Thursday, November 10, 2011

Bosch GLR500 Laser Distance Measurer

!9# Bosch GLR500 Laser Distance Measurer

Brand : Bosch | Rate : | Price : $255.50
Post Date : Nov 10, 2011 20:06:06 | Usually ships in 24 hours


The Bosch Laser Distance Measurer incorporates precision laser measuring technology, where the laser beam does both pointing and measuring, for distances up to 500 feet. Range (ft.): 2 - 500, Accuracy: 0.04in. (1mm), Functions (qty.): 11, Measures: Length, area, volume, min./max., continuous, indirect length, double indirect, combined indirect, stake out, trapezoid, multi-surface area and timer measurements, Quiet Modes: Yes, Backlit Display: Yes, Large, illuminated four-line display for easy readability, Battery Type: AAA, Battery Included: Yes (4)

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Wednesday, November 2, 2011

NEW CALC IND 3350 PREXISO X2 - LASER DISTANCE MEASURER (Office Supplies)

!9#NEW CALC IND 3350 PREXISO X2 - LASER DISTANCE MEASURER (Office Supplies)

Brand : CALC INDUSTRIES
Rate :
Price :
Post Date : Nov 03, 2011 04:42:47
Usually ships in 1-2 business days



CALC IND 3350 PREXISO X2 - LASER DISTANCE MEASURER
~Easy to read LCD - ~Bright red laser beam - ~Bulit-in solve functions - ~Distances, areas and volumes - ~4" - 100' measuring range - ~Imperial or metric units - ~Accuracy to 1/8" or better - ~Yellow/black w/nylon case - ~2 year limited warranty - ~2" x 1

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Monday, October 10, 2011

SuperTough - Contractor-grade Ultrasonic Distance Measurer with Laser Pointer

!9# SuperTough - Contractor-grade Ultrasonic Distance Measurer with Laser Pointer

Brand : CV
Rate :
Price : $57.99
Post Date : Oct 10, 2011 16:42:25
Usually ships in 1-2 business days



Manufacturer Specifications?Primary Function: Ultrasonic Distance Area and Volume Laser Measurement Device?Maximum Minimum Distance: 91cm to 15 meters (3 Feet to 48 Feet)?Accuracy: 0.5 % + 1 Digit (2-60ft)?Working Temperature: 32 F to 109.4 F?Laser: Class II Laser Product?Output: 1mw?Power Source: 1 x 9V Battery?Dimensions: 155mm x 70mm x 32mm (L x W x D)?Certification: CE, FCC, RoHS

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Tuesday, October 4, 2011

Distance Measurer With Laser Pointer

!9# Distance Measurer With Laser Pointer

Brand : C&E
Rate :
Price :
Post Date : Oct 05, 2011 00:46:30
Usually ships in 1-2 business days



\nDistance Measurer with Laser Pointer Stand alone Range: 1.58 ft. - 50 ft. Dual Range: 3 ft. - 180 ft. Accuracy: 0.5% + 1 digit Power 1 x 9v Units measured in Feet or Meters\n\n* image or specification may be changed without prior notice

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Saturday, October 1, 2011

Building Your Own Home Amplifiers and Subwoofers - A DIY Guide

!9# Building Your Own Home Amplifiers and Subwoofers - A DIY Guide

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In many home entertainment systems that have surround speakers, subwoofers and home amplifiers are essential to get the best sound quality through increased sound volume and bass. Amplifiers can also be used with electric guitars, bass and other musical instruments. To some people who are on a budget and really have no extra money to buy amplifiers or subwoofers, the only obvious option would be to make their own subwoofers or amplifiers. A DIY or do it yourself project involving amplifiers or subwoofers is not really that hard, as long as you have the perfect building plans, the right tools, and of course the appropriate skills to do the job.

Having some basic wood crafting or woodworking skills can really give you the edge in building your own home audio amplifiers and subwoofers. If you have no skill in woodworks at all, then perhaps you should consider training or practicing before you decide to build your own subwoofers or home audio amplifiers. You do not want to screw up this little project because of mistakes. You might end up spending more on parts and equipments alone. Instead of saving money, your knee deep in building costs; and that will not be good. If, on the other hand, you may have experience in building cabinets or shelves, then an amplifier or subwoofer project will not be that far out your skill level.

