Saturday, October 09, 2021

為什麼叫神貼?


為什麼叫神貼?


神貼是用戶叫出來的.


2017 年 在芬蘭展覽, 代表處黃組長的太太面對著會場Holiday Inn 的台階說, 2 年來我都走不上去. 

我在她的鞋墊湧泉穴對應處貼上反射片, 立刻, 她來回走上飯店的台階三次. 激動地說, 真是神貼.


2018 年在莆田最高級的養老院, 2 位需要拐杖才能走路的長者, 鞋墊湧泉穴對應處貼上反射片後立刻可以不用拐杖走路. (視頻為證) 在場的人都驚呼 “神貼”


神貼是生物波反射片.

Tuesday, October 05, 2021

自體共振有沒有副作用


自體共振有沒有副作用?


所謂副作用 是指身體以外的東西對身體產生的不良營響.


自體共振是體內生物波和 生物波的反射波 產生的 和諧式共振, 


和諧 共振 能夠 活化細胞, 改善免疫, 提升自癒能力.


生物波是身體自己的東西; 一樣的頻率, 當然沒有副作

Sunday, October 03, 2021

生物波反射片是什麼東西

生物波反射片是什麼東西?


生物波反射片是能夠反射生物波的生物鏡, 

用光學原理, 複合材料技術做成的生物鏡.

生物波反射片是全反射的生物鏡, 不吸收, 也不折射.


這是一種被動元件, 本身沒有能量; 和市場上所有的能量產品完全不一樣.


台灣, 英國, 美國, 德國, 義大利, 西班牙; 已登記發明專利.

美國發明專利, 公告中.

Saturday, October 02, 2021

自體共振的好處


自體共振的好處?


生物波是體內器官運作, 平衡維持的力量, 就像空氣中的氧對生命的重要. 


自體共振強化了生物波. 實際使用的結果 證實如下:


~代謝變正常, 體內更乾淨; 器官運作恢復正常, 身體自然健康!

~細胞被活化, 看起來更年輕!

~改善免疫, 細菌和病毒的感染在很短時間內產生免疫

~提升自癒能力, 三倍以上速度 加速復原

Monday, July 29, 2013


Kyma Announces Commercial Availability of 2-inch N-type GaN Substrates

Raleigh, NC / July 1, 2013 – Kyma Technologies, Inc., a leading supplier of advanced gallium nitride (GaN) and aluminum nitride materials to the LED and power electronics industries, today announced the commercial availability of 2-inch diameter n-type c-plane GaN substrates.
Kyma has produced free-standing gallium nitride products in a variety of form factors during the company’s 15 year history, including c-plane substrate form factors of 10mm squares, 18mm squares, and 30mm diameter rounds, and rectangular non-polar and semi-polar substrates of 5mm x 10mm and larger. However, 2-inch c-plane GaN substrates were typically held back from commercial sales for use in government contract programs or internal R&D. Improvements in the availability of 2-inch substrates has allowed the company to release more of this product to commercial customers.
Kyma Chief Marketing Officer, Ed Preble, notes, “GaN device manufacturers making devices on Sapphire or Silicon are constantly striving to improve the performance of their devices. GaN substrates allow for GaN-on-GaN growth, which results in devices that have double the thermal conductivity and 100-1000 times fewer crystal defects. Improvements to these two material properties are critical for boosting device performance and reliability.”
2-inch round substrates are a critical form factor for most GaN based device processors. Most LED manufacturers currently use 2-inch sapphire wafers in MOCVD GaN epitaxy systems and also in a number of post-epitaxy wafer processing systems. Providing this wafer shape is therefore critical to enabling bulk GaN wafers to penetrate into the existing GaN device markets.
Kyma CEO, Keith Evans, commented, “We are very pleased to begin shipping 2-inch wafers, an important entry point for our customer’s production requirements. Kyma has long sought to improve the availability of GaN substrates for our many customers asking for this material every day and this is a critical step for us to take.”
In addition to the thermal conductivity and defect related benefits of GaN-on-GaN device growth, there are several other benefits, including a) shorter and simpler epitaxy recipes, b) higher current density and/or smaller device footprint, c) no wafer bow after epitaxy, and d) simpler designs for vertical device geometries.
About Kyma Technologies
Kyma’s mission is to provide advanced nitride materials solutions that promote energy efficiency. Kyma’s products include a diverse portfolio of crystalline nitride semiconductor materials, crystal growth systems, and power switching electronics.
For more information about Kyma Technologies, 

Taiwan: 0933187255, davidlu55@hotmail.com

Kyma Licenses Advanced Electromagnetic Field Sensor Technology from UNLV

Raleigh, NC / May 29, 2013 – Kyma Technologies, Inc., a leading supplier of advanced materials solutions that promote safety and energy efficiency, today announced that they have signed an exclusive license to a patented innovative electric and magnetic field sensor technology invented by scientists at University of Nevada, Las Vegas (UNLV).
Invented by UNLV professor Robert Schill and research scientist Marc Popek, US patent 7,482,814 is entitled “ELECTRIC/MAGNETIC SENSOR” and describes a novel sensor that supports simultaneous and wide bandwidth detection of the temporal variation of both the electric field and the magnetic field at a single point in space.
Kyma is calling the sensor the EM Dot™ and notes that it is easily calibrated and can be used to rapidly extract detailed equivalent circuit information associated with the sensor surroundings. Kyma plans to launch an EM Dot™ product line this year.
Kyma representatives were introduced to the UNLV sensor technology during their first visit with Schill, who founded UNLV’s Energy Materials Interaction Technology Initiative of Nevada (EMITION) Center in December of 2005 and serves as its director.
Kyma’s CEO Keith Evans and CTO Bob Metzger were introduced to professor Schill in early 2012 by Rama Venkat, the dean of UNLV’s engineering college, to foster discussions of how Kyma’s high-speed, high-power photoconductive switch technology might be exploited in UNLV’s research programs. Subsequently, Evans and Metzger visited Schill’s impressive pulsed power physics laboratory, and noticed several probes with a ‘made in the lab’ look. They inquired and learned that professor Schill and his research team had figured out a way to make sensors that were twice as efficient and about 10 times less costly than equivalent commercially available sensors.
Recognizing a unique opportunity that is aligned with Kyma’s growing interest in novel sensor technology, Kyma began pursuing the license immediately.
“From the day that Dean Venkat introduced Kyma Technologies to the UNLV EMITION Center, magic sparked,” said Schill.  “We are excited and honored to be a part of Kyma’s new product line. Although in the initial stage, we anticipate merging Kyma’s high-speed, high-voltage, high-current photoconductive semiconductor switch technologies with the EM-dot™. Our goal will be developing a robust autonomous system that will provide feedback in monitoring and controlling the performance of their switch.”
Schill added that Kyma Technologies and the EMITION Center are embarking on a number of innovative applications of Kyma’s GaN switch that will enable revolutionary advances solving difficult problems of interest to government and industrial sectors. 
The sensor is an important tool in characterizing a variety of electromagnetic phenomena, including rapidly changing electric and magnetic fields associated with pulsed-power phenomena. Further, the tool senses fast open circuit to short circuit and fast short circuit to open circuit transitions of interest, in part, to examine fault conditions, circuit degradation, and switching properties. 
This license represents the next step by Kyma to grow its relatively new Sensors Division. Other sensor activity recently announced by the company includes its partnership with Duke University in advanced chemical sensor technology development and its participation in the North Carolina State University (NCSU) led NSF Nanosystems Engineering Research Center (NERC) for Advanced Self-Powered Systems of Integrated Sensors and Technologies (ASSIST).
“UNLV is a wonderful resource and a great collaboration partner for Kyma on three separate projects,” said Kyma CEO Keith Evans. “Our collaboration with professor Schill in the characterization and application of our KO-Switch™ is an important part of our technology roadmap for that product line. An advanced computer modeling experiment performed by professor Rama Venkat’s group has already benefited Kyma’s GaN crystal growth effort. And our growing collaboration with professor Ke-Xun (Kevin) Sun, who is building a Center of Excellence for Security Science and Engineering at UNLV is quite exciting to us due to several advanced materials-related synergies.”
About Kyma Technologies
Kyma’s mission is to provide advanced materials solutions that promote safety and energy efficiency. Kyma’s products include a diverse portfolio of crystalline nitride semiconductor materials, crystal growth and fabrication equipment, and power switching electronics. Additionally, the company is developing a suite of novel chemical and electromagnetic field sensor technologies.
For more information about Kyma Technologies, visit www.kymatech.com, send an email to info@kymatech.com, or call the company directly at 919.789.8880.
Kyma is a registered trademark of Kyma Technologies, Inc.
About UNLV
UNLV is a doctoral-degree-granting institution of more than 27,000 students and 2,900 faculty and staff. Founded in 1957, the university offers more than 220 undergraduate, master's and doctoral degree programs. UNLV is located on a 332-acre campus in dynamic Southern Nevada and is classified in the category of Research Universities (high research activity) by the Carnegie Foundation for the Advancement of Teaching.
Learn more about UNLV research at http://www.unlv.edu/research.

