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IEEE1394 Flex PCB application

IEEE1394 Flex PCB application
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IEEE1394 Flex PCB application

  • IEEE1394 Flex PCB application
    IEEE 1394 is an industry standard for a scalable, flexible, easy to use, low-cost digital interface, that integrates the worlds of consumer electronics products and peripherals for computer. The IEEE1394-1995 defined the standard in 12 Dec 1995 , and IEEE 1394a-2000 Amendment 1 Draft 5.0 was approved as a standard at the 30 Mar 2000 .COMOSS are the member of 1394TA, we offers all of IEEE1394 series products to solve high transmission rate questions.
    ransmission speed:400Mbps
    Transmission distance:4.5m
    Mating cycle:1000
    Scalable:1394 supports multiple speed including devices operating at100, 200, 400 Megabits per second.
    Flexible:1394 supports freeform daisy chaining and branching which reduces cabling complexity and supports "peer to peer" connections.
    Easy to use:1394 eliminates the need to load software or perform complicated set-ups.
    Hot plug and plug & play:1394 is not necessary to turn off the power to install computer peripherals or reboot the computer after installation the new peripheral products can be used immediately

    IEEE1394 High Speed Interconnects

    Axon’ has developed cables and cable assemblies based on the IEEE1394 standard for spacecraft communication network. Axon’ IEEE1394 links provide reliable data transmission between the on-board devices. The cabling has been optimized in order to reduce the mismatching and crosstalk between lines at the maximum. The IEEE1394 cables are terminated with Axon’ micro-D connectors.

    A complete small package single chip PCI solution for high-speed, low power seamless plug and play connections to the latest IEEE 1394 enabled devices.

    The IEEE 1394 high-speed serial bus (known as ‘Firewire™’) is a leading PCI peer-to-peer interconnect system and is widely acclaimed as the primary interface for digital audio and video applications. The IEEE 1394a specification enables hot-pluggable high volume connections to PC peripherals such as printers and hard disk drives, multimedia appliances, and consumer electronics devices such as game consoles and video cameras.

    The VIA Fire IIM VT6307/L/S is a single-chip, low power 2-port IEEE 1394 host controller providing PC systems with high speed, flexible connectivity to a wide range of peripherals and consumer electronics. Supporting the latest high speed IEEE 1394a standards, the VIA VT6307/L/S can detect connected device types and automatically configure data speeds to 100, 200, or 400 Mbps, transmitting both asynchronous and isochronous (real-time) data packets.

    With an integrated physical and link layer, the VIA VT6307/L/S is equipped with 32-bit PCI bus interface that features advanced power management, and cardbus support. On-board chip logic performs bus initialization and arbitration functions allowing for easy plug-and-play connections, and a DMA engine supports high performance data transfer for media disk drives.

    The VIA VT6307 is compliant with the latest IEEE 1394 standards with full 1394a P2000 support, and has an OHCI compliant programming interface with support for I2C EEPROMs and 4-Wire Serial ROMs. The VIA VT6307/L/S has VIA and OHCI software driver support built into all recent Microsoft® Windows® operating systems.

    To minimize power consumption the VIA VT6307/L/S has a programmable PCI power management mode that shuts down power to unconnected ports, while a sleep function maximizes the power efficiency of connected ports. The chip is manufactured using a low power 0.30 micron process to further reduce operating power requirements.

    With the 2nd Generation Intel® i7-,i5,-i3 2Core and 4Core CPUs & Intel® Q67 Chipset the long term available embedded FLEX-ATX motherboard offers the perfect combination of high CPU and graphics performance

    1394 Connector

    3M 1394 connector supports the IEEE 1394 standard and supports operatings in challenging environments such as a factory production floor. 3M offer a boardmount straight and right angle variations.

    1394 Connector 3M Related Products

    When 1394 is used for the connection and the source device controls program navigation and selection, the CEA requires the DSTB to provide a single program transport stream to the DTV. DSTB designers should be sure the MPEG-2 demultiplexer/decoder has this ability when designing 1394 into the system.

    DTV architecture: 1394 could be integrated into a general DTV system architecture (Fig. 2). In this case, 1394 is used as an input for both digital A/V streams and OSD, or for interactive graphics from an A/V source device, like DSTB. When a digital tuner is integrated into the DTV, the 1394 interface can also serve as an output to A/V media recording or data storage devices, or even to a digital A/V receiver.

