Saturday, August 15, 2009

Robot Dog - with 15 degrees of freedom


Robot Dog- with 15 degrees of freedom
Model No.: JM-DOG-001
Description:

Since Sony’s introduction of the robotic dog “Aibo” last year, it has aroused tremendous interest in the robotic toy industry. The Joinmax initial introduction of a robotic dog with 15 degrees of freedom is aiming to establish a robotic dog platform to provide a more flexible playground for the Robotic Dog
enthusiast community. Through the construction of this robotic dog, one can have a much better understanding of the fundamental concept of a robotic dog’s mechanical architecture and its basic principle of movement. This platform can also support other sensors, such as “sight”, “smell”, “Hearing”, “sensing”, which will be introduced later to make this robotic dog more intelligent and more fun to play with.

Kit Contents:
1. Over 100 mechanical components to be assembled by user.
2. 15 mini-servo motors and its controllers.
3. PC connection cable.
4. Mini Servo ExplorerTM software (Win98/2000/XP)
5. User manual

Canon CanoScan 4400F

Scanning at an extraordinary 4800dpi, the CanoScan 4400F delivers top quality images without blowing your budget. Boasting a FAU, QARE Level 3 and 7 EZ buttons, this super-fast scanner is smart and versatile.

Features

* 4800 x 9600dpi, 48 bit colour depth
* FAU - 6 x 35mm film strip and 4 x 35mm slides
* Super-fast scan engine
* QARE Level 3 dust/scratch removal from photos
* Comprehensive software package
* USB 2.0 Hi-Speed
* 7 EZ buttons
* Fast Multi-photo mode
* Advanced Z-lid

Scan with quality and versatility.
Superb scan quality
With a 4800 x 9600 dpi CCD sensor capturing incredible detail, the CanoScan 4400F delivers superb, crisp images suitable for enlargement and high-resolution printing. The 48-bit colour depth ensures your scans have exceptionally accurate colour reproduction.

Film scanning
The CanoScan 4400F is equipped with a versatile built-in film adapter unit (FAU), allowing you to scan 6 x 35mm negatives or 4 mounted slides in a single operation.

Ultra-fast scans
The CanoScan 4400F’s super fast scan engine optimises your productivity, providing previews in just 5 seconds. Even when scanning at maximum resolution, workflow remains efficient as the USB 2.0 Hi-Speed connection ensures speedy data transfer.

Automatic retouching
Saving you hours of manual retouching, QARE Level 3 technology automatically restores scratched, damaged or faded photos to their former glory. It also reduces grain in photos taken on high speed film.

Comprehensive software
A full range of imaging software completes the CanoScan 4400F package. With ArcSoft PhotoStudio, OmniPage SE and Presto!PageManager, you can edit your scanned images with ease, convert paper documents straight into editable files and manage documents with ease. Canon’s ScanGear and CanoScan Toolbox have been upgraded to include better than ever image quality and functionality. The CanoScan 4400F is compatible with both Windows and Mac.

EZ buttons
Offering flexibility and saving you time, seven scan buttons provide one-touch operation of common scan tasks. Customise these to perform the functions you use most: copying, scanning, PDF file creation, or sending to your e-mail program. Four of the buttons are dedicated to scanning straight to PDF, including scanning in colour or mono.

Scan Multi-photos
With Canon's fast Multi-Photo mode, the CanoScan 4400F allows you to scan up to 10 separate images in a single pass, then work on each one separately. Multi-Photo automatically identifies, crops and straightens multiple images, even recognizing the type of original you use (film or photo).
Scan thick items
Incorporating an Advanced Z-Lid, the CanoScan 4400F can scan thick documents, books or small items as easily as if they were a single A4 sheet. By keeping even pressure on whatever rests on the glass, the lid ensures the best possible results regardless of the size and shape of your object.

Thursday, August 13, 2009

Datalogic Magellan 1000i Scanner

Datalogic Magellan 1000i Scanner
Omnidirectional Imaging

The Magellan 1000i is an Omnidirectional Imaging Scanner designed for "small-counter" retail environments. This new imaging technology improves checkout productivity by allowing users to scan barcodes in any orientation with a sweeping motion or a presentation style of scanning. The ergonomic design and small size allow for either hands-free scanning for small items or for use as a handheld scanner for large items. To optimize scan time, the tilting stand allows individual users to adjust the scanner to a comfortable scanning position. Additionally, the omnidirectional imaging technology of the Magellan 1000i eliminates misreads and quickly scans hard-to-read and damaged barcodes.

Metrologic MS7120 ORBIT Scanner

Metrologic MS7120 ORBIT Scanner
An aggressive, omnidirectional presentation laser barcode scanner.

