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X1M0004110023 Low energy differential crystal oscillator MG7050EAN for 6G intelligent security crystal oscillator

  • Jul 02,2024
  • 87 VIEWS
    X1M0004110023, Low energy differential crystal oscillator MG7050EAN, Epson 6G intelligent security crystal oscillator, imported from Japan crystal oscillator, EPSON Epson crystal oscillator model: MG7050EAN, code: X1M0004110023, frequency: 156.253906MHz, small volume crystal oscillator size 7.0x5.0mm package, 14 foot mount crystal oscillator, multi output saw wave oscillator (MOSO), LV-PECL crystal oscillator, quartz crystal oscillator, active crystal oscillator, quartz crystal oscillator. This product is a high-frequency oscillator that utilizes the basic oscillation of a saw wave resonator for LV-PECL output. This achieves low jitter and low noise in the frequency range of 100-700MHz, with characteristics such as ultra small size, lightweight, low jitter, low power consumption, low power supply voltage, low energy consumption, low loss, and low phase noise. MG7050EAN imported crystal oscillator application: GbE, fiber channel, SAS, PClexress server, storage, router/switch, network, OTN, wireless network, Bluetooth module, IoT application, etc.
X1M0004110023 Low energy differential crystal oscillator MG7050EAN, Epson 6G intelligent security crystal oscillator, parameter table


X1M0004110023, Low energy differential crystal oscillator MG7050EAN, Epson 6G intelligent security crystal oscillator

    The use of differential crystal oscillators is increasing with the development of technology. Major crystal oscillator brands have launched differential crystal oscillators, such as well-known brands such as Epson crystal oscillators. We all know that differential crystal oscillators have the functions of ordinary crystal oscillators, but the biggest difference is that the output method is differential signal. So what does the output of differential crystal oscillators mean? Differential crystal oscillator output refers to the use of two signals with completely opposite phases to output differential signals, thereby eliminating common mode noise and producing a higher performance system. This method can transport high frequencies and has characteristics such as strong noise resistance and low jitter. Common differential outputs are LVDS, HCSL, and LV-PECL outputs.