Tuesday, December 20, 2016

Key Opportunity & Application 2016 on Global Micro-Motor Market

Global Micro-Motor Industry Market Research 2016

Deerfield Beach, FL -- (SBWIRE) -- 11/28/2016 -- The Global Micro-Motor Industry 2016 Market Research Report is a professional and in-depth study on the current state of the industry.The review has been based on the report titled, " Micro-Motor Market - Industry Analysis, Size, Share, Growth, Trends and Forecast, 2016 - 2020." 

Global Micro-Motor Market
 

Firstly, Micro-Motor Report provides a basic overview of the industry including definitions, classifications, applications and industry chain structure. The market analysis is provided for the international market including development history, competitive landscape analysis, and major regions' development status.

Request for Sample Report @ http://www.marketresearchstore.com/report/global-micro-motor-industry-market-research-2016-59796#RequestSample

Secondly, Micro-Motor Report provides development policies and plans are discussed as well as manufacturing processes and cost structures. This report also states import/export, supply and consumption figures as well as cost, price, revenue and gross margin by regions (United States, EU, China and Japan), and other regions can be added.

Then, the Micro-Motor report focuses on world major leading industry players with information such as company profiles, product picture and specification, capacity, production, price, cost, revenue and contact information. Upstream raw materials, equipment and downstream consumers analysis is also carried out. What's more, the industry development trends and marketing channels are analyzed.


Finally, the feasibility of new investment projects is assessed, and overall research conclusions are offered on Worldwide Micro-Motor Market 2016 Report .

Monday, December 19, 2016

Instruction on Micro motor developed to treat strokes

An Australian research team has created a motor that is so small it can be driven through the arteries of the brain.The motor is about the size of a grain of salt and is said to have the equivalent power of a small kitchen appliance.It is invisible to the naked eye.The current technology is a fixed tube that feeds a catheter to the site of a stroke, but when it is powered by the new motor doctors will be able to steer the catheter.
Micromotor developed to treat strokes

Associate Professor Bernard Yan of the Royal Melbourne Hospital's neuro-intervention service is hoping to use the micro-motor to treat strokes and aneurisms.
"At this stage we are targeting the arteries of the brain," he said."But of course there is no reason why this cannot be applied to other parts of the body such as the heart, kidneys or other organ systems."The project is a collaboration between RMIT University and the Royal Melbourne Hospital.It was developed by senior research fellows at RMIT University, Professor James Friend, fellow RMIT University Professor Leslie Yeo and Associate Professor Yan.

Associate Professor Yan says there is a drastic need to improve surgical equipment used to treat stroke victims.He says problem with the current technology has been likened to trying to feed a "half-boiled piece of spaghetti" through a wet paper tube."It is intensely frustrating when, in the heat of the moment you know you are racing against time," he said."There's a time window beyond which there will be no chance of saving that patient."And when you come across about 40 per cent of cases which are difficult and about 15 per cent of cases that are downright impossible, it's very disheartening."

Associate Professor Yan says the device will be particularly helpful for surgeons treating older patients."Arteries undergo wear and tear over time. So with the younger patients, the 20-year-olds, their arteries are fairly straight and easy to get to," he said."[But] for example in the 80-year-olds, the arteries are as windy as the Great Ocean Road."It provides two components. It provides more power to enable the catheter to get to where we want it to get to, but it allows us manoeuvrability."The motor is currently undergoing intense laboratory testing and is not expected to be given approval for use in surgery until at least 2016.When it does, it is expected to reduce the rate of cases in which surgeons are unable to operate, from 15 per cent, to less than 5 per cent.

Topics: medical-research, science-and-technology

Wednesday, November 9, 2016

Strong 90 Micro Motor STRONG 90 by Saeshin (Korea)

STRONG 90 by Saeshin (Korea)


Strong 90 Micro Motor STRONG 90 by Saeshin (Korea)


Reliable and well designed to output up to 0-35,000rpm by using nonstage speed system. Compact design motor (carbon brush) with less vibration, Right/Left turning ability and On/Off switch.

Parts:

    High Speed 35000 rpm Handpiece (102)
    Foot Pedal Switch
    Control Box Main machine
    Spare Carbon Brushes
    Wrench
    Operation Manual

With 6 months factory warranty for Hobby use (handled from our office), it is also great value.  Stronger than a battery operated Dremel type machine, this one can handle your job with ease.

Suitable for any standard 2.35mm/3/32" attachment.  A great machine for Gem cutting, Gem polishing, Jewellery making and setting, all woodwork, carving, metalwork, engraving - it's versatile!

http://www.gemcuts.com.au/micro-motors

Tuesday, November 8, 2016

The world's smallest and most powerful micro motor

Piezoelectric ultrasonic motors have two significant advantages, namely their high energy density and their simple structure, which both contribute to their miniaturization. We have built a prototype micro ultrasonic motor using a stator with a volume of approximately one cubic millimeter. Our experiments have shown that the prototype motor generates a torque of more than 10 μNm with a one cubic millimeter stator. This novel motor is now the smallest micro ultrasonic motor that has been developed with a practical torque.