Kyma Advances Support of Wide Bandgap Semiconductor Power Electronics

Raleigh, NC / June 13, 2013 – Kyma Technologies, Inc., a leading supplier of advanced materials solutions that promote safety and energy efficiency, today announced its multi-pronged support of the worldwide rush to develop wide bandgap semiconductor (WBGS) power electronics.
Scientists and engineers worldwide are developing WBGS devices to improve the efficiency and decrease the size and cooling requirements of power electronics components and modules such as AC/DC inverters and DC/DC converters for a multitude of applications including transportation, renewable energy, and the electric grid. Most such efforts utilize either gallium nitride (GaN) or silicon carbide (SiC) device active regions. SiC devices are grown on SiC substrates, while GaN devices are grown either on GaN or Si substrates. The homoepitaxial GaN on GaN approach has the greatest potential in terms of device performance due to low defect densities and ability to support vertical device geometries yet GaN substrate technology is still in the development stage.  Heteroepitaxial GaN on Si leverages the low cost and ready availability of Si substrates yet it also compromises the quality of the GaN and makes vertical device geometries difficult to realize.
Kyma’s multi-pronged support of the WBGS power electronics market includes the following materials, devices, and equipment products and services.
  • Kyma’s plasma vapor deposition (PVD) tools and PVD grown AlN on Si template products support the fabrication of heteroepitaxial GaN on Si power electronic devices
  • Kyma’s hydride vapor phase epitaxy (HVPE) tools and HVPE grown bulk GaN substrates support the fabrication of homoepitaxial GaN on GaN power electronic devices
  • Kyma also provides GaN on Si templates by growing a thin layer of GaN by HVPE on top of a PVD AlN on Si template
  • Kyma is developing an (Al,Ga)N on Si template technology which has great potential to improve both the cost and the quality of GaN on Si device wafer technology
  • Kyma also fabricates GaN and SiC wafers in its Customer Crystal Fabrication Facility with K-Orbital™ Multi-Wire Saws which utilize K-Slice™ Diamond Wire fabricated on Kyma's K-Slice™ Diamond Wire Maker
  • Kyma’s first device product, the KO-Switch™, is itself a WBGS power electronic device, and behaves as an optically isolated and gated switch which can standoff up to 10kV with essentially zero leakage current, while turning on in less than one billionth of a second to a very low on-resistance state
The company is experiencing record customer demand for its products and is on track in 2013 for a record revenue year in terms of wafer sales, equipment sales, and device sales both separately and combined.
Keith Evans, Kyma president & CEO commented, “We are pleased to support this exciting green technology space. With solid state lighting really taking off, and WBGS power electronics becoming so important, Kyma’s outlook could not be brighter.”
About Kyma Technologies
Kyma’s mission is to provide advanced materials solutions that promote safety and energy efficiency. Kyma’s products include a diverse portfolio of crystalline nitride semiconductor materials, crystal growth and fabrication equipment, wafer fabrication services, and power switching electronics. Additionally, the company is developing a suite of novel chemical and electromagnetic field sensor technologies.
For more information about Kyma Technologies, visit www.kymatech.com, send an email to info@kymatech.com, or call the company directly at 919.789.8880.
Kyma is a registered trademark of Kyma Technologies, Inc.

Sunday, January 01, 2012

Carbon fiber iPhone cases price down



In past, Carbon fiber iPhone cases are high as painting and CNC machinery are cost high and low production speed.

According to David, CEO of Advanced Composite Inc, ACI has revolution in cosmetic appearance processing and CNC machinery. So, Carbon fiber iPhone 3,4, 4S cases are cost drop to half.

ACI offer
US$17.0/pcs for end user. Minimum: 10 pcs
US$8.5/pcs for agent for 30k pcs.

ACI is willing to cooperate with all other composite makers.

Tuesday, July 20, 2010

Heat transfer and cooling


Heat transfer and cooling

The composition of the air is very loose, so heat transfer is very slow.
The quest for high-end notebook thin, heat is a common dream greedily.
LED energy saving long life, heat dissipation is necessary to overcome the problem.

Heat is the module, Driver to the thermal discharge.
The traditional method is to use fan forced air convection, so that the heat discharged to the atmosphere inside the enclosure.
However, the convection must punch, will soon be dust, noise and short-circuit.

Metal shell of the benefits of better heat transfer, the disadvantage is that too much.
Strictly speaking, the market heat sink and air contact area is increased the heat transfer film. Cooling effect on well.

When all possible methods are used, heat also be cut down, how do?


1. Carbon composite Thermal paste: paste position in the chassis hot outside; 30 seconds immediately effective!

2. Carbon composite Heatsink: IMD molding method used for heat sinks become a part of the case, go directly to the integrated thermal discharge.

Acimarket@gmail.com

Sunday, July 04, 2010

如何改善notebook的散熱...


Notebook 的功能越強, 散熱問題越嚴重.


散熱鰭片需要很大空間, 不利輕薄設計; 風扇會積灰塵, 產生噪音.


理想的散熱是將散熱器貼在CPU 底座, 將熱源直接散發空氣中...


散熱貼是專為筆電過熱, 和LED 模組散熱需要所研發...


acimarket@gmail.com

Sunday, June 27, 2010

奶牛消毒与获利


奶牛消毒与获利

许多养牛专业户养牛中常忽视消毒的问题,认为牛抗病力强,不用严格消毒,结果往往因为牛生病不能采挤奶或生产的奶体细包数过高而卖不出好价钱,最终更造成奶牛因病重而死亡。

T-Hexx 农产品是针对牧场奶牛设计的整套消毒用品

育成牛和干奶期奶牛在分娩前都很容易得到乳腺炎,但是养牛专业户以为只要打干奶药就可以,却不会给育成牛和干奶期奶牛的乳头消毒做保护。

临床试验结果,使用的T - Hexx有下列好处:
1。乳腺炎感染减少55%
2。其他牛群感染减少37%
3。体细胞数降低31%

养牛专业户挤乳前普遍使用碘液消毒,挤乳后再用乳头药浴沾过。这种方法只能提供乳头一小时的保护。
T-Hexx糖浆让乳头药浴再升级,也就是把乳牛奶头的保护从一小时延长到八小时

根据美国牧场的经验,使用的T-Hexx农产品消毒的养牛专业户,投资报酬率大约10倍。
也就是每头乳牛每年需要花费136人民币,可增产牛奶 1360人民币

Thursday, June 24, 2010

Sea-slide, 可提高船速度和減少燃料



Sea-slide ®塗層,是以Hydromer ®為基礎設計的減少船體阻力用品,Sea-slide可減少船體與水之間的摩擦,是長效型防污塗料。Sea-slide是一個特殊的塗層, 具有優良的減阻功能,可用於水上摩托車,以提高速度和減少維護; 船隻使用,可提高速度和減少燃料消耗,在減少水的阻力方面, 對任何船隻都是有效的。


Sea-slide 很容易使用,由於它的特殊防污能力, 除產生更快速度,節省燃油消耗,同時改善操作性。

試驗報告

選擇 3台 Kawasaki 1100s做試驗

時間: 1998 夏天

地點: Barnaget Bay, New Jersey

周期: 每組試驗都連續1小時


http://www.davidlu.net

Wednesday, June 16, 2010

Notebook Cooling DIY



Notebook Cooling DIY
Notebook more powerful, heat problem is getting worse!

As the cooling efficiency, excellent picture suddenly became sorry!

Do not ask for help, do not repair!

Thermal paste to help you, 2 minutes alone can get!

1. Notebook bottom shell side up, measure hot region area

2. Cut the same length and width of the thermal paste

3. Tear release paper

4. To gum the face of potential hot zone, paste!

30 seconds, immediately lowering the temperature, not warming!

Always effective!!

Tuesday, June 15, 2010

How to solve ipad overheating

There is a way to solve ipad overheating.
ACI Carbon fiber radiator has super heat dissipation ability.
How to work?
Peel off the release paper,put the carbonfiber radiator attached to the bottom of ipad.
Then you will find overheat phenomenon disappear dramatically in minutes.
Why?
ipad has wide area of aluminum, but the heat dissipation of aluminum is low.

We put aluminum sheet and ACI Carbon fiber radiator IN 100C oven for 5 minutes and take out.

