全球硅基计时装置市场 – 行业趋势及 2030 年预测

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全球硅基计时装置市场 – 行业趋势及 2030 年预测

  • Semiconductors and Electronics
  • Published Report
  • Sep 2023
  • Global
  • 350 页面
  • 桌子數: 27
  • 图号: 26

Global Silicon Based Timing Device Market

市场规模(十亿美元)

CAGR :  % Diagram

Diagram Forecast Period
2024 –2030
Diagram Market Size (Base Year)
USD MILLION
Diagram Market Size (Forecast Year)
USD 2,312,966.15
Diagram CAGR
%
Diagram Major Markets Players
  • Dummy1
  • Dummy2
  • Dummy3
  • Dummy4
  • Dummy5

>全球硅基定时器件市场,按类型(时钟发生器、时钟缓冲器和抖动衰减器)、输入频率(200 MHZ 以上、50 MHZ 至 200 MHZ 和高达 50 MHZ)、安装类型(表面贴装和通孔)、应用(消费电子、电信和网络、数据中心、汽车、工业、医疗和保健、军事和国防等)划分 - 行业趋势和预测到 2030 年。

硅基计时装置市场

硅基定时器件市场分析与洞察

定时装置提供定时信号,以正确的时间和速度传输数据以及连续的同步信号。一台电子设备可能由数千个组件组成,但是,这些无数的组件永远不能自由运行,需要相互协同工作才能产生一定的和谐。时钟有助于充当导体的角色,其来源是定时装置。医疗保健和医疗设备对定时装置的需求不断增加,这是定时装置市场增长的驱动因素。定时装置涉及各种成本,需要大量的资本投入来开发,这是定时装置市场增长的主要制约因素。5G技术的不断发展为定时装置市场的增长提供了重要的机会窗口。采用快速变化的技术的复杂性是市场增长的主要挑战。

硅基计时装置市场硅基计时装置市场

Data Bridge Market Research分析,全球硅基时序器件市场预计到2030年将达到2,312,966.15万美元的价值,预测期内的复合年增长率为6.4%。

报告指标

细节

预测期

2023 至 2030 年

基准年

2022

历史岁月

2021(可定制为 2015 – 2020)

定量单位

收入(千美元)、销量(单位)、定价(美元)

涵盖的领域

类型(时钟发生器、时钟缓冲器和抖动衰减器)、输入频率(200 MHZ 以上、50 MHZ 至 200 MHZ 和高达 50 MHZ)、安装类型(表面贴装和通孔)、应用(消费电子、电信和网络、数据中心、汽车、工业、医疗保健、军事和国防等)

覆盖国家

美国、加拿大、墨西哥、德国、英国、法国、荷兰、意大利、西班牙、俄罗斯、瑞士、土耳其、比利时、瑞典、波兰、挪威、丹麦、芬兰、欧洲其他地区、中国、日本、韩国、印度、马来西亚、澳大利亚、台湾、新加坡、印度尼西亚、泰国、新西兰、菲律宾、越南、亚太其他地区、巴西、阿根廷、南美洲其他地区、以色列、阿联酋、沙特阿拉伯、南非、埃及、科威特、卡塔尔、阿曼、巴林、中东和非洲其他地区

涵盖的市场参与者

Microchip Technology INC、Sitime Corp.、Rohm Co., Ltd.、Skyworks Solutions, INC、德州仪器公司、瑞萨电子公司、Semicon Components Industries, LLC、Analog Devices, INC、Infinion 和 Torex Semiconductor Ltd. 等

市场定义

硅基计时装置是生成和控制精确时间间隔或频率的电子元件。这些设备对于从消费电子产品到工业设备等各种需要精确计时的应用至关重要。这些设备包括时钟发生器、锁相环 (PLL) 和抖动衰减器。硅基计时装置市场受到半导体技术进步、各种应用对精确计时的需求不断增长以及电信、汽车电子、消费电子、工业自动化等行业的扩张等因素的影响。

全球硅基定时器件市场动态

本节旨在了解市场驱动因素、优势、机遇、限制和挑战。下面将详细讨论所有这些内容:    