Unveiling of the world's smallest and most powerful micro motors

Micro actuators are needed for numerous applications, ranging from mobile and wearable devices to minimally invasive medical devices. However, the limitations associated with their fabrication have restricted their deployment at the one-millimeter scale. The most common electromagnetic motors require the miniaturization of many complicated components such as coils, magnets, and bearings, and exhibit severe torque dissipation due to the scaling. Electrostatic motors enable excellent scalability by using microelectromechanical systems (MEMS) technology, but their weak driving force has limited their further development.

According to Mashimo, "The simplicity of the stator structure enabled the miniaturization without having to use any special machining process. This prototype stator is much simpler than those of other existing ultrasonic motors."
The next goal of this research is to improve the values of performance parameters for practical applications, such as energy efficiency and lifetime. In future, the proposed micro motors may actuate micro forceps embedded in endoscopes for safe and less-invasive operations.


https://community.smartthings.com/t/aeon-micro-motor-controller-dsc14104/15615

Friday, October 28, 2016

2016-2020 Global and China Micromotor Industry Report

Global micromotor output stood at 17.5 billion units in 2015, a year-on-year increase of 4.8%. Thanks to campaigns to modernize the industry and equipment, the output is expected to rise to 18.4 billion units in 2016 and approach 23 billion units in 2020.

China, the world's largest manufacturer of micromotors, produced 12.4 billion units in 2015, up 6.0% from a year ago, and accounting for 70.9% of the global total. The country's micromotor output is predicted to be close to 17 billion units in 2020 at a CAGR of around 7.0% during 2016-2020.

Keymicromotor manufacturers in China includeJohnson Electric, Welling Holding Limited, Zhongshan Broad-Ocean Motor Co., Ltd., and Wolong Electric Group Co., Ltd. Johnson Electric, as the largest micromotor manufacturer in China, achieves annual revenue of over USD1 billion, with a global market share of 4.3% in 2015.

In China, micromotor finds its application primarily in traditional fields, such as audio products, household appliances, and automobile, which held a combined proportion of 52.4% in 2015. As traditional application markets gradually grow saturated, main drivers of micromotor growth will be emerging sectors like new energy vehicle, wearable device, robot, UAV, and smart home.

Information Industry: China's shipments of VCM for mobile terminals were 542kk in 2015, up 12.9% year on year, occupying 45.9% of the world's total, largely driven by smartphones and tablet PCs. With gradual saturation of the markets for traditional consumer electronics like smartphone and tablet PC, wearable devices will become a new growth area, further boosting demand for micromotor. The Chinese wearable device market is predicted to expand at annual growth rate of over 25%.

Automobile: In 2015, China's demand for automotive micromotor was 1.02 billion units (24.9% of the global total, expected to rise to 1.62 billion units in 2020), less than 3% coming from new energy vehicle. New energy vehicle sales grew at a compound annual rate of 152.1% during 2011-2015 in China and, with the support of national and local policies, will maintain the strong growth momentum over the next couple of years. It is estimated that the market of micromotors for new energy vehicle will keep going up by over 40% annually during 2016-2020 with the demand exceeding 150 million units in 2020.

Robot: 248,000 industrial robots and 6.41 million service robots were sold globally in 2015, up 8.3% and 35.7% from a year earlier, respectively, together creating a demand of about 66.6 million micromotors (an estimate of more than 300 million units in 2020). In 2015, China accounted for 22.9% of the world's industrial robot sales and only about 5.0% of service robot sales, indicating a huge space for growth.

Consumer-grade UAV: In 2015, global consumer-grade UAV sales exceeded 200,000 units, compared with only less than 20,000 units in China. As low-altitude airspace is gradually opened, the Chinese UAV market will usher in a period of rapid growth at a rate of over 50%.

In addition, the new markets for 3D printing, smart home, medical equipment, and automation laboratory supported by policies will also kick into high gear, further driving the demand for micromotors.

Global and China Micromotor Industry Report, 2016-2020 highlights the followings:
Global micromotor industry (development history, market size, market structure, competitive landscape, etc.);
Micromotor industry in China (status quo, market size, market structure, competitive landscape, imports & exports, etc.);
Main upstream industries (magnetic materials, bearing, etc.), involving market size, market structure, development trends, etc.;
Downstream industries (information, automobile, household appliance, robot, UAV, 3D printing, smart home, medical equipment, etc.), involving application and market;
11 Global and 10 Chinese micromotor manufacturers (operation, micromotor business, development in China, etc.).
Read the full report: http://www.reportlinker.com/p04170496-summary/view-report.html

Thursday, October 27, 2016

High Speed Rotary Polishing Micromotor Kit K.1070

Use Product Options Menu to Select Collet Size: 2.35mm (3/32") (K.1070) or 1/8" (K.107018).


