Degaussing Thermistors Market | Latest Statistics, Business Trends, Growth and Opportunities
- Published 2026
- No of Pages: 120
- 20% Customization available
Market Summary and Growth Forecast
The global Degaussing Thermistors Market is valued at $32.8 million in 2026 and is expected to appreciate to $42.5 million by 2035, at a CAGR of 2.9%. The market covers thermistors used in degaussing circuits to control the initial current surge and subsequently reduce current as the component heats. These devices have historically been associated with cathode-ray-tube displays and televisions, but their role extends to selected magnetic-field control, demagnetization, and specialized electronic equipment.
The business profile of this market is different from that of high-volume thermistor categories. Degaussing thermistors represent a relatively specialized product class, with demand tied to equipment architecture, replacement requirements, circuit design, and the installed base of legacy systems. This limits volume expansion. At the same time, the products can have long qualification cycles and relatively stable replacement demand where equipment remains in service.
In 2026, the market is shaped by two opposing forces. The first is the continuing decline of CRT-based consumer electronics, which remains an important historical application for degaussing components. The second is the persistence of specialized equipment requiring controlled demagnetization and inrush-current management. This creates a replacement-oriented market rather than a conventional mass-market growth story.
Technology development is also changing the competitive environment. Manufacturers are focusing on tighter resistance tolerances, improved thermal cycling, higher reliability, compact form factors, and better consistency between production lots. These improvements matter because a degaussing thermistor operates under a demanding sequence: it experiences a high initial current and then heats rapidly to change its electrical resistance.
Production economics remain important. Ceramic processing, electrode formation, lead attachment, encapsulation, and thermal treatment all influence the final component’s performance and cost. For suppliers, maintaining consistent electrical characteristics across batches is particularly important because thermistor behavior directly affects the degaussing profile of the finished equipment.
Regulation has a more indirect influence than in markets such as automotive emissions or medical devices. Environmental requirements governing electronic materials, restricted substances, energy efficiency, and end-of-life equipment can influence material selection and the applications in which these components are used. The larger regulatory effect comes from the changing equipment base. As manufacturers move toward more energy-efficient and compact display architectures, the addressable market for traditional CRT degaussing circuits continues to narrow.
From a regional perspective, Asia Pacific remains the largest production and consumption center. The region combines a large electronics manufacturing base with established passive-component supply chains. China, Japan, South Korea, Taiwan, and Southeast Asia are particularly relevant to the broader thermistor ecosystem. Europe and North America have smaller production footprints but continue to generate replacement and specialized industrial demand.
Key consumers and clients include display and electronics manufacturers, industrial equipment producers, electronic-component distributors, repair and replacement suppliers, power-electronics manufacturers, and specialized equipment OEMs. In several applications, the purchasing decision is driven less by unit price than by electrical consistency and compatibility with an existing circuit design.
From a strategic perspective, this is a niche component market where product reliability and qualification history can matter more than aggressive capacity expansion. Suppliers that can serve legacy requirements while adapting thermistor designs to specialized electronic applications are better positioned to protect their installed customer base.
Market Outlook, 2026–2035
| Market Indicator | 2026 | 2030 | 2035 |
| Global Market Size | $32.8 million | $36.7 million | $42.5 million |
| Estimated CAGR | — | — | 2.9% |
| Primary demand profile | Replacement + specialized equipment | Replacement + industrial applications | Specialized + replacement applications |
| Largest regional market | Asia Pacific | Asia Pacific | Asia Pacific |
The projected expansion from $32.8 million in 2026 to $42.5 million by 2035 should therefore be viewed as gradual value growth. It is supported by replacement demand, specialized equipment, product upgrades, and continued availability of established ceramic thermistor technologies rather than by a return of mass-market CRT production.
Market Segmentation and Forecast Scope
The Degaussing Thermistors Market can be assessed across Product Type, Application, End User, and Region. These dimensions provide a clearer view of where demand originates and which areas can continue generating business as traditional CRT applications contract.
By Product Type
The product-type analysis covers the physical and electrical configurations used in degaussing circuits. The main distinctions relate to thermistor geometry, resistance characteristics, thermal capacity, mounting configuration, and packaging.
Disc-type thermistors represent an important portion of the market because their ceramic construction can provide the thermal behavior and current-handling characteristics required for repeated degaussing cycles. Their established manufacturing base also supports replacement applications.