司机

  • 由于电子元件和功能的不断增加,汽车行业的需求不断增加

由于电子元件和功能的不断增加,汽车行业的需求不断增长,对硅基计时设备市场产生了重大影响。硅基计时设备(例如振荡器和时钟)是电子系统中必不可少的组件,在确保汽车电子设备内各种操作的准确计时和同步方面发挥着至关重要的作用。以下是汽车行业的需求如何推动市场:

  • 车辆中电子内容的增加:现代车辆配备了各种电子系统和功能,包括高级驾驶辅助系统 (ADAS)、导航系统、传感器等。这些系统需要精确的计时和同步才能正常运行。基于硅的计时设备提供精确的时钟信号来同步这些电子设备,确保无缝通信和操作。
  • 电动和自动驾驶汽车:电动汽车(EV) 和自动驾驶汽车市场的不断增长进一步推动了对这些设备的需求。电动动力系统和自动驾驶系统严重依赖精确的计时来协调和控制各种组件。
  • 燃油效率和性能优化:汽车制造商不断努力提高燃油效率和整体车辆性能。许多发动机管理和控制系统需要精确定时点火、喷射和其他影响效率和性能的过程。

克制

  • 供应链中断

供应链中断确实会限制市场的增长。硅基计时设备包括石英晶体振荡器、谐振器和时钟发生器等产品,用于各种电子设备以实现精确计时和同步。以下是供应链中断对这个市场的影响:

  • 原材料短缺:硅基计时装置需要特定材料,包括硅晶片和石英晶体。这些原材料供应中断可能导致生产放缓或停工,从而影响成品计时装置的供应。
  • 零部件短缺:这些设备通常包含各种电子零部件,例如集成电路和连接器。如果这些零部件的供应中断,可能会影响计时设备的整体生产。
  • 全球依赖:半导体行业(包括硅基计时设备)严重依赖全球供应链。一个地区的中断可能会对全球供应商和制造商产生连锁影响。
  • 质量控制挑战:供应链中断可能会迫使制造商从其他供应商处采购材料,这可能会影响最终产品的质量和一致性。
  • 成本增加:短缺和中断可能导致采购成本增加,因为供应商可能会因供应有限而提高价格。制造商可能还需要投资替代供应链路线或技术来缓解中断,这可能会导致成本增加。

硅基计时装置市场

机会

数据中心对计时设备的需求不断增加

数据中心动态格局中对精密计时设备的需求不断增长,为市场带来了巨大的机遇。随着数据中心规模和复杂性的不断增长,需要在复杂系统之间实现无可挑剔的同步,基于硅的计时设备的作用变得至关重要。这种需求激增是由数据中心的扩张、5G 和边缘计算等尖端技术的出现以及物联网 (IoT) 的快速发展推动的,这不仅凸显了准确计时的关键重要性,而且还使基于硅的解决方案成为满足这些不断发展的需求的前沿竞争者。

挑战

缺乏熟练劳动力

市场缺乏熟练的专业人员预计将对市场增长构成挑战。这些设备是复杂的测量设备,需要专业知识和专长才能有效运行并获得最大价值。该领域熟练专业人员的短缺可能会阻碍硅基计时设备的采用和使用,因为这些机器是涉及各种组件、软件接口和测量技术的复杂系统。需要熟练的专业人员来理解和有效地操作系统,包括设置测量程序、校准传感器和解释测量数据。缺乏能够驾驭这些复杂情况的熟练专业人员可能会限制这些设备的有效利用。

