Crystal Oscillators Market Analysis
Market Research Future (MRFR)
estimates the global crystal
oscillators market size to reach USD 4.21 Billion, registering a CAGR of
6.2% from 2020–2026 (forecast period).
Multiple Factors to Boost
Market Growth
Crystal oscillators operate on
the inverse piezoelectric effect principle, which states that an alternating
voltage placed throughout the crystal surfaces causes the crystal to vibrate at
its natural frequency. These oscillators are often formed of Quartz crystal,
which is abundant and mechanically strong in comparison to other crystals.
Volatility in temperature, variations in load, and changes in the DC power
supply voltage are all factors that affect an oscillator's frequency stability.
Factors like increased consumer electronics demand for crystal oscillators and
rising usage of infotainment systems in automobiles are anticipated to drive
the global crystal oscillator market. Furthermore, the development of 5G
networks has offered various chances for crystal oscillator market
manufacturers during the forecast period.
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Crystal Oscillators Market Segmentation
The worldwide crystal oscillators
industry has been segmented based on crystal cut, type, mounting, and end user.
By crystal cut, the worldwide
crystal oscillators industry has been segmented into AT cut, BT cut, GT cut, SC
cut, and others.
By type, the worldwide crystal
oscillators industry has been segmented into simple-packaged crystal oscillator
(SPXO), frequency-controlled crystal oscillator (FCXO), temperature-compensated
crystal oscillator (TCXO), voltage-controlled crystal oscillator (VCXO),
oven-controlled crystal oscillator (OCXO), and others.
By mounting, the worldwide
crystal oscillators industry has been segmented into surface mount and thru
hole.
By end user, the worldwide
crystal oscillators market has been segmented into consumer electronics,
aerospace and defense, automotive, telecom and networking, scientific research,
industrial, and others.
Crystal Oscillators Market Regional
Analysis
APAC to Lead the Global Market
In 2019, Asia Pacific dominated
the global crystal oscillators market, and this dominance is likely to continue
during the forecast period. The growing use of advanced electronics in
automotive and infotainment systems is likely to drive the growth of the
Asia-Pacific crystal oscillators market.
Crystal Oscillators Market Key
Players
MRFR has recognized the key
players in the global crystal oscillators market. These include Mercury
Electronic Ind. Co., Ltd. (Taiwan), Seiko Epson Corporation (Japan), Nihon
Dempa Kogyo Co., Ltd. (Japan), TXC Corporation (Taiwan), Daishinku Corp.
(Japan), Microchip Technology Inc. (US), Kyocera Crystal Device Corporation
(Japan), Murata Manufacturing Co., Ltd. (Japan), River Eletec Corp.
(Japan),Hosonic Electronic Co., Ltd. (Taiwan), SiTime Corporation (US), SiWard
Crystal Technology Co., Ltd. (Taiwan), Rakon Ltd. (New Zealand), Fox
Electronics (US), Greenray Industries, Inc. (US), Bliley Technologies Inc.
(US), MTI-Milliren Technologies, Inc. (US), Vishay Intertechnology, Inc. (US),
QVS Tech, Inc. (US), Nippon Crystal, Inc. (US), Ecliptek LLC (US), and Vectron
(US). These players are focused on innovation and, as a result, invest in
R&D to provide a cost-effective product portfolio. Recent mergers and
acquisitions among significant competitors have allowed various business
entities to expand their customer reach.
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Industry News
In May 2020, Microchip Technology
Inc. released the new 53100A Phase Noise Analyzer, a next-generation phase
noise test device for precision oscillator characterization. The 53100A allows
research and manufacturing engineers to measure frequency signals precisely and
accurately, involving those provided by atomic clocks and other
high-performance frequency reference modules and subsystems.
In April 2020, IQD unveiled a new series of GNSS-disciplined oven-controlled crystal oscillators (OCXOs), the IQCM-112 series. The new design involves an integrated GNSS receiver with a 1PPS output that can be used with an external GPS, BeiDou, GLONASS, or Galileo source. It is housed in a 60-millimeter-square 14-pin package.
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