Lead-type and encapsulated thermistors are used where circuit integration, mechanical protection, and mounting flexibility are important. These configurations can be attractive in equipment where the component must withstand vibration, repeated thermal cycling, or constrained installation conditions.
Other configurations include customized assemblies and application-specific thermistor designs. These products generally compete through electrical performance and engineering compatibility rather than standardized commodity pricing.
In 2026, disc-type products are estimated to account for approximately 46.5% of global market revenue. Their established use and broad replacement availability support this position.
The strategic opportunity is shifting toward application-specific and encapsulated designs, particularly where equipment manufacturers require tighter specifications or improved mechanical and thermal reliability.
By Application
Application segmentation distinguishes demand according to the equipment or circuit in which the thermistor is installed.
CRT displays and television equipment remain a historical and still relevant application category. However, the installed base is declining, and new equipment production is limited compared with the period when CRT televisions and monitors dominated display technology.
Industrial and specialized electronic equipment provides a more durable demand base. Certain equipment can require controlled demagnetization or magnetic-field reduction as part of its operating architecture. These applications tend to have longer equipment lifecycles and may therefore generate replacement orders for many years after original production.
Other applications include specialized display systems, legacy instrumentation, repair equipment, and selected electronic systems where a degaussing function remains part of the circuit design.
The fastest-growing opportunity is expected to come from specialized industrial and electronic equipment, rather than traditional consumer displays. The growth rate is still moderate, but the segment benefits from longer product lifecycles and lower exposure to the rapid substitution that affected CRT technology.
By End User
The end-user structure includes OEMs, component distributors, industrial equipment manufacturers, repair and replacement suppliers, and specialized electronics manufacturers.
OEM demand is important because thermistors can become part of an equipment manufacturer’s qualified bill of materials. Once a component has passed electrical and reliability testing, customers may prefer to retain the same specification rather than redesign the circuit.
Distributors and replacement suppliers serve a different requirement. Their customers are often maintaining older equipment and need components that match the electrical characteristics of an original part. This creates a continuing aftermarket channel even where new equipment production has declined.
Industrial users generally place greater emphasis on operating reliability and lifecycle availability. For them, a small difference in component price may be less important than avoiding equipment redesign or unexpected downtime.
By Region
North America represents a mature market with demand concentrated in replacement components, specialized equipment, repair channels, and selected industrial applications. New mass-market applications remain limited.
Europe has a similar mature profile. Demand is influenced by industrial electronics, maintenance requirements, legacy equipment, and component replacement. Environmental compliance and product-lifecycle considerations can also influence sourcing decisions.
Asia Pacific is the leading regional market. It benefits from the region’s electronics manufacturing ecosystem, ceramic-component production capabilities, component distribution networks, and concentration of thermistor suppliers. Japan, China, South Korea, Taiwan, and Southeast Asia remain strategically important.
LAMEA represents a smaller market. Demand is more fragmented and tends to be connected with equipment maintenance, imports, repair markets, and selected industrial applications.
Regional Market Position, 2026
| Region | Estimated Share, 2026 | Market Character |
| Asia Pacific | 44.0% | Largest production base and broadest electronics ecosystem |
| North America | 21.5% | Replacement and specialized industrial demand |
| Europe | 23.0% | Mature industrial and replacement applications |
| LAMEA | 11.5% | Smaller, fragmented aftermarket demand |
The regional structure shows why production geography and consumption geography are closely connected in this market. Asia Pacific does not only represent an important customer base; it also provides much of the manufacturing infrastructure required to keep specialized thermistor products available.
Market Trends and Business Innovations
The technology direction of the Degaussing Thermistors Market is largely evolutionary rather than disruptive. The basic operating principle of using a temperature-sensitive ceramic resistor to manage current remains well established. Innovation is therefore concentrated on material consistency, thermal response, reliability, miniaturization, and application-specific design.
R&D Is Moving Toward Consistency and Thermal Reliability
Research and development efforts are increasingly focused on controlling the electrical characteristics of thermistor materials more precisely. The resistance-temperature relationship is critical because it determines how the component behaves immediately after power is applied and how quickly current falls as the thermistor heats.