最新动态

  • 2022 年 11 月,Skyworks Solutions, Inc. 推出了专为高速网络和数据中心量身定制的尖端抖动衰减器系列,这对现代互联网框架至关重要。随着 5G 流量和人工智能、边缘计算等新兴技术的出现,增强型 Si536x 抖动衰减时钟可以轻松满足这些需求。此次发布满足了设计师和供应商对精确计时的先决条件,与快速网络和创新应用的需求无缝契合。这一新产品组合的推出增强了 Skyworks 在通信网络市场的竞争优势。
  • 2022 年 8 月,Skyworks Solutions, Inc. 推出了 Si551x 和 Si540x NetSync 时钟集成电路设备以及 AccuTime IEEE 1588 软件。这些创新满足了移动运营商和设备供应商对 5G 网络的需求。该产品的推出有利于公司加强与 NXP Semiconductors 和 AMD 的业务关系,从而推动公共和私人无线网络市场的 5G 解决方案。
  • 2023 年 3 月,Analog Devices, Inc. 宣布推出一款具有专有硅片、布局和封装改进的超低噪声双输出 DC/DC 模块稳压器。LTM8080 的前端是一个高效同步 Silent Switcher 降压稳压器,后面是两个不同的低噪声低压差 (LDO) 稳压器,可在高达 40 V 的输入电压下工作。LTM8080 的封装包含一个 EMI 隔离壁或屏蔽,以进一步降低开关噪声。LTM8080 旨在为易受开关稳压器噪声影响的数字负载供电,例如数据转换器、RF 发射器、FPGA I/O 和时钟、运算放大器、收发器和医疗扫描仪。
  • 2021 年 2 月,瑞萨电子和 Fixstars 联手创建了一套工具,使设计具有高级驾驶和安全功能 (AD 和 ADAS) 的汽车软件变得更加容易。此次合作将帮助该公司加快开发支持车辆自动驾驶和安全系统等功能的软件的进程。
  • 2023 年 8 月,英飞凌科技股份公司推出了采用 TOLx 封装的新型汽车 60 V 和 120 V OptiMOS 5,适用于 24 V-72 V 供电的高功率 ECU。为了应对交通系统的发展,英飞凌科技股份公司正在扩展其 OptiMOS 5 汽车 MOSFET 产品组合,包括 60 V 和 120 V 范围,并增加了高功率 TOLL、TOLG 和 TOLT 封装。它们体积小巧,具有非常强的热性能和出色的开关行为。这进一步帮助该公司扩大了其在市场上的影响力。

全球硅基计时装置市场范围

全球硅基计时设备市场根据类型、安装类型、输入频率和应用分为四个显著的细分市场。这些细分市场之间的增长情况将帮助您分析行业中的主要增长细分市场,并为用户提供有价值的市场概览和市场洞察,帮助他们做出战略决策,确定核心市场应用。

类型

  • 时钟发生器
  • 时钟缓冲器
  • 抖动衰减器

根据类型,市场分为时钟发生器、时钟缓冲器和抖动衰减器。

 安装类型

  • 表面贴装
  • 通孔

根据安装类型,市场分为表面贴装和通孔贴装

输入频率

  • 200MHz以上
  •  50 兆赫至 200 兆赫
  • 最高可达 50MHz

根据输入频率,市场分为 200 MHZ 以上、50 MHZ 至 200 MHZ 和

应用

  • 消费电子产品
  • 电信和网络
  • 数据中心
  • 汽车
  • 工业的
  • 医疗保健
  • 军事与国防
  • 其他的

根据应用,市场细分为消费电子、电信和网络、数据中心、汽车、工业、医疗保健、军事和国防等。

硅基计时装置市场

全球硅基定时器件市场区域分析/见解

全球硅基定时装置市场根据类型、安装类型、输入频率和应用分为四个显著的部分。

本市场报告涵盖的国家包括美国、加拿大、墨西哥、德国、英国、法国、荷兰、意大利、西班牙、俄罗斯、瑞士、土耳其、比利时、瑞典、波兰、挪威、丹麦、芬兰、欧洲其他地区、中国、日本、韩国、印度、马来西亚、澳大利亚、台湾、新加坡、印度尼西亚、泰国、新西兰、菲律宾、越南、亚太其他地区、巴西、阿根廷、南美洲其他地区、以色列、阿联酋、沙特阿拉伯、南非、埃及、科威特、卡塔尔、阿曼、巴林、中东和非洲其他地区。

由于电信行业的需求不断增长以及高带宽技术的兴起,北美有望主导全球硅基计时设备市场。美国有望主导北美,因为该地区高度重视技术进步和创新,特别是在消费电子、电信和网络等领域,并且由于市场技术进步的兴起而增长。由于新兴市场的需求不断增长和扩张,德国有望主导欧洲地区。由于客户对计时设备的倾向不断增加,中国有望主导亚太地区。