Result:

ACI Carbon fiber radiator--- reach to ambient temperature in 30 sec.

Aluminum sheet ---can touch in 2 minutes, still warm until 5 minutes.

Saturday, June 05, 2010

發泡堵槍頭解決方法


發泡堵槍頭解決方法:



槍頭因構造複雜,很困難將裡部打磨光亮,所以2〜3小時就要卸下清潔,否則混合比例不准,影響聚氨酯製品品質

解決方法:

1。用耐米鐵弗龍浸塗槍頭內部,改善槍頭內部的潤滑流動;預計槍頭使用壽命可延長 6〜8倍

2。將卸下的槍頭用洗模劑浸泡洗淨

3。重複耐米鐵弗龍浸塗槍頭內部動作(只需讓耐米鐵弗龍水流過乾淨的槍頭內部即可)

Thursday, June 03, 2010

Carbon fiber Laptop

Carbon fiber computer (Carbon fiber Laptop)

Carbon fiber is High Tech
Carbon fiber is the fashion!
Carbon fiber is cool!
Carbon fiber Laptop is very cool!
The next generation of popular carbon fiber!
Small power (Netbooks), multi-touch Tablet PC (Slate PCs), tablet PCs (Tablets)
Will also go carbon fiber.

Processing of carbon fiber shell past the bottleneck of the computer is not too expensive for mass production.

As the elasticity of carbon fiber sheets ACI invention Poor nobility of carbon fiber computer has become possible.

Thursday, May 20, 2010

Gallium Nitride (GaN) Templates

In the field of nitride semiconductors, a “GaN template” refers to a composite substrate which includes a thin layer of GaN or AlN deposited epitaxially on a foreign substrate such as sapphire, silicon or silicon carbide. The thickness of the nitride layer is usually between 1 and 250 microns. Kyma’s GaN templates are built on sapphire as well as silicon substrates and are available in 2”, 3”, and 100mm diameter. They exhibit industry leading low defect densities and are epi ready with low surface roughness.

Kyma GaN templates grown by HVPE provide a higher purity GaN buffer for subsequent device epitaxy. Typical customer benefits include:

*

Elimination of long (2-5um) MOCVD or MBE undoped buffer growth
*

HVPE based GaN epitaxy has higher purity and transparency than MOCVD based GaN epitaxy
*

In high volume, HVPE based templates will have:
o

Significantly lower growth time/cost vs MOCVD templates due to the much higher growth rates possible with HVPE
o

Lower raw material costs as metalorganic gallium sources are replaced with metal gallium and ammonia usage is 1/10th that of MOCVD

Specification Sheet Characterization Methods

Characterization of gallium nitride wafers as shown in our specification sheets is completed using the following methods:

*

Wafer thickness, Bow and TTV are determined by a Sigmatech thickness mapper for round substrates. Square substrates are measured manually at predetermined points on the wafers.
*

Wafer orientation is determined by x-ray diffraction
*

Conductivity is determined by Lehighton (n-type, semi-insulating) and/or Corema measurements (semi-insulating) and/or Hall measurements for our boule recipes, but are not made on all wafers shipped.
*

Dislocation density is determined via etch pit density measurements followed by AFM and/or micro-cathodoluminescence (Micro-CL), but are not made on all wafers shipped.
*

Macro defects are on the surface of the wafer and are counted by visual inspection.
*

Surface roughness information is determined by atomic force microscopy (AFM) for the front surface finish. The typical image size for the measurement is 20x20µm.
*

Epitaxial Film thickness for films under 5um thick is determined via Filmetrix or Wyko white light interferometers. Film thickness for films above 5um is typically determined by weight.

Aluminum Nitride (AlN) Templates


Aluminum Nitride (AlN) Templates

In the field of nitride semiconductors, an “AlN template” refers to a composite substrate which includes a thin layer of AlN deposited epitaxially on a foreign substrate such as sapphire or silicon carbide. Kyma’s AlN templates are built on sapphire and are available from 2" to 150mm in diameter.

Kyma AlN templates are used to provide a low cost alternative to 2-step nitride nucleation processes. Kyma uses these templates for all of our GaN epitaxy, on all substrate types. There are a number of benefits that customers realize from these templates:

*

PVD has excellent scalability which results in lower cost of ownership when ramping production
*

Many LED customers report:
o

Better wavelength uniformity
o

Higher LED brightness
o

Better nucleation repeatability than low temperature MOCVD nucleation
*

Advanced PVD reactor purchase is possible from Kyma (R&D tools) or from our equipment partners (production tools) to enable tech transfer of this process to your facility

Specification Sheet Characterization Methods

Characterization of AlN Templates as shown in our specification sheets is completed using the following methods:

*

Wafer thickness, Bow and TTV are determined by a Sigmatech thickness mapper for round substrates. Square substrates are measured manually at predetermined points on the wafers.
*

Wafer orientation is determined by x-ray diffraction.
*

Conductivity is determined by Lehighton (n-type, semi-insulating) and/or Corema measurements (semi-insulating) and/or Hall measurements for our boule recipes, but are not made on all wafers shipped.
*

Dislocation density is determined via etch pit density measurements followed by AFM and/or micro-cathodoluminescence (Micro-CL), but are not made on all wafers shipped.
*

Macro defects are on the surface of the wafer and are counted by visual inspection.
*

Surface roughness information is determined by atomic force microscopy (AFM) for the front surface finish. The typical image size for the measurement is 20x20µm.
*

Epitaxial Film thickness for films under 5um thick is determined via Filmetrix or Wyko white light interferometers. Film thickness for films above 5um is typically determined by weight.

Kyma Announces Addition of AlN and GaN on Silicon Template Product Lines

Raleigh, NC / May 17, 2010 – Kyma Technologies, Inc., a leading supplier of ultra-high purity crystalline gallium nitride (GaN) and aluminum nitride (AlN) materials and related products and services, today announced the launch of two new nitride template product lines.
Kyma’s AlN-templates-silicon are crack-free and low-bow and consist of a thin (up to 200nm) layer of crystalline AlN deposited on a Si (111) substrate. Diameters of 2”, 3”, and 4” are currently available. The highly-oriented sub-grain structure and smoothness (<1nm RMS) of the crystalline AlN layer provides an excellent epi-ready nucleation surface for customers to deposit GaN-based device layers.
Kyma’s GaN-templates-silicon are crack-free and low-bow and consist of a thin, smooth (<1nm RMS) layer of GaN deposited on top of a Kyma AlN on (111) Si template. The GaN on Si template products currently offered have a 500 nm GaN layer and 2”, 3”, and 4" diameters. The GaN surface is epi-ready for epitaxial growth of additional GaN and GaN-based device layers such as light emitting diodes (LEDs), field effect transistors (FETs), and Schottky diodes.
The combination of low cost silicon substrates and Kyma’s low-cost high-performance deposition processes are excellent starting ingredients to make a cost-effective high-quality template.
Tamara Stephenson, Kyma’s Technical Sales Engineer, stated, “Our customers have been asking us to develop GaN and AlN template products based on Si substrates. It is a great pleasure to begin accepting orders for these highly anticipated products.”
Dr. Ed Preble, Kyma’s COO and VP Business Development added, “The market pull for Kyma’s template products is strong, especially for these GaN and AlN on Si templates. Important goals for us are to continuously improve and augment our growing portfolio of advanced crystalline III-N substrates according to the expanding needs of the market.”
In the future, Kyma will offer larger diameter templates and also will be extending the GaN thickness further, in order to provide lower defect densities and higher thermal conductivity.
About Kyma Technologies:
Kyma is a leading supplier of crystalline gallium nitride (GaN) and aluminum nitride (AlN) materials for a broad range of high performance nitride semiconductor device applications.
The market for nitride semiconductor devices is expected to surpass $30B over the next decade. The combined addressable market for GaN and AlN substrates is expected to surpass $500M in 2010.
Kyma is a registered trademark of Kyma Technologies, Inc.
Contact:
davidlu55@hotmail.com

Wednesday, May 19, 2010

Why PMMA/Carbon composite?

Why PMMA/Carbon composite?

Nike basketball shoe to dominate the game that is not unreasonable. Air bag is one of the major weapon. The other mysterious weapon is ARCH.
Nike used PMMA/Carbon composite Arch for basketball shoes for years in very low-key. The other competitors know the benefits of PMMA/Carbon composite Arch has several years lagged behind.
PMMA/Carbon composite Arch has function of energy absorption during jump down and protect foot no twisted. There is no material more suitable than PMMA/Carbon composite used to do ARCH.
For 14 years, PMC is the only supplier of PMMA/Carbon composite Arch. Now, ACI is the second player of PMMA/Carbon composite sheet and Arch.
Further details, please mail acimarket@gmail.com

How to make carbon fiber made laptop cost down?