Manufacturers are working on ceramic compositions and processing controls that provide more predictable resistance characteristics. Better control of grain structure, sintering conditions, electrode quality, and component geometry can reduce variation between individual components.
This matters commercially. A customer designing a degaussing circuit needs predictable electrical behavior. A thermistor with inconsistent characteristics can alter the current profile and affect the performance of the overall circuit.
Material Engineering Remains Relevant
Unlike many electronic components where semiconductor integration dominates development, material science remains central to thermistors. Metal-oxide ceramic materials continue to provide the foundation for NTC behavior.
The focus is not simply on creating a material with a particular resistance. Manufacturers also need to balance resistance, thermal capacity, mechanical strength, heat dissipation, long-term stability, and manufacturability.
The practical innovation opportunity is therefore in balancing several characteristics at once. A thermistor that performs well electrically but has poor thermal cycling stability is unlikely to deliver a strong lifecycle advantage.
Compact Designs and Better Packaging
Equipment manufacturers continue to demand smaller components. This creates pressure on thermistor suppliers to achieve the required electrical and thermal performance in a more compact package.
Packaging development includes improved encapsulation, stronger lead attachment, better insulation, and more reliable mechanical interfaces. These changes are particularly useful in specialized equipment where space is restricted or where components are exposed to repeated temperature changes.
For replacement markets, however, compactness cannot come at the expense of compatibility. A smaller component may not be a practical replacement if its thermal behavior differs materially from the original design.
Production Automation and Quality Control
Automation is becoming more important in ceramic-component production. Automated forming, sintering controls, electrical testing, dimensional inspection, and sorting can improve consistency while reducing process variation.
For thermistor manufacturers, automated testing is particularly valuable because resistance and thermal characteristics can be screened before components enter the supply chain. This helps suppliers maintain tighter specifications for OEM customers.
Digital manufacturing systems can also support traceability. That becomes useful when customers require consistent component performance across multiple production batches.
AI Has a Limited Direct Role
AI is not a primary technology driver for degaussing thermistors themselves. The component does not require AI-based functionality, and its fundamental operation remains based on temperature-dependent electrical resistance.
However, AI and data analytics can have an indirect role in manufacturing. Predictive analysis can help identify production anomalies, monitor equipment conditions, and improve quality-control processes. These applications are more relevant to factory efficiency than to the thermistor’s underlying technology.
For this reason, AI should be viewed as a manufacturing-support technology, not a core product innovation in this market.
Supplier Collaboration and Customization
The market also shows a gradual move toward closer supplier-OEM engineering relationships. Customized resistance values, thermal characteristics, dimensions, leads, insulation, and packaging may be required for specialized equipment.
Established component suppliers such as TDK, Murata Manufacturing, Vishay Intertechnology, Panasonic Industry, and Thinking Electronic Industrial operate across broader thermistor and passive-component markets and provide the type of manufacturing and engineering capabilities that can support specialized thermistor requirements.
The competitive advantage is therefore not limited to production capacity. It also includes qualification capability, application engineering, quality consistency, and the ability to maintain supply for products that may have relatively low annual volumes.
Industry Direction Through 2035
| Innovation Area | Current Direction | Expected Business Impact |
| Ceramic materials | Better consistency and thermal stability | Higher reliability |
| Component geometry | Smaller and application-specific formats | Easier equipment integration |
| Encapsulation | Improved mechanical and environmental protection | Longer component life |
| Automated testing | Greater electrical screening | Lower batch variation |
| Manufacturing analytics | Increased process monitoring | Better yield and quality control |
| AI | Indirect use in manufacturing | Limited direct product impact |
| OEM customization | More application-specific specifications | Stronger customer retention |
Expert view: The strongest innovation path through 2035 is unlikely to come from a radically new degaussing principle. It will come from making established thermistor technology more consistent, compact, durable, and easier to qualify for specialized equipment.
That distinction is important for suppliers and investors. The market’s future will depend less on creating entirely new functionality and more on preserving reliable supply while adapting the component to the smaller but more specialized applications that remain.
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Competitive Intelligence and Benchmarking
The competitive structure of the Degaussing Thermistors Market is fragmented between large global passive-component manufacturers and specialized Asian thermistor producers. The larger companies benefit from established ceramic-processing capabilities, quality systems, global distribution, and long customer relationships. Smaller suppliers compete more directly on customization, price, short production runs, and replacement availability.
