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NJU6392B  

JRC
JRC

NJU6392B

3rd. Over Tone / Chip / EMP8

NJU6392 Series MEMO [CAUTION] The specifications on this databook are only given for information , without any guarantee as regards either mistakes or omissions. The application circuits in this databook are described




관련 부품 NJU639 상세설명

NJU6398  

  
LVDS-output Quartz Crystal Oscillator IC

NJU6398 LVDS-output Quartz Crystal Oscillator IC !GENERAL DESCRIPTION The NJU6398 is a quartz crystal oscillator IC with LVDS output, from 110MHz to 160MHz frequency output, which consists of an oscillation amplifier, LVDS output, and 3-state output buffer for each LVDS. The oscillation amplifier



New Japan Radio
New Japan Radio

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NJU6396  

  
3rd. Over Tone / Thin-Chip

NJU6396 3rd. Over Tone Quartz Crystal Oscillator for 166MHz sGENERAL DESCRIPTION sPACKAGE OUTLINE The NJU6396 is a C-MOS IC for XOs, and can oscillate up to 166MHz maximum at very low operating voltage. High Fan-out is gained from low operating voltage with 3-state output buffe



JRC
JRC

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NJU6395B  

  
3rd. Over Tone / Chip / EMP8 / Thin-Chip

NJU6395 Series QUARTZ CRYSTAL OSCILLATOR sGENERAL DESCRIPTION The NJU6395 series is up to 125MHz low-voltage C-MOS quartz crystal oscillator, the NJU6395A is up to 110MHz and the NJU6395B is up to 125MHz. The NJU6395 series consists of an oscillation amplifier, internal capacito



JRC
JRC

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NJU6394  

  
1.8V 125MHz 3rd Over Tone Quartz Crystal Oscillator

NJU6394 Series 1.8V 125MHz 3rd Over Tone Quartz Crystal Oscillator !GENERAL DESCRIPTION The NJU6394 series is a C-MOS, 1.8V, 125MHz, 3rd overtone quartz crystal oscillator that consists of an oscillation amplifier (low oscillation-stop current based on NAND circuit) and 3-state output buffer (C-MO



New Japan Radio
New Japan Radio

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NJU6393  

  
QUARTZ CRYSTAL OSCILLATOR



New Japan Radio
New Japan Radio

PDF



NJU6391C  

  
3rd. Over Tone / Chip / EMP8

NJU6391 Series MEMO [CAUTION] The specifications on this databook are only given for information , without any guarantee as regards either mistakes or omissions. The application circuits in this databook are described only to show representative usages of t



JRC
JRC

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