How to make carbon fiber made laptop cost down?
Ferrari to open the first of its kind carbon fiber made laptop. But production costs are too high and yields too low, carbon fiber made laptopnot became unsustainable.
ACI announce carbon fiber made laptop would be cost effective and mass production easily.
ACI claim they have a unique process (patent pending) to produce high quality Elastomeric carbon fiber sheet. With the existing injection mold, the industry can use IMD process to produce laptop shell in cosmetic.
According to ACI, Elastomeric carbon fiber sheet is made of advanced polymer, which make 3K carbon fiber mysterious elegance feeling. ACI is searching a reliable partner to develop high class carbon fiber made laptop in quantity.
For further details, please contact acimarket@gmail.com

Friday, May 07, 2010

LED EPI--KYMA PVD ALN

PVD AlNValue Proposition
•NanocolumnarAlNPVD nucleation layers are used to replace existing nucleation layers–Produce higher brightness LEDs
•50-70% lower defect density (002 and 102)–Produce better wavelength uniformity (binning)
•Improves PSS LED uniformity also–Improve MOCVD throughput and repeatability–Lower cost, more scalable (silicon industry tech!)
•1 PVD tool boosts throughput on 6-10 MOCVD’s
MOCVD Time Savings of AlN
•PVD AlNbuffer allows bypass of several steps–Initial ramp to high temp–High temperature sapphire cleaning step–Ramp to nucleation temp–Nucleation layer growth
•1-2 hrs of total time
AlNTemplate Properties
•Repeatable and uniform nucleation surface for GaNepitaxy
–<1nm RMS roughness
–AlNthickness of 10nm –5000nm
–(00.2) FWHM routinely below 20 arcsec
–Epi-ready (no additional processing required)
•GaNepitaxyon PVD AlNis high quality, repeatable, and less complex
–Kyma has used these templates for our bulk GaNgrowth for 10 years
AlN Template Surface
-AFM•RMS Roughness <1nm
•Nanocolumnsof AlNprovide a repeatable and uniform nucleation surface for GaN
•Nano-roughness assists defect density reduction, improves GaNnucleation uniformity, reduces strain
PVD AlNTechnology Summary
•GaNdevice market >99% heteroepitaxybased
–Significant wafer bow during temperature changes
–Performance and reliability problems induced by high defect density
•GaN/InGaNdevices use 3 growth temps (500C, 800C, 1050C)
–Wafer uniformity is dreadful (<20% binning yield?)
–Even worse on patterned sapphire
•GaNnucleation issues
–GaNdirect nucleation has contentious IP landscape
–MOCVD AlN/AlGaNnucleation is expensive
•MOCVD is slow, expensive, low purity, and has poor scalability
–$3M tools only 4,000 2” wafers/month, 6-10 hour long run
•NanocolumnarAlNPVD nucleation layers are superior in all regards
–Produces better wavelength uniformity (binning)
–Produces high brightness LEDs (defect density appears to be lower)
–Lower cost and much more scalable–Improve throughput and repeatability
Secondary AlNBenefits
•AlNPVD useful for all substrates–Sapphire, SiC, Silicon
•MOCVD processes for these all very different
–C-plane, R-plane, M-plane, A-plane
•Fewer MOCVD steps increases fabthroughput
–Simpler N+ etch-back contact since no undopedlayer needed
•Really helpful on patterned sapphire which has larger thickness variations from coalescence issues
•May enable use of wet-etch patterned sapphire
–Lower cost than dry-etch patterned sapphire
•PVD AlNeven better for HVPE GaN
–HVPE is gaining credence as a replacement for MOCVD GaN
–100x higher growth rate, higher purity, better transparency, lower cost, less toxic
–AMAT recent announcement of HVPE/MOCVD cluster tool
•http://www.semiconductor-today.com/news_items/2010/JAN/DOE_180110.htm–Direct nucleation in hot wall HVPE is challenging, PVD AlNbypasses this problem
•Hot wall tools change temp very slowly
•Large temp swings present quartz lifetime issues–Kyma’sHVPE GaNeffort has used PVD AlNfor 10 years

Nano coating (奈米保護液)---尋找經銷商







Nano coating (奈米保護液)---尋找經銷商


保證不刮傷

--如果你有刺刺的感覺, 就是見紅!
--奈米保護液,保護刀口!更保護肌膚!


永遠光彩奪目

--珠寶和臉蛋一樣,需要保養!

--小小一滴,化妝棉擦勻,簡單容易


拒絕油污水漬

--保護手機電腦銀幕

Wednesday, May 05, 2010

散熱/防水/防塵,一次解決

散熱/防水/防塵,一次解決
LED散熱, iPad散熱都是熱門的話題. 但是,還沒有妥善得到解決.
IP65 防水防塵規格,是手機/筆電以及LED 燈具的基本要求.
kYMA 智慧型解決方案是:散熱/防水/防塵,一次解決!
作法:
用AlN 氮化鋁 真空塗佈主機板用AlN 氮化鋁 真空塗佈覆晶後的LED 基板
特性:
AlN 氮化鋁有很好的散熱特性, 160~180 (W/m‧K)
AlN 氮化鋁有很好的絕緣特性, >1014 (ohm‧cm)
AlN 氮化鋁完全透明
AlN 氮化鋁不吸水
KYMA 氮化鋁是奈米塗層!

davidlu55@hotmail.com

Tuesday, April 20, 2010

ACI Legends (ACI 傳奇)

ACI Legends
More than 70% of worldwide carbon fiber rackets Taiwanese production. The carbon fibers used in tennis rackets and mass production is a masterpiece of Luoguang Nan from Kennex and Harvey from the American Cyanamid Company. They are carbon fiber industry in Taiwan's founding father. Since the success of carbon fiber tennis racket, carbon fiber golf clubs and a chance of carbon fiber bicycle frame sprouting roots in Taiwan, and carried forward in the world. Kennex Inc investment losses as equity markets have been closed out of the Pro-Kennex. The engineers from Kennex are scattered all over Taiwan and China. However, carbon fiber products to higher value-added follow-up it appears that weak The first generation of carbon fiber epoxy composite material is impregnated thermoform. The new second-generation carbon fiber composite material is thermoplastic polymer and carbon fiber polymer film and then processed into shape. Nike secret of thermoplastic carbon fiber as the Arch and the successful continuation of Air bag in the bottom of dominance has been 10 years. The world can not find alternative .
ACI is the birth of Harvey's colleagues in cyanamid ,David and Kennex engineers catalyzed.
In addition to the successful launch of ACI thermoplastic carbon fiber and has successfully developed the world's first flexible carbon fiber composite.
ACI will lead the carbon fiber industry more miracles.
ACI addition to the supply of thermoplastic carbon fiber shoe and laptop case,
ACI also will launch a carbon fiber bicycle seat and the ice hockey stick.
ACI flexible carbon fiber main purpose is to golf bags, high class bags, knee pads and jacket.
Thermoplastic Carbon Fiber advantages: ultra-light! Waterproof! The same type! Do not change color!
ACI 傳奇全世界有70%以上的碳纖維球拍是台灣人生產. 將碳纖維運用在網球拍並大量生產是光男企業的羅光男和美國氰氨公司Harvey 的傑作. 他們是台灣碳纖維產業的開山始祖.由於碳纖維網球拍的成功, 碳纖維高爾夫球桿以及碳纖維腳踏車架才有機會在台灣萌芽生根,並在世界發揚光大.光男企業因為股票投資失利已經關門熄燈,退出市場; 眾多來自光男的工程師則分散台灣和中國各地. 但是, 將碳纖維產品帶到更高附加價值則顯得後繼乏力.第一代的碳纖維複合材料都是環氧樹酯含浸, 加熱成型.新二代的碳纖維複合材料則是熱塑性高分子和碳纖維聚合成片, 再加工定型. Nike 秘密採用熱塑性碳纖維做為Arch和中底成功延續Air bag 的霸業, 已經十幾年. 全世界找不到替代產品.
ACI 的誕生是Harvey 在氰氨公司的同事 David 和 光男工程師催化產生.
ACI 除成功推出熱塑性碳纖維片並成功開發世界首創的彈性碳纖維片.
ACI 將帶領碳纖維產業更創奇蹟!
ACI 熱塑性碳纖維片除供應鞋材和筆記型電腦外壳
ACI 更將推出碳纖維腳踏車座墊和冰上曲棍球棒.
ACI 彈性碳纖維片主要用途是高爾夫球袋,高級皮包和護膝護套.
熱塑性碳纖維片的好處是: 超輕! 防水! 不變型! 不變色!

