Global PCB Solid State Relays Market Size By Specifications, By Load Type, By Application, By Geographic Scope And Forecast

Published Date: July - 2024 | Publisher: MIR | No of Pages: 320 | Industry: latest updates trending Report | Format: Report available in PDF / Excel Format

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Global PCB Solid State Relays Market Size By Specifications, By Load Type, By Application, By Geographic Scope And Forecast

PCB Solid State Relays Market Size And Forecast

PCB Solid State Relays Market size is valued at USD 556.9 Million in 2023 and is projected to reach USD 733.7 Million by 2030, growing at a CAGR of 3.4% during the forecast period 2024-2030.

Global PCB Solid State Relays Market Drivers

Several factors drive the need for these electrical components, which in turn influences the PCB Solid State Relays Market. PCB SSRs are used to control electrical currents in a variety of applications, and the following factors are driving their market

  • Miniaturization and Space Efficiency The need for PCB SSRs, which are space-efficient and can be installed directly on PCBs, is driven by the desire for smaller and more compact electronic products, such as consumer electronics and Internet of Things devices.
  • Reliability and Durability Compared to conventional electromechanical relays, PCB SSRs are more dependable and long-lasting since they lack mechanical components. For applications where maintenance is expensive or onerous, this reliability is essential.
  • Better Noise Immunity Compared to electromechanical relays, SSRs provide lower electromagnetic interference (EMI) and better noise immunity, which makes them appropriate for sensitive electronic applications.
  • Faster Switching Speed Because PCB SSRs have a fast switching speed, they are well suited for robotics and automation applications and other fields requiring precise and quick control over electrical circuits.
  • Energy Efficiency SSRs are perfect for applications where power consumption is a problem because they use less energy and produce less heat when operating.
  • Longer Operating Life Because PCB SSRs do not suffer from the wear and tear that comes with mechanical contacts, they have a longer operating life. This longevity is useful in applications where upkeep is difficult.
  • Decreased Maintenance Costs PCB SSRs’ longevity and dependability lessen the need for regular upkeep and replacement, which saves money.
  • Broad Voltage Range SSRs may function throughout a broad voltage range, meeting a variety of voltage needs and applications.
  • Enhanced Safety In applications where isolation is crucial, SSRs’ provision of electrical isolation between the control and load circuits enhances safety.
  • Environmental friendliness PCB SSRs comply with environmental rules and consumer desires for eco-friendly components because they are lead-free and RoHS-compliant.

Global PCB Solid State Relays Market Restraints

The market constraints and obstacles that the PCB (Printed Circuit Board) Solid State Relays (SSR) industry experiences could potentially hinder its expansion and advancement. These limitations are frequently linked to elements like industry competition, technology constraints, cost considerations, and unique obstacles. The PCB Solid State Relays Market is often constrained by the following factors

  • High Initial Cost SSR adoption may be hampered by their higher initial cost compared to electromechanical relays, particularly in applications where cost is a factor.
  • Absence of Industry Standards In certain applications, compatibility and interoperability problems may arise from the lack of generally recognized industry standards for SSRs.
  • Limited Capability to Handle Extremely High Load Currents PCB SSRs can be used in a wide range of industrial applications, but their inability to handle exceptionally high load currents can be a drawback.
  • Heat Dissipation During operation, SSRs produce heat, which may call for the installation of heat sinks or cooling solutions, raising the system’s total cost and complexity.
  • Restricted Voltage Ranges The input and output voltage range that some SSRs can tolerate is limited, which makes them less useful in some situations.
  • Voltage and Current Transients SSRs may be susceptible to voltage and current transients, especially in applications with erratic power sources, which may result in damage or erroneous triggering.
  • Complexity of Fault Diagnosis Unlike mechanical contacts, which have readily apparent wear or damage spots, SSRs can be difficult to identify and diagnose flaws in.
  • Voltage Drop Across SSR SSRs normally exhibit a voltage drop when they are in the “on” state, making them unsuitable for uses where precise voltage levels are needed.
  • Relay Cross-Talk In multi-channel applications, signal integrity may be compromised by electromagnetic interference (EMI) or cross-talk between neighboring SSRs.
  • Thermal Management In certain applications, maintaining adequate thermal management to avoid overheating and preserve dependability can be difficult.