Because the market is relatively specialized, direct revenue comparisons between companies are not meaningful. Many suppliers do not separately disclose degaussing thermistors in their financial reporting. Benchmarking is therefore better based on product breadth, manufacturing capability, application engineering, geographic reach, and ability to support legacy designs.
Murata Manufacturing
Murata Manufacturing has a strong technology position in ceramic thermistors and related passive components. Its thermistor capabilities span PTC and NTC technologies used for temperature sensing, current control, protection, and other electronic applications. The company also has historical expertise in PTC technology relevant to degaussing circuits.
Its advantage extends beyond a single application. Murata combines ceramic-material expertise with automated manufacturing, quality control, and a broad electronics customer base. This gives it an advantage when customers require qualified components with stable electrical characteristics.
Benchmark view: Murata’s strongest competitive asset is technology depth and qualification capability rather than dependence on traditional CRT applications.
TDK
TDK is a major global passive-component manufacturer with extensive capabilities in ceramics, sensors, electronic materials, and power-related components. Its scale provides advantages in manufacturing consistency, global distribution, engineering support, and supply-chain resilience.
For the degaussing segment, its broader thermistor and passive-component expertise is more important than any individual legacy application. TDK is well positioned where customers prioritize reliability, long-term availability, and integration with wider electronic systems.
Vishay Intertechnology
Vishay Intertechnology has a broad thermistor portfolio covering temperature sensing, inrush-current limiting, and thermal-management requirements. Its product breadth allows it to address multiple electrical and mechanical specifications.
This creates a strong position in the wider thermistor market. For degaussing-related requirements, the company’s expertise in thermal and current-control components provides an alternative supplier base for customers evaluating compatible circuit solutions.
Its competitive strength is supported by product variety, established quality systems, global distribution, and relationships with industrial and electronic-equipment manufacturers.
Panasonic Industry
Panasonic Industry has established capabilities across electronic components and thermistor technologies. Its portfolio includes compact thermistor configurations used in temperature sensing and circuit-management applications.
Its competitive position benefits from manufacturing scale, established OEM relationships, and access to a broad electronics ecosystem. The company can also adjust its component portfolio as application requirements change.
For the Degaussing Thermistors Market, this broad capability matters because customers may prefer suppliers capable of supporting multiple thermistor requirements rather than a single legacy application.
Thinking Electronic Industrial
Thinking Electronic Industrial is a specialist thermistor manufacturer with a stronger focus on thermistors and protection components than diversified passive-component companies.
Its competitive advantage comes from specialization, application-specific configurations, Asian manufacturing networks, and customization capabilities. This positioning can be attractive for customers seeking specific resistance characteristics, package formats, or cost structures.
The company is particularly relevant to the Asian supply chain, where electronics manufacturers often require flexible component sourcing.
Hwalon Electronic
Hwalon Electronic represents the specialized Chinese supplier segment. Its capabilities span PTC thermistors, NTC thermistors, varistors, sensors, and thermal-protection components.
The company competes through manufacturing specialization, customization, and cost efficiency. This positioning is relevant in replacement markets, where customers may prioritize functional compatibility and availability over brand recognition.
Hubei New-Jingdu Electronic Scientific Technology
Hubei New-Jingdu Electronic Scientific Technology is associated with specialized PTC thermistor manufacturing and applications that include degaussing and circuit protection.
Its position illustrates the role of Chinese specialist manufacturers in maintaining supply for relatively mature component categories. These companies can remain commercially relevant because legacy equipment often requires replacement components long after original equipment production has declined.
Competitive Benchmark
| Company | Competitive Strength | Market Position | Key Advantage |
| Murata Manufacturing | Ceramic and thermistor technology | High | Materials expertise and OEM qualification |
| TDK | Passive components and materials | High | Scale and global supply |
| Vishay Intertechnology | Broad thermistor portfolio | High | Product breadth and distribution |
| Panasonic Industry | Electronic components | High | Manufacturing scale and OEM relationships |
| Thinking Electronic Industrial | Thermistor specialization | Medium-High | Application focus |
| Hwalon Electronic | PTC/NTC and protection components | Medium | Customization and cost competitiveness |
| Hubei New-Jingdu Electronic Scientific Technology | PTC thermistors | Medium | Specialized supply for degaussing and protection |
The competitive structure effectively has two tiers. Large component groups provide technology credibility, qualification support, and supply-chain strength. Specialized manufacturers compete more aggressively through customization, price, and replacement availability.