报告的国家部分还提供了影响市场当前和未来趋势的各个市场影响因素和国内市场监管变化。新销售、替代销售、国家人口统计、监管法案和进出口关税等数据点是用于预测各个国家市场情景的一些主要指标。此外,在对国家数据进行预测分析时,还考虑了全球品牌的存在和可用性以及它们因来自本地和国内品牌的激烈或稀缺竞争而面临的挑战,以及销售渠道的影响。

硅基计时装置市场

竞争格局和全球硅基定时器件市场份额分析

全球硅基计时设备市场竞争格局提供了竞争对手的详细信息。详细信息包括公司概况、公司财务状况、收入、市场潜力、研发投资、新市场计划、生产基地和设施、公司优势和劣势、产品发布、产品批准、产品宽度和广度、应用主导地位以及产品类型生命线曲线。以上提供的数据点仅与公司对市场的关注有关。

该市场的一些主要参与者包括 Microchip Technology INC、Sitime Corp.、Rohm Co., Ltd.、Skyworks Solutions, INC、Texas Instruments Incorporated、Renesas Electronics Corporation、Semicon Components Industries, LLC、Analog Devices, INC、Infinion 和 Torex Semiconductor Ltd. 等。


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目录

1 INTRODUCTION

1.1 OBJECTIVES OF THE STUDY

1.2 MARKET DEFINITION

1.3 OVERVIEW OF THE GLOBAL SILICON BASED TIMING DEVICE MARKET

1.4 CURRENCY AND PRICING

1.5 LIMITATIONS

1.6 MARKETS COVERED

2 MARKET SEGMENTATION

2.1 MARKETS COVERED

2.2 YEARS CONSIDERED FOR THE STUDY

2.3 GEOGRAPHIC SCOPE

2.4 DBMR TRIPOD DATA VALIDATION MODEL

2.5 PRIMARY INTERVIEWS WITH KEY OPINION LEADERS

2.6 DBMR MARKET POSITION GRID

2.7 VENDOR SHARE ANALYSIS

2.8 MARKET APPLICATION COVERAGE GRID

2.9 MULTIVARIATE MODELLING

2.1 TYPE TIMELINE CURVE

2.11 SECONDARY SOURCES

2.12 ASSUMPTIONS

3 EXECUTIVE SUMMARY

4 PREMIUM INSIGHTS

5 MARKET OVERVIEW

5.1 DRIVERS

5.1.1 INCREASING DEMAND FROM AUTOMOTIVE INDUSTRY DUE TO RISING ELECTRONIC COMPONENTS AND FEATURES

5.1.2 RISING DEMAND FROM TELECOM INDUSTRY WITH INCREASE IN HIGH BANDWIDTH TECHNOLOGIES

5.2 RESTRAINTS

5.2.1 SUPPLY CHAIN DISRUPTION

5.2.2 HIGH COST OF SILICON BASED TIMING DEVICE

5.3 OPPORTUNITIES

5.3.1 INCREASING DEMAND FOR TIMING DEVICES IN DATA CENTRES

5.3.2 INCREASING PARTNERSHIP AND COLLABORATION AMONG MARKET PLAYERS

5.4 CHALLENGES

5.4.1 LACK OF SKILLED LABOR

5.4.2 ISSUE RELATED TO RELIABILITY AND AGEING

6 GLOBAL SILICON BASED TIMING DEVICE MARKET, BY TYPE

6.1 OVERVIEW

6.2 CLOCK GENERATORS

6.3 CLOCK BUFFERS

6.4 JITTER ATTENUATORS

7 GLOBAL SILICON BASED TIMING DEVICE MARKET, BY INPUT FREQUENCY

7.1 OVERVIEW

7.2 ABOVE 200 MHZ

7.3 50 MHZ TO 200 MHZ

7.4 UP TO 50 MHZ

8 GLOBAL SILICON BASED TIMING DEVICE MARKET, BY MOUNTING TYPE

8.1 OVERVIEW

8.2 SURFACE MOUNT

8.3 THROUGH HOLE

9 GLOBAL SILICON BASED TIMING DEVICE MARKET, BY APPLICATION

9.1 OVERVIEW

9.2 CONSUMER ELECTRONICS