Monday, April 12, 2010

The shell base carbon fiber for laptop


The shell base carbon fiber for laptop
Epoxy/carbon fiber composite was used for shell of high end laptop for years, but not success as reason of very high production cost and low yield. Thermoplastic carbon fiber sheet open a window for mass production now.
According to ACI (Advanced composite Inc),
Thermoplastic carbon fiber sheet has the advantage of forming, can be mass production.
2011, carbon fiber laptop computers will be out of the clouds, to become universal.

iPad Problem and solution




iPad Problem and solution
There is 934,000 articles in Google talking about ipad overheating problem.
This must be the biggest headache of Apple.
According to David Lu, the president of ACI (Advanced composite Inc), Overheating would be solved by carbon fiber made base. Thermal conductivity of carbon fiber can reach about 550WmK, more than silver and copper metal.
Just change the shell base carbon fiber, because overheating produced automatic shutdown problem is readily solved.
And Apple might leave this ridiculous warning“iPad needs to cool before using it.”

Sunday, April 11, 2010

T-Hexx ®乳牛保護產品




T-Hexx ®乳牛保護产品


T-Hexx品牌的意思是保护牛群和提升牛奶质量。


T-Hexx聚合物可用于制造优质乳头药浴液。在潮湿的草地不会被洗去。


T-Hexx是乳牛的防护盾牌,小母牛到育成牛;干奶期到泌乳期。


T-Hexx保护奶头,避免乳腺炎。


T-Hexx提供足浴消毒,保护牛蹄。


1998: Hydromer公司發明 T-Hexx Barrier Dip, 作为乳牛奶头保护,防止乳腺炎。


2001: T-Hexx Dry 获得干奶期奶头保护专利


2010: Hydromer推出T-Hexx Dragonhyde, 并立刻获得好评


T-Hexx Barrier Dip 的特色:


1。30秒内有效杀死细菌


2。12小时持续有效


3。自动成膜不会滴漏


4。防水,防潮,防止细菌渗入乳头管


5。防渗膜阻止细菌穿透乳头表面


T-Hexx Dry 的特色:


1。有效杀死细菌,7天内持续有效


2。防渗膜有效隔离最小的有机体。(支原体也不例外)


3。长时间有效杀菌,细菌无法繁殖


4。无刺激性配方, 避免奶牛擦伤乳头


T-Hexx Dragonhyde (奶牛足蹄藥浴)


傳統的奶牛足蹄藥浴使用福馬林並含有重金屬


T-Hexx Dragonhyde的配方將奶牛的清潔衛生提升到嶄新的境界


一槽T-Hexx Dragonhyde藥浴可提供250~350头奶牛使用, 並持續有效半個月


50 Gal 新槽


前浴---1Gal T-Hexx Dragonhyde


主浴---2Gal T-Hexx Dragonhyde


50 Gal 補充槽


前浴---1Gal T-Hexx Dragonhyde


主浴---2Gal T-Hexx Dragonhyde

Friday, April 09, 2010

Flexible Carbon Fiber




Flexible Carbon Fiber
ACI
successfully developed the flexible sheet, mass production is expected in May 2010.


Flexible carbon fiber is the perfect combination of flexibility and rigidity.


Flexibility allows you to arbitrary, rigid to withstand the limit break.


Flexible carbon fiber is the crystallization of technology and art.


It is said that the inventor of flexible carbon fiber is inspired from designer handbags ....


Inventor could not bear his wife Beizhu designer handbags shopping suffer. So, determined to invent new material for designer handbags.
This is the world's first.


Ultra-light material


Never deformation


Elegant texture


Spring-like transparent
It is estimated that flexible carbon fiber will be the mainstream in 2011 designer handbags.

Wednesday, March 31, 2010

碳纖維流行---碳纖維流行椅




頂級的賽車是碳纖維!
頂級的重機車是碳纖維!
頂級的腳踏車車是碳纖維!
頂級的電腦是碳纖維!
頂級的包包是碳纖維!
碳纖維流行椅的特色是:
超輕沒負擔!
不吸潮變形!
ACI (Advanced Composite Inc) 推出系列熱塑碳纖維片.熱固碳纖維片
並接受委託設計製造碳纖維系產品!
davidlu55@hotmail.com

碳纖維流行---最輕的碳纖維流行包


頂級的賽車是碳纖維!
頂級的重機車是碳纖維!
頂級的腳踏車車是碳纖維!
頂級的電腦是碳纖維!
頂級的包包是碳纖維!
碳纖維流行包的特色是:
質輕沒負擔!
堅挺不變形!
ACI (Advanced Composite Inc) 推出系列熱塑碳纖維片.熱固碳纖維片
並接受委託設計製造碳纖維系產品!
davidlu55@hotmail.com

Wednesday, March 17, 2010

ACI碳纖維是下一代流行的主流....


ACI 成功推出可定型碳纖維片材

這是世界第三,台灣首創!

我們在一年中解決5年來同業碰到的瓶頸


我們承諾:
ACI碳纖維將領先未來的流行, 帽子,鞋子,包包,夾克,手機,筆電,機車,轎車....

ACI碳纖維是高貴的科技,

ACI碳纖維將是下一代流行的主流....

New material, New technology, New application, New chances ~~新材料,新技術,新應用,新機會: Carbon fiber composite & Notebook


Carbon fiber composite & Notebook

ACI: Advanced Composite Inc
ACI announce to supply various composite sheets (carbon fabric, Gold and silver color woven), changes in the structure of multi -layer, tailor made for finished . Thermoplastic and thermoset resin system are all available to supply.
acimarket@gmail.com

AppleInsider:
A new patent filing discovered by AppleInsider provides some of the first public evidence that Apple is indeed exploring carbon fiber-like enclosures for future product designs, corroborating an earlier report on the matter.

World's lightest' notebook has carbon fibre casing

08 October 2009
Sony claims its VAIO® X Series is the world's lightest notebook computer. It is housed in a lightweight carbon fibre chassis.

High-speed carbon fiber composite manufacturing process
Performance Materials Corp. has developed a material and process that allows it to produce lightweight, stiff carbon fiber notebook computer covers in less than 2 minutes using an innovative compression molding/inductive heating system.
Thomas Smith, president of Performance Materials Corp. (PMC, Camarillo, Calif.) explained his company's efforts to develop a material and process for the high-speed manufacture of carbon fiber composite notebook computer covers. Smith said his company is targeting metal replacement in notebook computers, targeting 10 percent weight savings compared to magnesium, greater stiffness than magnesium, good surface quality, cost about the same as magnesium, a 2-minute cycle time, and a process that allows integration of other parts and materials.The market for notebook computers is substantial, with 200 million expected to be sold in 2010. Metal covers are expected to be used on 76 million units; carbon fiber is expected to be used on 24 million units, with total carbon fiber consumption of about 4 million lb/1.8 million kg.

Thursday, December 24, 2009

刮鬍刀片 & 奈米水


刮鬍刀片 & 奈米水
好的刀片,平整鋒利; 鬍鬚體毛可以刮的乾淨
不好的刀片, 刮不乾淨, 更會刮傷
不管是電動還是手動
共同的問題是:
清潔不易, 容易滋生細菌 (皮膚屑和潤滑膏皂都是細菌喜愛的糧食)
甚至刮傷流血 (黏在刀片的鬍鬚容易引起皮膚被刮傷)
幾十年來, 這個問題一直得不到解決!
奈米水是今年的新發現, 它是像水的奈米分子.
和點眼藥水一樣, 將奈米水點在刀刃的一端, 讓它自然流到另一端; 自然乾燥.
(吹風機吹乾更好)
你會意外發現:
不用洗面皂和刮鬍膏也能刮
水中搖甩,鬚屑自然掉落水中
你不用擔心刮傷
刀片可以用更久

Monday, November 23, 2009

奈米模具養護液---減少30~50% 離型劑用量

奈米模具養護液,納米級鐵氟隆
功能:
·改善樹脂(膠料)流動,除去流痕,提升製品外觀。增加良率。
·模具不容易臟,減少洗模次數,增加產量。
·減少30〜50%,離型劑用量,降低成本,提升塗裝和接著品質。

新的模具,老舊的模具都非常有效!