For buyers, supplier selection will depend heavily on the application. Large OEM programs generally favor established qualification and supply capabilities, while legacy-equipment and replacement channels provide greater room for specialized manufacturers.
Regional Landscape and Adoption Outlook
Regional adoption of the Degaussing Thermistors Market is closely connected to the structure of the electronics manufacturing industry. Asia remains the primary production center, while North America and Europe have a stronger concentration of mature equipment, industrial electronics, and replacement demand.
United States
The United States represents a mature market. New consumer-electronics demand for traditional degaussing thermistors is limited because modern flat-panel displays have largely replaced CRT architectures.
Demand is therefore concentrated in legacy equipment, specialized electronics, repair channels, industrial systems, and replacement components.
The country’s broader electronics manufacturing base is nevertheless expanding. Semiconductor and advanced-electronics investments are strengthening domestic component ecosystems, which can indirectly benefit suppliers of specialized passive components.
The U.S. market is therefore more attractive for high-reliability, specialized, and replacement applications than for high-volume degaussing production.
Europe
Europe has a mature demand profile with limited direct expansion from traditional consumer displays. Industrial electronics, equipment maintenance, specialized instrumentation, and replacement requirements provide the more stable demand base.
The region has strong engineering capabilities, research infrastructure, and advanced electronics manufacturing. European policies supporting semiconductor and electronics sovereignty are also encouraging investment in local technology ecosystems.
However, comparatively high production costs make Europe less competitive for commodity-scale thermistor manufacturing. Its stronger opportunity lies in engineered components, high-reliability applications, and application-specific supply.
China
China remains the most important manufacturing center for specialized thermistors. Its advantages include a large electronics manufacturing ecosystem, extensive ceramic-component capabilities, domestic suppliers, established distribution networks, and relatively competitive production economics.
The country also has a substantial installed base of electronic equipment requiring replacement components.
China’s supplier base includes both major international manufacturers and specialized domestic producers. This creates strong competition on price, customization, and delivery.
China’s biggest advantage is ecosystem density. Materials, component production, electronics assembly, testing, and distribution can often be sourced through closely connected regional supply chains.
China is expected to remain the leading production geography through 2035, even as traditional CRT-related demand continues to decline.
India
India is emerging as one of the more strategically important markets for electronics-component manufacturing.
Government support for domestic electronics components is encouraging investment in passive components, semiconductor-related products, and supporting manufacturing infrastructure. The country’s growing electronics assembly industry is also increasing the need for locally available components.
India’s current thermistor ecosystem is smaller than China’s or Japan’s. However, the direction of policy is favorable. Local manufacturing, supplier diversification, lower-cost engineering, and integration with global electronics value chains could create new opportunities.
For the Degaussing Thermistors Market, India is unlikely to become a major consumer of traditional degaussing components in the near term. Its larger opportunity is as a future production, assembly, distribution, and replacement hub for thermistors and related passive components.
Japan
Japan remains a leading technology and manufacturing center for ceramic electronic components. Its strengths include materials science, precision processing, quality control, advanced manufacturing, and established passive-component companies.
Japanese manufacturers have extensive experience with thermistor technologies. The country’s electronics strategy also places emphasis on supply-chain resilience for strategically important components.
Japan’s market is therefore more technology-driven than volume-driven. High-quality materials, reliability, compact designs, and specialized components are likely to remain the country’s main competitive advantages.
South Korea
South Korea has a highly developed electronics ecosystem supported by major electronics, semiconductor, display, and component manufacturers.
Traditional degaussing demand is mature. However, the country’s sophisticated electronics infrastructure creates opportunities for specialized thermistors and related thermal-management components.
Strong automation and advanced manufacturing provide an advantage in high-quality component production. The market is therefore likely to remain relevant primarily through specialized electronics rather than mass-market CRT applications.
Middle East
The Middle East remains a comparatively small market for degaussing thermistors.
Most demand is linked to imported electronic equipment, industrial systems, maintenance activities, and replacement components. The region does not yet have the manufacturing ecosystem required to compete with East Asia in specialized ceramic thermistors.