Global PCB Solid State Relays Market Segmentation Analysis

The Global PCB Solid State Relays Market is segmented on the basis of Specifications, Load Type, Application, and Geography.

PCB Solid State Relays Market, By Specifications

  • Input Voltage RangeSSRs can be categorized based on the range of input control voltages they can accept, such as low-voltage, standard-voltage, or high-voltage SSRs.
  • Current RatingSSRs vary in terms of their current-carrying capacity, and they can be segmented based on their load current rating, including low current, medium current, and high current SSRs.
  • Switching SpeedSSRs can be classified by their switching speed, with some designed for fast switching applications, while others are suited for slower switching.
  • Number of ChannelsSSRs can be single-channel (one input, one output) or multi-channel (multiple inputs and outputs) devices.

PCB Solid State Relays Market, By Load Type

  • AC SSRsSolid state relays designed to switch alternating current (AC) loads, such as AC motors, lamps, and heaters.
  • DC SSRsSolid state relays designed to switch direct current (DC) loads, including DC motors, LED lighting, and electronic devices.
  • Hybrid SSRsThese SSRs are capable of switching both AC and DC loads.

PCB Solid State Relays Market, By Application

  • Industrial AutomationSSRs used in industrial control systems, such as PLCs (Programmable Logic Controllers), process automation, and machinery control.
  • HVAC (Heating, Ventilation, and Air Conditioning)SSRs in HVAC applications for control of fans, heaters, and air conditioning systems.
  • Power ElectronicsSSRs used in power electronics applications, including inverters, converters, and motor drives.
  • Aerospace and DefenseSSRs for applications in the aerospace and defense sectors, including avionics, radar, and missile guidance systems.
  • AutomotiveSSRs used in automotive applications for controlling electrical components in vehicles, such as lighting and HVAC systems.
  • Medical EquipmentSSRs in medical devices and equipment, including diagnostic equipment, imaging systems, and patient monitors.
  • TelecommunicationsSSRs for controlling and switching electrical circuits in telecommunications infrastructure and networking equipment.
  • Renewable EnergySSRs used in renewable energy systems, such as solar inverters, wind turbines, and battery management systems.
  • Consumer ElectronicsSSRs in consumer electronic devices, including smart home automation, audio equipment, and appliances.
  • IoT (Internet of Things)SSRs for IoT devices, home automation, and smart sensors.
  • Lighting ControlSSRs used in lighting control systems, including dimming and lighting automation.
  • TransportationSSRs for applications in transportation, including rail, marine, and automotive systems.
  • Energy ManagementSSRs for energy management and conservation applications, such as load shedding and peak demand control.
  • OthersCustomized applications where PCB SSRs are used for specific needs and industries.

PCB Solid State Relays Market, By Geography

  • North AmericaMarket conditions and demand in the United States, Canada, and Mexico.
  • EuropeAnalysis of the PCB Solid State Relays Market in European countries.
  • Asia-PacificFocusing on countries like China, India, Japan, South Korea, and others.
  • Middle East and AfricaExamining market dynamics in the Middle East and African regions.
  • Latin AmericaCovering market trends and developments in countries across Latin America.

Key Players

The major players in the Global PCB Solid State Relays Market include

  • Omron
  • TE Connectivity
  • Sensata Technologies
  • Celduc Relais
  • Siemens
  • ABB
  • Rockwell Automation
  • IXYS
  • Panasonic
  • Carlo Gavazzi Holding AG
  • Vishay Intertechnology, Inc.
  • Avago Technologies, Ltd.

Report Scope

Report AttributesDetails
Study Period

2020-2030

Base Year

2023

Forecast Period

2024-2030

Historical Period

2020-2022

Unit

Value (USD Million)

Key Companies Profiled

Omron, TE Connectivity, Sensata Technologies, Celduc Relais, Siemens, ABB, Rockwell Automation.

Segments Covered

By Specifications, By Load Type, By Application, and By Geography.

Customization scope

Free report customization (equivalent to up to 4 analyst’s working days) with purchase. Addition or alteration to country, regional & segment scope

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