原理:
這是“自反應單層膦酸酯”
這是納米級的塗層,是一個分子的厚度,4納米厚度(納米波長= 1 × 9米)塗層。
膦酸酯是一種亞磷酸,“帶頭的反應基”是膦酸反應基,尾巴則是聚四氟乙烯;中間連結的是碳分子團所形成的穩定磷碳鍵(電腦)。
帶頭的反應基與金屬表面反應,會產生強而穩定的金屬磷鍵,尾巴部分則伸出表面,提供不粘,舒水的功能。SAMPs可和金屬,金屬氧化物,玻璃,陶瓷,以及某些可和膦酸反應的聚合物表面結合形成共價鍵。
這個高度穩定的化學鍵在常溫條件下可以自然形成。使用方法:清潔模具至衛生紙擦拭無油脂à噴塗“奈米模具養護液”à溶劑在30秒內會自然揮發à
“奈米模具養護液”,立刻在模具表面形成厚度4〜20奈米左右的透明保護層
噴槍:
·壓力:40lb/in2 = 2.8 Kg/cm2
·噴嘴:1.3〜1.4毫米
·距離:8〜15公分,
注意:
1。風壓不能太大,噴嘴不能太小(避免浪費)
2。模具表面淋濕即可
建議用途:
1。聚氨酯模具,長榮模具,橡膠模具
2。聚氨酯灌注機混合頭,

旋寶好企業有限公司
服務專線:0933187255
郵箱:davidlu55@hotmail.com
地址:台北市信義路2段130-1號4樓-1

Tuesday, October 06, 2009

奈米鐵弗龍表面處理(Nano Teflon coating)







奈米鐵弗龍表面處理(Nano Teflon coating)

眾所皆知: 鐵弗龍無毒 ,絕緣, 耐溫, 耐腐蝕, 耐化學品, 不粘, 自潤滑
但是, 如何把鐵弗龍塗佈在金屬表面, 則是大家無法完美解決的課題.

奈米鐵弗龍的發明將鐵弗龍表面處理的技術提升到新的境界.
過去做不到的, 現在已經可能!!
也就是說, 新制程的發明將
1. 大幅度降低半導體零件及醫療器材的成本
2. 大幅度提高不銹鋼廚具及用品的品質


奈米鐵弗龍表面處理施工方法:
1. 清潔金屬表面
2. 自然乾燥
3. 浸塗或噴塗”奈米鐵弗龍”
4. 自然乾燥
5. ”奈米鐵弗龍”一端(P-O)立即與金屬反應, 形成化學鍵; 另端(Teflon)向上, 提供”鐵弗龍”的優點

Tuesday, September 29, 2009

減少50% 離型劑用量, 提升製品外觀

減少50% 離型劑用量, 提升製品外觀

PU和橡膠成型都有沾黏的問題. PU尤其嚴重.
光滑細緻的模具表面是生產高品質製品的必備條件.
但是, 好的離型劑作為模具和材料反應的隔絕層還是不可缺少.

離型劑是成型必需的輔料. 用量越少, 表示越經濟, 越環保.
如何在不改變現有制程的條件下, 減少50%離型劑用量?
我們推薦
奈米模具養護液—Nano scale Teflon
新的模具, 老舊的模具都非常有效!
使用方法 和 使用結果
模具清潔~~噴塗”奈米模具養護液”~~溶劑揮發~~”奈米模具養護液”立刻在模具表面形成厚度10奈米左右的透明保護層
~~奈米保護層保護模具不會生銹
~~奈米保護層讓模具表面更光滑, 提升製品外觀
~~奈米保護層幫助離型, 減少離型劑用量
~~奈米保護層幫助離型, 免除模具積垢
專利技術: 美國普林斯頓大學
業務咨詢: 旋寶好企業有限公司
服務專線: 0933187255
E-mail: davidlu55@hotmail.com地址
: 台北市信義路2段130-1號4樓-1

Friday, September 25, 2009

New material, New technology, New application, New chances ~~新材料,新技術,新應用,新機會: 奈米鐵弗龍(Nano Teflon) 處理技術

New material, New technology, New application, New chances ~~新材料,新技術,新應用,新機會: 奈米鐵弗龍(Nano Teflon) 處理技術

奈米鐵弗龍(Nano Teflon) 處理技術

奈米鐵弗龍(Nano Teflon) 處理技術
金屬都需要防銹或防污的處理
Teflon 表面處理是解決防銹和防污的理想手段.
但是,Teflon無法粘著金屬表面. 所以, 只能靠樹脂粘著. 噴塗式鐵弗龍就是典型的例子.
噴塗式鐵弗龍有樹脂老化脫落和塗膜不均太厚的問題.
奈米鐵弗龍處理技術是:
1.清潔 工件
2. 把工件浸置於奈米鐵弗龍處理液中,10 秒鐘後快速拿起風乾. 奈米鐵弗龍的P-O 鍵和工件表面的(金屬氧化物) M-O 鍵形成化學鍵。
3. 工件表面除具有乾式潤滑物性及耐蝕性,更有效降低磨擦係數。
奈米鐵弗龍處理液可應用在下面
醫療器材 航太工業
半導體工業 汽車工業
紡織工業 電子工業
齒輪組 化學工業
氣、油壓零件 模具工業
軸心、軸承模組
食品工業 滾輪
精密儀器
塑膠、橡膠模具
通訊科技 烘焙器具
光電科技 氣動工具
微機電工業

Tuesday, September 22, 2009

Nano Primer--- 奈米底膠? 奈米底漆?

Nano Primer--- 奈米底膠? 奈米底漆?

如果為增加粘著強度, Nao Primer 就是奈米底膠
如果為防銹目的, Nano Primer 就是奈米底漆
Nano Primer 同時具有底膠 和 底漆的功能

奈米粘著促進液經證實具備下列供能
1. 增加晶片接著強度
2. 改善環氧樹脂和 (Au, Pd, Cu, Ag, Ni).線架的接著
3. 改善低介電材料和銅線路的接著
4. 提供比Silane (HMDS)更好的粘著能力和耐熱性

奈米粘著促進液適合各種金屬材料及半導體的接著保護
Ti, Cu, Al, Au, Ag, Zn, Ni, Cr,不銹鋼,Si , GaAs, CdS, AlN, Ge

奈米粘著促進液能夠接著各種高分子材料
ABS, PC, Nylon, Polyamide, Kevlar, Polyimide, Polysiloxane, Aramid, FR4, SU8

奈米模具養護液—Nano scale Teflon

奈米模具養護液—Nano scale Teflon

女人需要護膚, 才能維持青春美麗
模具需要保護, 才能生產漂亮產品
“奈米模具養護液” 是模具的膠原蛋白
新的模具, 老舊的模具都非常有效!

使用方法 和 使用結果
模具清潔-à噴塗”奈米模具養護液”-à溶劑揮發-à”奈米模具養護液”立刻在模具表面形成厚度不到100奈米的透明保護層

奈米保護層保護模具不會生銹
奈米保護層讓模具表面更光滑, 提升製品外觀
奈米保護層幫助離型, 減少離型劑用量
奈米保護層幫助離型, 免除模具積垢

專利技術: 美國普林斯頓大學
業務咨詢: 旋寶好企業有限公司
服務專線: 0933187255
E-mail: davidlu55@hotmail.com
地址: 台北市信義路2段130-1號4樓-1
歡迎經銷

創意裝潢 -Creative Decoration--DIY



創意裝潢, 高貴不貴
立體浮雕, 身歷其境
多種圖案, 多重選擇
歡迎設計師合作---davidlu55@hotmail.com

創意裝潢 -Creative Decoration


創意裝潢, 高貴不貴
立體浮雕, 身歷其境
多種圖案, 多重選擇
歡迎設計師合作---davidlu55@hotmail.com

Monday, September 14, 2009

橡膠模具的保養(奈米Teflon脫模劑+模具清洗機)

橡膠模具的保養

橡膠加工過程, 模具一定會被氣體殘留, 橡膠原料, 氧化物, 離型劑等污染產生積垢, 以致影響製品的光澤. 所以, 一段時間生產過後, 就必需洗模

好的配方可連續生產一星期再洗模
某些特殊的配方2~3小時就必需洗模
奈米Teflon脫模劑能夠讓2~3小時就必需洗模的模具延長到 2~3天再洗模

此外, 我們也提供了環保安全的模具清洗機
-鹼性清洗劑---超音波清洗
-超音波沖洗—如果模具有插入腔
-超音波酸洗—如果模具氧化嚴重
-超音波沖洗
-熱防鏽處理
-真空乾燥

Friday, September 04, 2009

奈米離型劑

奈米離型劑

新一代的奈米離型的原理是: 離型劑的磷酸鹽分子和模具表面形成有機金屬膜 , 離型劑的鐵弗龍分子提供潤滑離型功能.

