to see into a building cavity. Often an experienced inspector who knows where to look, can reach very reliable conclusions about hidden mold with no damage to a property at all. Or we can perform non-damaging invasive inspection such as the careful removal of trim for further inspection.
    Where a 2" diameter hole is not permitted, we may explore using this small borescope which requires a hole about the diameter of a pencil. Often this probe can be inserted behind loose trim or in existing building openings to permit a limited-access view of building cavities without any destructive cuts at all.

    You can shop, or find additional information on borescopes here.