9.2.1 CLOCK GENERATORS

9.2.2 CLOCK BUFFERS

9.2.3 JITTER ATTENUATORS

9.3 TELECOMMUNICATION & NETWORKING

9.3.1 CLOCK GENERATORS

9.3.2 CLOCK BUFFERS

9.3.3 JITTER ATTENUATORS

9.4 DATA CENTERS

9.4.1 CLOCK GENERATORS

9.4.2 CLOCK BUFFERS

9.4.3 JITTER ATTENUATORS

9.5 AUTOMOTIVE

9.5.1 CLOCK GENERATORS

9.5.2 CLOCK BUFFERS

9.5.3 JITTER ATTENUATORS

9.6 INDUSTRIAL

9.6.1 CLOCK GENERATORS

9.6.2 CLOCK BUFFERS

9.6.3 JITTER ATTENUATORS

9.7 MEDICAL & HEALTHCARE

9.7.1 CLOCK GENERATORS

9.7.2 CLOCK BUFFERS

9.7.3 JITTER ATTENUATORS

9.8 MILITARY & DEFENSE

9.8.1 CLOCK GENERATORS

9.8.2 CLOCK BUFFERS

9.8.3 JITTER ATTENUATORS

9.9 OTHERS

10 GLOBAL SILICON BASED TIMING DEVICE MARKET, BY REGION

10.1 OVERVIEW

10.2 NORTH AMERICA

10.2.1 U.S.

10.2.2 CANADA

10.2.3 MEXICO

10.3 ASIA-PACIFIC

10.3.1 CHINA

10.3.2 JAPAN

10.3.3 SOUTH KOREA

10.3.4 INDIA

10.3.5 MALAYSIA

10.3.6 AUSTRALIA

10.3.7 TAIWAN

10.3.8 SINGAPORE

10.3.9 INDONESIA

10.3.10 THAILAND

10.3.11 NEW ZEALAND

10.3.12 PHILIPPINES

10.3.13 VIETNAM

10.3.14 REST OF ASIA-PACIFIC

10.4 EUROPE

10.4.1 GERMANY

10.4.2 U.K

10.4.3 FRANCE

10.4.4 NETHERLANDS

10.4.5 ITALY

10.4.6 SPAIN

10.4.7 RUSSIA

10.4.8 SWITZERLAND

10.4.9 TURKEY

10.4.10 BELGIUM

10.4.11 SWEDEN

10.4.12 POLAND

10.4.13 NORWAY

10.4.14 DENMARK

10.4.15 FINLAND

10.4.16 REST OF EUROPE

10.5 MIDDLE EAST AND AFRICA

10.5.1 ISRAEL

10.5.2 U.A.E.

10.5.3 SAUDI ARABIA

10.5.4 SOUTH AFRICA

10.5.5 EGYPT

10.5.6 KUWAIT

10.5.7 QATAR

10.5.8 OMAN

10.5.9 BAHRAIN

10.5.10 REST OF MIDDLE EAST AND AFRICA

10.6 SOUTH AMERICA

10.6.1 BRAZIL

10.6.2 ARGENTINA

10.6.3 REST OF SOUTH AMERICA

11 GLOBAL SILICON BASED TIMING DEVICE MARKET: COMPANY LANDSCAPE

11.1 COMPANY SHARE ANALYSIS: GLOBAL

11.2 COMPANY SHARE ANALYSIS: NORTH AMERICA

11.3 COMPANY SHARE ANALYSIS: ASIA-PACIFIC

11.4 COMPANY SHARE ANALYSIS: EUROPE

12 SWOT ANALYSIS

13 COMPANY PROFILE

13.1 SKYWORKS SOLUTIONS, INC.

13.1.1 COMPANY SNAPSHOT

13.1.2 REVENUE ANALYSIS

13.1.3 COMPANY SHARE ANALYSIS

13.1.4 PRODUCT PORTFOLIO

13.1.5 RECENT DEVELOPMENTS

13.2 INFINEON TECHNOLOGIES AG

13.2.1 COMPANY SNAPSHOT

13.2.2 REVENUE ANALYSIS

13.2.3 COMPANY SHARE ANALYSIS

13.2.4 PRODUCT PORTFOLIO

13.2.5 RECENT DEVELOPMENT

13.3 ANALOG DEVICES, INC.

13.3.1 COMPANY SNAPSHOT

13.3.2 REVENUE ANALYSIS