奈米離型劑 沒有污染的問題
奈米離型劑 沒有轉移的問題
奈米離型劑 可保護模具不生銹
奈米離型劑 是常效型的離型劑
奈米離型劑 的製品可以直接塗裝

旋寶好企業有限公司
台北市信義路2段130-1號4樓-1
T: 02-23569705, F: 02-23564010
http://www.davidlu.net

六價鉻的替代品

六價鉻的替代品

RoHS的管制, 歐盟已經禁止六價鉻的使用.
Velcro®"的磷酸鹽奈米自組技術(SAMP)提供了綠色環保的替代.
Velcro 的磷酸鹽可以和金屬表面形成有機金屬錯化合物. 此有機金屬錯化合物除提供防腐蝕功能, 更保證塗裝密著的要求.
Velcro 奈米塗液可浸塗, 可噴塗, 使用方便.

旋寶好企業有限公司
台北市信義路2段130-1號4樓-1
T: 02-23569705, F: 02-23564010
http://www.davidlu.net

Saturday, August 29, 2009

熱傳導性優於金屬的碳纖維散熱片

熱傳導性優於金屬的碳纖維散熱片

旋寶好公司開發出熱傳導性比金屬還高的碳纖維(CF)材料,添加入樹脂填充料與製作成散熱片時,其熱傳導性超過銀及銅,是LED 模組散熱的理想材料。旋寶好公司已經準備將此產品商業化。 熱是由音波所傳導,因此堅硬材料對於熱傳導較為有利。旋寶好公司新開發的填充料是使用石墨材料結晶構造的碳纖維布,熱傳導性最高可達到約550WmK,超過銀及銅的金屬片。熱膨脹率與陶瓷材料接近,除具補強效果外,還有優異的電傳導性。碳纖維散熱片與市售的散熱片相比,熱傳導性約達3倍。

Sunday, August 23, 2009

面板的防汙處理

這幾年面板的使用者一直在尋找好的抗汙材料(Antismudge coating)

理想的Antismudge 塗佈 是:
1. 潤滑性: 耐磨係數(COF) 降低
2. 撥水: 水接觸角 (WCA) = 112 度
3. 抗油汙: 接觸角 (SCA) = 80 度
4. 重複性: WCA >105度 連續試驗後
使用方法:1. 用Plasma 或UV/ozone清潔鏡片表面
2. 處理液A—塗上鏡面, 用拭紙擦勻, 大約5秒
3. 處理液B—A 液乾後, 塗上鏡面, 用細布用力打勻, 大約10秒

Monday, July 20, 2009

模具維護











模具維護
超音波清潔系統是最先進/經濟的模具清潔方法.
它結合熱, 化學品和特殊的超音波設計, 將模具清潔如新, 而不傷害敏感和貴重的表面.

Tuesday, July 14, 2009

徵求人才

招募 儲備經理 儲備幹部
茲受某機構委託, 遴選 儲備經理 儲備幹部 各數名
儲備經理條件
1. 熱愛台灣
2. 理想性格
3. 群眾魅力
4. 組織力強
5. 領導力佳
6. 願意學習
7. 服從性高
8. 大學以上
9. 30~40 歲
10। 男女不拘

儲備幹部條件
1. 熱愛台灣
2. 有正義感
3. 關懷弱勢
4. 理解力強
5. 行動能力
6. 願意學習
7. 服從性高
8. 大學以上
9. 21~30 歲
10. 男女不拘
待遇: 非常優渥 (個別面議)
意者請備學歷,履歷, 舉證說明,
Mail: davidlu001@yahoo.com
條件不合者請勿應徵

Monday, June 15, 2009

GaN

Kyma Technologies

Kyma produces and markets semiconductor products related to gallium nitride (GaN), aluminum nitride (AlN), and other group III-nitride based alloys. The properties of these new materials promise to revolutionize numerous industries, particularly solid state lighting, power switching, and high temperature electronics.
Kyma offers an array of nitride based products:
GaN substrates
GaN and AlN templates
GaN device epitaxy
High purity polycrystalline GaN

ASM 2000--- 強化液涂佈控制系統

ASM 2000 控制/量測:
# 強化槽的高低水位 (高,低, 太低),# 強化液的密度,# 強化液的溫度, # 強化液過濾的速度
ASM 2000 ---適合安裝在各種強化系統
強化槽液面接觸到低水位時, sensor 就會送回信號並通知補充櫃進行強化液和溶劑的補充, 直到強化槽液面達到高水位. 以30 公升的強化槽為例, 每次的添加量在50 ~ 80 cc 之間
ASM 2000 帶來什麼改善?
藉傳感技術, 消除操作者的人為誤差, 連續式校正, 將添加量控制到最小, 進而維持品質的均一:
ASM 2000 有什麼好處?
1- 人力減少: 人工添加,每班必需有一個技術員, 從事取樣/分析和添加藥水的工作. 每班兩次, 每次需要30 分鐘.
2- 減少生產停機時間:
補充藥水和溶劑後, 必需等待混合均勻才能生產. 否則, 鏡片立刻產生不良. 每班兩次, 每次需要等待15 分鐘.
3- 避免操作失誤:
a- 藥水添加過量引起外觀不良和藥水壽命減短(一次添加量超過50%)
b- 拿錯藥水, 這種事常常發生. 生產線必需停工, 清潔更新
c- 藥水降到低水位卻沒注意到. 氣泡產生造成鏡片品質不良. 泵空轉也會引起火災.經驗顯示, a- 狀況平均3個月會發生一次, b-狀況平均18個月會發生一次. c-狀況平均6個月會發生一次. 如果以藥劑的5.5% 計算財務損失, 每公斤 200.00 €的藥水可生產2500片鏡片, 每個鏡片必需負擔 0.08 €.
4- 品質改善: 自動控制讓生產主管可以設定在最好的耐磨條件, 避免流痕和太厚造成的龜裂. 經驗顯示, 不良率可以減少 3%. 相對的, 藥水支出也可減少3%.
5- 藥水節省: 經驗顯示, 維持一定的密度可以節省6 % 藥水用量. 因為 a- 強化膜厚度一致,b- 強化劑壽命較長
6- 節省生產和品檢時間:6-1 外觀不良: 鏡片如果出現 (點, 波紋….), 那就是不良. 只能丟掉. 經驗顯示, 可以提升3% 產能, 減少 3% 藥水用量. 6-2 功能性不良:
如果厚度超過設定值, 後段的抗反射電鍍就容易龜裂, 造成客戶的退貨. 太薄雖然不會龜裂,耐磨卻有問題. 管理的疏忽不只是賠償的問題, 也是商譽的問題.
投資報酬率: 保證10 個月內還本,davidlu001@yahoo.com, 手機: 0933187255

Thursday, April 16, 2009

Gallium Nitride (GaN) Substrates

Gallium Nitride (GaN) Substrates
Gallium nitride substrates are matched in lattice constant and thermal expansion properties for epitaxial growth of doped GaN layers needed for fabrication of GaN-based devices. This eliminates stress and defects induced by growing GaN epi-layers on non-nitride substrates such as sapphire or silicon carbide, which increase device fabrication complexity and cost and compromise device performance. Kyma's high purity GaN substrate allows GaN-based device manufacturers to eliminate processing steps and improve device quality over those grown on other substrates.
Kyma currently offers GaN substrates to fill the needs of many applications. Detailed product descriptions and specification sheets are listed below:

C-Plane, N-Type Gallium Nitride (GaN) Substrates
2" rounds, 18x18mm and 10x10mm squares
Specification sheet
Click here to inquire
C-Plane, Semi-Insulating Gallium Nitride (GaN) Substrates
18x18mm and 10x10mm squares
Specification sheet
Click here to inquire
Non-polar, N-Type Gallium Nitride (GaN) Substrates
50mm2 and 100mm2 bars
M-plane [1-100], A-plane [11-20]
Other planes available on request
Specification sheet
Click here to inquire

Specification Sheet Characterization Methods
Characterization of gallium nitride wafers as shown in our specification sheets is completed using the following methods:
Wafer thickness, Bow and TTV are determined by a Sigmatech thickness mapper for round substrates. Square substrates are measured manually at predetermined points on the wafers.
Wafer orientation is determined by x-ray diffraction
Conductivity is determined by Lehighton (n-type, semi-insulating) and/or Corema measurements (semi-insulating) and/or Hall measurements for our boule recipes, but are not made on all wafers shipped.
Dislocation density is determined via etch pit density measurements followed by AFM and/or micro-cathodoluminescence (Micro-CL), but are not made on all wafers shipped.
Macro defects are on the surface of the wafer and are counted by visual inspection.
Surface roughness information is determined by atomic force microscopy (AFM) for the front surface finish. The typical image size for the measurement is 20x20 microns.