    There has been an ongoing debate in the consumer industry over whether to choose DVI or 1394 as the interface between equipment like digital cable, satellite set-top boxes, DTVs, DVD players, and digital VHS decks. Despite the debate, 1394 and DVI shouldn't be regarded as mutually exclusive interface options.

    The DCAM Video Frame Capture Development Kit
    The DCAM Frame Capture Development Kit combines the features of the UC1394a-3 with software support for industrial digital cameras. The result is a development environment where the user can focus on his application rather than dealing with IEEE1394 details. The Kit uses the DSP Master FPGA design for high-speed transfer of image data to the DSP or SDRAM. Full camera control and access to all DCAM features s provided by the DCAM Frame Capture API. Processing results and control/status information can be communicated to external hardware over a variety of interfaces:
    - McBSP (DSP on-chip, highly flexible multi-channel buffered serial ports)
    - I2C (DSP on-chip)
    - 8-bit host port (DSP on-chip)
    - 16-bit peripheral interface (FPGA-based interface)
    - RS-232 (DSP on-chip)
    - Customized interfaces in the FPGA (requires optional FPGA development package)

    Hicotronics Devices Pvt Ltd is established on 19th October 1997, by Mr Suresh Kumar Chopra, the founder and Managing Director, have a great deal of zeal with big future aspiration for the growth of the company.
    Hicotronics is specialised in distribution system of industrial Electronic components, Defence components, Systems and Sub-systems, Signage, Telemarketing both Inland and International. With our broad network of Electronic Component suppliers, we offer an additional service to support extensive source and International procurement for our valuable customers. We position ourselves as a procurement agent and distributor to purchase electronic components from preferred suppliers, for and on behalf of our customers.

    Firewire offers several features that complement DVI. One of the most important is 1394's ability to record digital A/V content to today's digital VHS decks, as well as the DVD-R/W decks soon to be available. (The DVI content protection standard and license agreement doesn't allow copies to be made from a DVI interface.) Firewire can also support the creation of a network of various electronic equipment in the home. With the addition of HAVi to the end equipment's software, all 1394 equipment can speak the same language, making a truly universal remote a reality. Table 1 lists some of the pertinent CEA/EIA 1394 DTV interface requirements.

    Based on the latest Intel® Q67 chipset, the Kontron KTQ67/FLEX embedded motherboard with long-term availability offer an ideal performance-per-watt ratio and the very latest interface technology, like gen 2.0 PCI Express x16, without neglecting embedded designers' needs: They still carry, for example, 6x SATA interfaces (4x SATA150/300 and 2x SATA600) w. RAID 0/1/5/10 support alongside the 14 USB 2.0 interfaces. The state of the art graphics performance is supported by 2 x Display Port, 1 x LVDS (optional) & 1 x CRT interface. An unique multipurpose KT Feature Connector supports up to 160 GPIO's. The embedded motherboards also offer more PCB layers than conventional motherboards designed for the consumer market, in order to achieve excellent signal qualities and optimize electromagnetic compatibility. Kontron’s new embedded motherboard also support Intel Active Management Technology (Intel AMT 7.0) for remote management and easy maintenance resulting in higher system availability and lower total costs.

    You may have heard the term charge-coupled device (CCD), and wondered how it relates to the analog video signal. A CCD is an array of hundreds of thousands of interconnected semiconductors. Each pixel is a solid-state, photosensitive element that generates and stores an electric charge when it is illuminated. The pixel is the building block for the CCD imager, a rectangular array of pixels on which an image of the scene is focused. In most configurations, the sensor includes the circuitry that stores and transfers its charge to a shift register, which converts the spatial array of charges in the CCD imager into a time-varying video signal. Timing information for the vertical and horizontal positions and the sensor value combine to form the video signal.

    For standard analog cameras, the lines of the CCD are interlaced to increase the perceived image update rate. This means that the odd-numbered rows (the odd field) are scanned first. Then the even-numbered fields (the even field) are scanned. The two fields make up one frame. Electronic Industries Association (EIA) RS-170 and NTSC cameras update at 30 frames/s with a resolution of 640 columns x 480 rows. CCIR and PAL cameras update at 25 frames/s with a resolution of 768 columns x 576 rows.

    Analog cameras are low in cost and easy to interface with a standard analog acquisition device. Therefore, they can solve numerous applications at an attractive price.