Meet MS7120 ORBIT ! MS7120 ORBIT is small in size, but BIG in performance. MS7120 ORBIT is Metrologic's first Point-of Sale barcode scanner to utilize holographic technology to precisely focus the scanner's laser and therefore increase performance and efficiency. MS7120 ORBIT is perfect for retail applications where counter space is at a premium and its unique contoured design allows it to be picked up to scan large, bulky items.

Monday, August 10, 2009

Small Smart Label (RFID)

The Small Smart Label - for RFID tags application, available in Philips standard, Mifare (ISO14443) or I Code SLI(ISO15693) .

Technical Specification:
Antenna Type: Etch
Size ( For Mifare ) & Size ( For I Code SLI ): 12mm X 45 mm
Thickness: 0.35mm
Material :Paper
Operating Frequency: 13.56MHZ
Operating Temperature: -20◦C +70◦C (Paper)
Storage Temperature: -20◦C +70◦C (Paper)
Operating Distance: 3 ~ 11cm - Based on Philips Pagoda Reader
Application: Asset Management Etc…
Avaliable ICs: Mifare 1k ( 1024 byte ), I Code SLI ( 1024 bit )

The Simple RFID Explained

What is RFID?


Radio frequency identification, or RFID, is a generic term for technologies that use radio waves to automatically identify people or objects. There are several methods of identification, but the most common is to store a serial number that identifies a person or object, and perhaps other information, on a microchip that is attached to an antenna (the chip and the antenna together are called an RFID transponder or an RFID tag). The antenna enables the chip to transmit the identification information to a reader. The reader converts the radio waves reflected back from the RFID tag into digital information that can then be passed on to computers that can make use of it.
Is RFID better than using bar codes?

RFID is not necessarily "better" than bar codes. The two are different technologies and have different applications, which sometimes overlap. The big difference between the two is bar codes are line-of-sight technology. That is, a scanner has to "see" the bar code to read it, which means people usually have to orient the bar code toward a scanner for it to be read. Radio frequency identification, by contrast, doesn't require line of sight. RFID tags can be read as long as they are within range of a reader. Bar codes have other shortcomings as well. If a label is ripped or soiled or has fallen off, there is no way to scan the item, and standard bar codes identify only the manufacturer and product, not the unique item. The bar code on one milk carton is the same as every other, making it impossible to identify which one might pass its expiration date first.

Will RFID replace bar codes?
It's very unlikely. Bar codes are inexpensive and effective for certain tasks, but RFID and bar codes will coexist for many years.

Is RFID new?
RFID is a proven technology that's been around since at least the 1970s. Up to now, it's been too expensive and too limited to be practical for many commercial applications. But if tags can be made cheaply enough, they can solve many of the problems associated with bar codes. Radio waves travel through most non-metallic materials, so they can be embedded in packaging or encased in protective plastic for weatherproofing and greater durability. And tags have microchips that can store a unique serial number for every product manufactured around the world.

What is the purpose of RFID?
RFID allows data to be transmitted by a product containing an RFID tag microchip, which is read by an RFID reader. The data transmitted can provide identification or location information about the product, or specify information such as date of purchase or price.


What is the advantage of using RFID technology?
No contact or even line-of-sight is needed to read data from a product that contains an RFID tag. This means no more checkout scanners at grocery stores, no more unpacking shipping boxes, and no more getting keys out of your pocket to start your car. RFID technology can also work in rain, snow and other environments where bar code or optical scan technology would be useless.

Are there any standards for RFID?
Yes. International standards have been adopted for some very specific applications, such as for tracking animals and for smart cards, which require encryption to keep data secure. Many other standards initiatives are under way. The International Organization for Standardization (ISO) is working on standards for tracking goods in the supply chain using high-frequency tags (ISO 18000-3) and ultra-high frequency tags (ISO 18000-6). EPC global, a joint venture set up to commercialize Electronic Product Code technologies, has its own standards process, which was used to create bar code standards. EPC global has submitted the second-generation UHF EPC protocols to ISO, and it has been approved as ISO 18000-6C, an international standards.