Tuesday, April 14, 2009

高密度二氧化矽薄膜(High Density Silicon Dioxide Films)

Seramic SI
高密度二氧化矽薄膜(High Density Silicon Dioxide Films)
特點:用浸塗或自旋塗佈提供耐熱絕緣層
電子 – 半導體設計和電容的絕緣層
光學 –玻璃和石英表面的防擴散
說明:
Seramic SI is a -chloroethylsilsesquioxane solution in methoxypropanol.
薄膜特性:
透明
介電常數: 3.2-३.6
折射率:
硬化前-- १.
硬化後-- 2.1-2.2
溶液性質
固含量 14-16%
密度 0.96 g/cc
黏度 3-5 cSt.
閃點 35°C
儲存: 5°C下密封,6個月. 打開前先加溫到 15°C
注意:
在通風無火源下使用, 避免皮膚和眼睛直接接觸
使用方法:
熱固化型-
用浸塗或自旋塗佈, 溶劑揮發後, 300°C 下加熱 30-60分鐘
自旋塗佈, 塗膜的厚度大約 1500-2000 Å
如果需要更薄, 可以用methoxypropanol 或diglyme 稀釋. 加熱過程有少量的乙稀和鹽酸氣體釋出
UV固化型- -
藉 deep UV (<210nm) 固化. 深紫外線照射區耐溶劑侵蝕, 未曝光區域可用溶劑洗去,
davidlu001@yahoo.com
davidlu55@hotmail.com

Tuesday, February 10, 2009

New material, New technology, New application, New chances ~~新材料,新技術,新應用,新機會: ELECTRONIC GRADE ADHESIVES

New material, New technology, New application, New chances ~~新材料,新技術,新應用,新機會: ELECTRONIC GRADE ADHESIVES

ELECTRONIC GRADE ADHESIVES

Manufacturer of Electronic Grade Adhesives /Adhesive films /Preforms for:

APPLICATION:
Chip Cap / Sensors, Electrical Grounding, Smart Card, Disk Drive, LCD, Semiconductor Grade, Chip Scale, Underfill, Lid Seal, Die Attach, Catheter, Optics, Class IV, Probe Cards, Encapsulants, Sealants, SMT, Wet Coil Winding, Coil Tacking, Heat Sink, HGA Assemblies, Pico-Nano Slider Bonds, Voice Coil to Armatures, Bearing Cartiridge, Spindle Motor, HUB to Media, Magnet Assembly, Screw Taper Proofing…..

PROPERTIES:
Flexible, Electrically Conductive, Thermally Conductive, Structural Bonding, Anisotropic, Siloxane, Polyurethane, Low Outgassing, High Temperature Resistant, Moisture Resistant, Low Temperature Cure, Snap Cure, High Humidity

BONDING SURFACES:
Aluminum, Brass, Ceramic, Copper, Ferrite, Glass, Gold, Lead, Mismatched CTE, Nylon, Plastic, Polyamide, Rubber, silver, Solder, Stainless Steel, Steel, PVC, Difficult Surfaces

Friday, January 16, 2009

HiPer – texTM--高強度的R -Glass

HiPer – texTM是不含硼的補強玻璃纖維。它是高強度的 R -Glass。
按照ASTM C - 162 ,DIN 1259和ISO 2078 標準。 這種配方設計的玻璃纖維, 有優異的力學性能,更好的耐熱和耐腐蝕特性。
和 E glass 比較, HiPer – texTM的好處是:
-增加30%強度
-增加17%鋼性
-增加45%抗變形
-增加10倍的壽命

HiPer – texTM 可以和各種不同樹脂結合 主要應用:高附加價值複合材料製品,
尖端用途:
風力發電機葉片,防彈盔甲,航太製品, 高壓力缸,
運動器材用途:
滑雪板,滑雪桿,高性能網球拍,壁球和羽毛球拍,釣魚竿,弓箭,曲棍球棒, 高爾夫球頭,高爾夫球桿,賽車車壳,車輪,汽艇,遊艇, 輕質防彈衣,頭盔,工作鞋鞋頭, 腳踏車零件等。

Wednesday, December 17, 2008

Medical coating--Hydrophilic coating

Medical coating--Hydrophilic coating
醫療用導管已經使用幾十年.
基於使用方便和實際需要, 導管需要親水的潤滑處理.
Hydromer 的 Hydrophilic coating 是業界公認的無毒, 環保塗液.
Hydromer 的 coating 符合FDA GMP 和 ISO 13485-2003 標準.
Hydromer 塗液滿足所有醫療器材和設備的要求.
Hydromer coating 可以應用在PVC, TPU, Silicone rubber, Nylon, Pebax, PEEK, Polykeytone 及金屬表面.

Wednesday, December 10, 2008

乳腺炎治療

乳腺炎治療 
2008-12-09 18:58
日本東京都畜產試驗場最近通過試驗證明,從茶葉中提取的茶素可治療奶牛的職業病~乳腺炎。    據東京都畜產試驗場公佈,目前用抗生素治療奶牛乳腺炎的方法往往會使牛奶中含有殘留藥物和抗藥菌等。因此日本規定,在奶牛接受抗生素治療期間,所產牛奶不准上市。養牛專業戶因此在經濟上蒙受巨大損失。為了解決這個問題,東京都畜產試驗場從去年開始與制藥廠共同研究,終於發現茶素可治療.
目前, 最先進的做法是用T-HEXX 對乳頭做保護.不再對乳頭注射抗生素.

Wednesday, December 03, 2008

成功案例----DL-1903w複材脫模劑

旋寶好企業有限公司 台北市信義路2段130-1號4樓-1
http://www.davidlu.net
成功案例----DL-1903w複材脫模劑

碳纖維腳踏車零件和羽毛球拍都是高單價的碳纖維制品.
市面上使用的脫模劑普遍存在離型劑轉移和後段塗裝困難的問題.
DL-1903w 是針對複材加工的問題而研發的解決方案.
DL-1903w是採用特殊高分子科技, 特別為環氧樹脂及複合材料加工設計的無毒環保脫模劑.
DL-1903w是水系離型劑, 不需MEK(有毒溶劑) 稀釋. 作業人員安全有保障..

使用方法:
1. 將模具表面清除乾淨直到用紙巾擦拭不再有油感..
2. 用噴槍或乾淨棉布將DL-1903w均勻 塗抹在模具表面,用熱風將水份吹乾,使模具表面覆上一層薄的脫模劑.
3. 重覆步驟2
4. 再重覆步驟2
5. 入料成型
6. 當感覺脫模稍微困難時, 重覆步驟2 並繼續成型.

包裝: 5 Gal,
儲存:
請在陰涼處存放.

Thursday, November 20, 2008

無抗奶--不含抗生素的牛奶!

乳腺炎發病率最高的時間不是泌乳期,而是干奶期,干奶的前期和后期。
過去, 牛進入干奶期,必須對奶液的奶頭進行治療,干奶的藥必須打進去,有乳腺炎的就治療乳腺炎,沒有的話就把干奶的藥打進去,這個錢不能省,否則掩藏在裡面的乳腺炎到產后爆發,損失更大。干奶期乳腺是周期性的發育。
目前, 最先進的做法是用T-HEXX 對乳頭做保護.不再對乳頭注射抗生素.
這就是無抗奶--不含抗生素的牛奶!

Monday, November 03, 2008

T-HEXX GREEN-S SYRUP 擠奶後乳頭保護液




不會垂滴,加水混合, 使用方便!

擠奶後乳頭浸泡濃縮液
環保--糖漿型
•1加侖糖漿可稀釋成10加侖
•減少浪費•節省運費
•節省儲存空間•更環保
用天然植物活性製成的”高性能濃縮擠奶後乳頭保護液”
讓T-HEXX保護您的牧群
“停止不必要的運輸開銷!
就地混合, 立刻使用!
T-HEXX環保糖漿•擠奶後乳頭保護•高效率防止生物體乳腺炎•T-HEXX糖漿不會垂滴灌,減少浪費和地板污染! •有效保護乳頭12小時! •配方適用所有類型的乳牛
1加侖糖漿==10加侖乳頭保護液

T-HEXX的創新技術, 是動物衛生的領導者.T-HEXX是乳牛業預防乳腺炎, 可以信任的產品。
所有天然植物活性取自: 牛至葉提取物,小球藻胸腺提取物, 錫蘭肉桂樹皮提取物,迷迭香葉提取物,薰衣草Augustifolia花提取物,佛手Limonum果皮提取物,薄荷葉提取物, Hydrastis 加拿大根提取物,油橄欖葉提取物。 T-HEXX是值得您信任的品牌。
如果你錯過 September 30 - October 4, 2008, Madison, WI USA
請參加


旋寶好科技
呂敏卿敬上----0933187255, 02-24927892
台北市信義路2段130-1號4樓之一
davidlu55@gmail.com
http://hi.baidu.com/T_Hexx/