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    OF LF33 Search Results

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    interface

    Abstract: 74LS374 DATASHEET 74LS374 CF11
    Text: Application Note DEVICES INCORPORATED PLD Control of the LF InterfaceTM Overview The Logic Devices LF3300 family of 8 and 12 bit digital filters offer several speed grades including 83MHz, establishing HD video-rate filter solutions for the emerging broadcast and consumer set top


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    PDF LF3300 83MHz, PLD374 interface 74LS374 DATASHEET 74LS374 CF11

    LF3312

    Abstract: DSA00113352
    Text: Image Manipulation - Reflect Image on Vertical Axis DEVICES INCORPORATED Video Memory Application Note FRAME MEMORY Overview With the LF3312’s flexible memory address architecture, data can be sequentially stored in memory and then accessed using a completely reordered address. An application such as creating the ‘mirror image’ of a frame of


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    PDF LF3312 BIN11 BOUT11 DSA00113352

    LF3312

    Abstract: reset
    Text: Hard and Soft Resets - Using RESET Pin LF3312 - Application Note OVERVIEW The RESET pin can both reset the contents of the Configuration Registers back to their default states see datasheet and act as a ‘global W/R pointer reset’. There are two types of resets that can be accomplished using the RESET pin: Hard and Soft resets.


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    PDF LF3312 reset

    RP13B

    Abstract: RP44A SA8 357 74F138 74F153 74F245 MOLEX 10PIN SD CARD fan 7320 RP44 EV200PC
    Text: INDUSPCBD STPC Industrial PC Evaluation Kit User’s Manual Issue 1.0 September 1999 Information provided is believed to be accurate and reliable. However, ST Microelectronics assumes no responsibility for the consequences of use of such information nor for any infringements of patents or other


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    RS-486

    Abstract: A5970AD ASTPS1L40A AIS326DQ AEC-Q100 LF33CDT AN-328 AN3288 486-0452
    Text: AN3288 Application note g-Brake Lights: an adaptive rear lighting system based on the AIS326DQ inertial sensor and the STM8AF5168 MCU Introduction The purpose of this application note is to provide an accurate description of the “g-Brake Lights” platform, a demonstration board which emulates the operation of an adaptive rear


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    PDF AN3288 AIS326DQ STM8AF5168 RS-486 A5970AD ASTPS1L40A AEC-Q100 LF33CDT AN-328 AN3288 486-0452

    fan 7320 Backlight

    Abstract: schematic lg backlight inverter schematic LG lcd backlight inverter hld1201 U32D 350 LG 486 motherboard schematic ATX video slot schematic 386 MOTHERBOARD RP44A TIL311
    Text: INDUSPCBD STPC Industrial ISA Mode Evaluation Kit User’s Manual For use with EVAL200PC Board Rev 1.0 Issue 1.1 December 14, 1999 Information provided is believed to be accurate and reliable. However, ST Microelectronics assumes no responsibility for the consequences of use of such information nor for any infringements of patents or other


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    PDF EVAL200PC fan 7320 Backlight schematic lg backlight inverter schematic LG lcd backlight inverter hld1201 U32D 350 LG 486 motherboard schematic ATX video slot schematic 386 MOTHERBOARD RP44A TIL311

    LF3320

    Abstract: LF3321
    Text: LF3321 Horizontal Digital Image Filter DEVICES INCORPORATED Improved Performance FEATURES Selectable 16-bit Data Output with UserDefined Rounding and Limiting Supports Interleaved Data Streams Supports Decimation up to 16:1 for Increasing Number of Filter Taps


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    PDF LF3321 16-bit 12-bit 24-bit) 32-Tap 12-bit, CFA11 CFA10 ROUT11 ROUT10 LF3320 LF3321

    LF3320

    Abstract: Discrete Cosine Transform with the LF3320 Back F38H idct accumulator CA001 CA-008 353H C14H DIN110
    Text: Discrete Cosine Transform with the LF3320 Application Note DEVICES INCORPORATED DEVICES INCORPORATED Discrete Cosine Transform with the LF3320 The fundamental processing step at the heart of the discrete cosine transform DCT based block coding scheme is the


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    PDF LF3320 LF3320 DIN11-0 RIN11-0 CA001 CA008 CA009 CA000 CA015 Discrete Cosine Transform with the LF3320 Back F38H idct accumulator CA001 CA-008 353H C14H DIN110

    LF3320

    Abstract: 200H 201H 202H 203H 204H 206H
    Text: LF3320 Horizontal Digital Image Filter LF3320 Rev. A Errata Sheet DEVICES INCORPORATED Horizontal Digital Image Filter DEVICES INCORPORATED The first release of the LF3320 Horizontal Filter, Revision A, forces a configuration register writing dependency not documented in the


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    PDF LF3320 LF3320 LF3320, CFA/CFB11-0 320-A 200H 201H 202H 203H 204H 206H

    LF3320

    Abstract: 206H 200H 201H 202H 203H 204H
    Text: LF3320 Horizontal Digital Image Filter LF3320 Rev. B Errata Sheet DEVICES INCORPORATED Horizontal Digital Image Filter DEVICES INCORPORATED The first release of the LF3320 Horizontal Filter, Revision A, forces a configuration register writing dependency not documented in the data


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    PDF LF3320 LF3320 LF3320, CFA/CFB11-0 3320-B 206H 200H 201H 202H 203H 204H

    LF3312

    Abstract: 19 214
    Text: This application brief describes the LF3312’s programmable flag behaviour. The first section describes the Empty/Full threshold settings. The second section provides a simple example of how the flags react to enabled writes and reads to/from the memory.