13.3.3 COMPANY SHARE ANALYSIS

13.3.4 PRODUCT PORTFOLIO

13.3.5 RECENT DEVELOPMENTS

13.4 TEXAS INSTRUMENTS INCORPORATED

13.4.1 COMPANY SNAPSHOT

13.4.2 REVENUE ANALYSIS

13.4.3 PRODUCT PORTFOLIO

13.4.4 RECENT DEVELOPMENT

13.5 RENESAS ELECTRONICS CORPORATION

13.5.1 COMPANY SNAPSHOT

13.5.2 REVENUE ANALYSIS

13.5.3 PRODUCT PORTFOLIO

13.5.4 RECENT DEVELOPMENTS

13.6 MICROCHIP TECHNOLOGY INC.

13.6.1 COMPANY SNAPSHOT

13.6.2 REVENUE ANALYSIS

13.6.3 PRODUCT PORTFOLIO

13.6.4 RECENT DEVELOPMENTS

13.7 ROHM CO., LTD.

13.7.1 COMPANY SNAPSHOT

13.7.2 REVENUE ANALYSIS

13.7.3 PRODUCT PORTFOLIO

13.7.4 RECENT DEVELOPMENTS

13.8 SEMICONDUCTOR COMPONENTS INDUSTRIES, LLC

13.8.1 COMPANY SNAPSHOT

13.8.2 REVENUE ANALYSIS

13.8.3 PRODUCT PORTFOLIO

13.8.4 RECENT DEVELOPMENT

13.9 SITIME CORP.

13.9.1 COMPANY SNAPSHOT

13.9.2 REVENUE ANALYSIS

13.9.3 PRODUCTS PORTFOLIO

13.9.4 RECENT DEVELOPMENTS

13.1 TOREX SEMICONDUCTOR LTD.

13.10.1 COMPANY SNAPSHOT

13.10.2 REVENUE ANALYSIS

13.10.3 PRODUCT PORTFOLIO

13.10.4 RECENT DEVELOPMENT

14 QUESTIONNAIRE

15 RELATED REPORTS

表格列表

TABLE 1 GLOBAL SILICON BASED TIMING DEVICE MARKET, BY TYPE, 2021-2030 (USD THOUSAND)

TABLE 2 GLOBAL CLOCK GENERATORS IN SILICON BASED TIMING DEVICE MARKET, BY REGION, 2021-2030 (USD THOUSAND)

TABLE 3 GLOBAL CLOCK BUFFERS IN SILICON BASED TIMING DEVICE MARKET, BY REGION, 2021-2030 (USD THOUSAND)

TABLE 4 GLOBAL JITTER ATTENUATORS IN SILICON BASED TIMING DEVICE MARKET, BY REGION, 2021-2030 (USD THOUSAND)

TABLE 5 GLOBAL SILICON BASED TIMING DEVICE MARKET, BY INPUT FREQUENCY, 2021-2030 (USD THOUSAND)

TABLE 6 GLOBAL ABOVE 200 MHZ IN SILICON BASED TIMING DEVICE MARKET, BY REGION, 2021-2030 (USD THOUSAND)

TABLE 7 GLOBAL 50 MHZ TO 200 MHZ IN SILICON BASED TIMING DEVICE MARKET, BY REGION, 2021-2030 (USD THOUSAND)

TABLE 8 GLOBAL UP TO 50 MHZ IN SILICON BASED TIMING DEVICE MARKET, BY REGION, 2021-2030 (USD THOUSAND)

TABLE 9 GLOBAL SILICON BASED TIMING DEVICE MARKET, BY MOUNTING TYPE, 2021-2030 (USD THOUSAND)

TABLE 10 GLOBAL SURFACE MOUNT IN SILICON BASED TIMING DEVICE MARKET, BY REGION, 2021-2030 (USD THOUSAND)

TABLE 11 GLOBAL THROUGH HOLE IN SILICON BASED TIMING DEVICE MARKET, BY REGION, 2021-2030 (USD THOUSAND)

TABLE 12 GLOBAL SILICON BASED TIMING DEVICE MARKET, BY APPLICATION, 2021-2030 (USD THOUSAND)