Before you start your own DIY project, you need to first collect the right tools and materials that you will need. A table saw, jigsaw, measuring materials such as a measuring tape and a carpenter's square is required. A jointer or router may also be needed, if you wish to join your edges, or wood glue and wood screws may suffice as well. You will also need solid plywood sheets in oak or birch, and a medium density fiberboard or MDF board.

When it comes to design, you will need a good home audio amplifier and subwoofer building plan. You can find a lot of designs in the internet. A typical subwoofer and amplifier is just a wooden box with a cutout for the speaker and an access section in the opposite side. You need to realize that the performance of your homemade amplifier and subwoofer will greatly depend on the design of the speaker box. The design of the speaker box is almost as important as the hardware you will be putting inside it.

When building the speaker box for your subwoofer and home amplifiers, you have to first measure the size of your speaker to determine how big your speaker box has to be. With your measuring and cutting tools, you than have to put together the plywood sheets into a cabinet-like box that will house the speaker that you will be using. Make sure that you carefully follow the instructions stated in your DIY guide, especially when it comes to the appropriate spacing of the speaker inside the box. You can use your router or jointer, or if you prefer your wood glue and wood screws, to join the edges of your box together. When it comes to the amplifier, you need to follow the instructions of the guide to the letter to avoid any unnecessary mishaps.


Building Your Own Home Amplifiers and Subwoofers - A DIY Guide

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Friday, September 16, 2011

LIDAR mapping

!9# LIDAR mapping

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LIDAR mapping is a new method for mapping and detection used. This three-dimensional mapping system is very popular for engineers, designers, engineers, mapping, GIS professionals and surveyors. Compared to similar methods for three-dimensional collection of information is very accurate, relatively fast and inexpensive. LIDAR mapping is used for topographic mapping and applications.

LIDAR stands for Light Detection and Ranging. For a map created LIDAR, topographicData are equipped with laser planes. The lasers emit thousands of pulses per second and can usually measure differences in height by six inches. By measuring the time delay of sending the laser pulse and detecting the reflected signal LIDAR can measure how much the aircraft on the ground with great accuracy. These lasers are down, has the acquisition of aircraft height from the ground directly below and slightly toright and left, for a fairly wide range of properties in each run. Typically, the laser can gather information on a strip of about 1,000 feet wide from an altitude of 2000 feet.

It 'can be almost 400 square kilometers in 12 hours of detection lid session, with millions of individual points of reference of the investigation. Compared to traditional methods of investigation, the LIDAR-based 3D map be much faster. In reality, contour LIDAR mapping already replaced almost traditionalMethods. And 'much faster than using a monitoring station or the electronic version of Office Tool Surveyor old transit or other low-tech methods of collection.

Since the LIDAR instruments collect data on height, these tools in conjunction with GPS devices are used, so that the height and position can be correlated. For this reason, the instruments on the plane along with the AAP mounted LIDAR.

The data is stored in a file with the same three coordinates "x, y, z" X referslongitude, Y and Z width and height. Once the data has been collected from the aircraft, it has turned into a computerized layout of the land as a digital elevation model or DEM known. The digital elevation model allows you to automatically trace the contours and lines connecting the points with the same height. These contours show at a glance if the terrain is relatively steep or relatively flat, an essential piece of knowledge, if you are thinking of building on the ground. This map includesThe proof of artificial features such as roads and natural features such as lakes and hills. However, since these appear on the map, increasing only the determination of the nature of these functions require aerial photographs or to visit a real site.

LIDAR mapping is discreet and does not require a foot measured on the ground. This is advantageous in situations where there is only limited access to the country by land, or where the ground is dangerous. Examples of this are verysteep slopes or large areas of tidal flat, or areas where many trees complicate the land survey.

LIDAR is often used to map archaeological features to the maps of functions that can not be immediately obvious from the ground to create. LIDAR can penetrate ground cover and tree canopy, making it ideal for woodland sites. LIDAR is often used to track changes in topography along the coast. Its use in building and construction industry are many, including the planningConstruction projects, roads and mines, as well as flood modeling.


LIDAR mapping

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