What are the types of RFID Standards?
ISO 15693-Smart Labels
ISO 14443-Contactless payments
ISO 11784-Livestock
EPC-Retail
ISO 18000-Various frequencies, various applications

What are the types of RFID applications?
- Livestock tracking
- Automotive immobilizer
- Contactless payments
- Anti-theft
- Library application
- Speed Pass
- Control Access
- Production/Inventory tracking
- Retail
- Asset Management

What is the difference between low (LF), high (HF), and ultra-high frequencies (UHF)?
Just as your radio tunes in to different frequencies to hear different channels, RFID tags and readers have to be tuned to the same frequency to communicate. RFID systems use many different frequencies, but generally the most common are low-frequency (around 125 KHz), high-frequency (13.56 MHz) and ultra-high-frequency or UHF (860-960 MHz). Microwave (2.45 GHz) is also used in some applications. Radio waves behave differently at different frequencies, so you have to choose the right frequency for the right application


Application for different frequencies:
LF Applications (125KHZ): Access control, livestock, race timing, pallet tracking, automotive immobilizers, pet identification

HF Applications (13.56MHZ): Supply chain, wireless commerce, ticketing, product authentication, clothing identification, library book identification, smart cards

UHF Applications (860-960MHZ): Supply chain, Tool Tags, RTLS, EPC Case and Pallet
What are the transponder characteristics?
RFID tags are tiny microchips with memory and an antenna coil, thinner than paper and some only 0.3 mm across. RFID tags listen for a radio signal sent by a RFID reader. When a RFID tag receives a query, it responds by transmitting its unique ID code and other data back to the reader. Basically there are 3 kinds of tags- Active, Passive and Semi Passive.

What is the difference between a passive, semi-passive and active RFID?
Active RFID uses an internal power source, such as a battery, within the tag to continuously power the tag and its RF communication circuitry. Active RFID allows extremely low-level RF signals to be received by the tag (since the reader/interrogator does not power the tag), and the tag can generate high-level signals back to the reader/interrogator. Active RFID tags are continuously powered, whether in the reader/interrogator field or not, and are normally used when a longer tag read distance is desired.

Passive RFID relies on RF energy transferred from the reader/interrogator to the tag to power the tag. Passive RFID tags reflect energy from the reader/interrogator or receive and temporarily store a small amount of energy from the reader/interrogator signal in order to generate the tag response. Passive RFID requires strong RF signals from the reader/interrogator, and the RF signal strength returned from the tag is constrained to very low levels by the limited energy. Passive RFID tags are best used when the tag and interrogator will be close to one another.

Semi-passive RFID uses an internal power source to monitor environmental conditions, but requires RF energy transferred from the reader/interrogator similar to passive tags to power a tag response. Semi-passive RFID tags use a process to generate a tag response similar to that of passive tags. Semi-passive tags differ from passive in that semi passive tags possess an internal power source (battery) for the tag's circuitry which allows the tag to complete other functions such as monitoring of environmental conditions (temperature, shock) and which may extend the tag signal range.

What’s the difference between read-only and read/write tags?
Chips in RF tags can be read-write or read-only. With read-write chips, you can add information to the tag or write over existing information when the tag is within range of a reader, or interrogator. Read-write tags are useful in some specialized applications, but since they are more expensive than read-only chips, they are impractical for tracking inexpensive items. Some read-only microchips have information stored on them during the manufacturing process. The information on such chips can never been changed. A more flexible option is to use something called electrically erasable programmable read-only memory, or EEPROM. With EEPROM, the data can be overwritten using a special electronic process.
How much information can an RFID tag store?
Tags are available with storage capabilities from 512 bytes to 4MB. It largely depends on vendor and whether the tag is passive or active. Data stored in a tag will be determined by the application of the system and appropriate standards. For example, a tag could provide identification for an item being manufactured, goods in transit, or even the short-range location and identity of a vehicle, animal, or individual. This fundamental data often is referred to as a "license plate code," similar to the information that is stored on a bar code label. When linked to a database, additional information may be accessed through the reader such as item stock number, current location, status, selling price, and batch code. Alternatively, an RFID tag may carry specific information or instructions immediately available upon reading, without the need to reference a database to determine the meaning of a code. For example, the desired color of paint on a car that is entering the paint assembly area on the production line, or a manifest to accompany a shipment of goods.


Transponder, smart label, Tag. What's the difference?
Initially, in the technical field, transponder was the term used to designate an electronic module which is able to Transmit information and respond with information. Recently, different fields in which Radio Frequency Identification is prevalent have developed a new jargon to designate the same thing, such as Smart Label or Tag. "Smart labels" are a particularly innovative form of RFID tag and operate in much the same way. However, a smart label consists of an adhesive label that is embedded with an ultra-thin RFID tag "inlay" (the tag IC plus printed antenna). Smart labels combine the read range and unattended processing capability of RFID with the convenience and flexibility of on-demand label printing. Smart labels also can be pre-printed and pre-coded for use. In on-demand applications, the tag inlay can be encoded with fixed or variable data and tested before the label is printed, while the label can contain all the bar codes, text, and graphics used in established applications. Smart labels are called "smart" because of the flexible capabilities provided by the silicon chip embedded in the tag inlay. A read/write smart label also can be programmed and reprogrammed in use, following initial coding during the label production process.

