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  • 기업 IP
  • 대학·연구소 IP
  • N관련된 신규용역가능
  • M수정/가공 판매가능
  • T기술지원 가능
  • P현 상태로만 판매가능
total: 58/847 IP Cores
    • 기업 IP
    • N
    • M
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    32.768KHz RCOSC

    The RCOSC 32.768KHz IP belongs to a family of digital controlled RC oscillators optimized for ultra low power applications. IP is a low power high resolution RC oscillator nominally operates at 32.768 KHz output clock from a 1.2 V supply. No external components are required. This family uses an RC dependent oscil..

    KC639H1119 | 2021-11-26

    • 기업 IP
    • N
    • M
    • T

    PLL 3G

    The PLL 3G IP is Clock Generator PLL that Widely programmable fractional-N delta sigma frequency synthesizer. PLL 3G uses only RVT device to provide a clock with a maximum frequency of 3.5GHz. It contains a 1-64 divider at the reference clock input, a 16-2000(Integer Mode) divider in the internal feedback path, and ..

    KC639H1109 | 2021-11-10

    • 기업 IP
    • N
    • M
    • T

    OSC 32.768KHz

    This is a 32.768KHz crystal oscillator specifically designed for low power application. This IP operates in 1.8V (AVDD) and 0.9V (DVDD) power sources. The oscillator works in parallel resonant mode of the crystal. When a 32.768KHz quartz crystal is connected to pins XIN32K and XOUT32K, the oscillator will output 3..

    KC639H1104 | 2021-11-10

    • 대학·연구소 IP
    • P

    Area-Efficient Bidirectional Shift-Register Using Bidirectional Pulsed-Latches

    The proposed bidirectional shift-register reduces the area and power consumption by replacing master-slave flip-flops and 2-to-1 multiplexers with the proposed bidirectional pulsed-latches and non-overlap delayed pulsed clock signals, and by using sub shift-registers and extra temporary storage latches.

    KU127H1026 | 2020-01-14

    • 기업 IP
    • M
    • T

    PLL 60to300MHz

    PLLs have been developed as phase locked loops in a variety of applications. The PLL generates 60~300MHz clock referenced at 8~20MHz. The output clock frequency is selected by the resister M, N “FOUT = FIN/M*N”

    KC022H1007 | 2019-11-19