Growing investment in industrial automation, data centers, energy infrastructure, and advanced electronics could strengthen the broader component ecosystem. However, the direct impact on degaussing thermistors is expected to remain limited.
Regional Benchmark
| Region/Country | Adoption Outlook | Manufacturing Strength | Policy Environment | 2026–2035 Direction |
| China | Mature | Very High | Strong industrial support | Stable leadership |
| Japan | Mature | Very High | Strong supply-chain support | Technology-led stability |
| South Korea | Mature | High | Strong electronics ecosystem | Specialized growth |
| United States | Mature | High | Strong advanced-electronics investment | Replacement + specialized |
| Europe | Mature | High | Strong electronics initiatives | Specialized applications |
| India | Emerging | Medium and expanding | Increasing component incentives | Strongest emerging opportunity |
| Middle East | Low | Low | Infrastructure-led | Selective growth |
India stands out as the most interesting emerging production opportunity. China and Japan retain the strongest established manufacturing positions, while the United States and Europe are better suited to higher-value specialized demand.
Recent Developments + Opportunities & Restraints
Recent Developments
April 2025 — India advances domestic electronics-component manufacturing.
India moved forward with its Electronics Component Manufacturing Scheme in April 2025, creating a policy framework intended to increase domestic component production and attract investment into electronics manufacturing. The initiative covers important passive-component categories and is expected to strengthen India’s position in global electronics supply chains.
June 2025 — Murata advances thermistor packaging technology.
In June 2025, Murata Manufacturing introduced a resin-molded thermistor configuration designed for wire-bonding applications. The development demonstrates continued progress in thermistor miniaturization, packaging flexibility, thermal response, and integration with power electronics.
Although the development targets modern thermal-management applications rather than traditional degaussing circuits, it reflects the broader shift in thermistor R&D toward compact, high-reliability components.
January 2025 — U.S. electronics manufacturing investment expands.
During January 2025, additional U.S. semiconductor-manufacturing incentives were announced under the CHIPS framework. The investment is strengthening domestic production capacity across semiconductor and related electronics supply chains.
The direct effect on degaussing thermistors is limited, but the broader expansion can improve local sourcing opportunities for passive components and specialized electronic materials.
February 2026 — Europe expands advanced semiconductor infrastructure.
In February 2026, Europe expanded its advanced semiconductor pilot-line infrastructure through a major investment in the NanoIC facility. The project strengthens Europe’s ability to develop and manufacture advanced electronic technologies and supports a broader strategy of reducing dependence on external technology supply chains.
April 2026 — Japan reinforces electronic-component supply security.
In April 2026, Japan continued supporting domestic production of strategically important electronic components through its supply-security framework. The policy direction favors established Japanese manufacturers with advanced materials and component-processing capabilities.
Opportunities
- Emerging electronics manufacturing in India
India’s expanding component ecosystem provides an opportunity for thermistor manufacturers to establish local production, assembly, testing, distribution, or strategic partnerships.
The strongest opportunity is likely to come from broader thermistor production rather than relying exclusively on degaussing applications.
- Automated manufacturing and quality control
Automation can improve ceramic forming, electrical testing, dimensional inspection, and production consistency. Data-based quality monitoring can also identify process deviations before large batches are affected.
AI has a limited direct role in the thermistor itself, but it can support manufacturing analytics, predictive maintenance, yield optimization, and quality assurance.
- Replacement and customized components
The installed base of legacy equipment continues to create replacement demand. Suppliers that can reproduce electrical characteristics, dimensions, thermal behavior, and mounting configurations can serve customers even when original equipment production has ended.
The commercial opportunity is therefore less about reviving mass-market degaussing technology and more about combining replacement demand with customized thermistor manufacturing capabilities.
Restraints
The largest restraint remains the decline of CRT-based equipment. Modern flat-panel display technologies have largely eliminated the traditional degaussing architecture that created high-volume demand for PTC thermistors.
A second limitation is market size. Degaussing thermistors are a specialized component category, so annual production volumes may not justify large dedicated investments.
Alternative circuit architectures also limit long-term expansion. As equipment designers move toward newer technologies, fewer new products require conventional degaussing circuits.
Finally, intense competition among Asian component manufacturers can place pressure on pricing. Suppliers must therefore differentiate through reliability, customization, qualification support, availability, and technical service rather than competing only on unit cost.