TABLE 13 GLOBAL CONSUMER ELECTRONICS IN SILICON BASED TIMING DEVICE MARKET, BY REGION, 2021-2030 (USD THOUSAND)

TABLE 14 GLOBAL CONSUMER ELECTRONICS IN SILICON BASED TIMING DEVICE MARKET, BY TYPE, 2021-2030 (USD THOUSAND)

TABLE 15 GLOBAL TELECOMMUNICATION & NETWORKING IN SILICON BASED TIMING DEVICE MARKET, BY REGION, 2021-2030 (USD THOUSAND)

TABLE 16 GLOBAL TELECOMMUNICATION & NETWORKING IN SILICON BASED TIMING DEVICE MARKET, BY TYPE, 2021-2030 (USD THOUSAND)

TABLE 17 GLOBAL DATA CENTERS IN SILICON BASED TIMING DEVICE MARKET, BY REGION, 2021-2030 (USD THOUSAND)

TABLE 18 GLOBAL DATA CENTERS IN SILICON BASED TIMING DEVICE MARKET, BY TYPE, 2021-2030 (USD THOUSAND)

TABLE 19 GLOBAL AUTOMOTIVE IN SILICON BASED TIMING DEVICE MARKET, BY REGION, 2021-2030 (USD THOUSAND)

TABLE 20 GLOBAL AUTOMOTIVE IN SILICON BASED TIMING DEVICE MARKET, BY TYPE, 2021-2030 (USD THOUSAND)

TABLE 21 GLOBAL INDUSTRIAL IN SILICON BASED TIMING DEVICE MARKET, BY REGION, 2021-2030 (USD THOUSAND)

TABLE 22 GLOBAL INDUSTRIAL IN SILICON BASED TIMING DEVICE MARKET, BY TYPE, 2021-2030 (USD THOUSAND)

TABLE 23 GLOBAL MEDICAL & HEALTHCARE IN SILICON BASED TIMING DEVICE MARKET, BY TYPE, 2021-2030 (USD THOUSAND)

TABLE 24 GLOBAL MEDICAL & HEALTHCARE IN SILICON BASED TIMING DEVICE MARKET, BY TYPE, 2021-2030 (USD THOUSAND)

TABLE 25 GLOBAL MILITARY & DEFENSE IN SILICON BASED TIMING DEVICE MARKET, BY REGION, 2021-2030 (USD THOUSAND)

TABLE 26 GLOBAL MILITARY & DEFENSE IN SILICON BASED TIMING DEVICE MARKET, BY TYPE, 2021-2030 (USD THOUSAND)

TABLE 27 GLOBAL OTHERS IN SILICON BASED TIMING DEVICE MARKET, BY REGION, 2021-2030 (USD THOUSAND)

图片列表

FIGURE 1 GLOBAL SILICON BASED TIMING DEVICE MARKET: SEGMENTATION

FIGURE 2 GLOBAL SILICON BASED TIMING DEVICE MARKET: DATA TRIANGULATION

FIGURE 3 GLOBAL SILICON BASED TIMING DEVICE MARKET: DROC ANALYSIS

FIGURE 4 GLOBAL SILICON BASED TIMING DEVICE MARKET: GLOBAL VS REGIONAL MARKET ANALYSIS

FIGURE 5 GLOBAL SILICON BASED TIMING DEVICE MARKET: COMPANY RESEARCH ANALYSIS

FIGURE 6 GLOBAL SILICON BASED TIMING DEVICE MARKET: INTERVIEW DEMOGRAPHICS

FIGURE 7 GLOBAL SILICON BASED TIMING DEVICE MARKET: DBMR MARKET POSITION GRID

FIGURE 8 GLOBAL SILICON BASED TIMING DEVICE MARKET: VENDOR SHARE ANALYSIS

FIGURE 9 GLOBAL SILICON BASED TIMING DEVICE MARKET: MARKET APPLICATION COVERAGE GRID

FIGURE 10 GLOBAL SILICON BASED TIMING DEVICE MARKET: MULTIVARIATE MODELLING

FIGURE 11 GLOBAL SILICON BASED TIMING DEVICE MARKET: TYPE TIMELINE CURVE

FIGURE 12 GLOBAL SILICON BASED TIMING DEVICE MARKET: SEGMENTATION

FIGURE 13 NORTH AMERICA IS EXPECTED TO DOMINATE AND ASIA-PACIFIC IS THE FASTEST-GROWING REGION IN THE GLOBAL SILICON BASED TIMING DEVICE MARKET IN THE FORECAST PERIOD OF 2023 TO 2030