High Speed Rotary Polishing Micromotor Kit K.1070

For high speed micro motor applications up to 38,000 rpm including light deburring of cast pieces, bright cutting in jewelry making and fine detailing in wood. Kit includes control box, handpiece with 2.35mm (3/32") or 1/8" collet (depending on choice of collet installed), variable speed foot control, handpiece cradle, spare pair of motor brushes, spare fuse and collet changing wrenches. The back of the control box has a convenient Voltage Selector switch for operating with either 115 or 230 Volt operation. This Kit is already set for 110-115 Volt use. The control converts AC current to DC current required for the handpiece. Compared to flexible shaft machines, micromotors have less torque, however, their higher speed results in a comparable rate of material removal with a lighter touch. The simple cord connection between the handpiece motor and control box is another key advantage. Unlike the "drag" and general restriction in movement that you have with a shaft and sheath, micromotors offer much greater freedom of movement.
Kits K.1070 and K.107018 include:

HP4-917 Control Box
H.MH-170 Handpiece with 2.35mm (3/32") Collet installed OR  H.MH-17018 Handpiece with 1/8" Collet installed
HP4-960 Variable Speed Foot Control
HP4-933 micromotor handpiece Cradle
Spare pair of motor brushes, spare fuse, collet changing wrenches.
HP4-917 Control Box is compact with switches on the front for On/Off Power, Forward or Reverse Rotation, and Manual or Foot Speed Control. Speed can be adjusted from low to full speed using the dial on the box or with the foot pedal. An Overload Protector Light is also featured that turns red and sounds a beeping alarm when the motor stalls. This is the same control unit that comes in Micromotor Kits K.1020, K.1080 and K.1090.

H.MH-170 or H.MH-17018 High Speed Rotary Handpiece has a slender, contoured grip for precise and very high speed work and quick release rotary type chuck. It has a fan cooled, brush-type continuous duty motor that runs cool and vibration free with permanently lubricated, shielded ball bearings that require no lubrication. H.MH-170 comes with installed with a 2.35mm (3/32") collet and H.MH-17018 comes with installed with a 1/8" collet. Collets are easy to install and change with supplied collet changing wrench.
Optional collets are available separately. Bur changes are quick and easy with a simple twist of the front section of the Handpiece. A cradle is also supplied for the handpiece when not in use. A selection of collet adapters is available for simplifying changes between accessories with different shank sizes.
Handpiece specifications: 6.2" overall length, 5/8" grip diameter, 1" motor diameter, 7.3 oz./208 gr., DC30V/1.2A. CE marked.

Tip:
Consider purchasing a separate "Collet Adapter" that fits inside the handpiece collet and allows the use of smaller shank size accessories without having to actually change the collet. We offer five sizes of adapters that fit in all of our micromotor handpieces except the hammer and chuck styles. See related products below.

Related products:MICRO-NX® Portable Micro Motor M1 25,000rpm


Saturday, June 4, 2016

Is The Curing Light Dangerous Or Harmful To Look At?

The dental curing light is a very strong blue light.  It it not a laser or a UV light so it will not cause any damage to your teeth or gums.  The only danger is if you look directly at the light for too long.  Similar to how your eyes will hurt if you look at the sun for too long.  Dentists and assistants are advised not to look at the light for long periods of time.

There are two types of curing lights used by dentists.  There is a halogen curing light and an LED curing light.  Most modern curing lights are LED as they do not overheat like the halogen curing lights do.  The only danger with the halogen light is that the heat it produces could potentially hurt the pulp of the tooth or the soft tissues in the mouth.  Although this is possible, it is very unlikely.  The majority of dentists use LED curing lights these days.

What Does The Orange Shield Do?
The orange shield is a filter so that your dentist and assistant can still look in your mouth without the strong blue light hurting their eyes.  The light is okay to look at for a few seconds but it’s not nice for dental staff to look at for too long.

What Is The Blue Curing Light Dentists Use And Is It Dangerous?
Have you noticed the glow of a blue light during your dental visits?  People often wonder what this light is for used for and whether it’s dangerous or not.  The blue light is called a curing light and it is used for setting white fillings.

What Does The Blue Light Do?
The blue light sets fissure sealants, fillings and cement in a matter of seconds.  When fillings are placed in the tooth they are very soft so they can be moulded to the correct shape by the dentist.  When the dentist is happy with the shape of the filling they will set it with this light.  The blue light makes the filling go rock hard and strong enough to chew on.  The blue light is also used when having braces fitted to set the cement which holds the brackets on your teeth.

Related Articles:

Making Full Use of Proper Curing Light
Real Reviews On Densit Curing Light