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    PDF LF3312 731st 439th 440th 19 214

    lf3370

    Abstract: Clock and Data Synchronization 200H
    Text: LF3370 Application Note DEVICES INCORPORATED Clock and Data Synchronization Overview Depending on the operating mode, the LF3370 may require both clock and data synchronization. In a mode that requires the LF3370 to deal with interleaved or multiplexed data, halving the clock rate of


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    PDF LF3370 Clock and Data Synchronization 200H

    LF3312

    Abstract: No abstract text available
    Text: Manipulating Read and Write Pointers LF3312 - Application Note OVERVIEW The LF3312 has been designed to support flexible manipulation of the Write and Read pointers. Each write and read pointer, whether in single or dual memory channel mode, can be set/jumped to a


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    PDF LF3312 24bit

    LF3320

    Abstract: Back
    Text: LF3320 Polyphase M:1 Downsampling M:1 POLYPHASE DOWNSAMPLING The objective of downsampling is a reduction in a signal’s sample rate. A reduction in sample rate results in a reduced bandwidth that the signal can reside within. Therefore, Bandlimiting filtering is required. Reducing the


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    PDF LF3320 LF3320. 12bit LF3320 Back

    74LS14

    Abstract: U29A MARKING ST486 DQ33 board view display SA8 357 74F00 74F138 74F153 74F245 SAA7111A
    Text: CONSUMERBD STPC Consumer Evaluation Kit User’s Manual Revision 1.0 March 1999 Information provided is believed to be accurate and reliable. However, ST Microelectronics assumes no responsibility for the consequences of use of such information nor for any


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    LF3312

    Abstract: video stream
    Text: Video Synchronization LF3312 - Application Note OVERVIEW The LF3312 is good tool for synchronizing video or data streams with arbitrary timing to a set system or ‘master’ timing source. The timing sources are typically in the form of a Clock and a field/frame


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    PDF LF3312 LF3312s 10bit video stream

    LF3312

    Abstract: 27MHZ
    Text: Frame Delay of Digital Component Video LF3312 - Application Note OVERVIEW It is sometimes necessary to buffer fields or frames in a completely synchronous, delay-line fashion. This is often the case when comparing the current frame f with previous frames (f-1), (f-2), and so


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    PDF LF3312 10bit 27MHZ

    LF3320

    Abstract: upsample Polyphase Filter Banks
    Text: LF3320 Polyphase 1:M Upsampling 1:M POLYPHASE UPSAMPLING The objective of upsampling is to increase a signal’s sample rate. 1:M Upsampling is sometimes accomplished by placing M-1 zeros between input samples, and then filtering out the spectral copies. This 2-step process can


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    PDF LF3320 LF3320. LF3320 upsample Polyphase Filter Banks

    LF3321

    Abstract: LF3320
    Text: LF3321 Horizontal Digital Image Filter DEVICES INCORPORATED Improved Performance FEATURES Supports Interleaved Data Streams Supports Decimation up to 16:1 for Increasing Number of Filter Taps 3.3 Volt Power Supply 144 Lead PQFP 111 MHz Data Rate 12-bit Data or Coefficients Expandable to 24-bit


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    PDF LF3321 12-bit 24-bit) 32-Tap 16-bit LF3321 CFA11 CFA10 ROUT11 ROUT10 LF3320

    DQ33 board view display

    Abstract: rp52a R68 resistor IBM REV 2.8 manual motherboard SA8 357 74F00 74F138 74F153 74F245 SAA7111A
    Text: CONSUMERBD STPC CONSUMER Evaluation Kit CONSUMERBD STPC Consumer Evaluation Kit User’s Manual Revision 1.0 March 1999 Information provided is believed to be accurate and reliable. However, ST Microelectronics assumes no responsibility for the consequences of use of such information nor for any


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    LF3312

    Abstract: LF3312s LF33 12FC00
    Text: Depth Expansion through Cascading LF3312 - Application Note OVERVIEW Cascading multiple LF3312s for depth expansion is easy. The usable 24bit address space is simply extended for every additional device that is cascaded. The LF3312 is cascaded in parallel, where the input of each device is tied together. The input data


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    PDF LF3312 LF3312s 24bit LF33 12FC00

    LF3312

    Abstract: BUFFER FIFO
    Text: OVERVIEW The basis for a frame synch system is managing the distance between Write and Read pointers of a Frame Buffer FIFO such as the LF3312. Frame tearing can easily occur in un-managed frame synchronization systems. Frame tearing occurs as the pointers sweep across each other, sometimes


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    PDF LF3312. LF3312 BUFFER FIFO

    27MHZ

    Abstract: LF3312
    Text: SDI Video Frame Synchronization DEVICES INCORPORATED Video Memory Application Note FRAME MEMORY Overview Synchronization or Time Base Correction of an SDI video feed to arbitrary reference timing can be easily accomplished using the LF3312. In this application, the LF3312 buffer is placed directly after the deserializer and accepts


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    PDF LF3312. LF3312 20bits, 2x10bit 10bits 10bits. 10bit LF3312 27MHZ

    evic vt 60w

    Abstract: LM1040 Transistor Shortform Datasheet & Cross References TRANSISTOR C 6090 EQUIVALENT 6 pin TRANSISTOR SMD CODE CAA Fairchild Databook LMF120 lm331 equivalent LM1819 Harris Semiconductor LF124
    Text: A Corporate Dedication to Quality and Reliability National Sem iconductor is an industry leader in the manufacture of high quality, high reliability integrated circuits. We have been the leading proponent of driv­ ing down 1C defects and extending product lifetim es.


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