FIGURE 14 ASIA-PACIFIC IS THE FASTEST-GROWING MARKET FOR GLOBAL SILICON BASED TIMING DEVICE MARKET IN THE FORECAST PERIOD OF 2023 TO 2030

FIGURE 15 INCREASING DEMAND FROM THE AUTOMOTIVE INDUSTRY DUE TO RISING ELECTRONIC COMPONENTS AND FEATURES IS EXPECTED TO BE A KEY DRIVER FOR THE GLOBAL SILICON BASED TIMING DEVICE MARKET IN THE FORECAST PERIOD OF 2023 TO 2030

FIGURE 16 CLOCK GENERATORS SEGMENT IS EXPECTED TO ACCOUNT FOR THE LARGEST SHARE OF THE GLOBAL SILICON BASED TIMING DEVICE MARKET FROM 2023 TO 2030

FIGURE 17 DRIVERS, RESTRAINTS, OPPORTUNITIES, AND CHALLENGES OF THE GLOBAL CONSUMER GRADE 3D SCANNER MARKET

FIGURE 18 GLOBAL SILICON BASED TIMING DEVICE MARKET: BY TYPE, 2022

FIGURE 19 GLOBAL SILICON BASED TIMING DEVICE MARKET: BY INPUT FREQUENCY, 2022

FIGURE 20 GLOBAL SILICON BASED TIMING DEVICE MARKET: BY MOUNTING TYPE, 2022

FIGURE 21 GLOBAL SILICON BASED TIMING DEVICE MARKET: BY APPLICATION, 2022

FIGURE 22 GLOBAL SILICON BASED TIMING DEVICE MARKET: SNAPSHOT (2022)

FIGURE 23 GLOBAL SILICON BASED TIMING DEVICE MARKET: 2022 (%)

FIGURE 24 NORTH AMERICA SILICON BASED TIMING DEVICE MARKET: 2022 (%)

FIGURE 25 ASIA-PACIFIC SILICON BASED TIMING DEVICE MARKET: 2022 (%)

FIGURE 26 EUROPE SILICON BASED TIMING DEVICE MARKET: 2022 (%)

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研究方法

Data collection and base year analysis are done using data collection modules with large sample sizes. The stage includes obtaining market information or related data through various sources and strategies. It includes examining and planning all the data acquired from the past in advance. It likewise envelops the examination of information inconsistencies seen across different information sources. The market data is analysed and estimated using market statistical and coherent models. Also, market share analysis and key trend analysis are the major success factors in the market report. To know more, please request an analyst call or drop down your inquiry.

The key research methodology used by DBMR research team is data triangulation which involves data mining, analysis of the impact of data variables on the market and primary (industry expert) validation. Data models include Vendor Positioning Grid, Market Time Line Analysis, Market Overview and Guide, Company Positioning Grid, Patent Analysis, Pricing Analysis, Company Market Share Analysis, Standards of Measurement, Global versus Regional and Vendor Share Analysis. To know more about the research methodology, drop in an inquiry to speak to our industry experts.

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Frequently Asked Questions

The silicon based timing device market size will be worth USD 2,312,966.15 thousand by 2030.
The growth rate of the silicon based timing device market is 6.4% by 2030.
Increasing Demand from the Automotive Industry Due to Rising Electronic Components and Features is the growth driver of the silicon based timing device market.
Type, mounting type, input frequency, and application are the factors on which the silicon based timing device market research is based.
Major companies in the silicon based timing device market are Microchip Technology INC, Sitime Corp., Rohm Co., Ltd., Skyworks Solutions, INC, Texas Instruments Incorporated, Renesas Electronics Corporation, Semicon Components Industries, LLC, Analog Devices, INC, Infinion, and Torex Semiconductor Ltd., among others