    Digital Cameras

    Digital cameras have several advantages over analog cameras. Analog video is more susceptible to noise during transmission than digital video. By digitizing at the camera level rather than at the image acquisition device, the signal-to-noise ratio is typically higher, resulting in better accuracy. Because digital cameras are not required to conform to television standards, they can offer larger image sizes and faster frame rates, as well as higher pixel resolutions. Digital cameras come with 10 to 16-bit gray levels of resolution as a standard for machine vision, astronomy, microscopy, and thermal imaging applications. Digital cameras use the same CCD type devices for acquiring images as analog, they simply digitize the video before sending it to the frame grabber.

    Parallel Digital Cameras

    Until recently, parallel digital cameras were the only type of digital cameras available. They offer all of the benefits mentioned above. However, parallel digital cameras have no clear physical or protocol standards, and interfacing to digital acquisition devices can be difficult. Parallel digital cameras often require custom cables to connect with image acquisition devices. You also must be certain that your camera is compatible with your image acquisition device.

    Fortunately, a large base of parallel cameras exists on the market for almost any imaging application. National Instruments provides cables and camera configuration files to make connecting to parallel digital cameras easy. To determine whether one of the NI acquisition devices is compatible wiith your camera, visit Camera Advisor on ni.com.

    Camera Link

    Camera Link is an interface specification for cables that connect digital cameras to image acquisition devices. It preserves the benefits of digital cameras – such as flexibility for many types of sensors – yet it has only a small connector and one or two identical cables, which work with all Camera Link image acquisition devices. Camera Link greatly simplifies cabling, which can be a complex task when working with standard digital cameras. To determine whether one of the NI acquisition devices is compatible with your camera, visit Camera Advisor on ni.com.

    IEEE 1394

    IEEE 1394 is a serial bus standard used by many PC peripherals, including digital cameras. IEEE 1394 cameras use a simple, flexible, 4 or 6-wire power cable; and in some cases, the bus can supply power to the camera. However, because IEEE 1394 is a shared bus, there is a bandwidth limitation of approximately 40 MB/s when no other device is connected to the bus. IEEE 1394 cameras also require processor control to move the image data, which limits available processor bandwidth for image processing.

    IEEE 1394 is a standard that also includes functions for enumerating and setting up the camera capabilities. You can acquire images from any industrial IEEE 1394 camera and OHCI-compliant IEEE 1394 adapter using NI-IMAQ for IEEE 1394 Cameras driver software, which you can purchase at ni.com.

    NEW: There is a version designed for the requirements of the medical market availabe as well:

    Main differences to standard KTQ67/FLEX board:

    • 2 x isolated LAN (no 3rd port)
    • No Display Port
    • No MiniPCIe/ no mSATA
    • 4 x SATA
    • No LVDS

    Combining the single chip design with a powerful feature set, the VIA VT6307/L/S is the ideal solution for OEMs and motherboard manufacturers looking for a small package, low power and cost effective controller solution to add IEEE 1394 connectivity to their product line-up.

    Benefits of VIA Networking 1394 VT6307/L/S

    Single chip design with full ‘plug and play’ capabilities for integration into PC systems and consumer electronics, equipped with an Open HCI interface and logic to perform bus initialization and arbitration functions.

    Flexibility: Features 2 ports supporting transmission rates up to 400 Mbps enabling the use of multiple high bandwidth peripherals running simultaneously.

    Energy Efficiency: Low power consumption is provided by an improved 0.30 micron manufacturing process, enhanced by a programmable PCI power management mode with sleep function for connected ports and inactive port disabling.

    Compatibility: Interoperability with IEEE 1394-1995 devices, and full P1394a 4.0 supplement support, with VIA and OHCI driver software support incorporated into the leading operating systems.

    Ideal for Mobile Applications: Available in a compact 14×14 LQFP small package for integration into devices with constrained board space, such as laptops and small form factor PCI devices. Also available as a 14×20 package in LQFP and PQFP formats, offering complete flexibility to OEMs.

    1. 1394-1995 Plug
    2. 1394a-2000 Plug(Molding Type)
    3. 1394a-2000 Plug(Assemble Type)
    4. 1394-1995 Socket(SMT)
    5. 1394-1995 Socket(DIP)
    6. 1394-1995 Socket(Vertical)
    7. 1394a-2000 Socket(DIP)
    8. 1394a-2000 Socket(SMT)
    9. 1394-1995 to 1394-1995 cable assembly
    10. 1394a-2000 to 1394a-2000 cable assembly
    11. 1394-1995 to 1394a-2000 cable assembly

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