Can I tag metal objects? Can I tag items that have high-water content?
Yes. Radio waves bounce off metal and are absorbed by water at higher frequencies. While that can make tracking metal objects or those with high water content problematic, well-planned system design and engineering can solve these issues.


What is an RFID reader?
A reader is basically a radio frequency transmitter and receiver, controlled by a microprocessor or digital signal processor. The reader, using an attached antenna, captures data from tags then passes the data to a computer for processing. As with tags, readers come in a wide range of sizes and offer different features. Readers can be affixed in a stationary position (for example, beside a conveyor belt in a factory or dock doors in a warehouse), portable (integrated into a mobile computer that also might be used for scanning bar codes), or even embedded in electronic equipment such as print-on-demand label printers

What are the reader characteristics?
• Stationary or handheld (different RFID Reader Modules)
• Weather-proof or industrialized
• Typical read ranges vary from a few centimeters to a few meters
• Read range is dependent upon:
o Broadcast signal strength
o Size of broadcast antenna
o Size of transponder antenna
o The environment factor: Metallic, Liquid
• Multi-frequency readers

RFID read-only readers These devices can only query or read information from a nearby RFID tag. These readers are found in fixed, stationary applications as well as portable and handheld varieties.

RFID read-write readers Also known as encoders, these devices read and also write (change) information in an RFID tag. Such RFID encoders can be used to program information into a blank RFID tag. A common application is to combine such a RFID reader with a barcode printer to print smart labels. Smart labels contain a UPC bar code on the front with an RFID tag embedded on the back.

What are the types of antenna characteristics?
- Transmits and receives RF signals
- Typically made of copper or aluminum, new technologies for printed antennas
- Stationary or handheld
- Weather-proof/industrialized
- Fixed or tunable


What are the RFID system considerations?
Read distance requirements
- Long read range
- Short read range

Frequency
- All frequencies have their pros and cons

ISO standards
- Proprietary or standards-based

Government regulations
- Varies from country to country

Multiple Tag Reading in Same Field
- Anti-collision

Sensitivity to Orientation
- A single orientation or Omni-directional

Hardware Set-up
- Environment can affect performance

REFERENCE:
http://rfid.rosesana.com

Versi Bahasa Indonesia bisa di cek di: http://forum.kompas.com/sains/210878-penjelasan-sederhana-tentang-rfid.html


Sunday, August 09, 2009

Sony VPL EX7 - LCD projector

Sony VPL EX7 - LCD projector - 2000 ANSI lumens - XGA (1024 x 768) - 4:3

Technical Details

* Brand Name: Sony
* Model: EX7
* Hardware Platform: PC
* Display: LCD projector
* Minimum Image Size: 3.3 feet

Product Description:

The VPL-EX7 has stylish but practically designed chassis which includes a built-in tilt angle of 8degree to automatically produce perfectly proportioned presentations. This XGA projector has a color light output and brightness of 2000 lumens. It has a low power consumption - less than 3W in standby mode and incorporates 2 power saving modes.The projector's height adjustment and controls are both simple to use and easy to access making the VPL-EX7 an ideal projector for delivering presentations in both education and corporate environments.

Monday, August 03, 2009

SitePlayer HTTP Web Server

Browser-Based Display Engine
SitePlayer HTTP Web Server (SP1/SP1-U/SPK-1) displays dynamic custom- designed web page content based on values stored in its memory. It provides a browser-based display engine for your attached serial device or microprocessor; it's something to use in addition to, or as a substitute for an LCD display. Its Ethernet side requires a standard web browser for HTTP access or a custom program for HTTP and UDP access. Its serial side requires SitePlayer-specific commands from your device to read and write to SitePlayer's memory or to instruct SitePlayer to send a range of its memory out as UDP datagrams.

SHM7500 stereo headset


The Philips SHM 7500, Full-on personal enjoyment with 40mm professional speaker.
Impressive sound reproduction and transmission is the hallmark of the SHM7500 stereo headset. 40mm speakers and omni-directional mic bring PC music, video and conversation to professional levels. Sound comes alive!

SHH 3201 headphones by Philips


The Philips SHH 3201 headphones ,Extra comfortable.
Ultra-comfortable for active use, these ergonomic earhook headphones bring fantastic quality music reproduction straight to your ears. Bass pipe emphasizes low tones for a clear, realistic sound. A 1.2m long cable that is ideal for outdoor use