#Low Capacitance Diodes for ESD Protection
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electronalytics · 1 year ago
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Low Capacitance Diodes for ESD Protection Market Outlook & Forecast till 2033
The competitive analysis of the Low Capacitance Diodes for ESD Protection Market include a comprehensive analysis of market trends, competitor landscape, consumer behavior, and potential opportunities. It should cover key demographics, market size, growth projections, and risk factors. The report should also highlight the methodology used for data collection and analysis, presenting findings with visual aids such as charts and graphs. Additionally, recommendations and strategic insights for stakeholders to make informed decisions are crucial. The report should be concise, well-organized, and provide actionable information for businesses aiming to navigate the market effectively.
Key Function:
A  Low Capacitance Diodes for ESD Protection market research report serves to assess market dynamics, identify opportunities, and mitigate risks for businesses. It analyzes consumer preferences, competitor strategies, and economic trends. The report facilitates informed decision-making by presenting data on market size, growth potential, and emerging patterns. It aids in product development, pricing strategies, and market positioning. Additionally, market research reports help businesses understand their target audience, enhance marketing efforts, and optimize resource allocation. By offering actionable insights, these reports empower organizations to stay competitive, adapt to changing market conditions, and foster sustainable growth in a dynamic business environment.
Key Dynamics:
Market research reports capture vital dynamics, including market trends, competitive analysis, and consumer behavior. They reveal market size, growth projections, and regional nuances. SWOT analysis examines internal strengths and weaknesses, along with external opportunities and threats. Consumer insights delve into preferences, impacting product development and marketing strategies. The competitive landscape unveils key players, strategies, and market shares. Regulatory factors and industry challenges are explored, aiding risk assessment. Timely and accurate information empowers businesses to adapt strategies, capitalize on opportunities, and navigate challenges, ensuring informed decision-making and sustained competitiveness in dynamic markets.
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Market Segmentations:
Global Low Capacitance Diodes for ESD Protection Market: By Company • Infineon Technologies AG • Littelfuse • Onsemi • STMicroelectronics • Toshiba Electronic Devices & Storage Corporation • Nexperia • Good-Ark Semiconductor • Texas Instruments • Vishay Intertechnology, Inc • Guangdong Shikues Micro Industrial Co., Ltd Global Low Capacitance Diodes for ESD Protection Market: By Type • 2-Channel Type • 3-Channel Type • 4-Channel Type • 6-Channel Type Global Low Capacitance Diodes for ESD Protection Market: By Application • RF Switch • Antenna • Monitor • Speaker • Other
Regional Analysis of Global Low Capacitance Diodes for ESD Protection Market
All the regional segmentation has been studied based on recent and future trends, and the market is forecasted throughout the prediction period. The countries covered in the regional analysis of the Global Low Capacitance Diodes for ESD Protection market report are U.S., Canada, and Mexico in North America, Germany, France, U.K., Russia, Italy, Spain, Turkey, Netherlands, Switzerland, Belgium, and Rest of Europe in Europe, Singapore, Malaysia, Australia, Thailand, Indonesia, Philippines, China, Japan, India, South Korea, Rest of Asia-Pacific (APAC) in the Asia-Pacific (APAC), Saudi Arabia, U.A.E, South Africa, Egypt, Israel, Rest of Middle East and Africa (MEA) as a part of Middle East and Africa (MEA), and Argentina, Brazil, and Rest of South America as part of South America.
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semimediapress · 16 days ago
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Nexperia debuts ESD diodes tailored for 48V automotive data networks
July 9, 2025 /SemiMedia/ — Nexperia has launched the industry’s first ESD protection diodes specifically developed for 48 V automotive data lines, addressing a long-standing gap in electrostatic protection for next-generation EV and HEV communication networks. The new AEC-Q101 qualified portfolio includes six ESD diodes supporting reverse working voltages (VRWM) of 54 V, 60 V, and 72 V. Designed…
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ddivd2tez · 11 months ago
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https://www.futureelectronics.com/p/electromechanical--circuit-protection--esd-protection/nup2105lt1g-onsemi-7467806
Bus ESD Protection Diode, ESD protections circuit, Electrostatic discharge protection
NUP2105L Series 350 W Dual Line CAN Bus Protector ESD Protection Diode - SOT-23
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jams2nold · 1 year ago
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https://www.futureelectronics.com/p/electromechanical--circuit-protection--tvs-diodes/sm6t36cay-stmicroelectronics-8034866
Diode arrays, ESD protection array, Bi Directional Transient Voltage Suppressor
SM6T Series 600 W 36 V Bi Directional Transient Voltage Suppressor - DO-214AA
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rber2eerk · 1 year ago
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https://www.futureelectronics.com/p/electromechanical--circuit-protection--tvs-diodes/usblc6-2sc6y-stmicroelectronics-1103009
Bidirectional ESD Protection, diode circuit, Low Capacitance TVS Diode Array
USBLC6 Series 2 Line 6 V Uni / Bi Directional ESD Protection - SOT-23-6
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Alternatives to CAN FD ESD Protection Diodes ESD2CANFD24 and PESD2CANFD27V-T — SMC24LVQ and SMC27LVQ
With the intelligentization of automobiles, the rapid development of electric vehicles and unmanned driving, as well as the increasing demand for advanced driver assistance systems (ADAS) in automobiles, the traditional CAN is becoming increasingly inadequate in terms of transmission rate and bandwidth. CAN FD (Controller Area Network Flexible Data-Rate), as an upgraded version of the traditional CAN protocol, with its characteristics of high bandwidth (up to 12 Mbps) and large data load (64 bytes per frame), is gradually replacing the traditional CAN bus in multiple fields.
1、 CAN FD Interface ESD Protection Solutions
The CAN FD interface requires an effective protection scheme to prevent electrostatic discharge (ESD) and surge interference, ensuring the reliability and stability of communication. The external protection circuit installs ESD protection diodes on the CAN FD bus connector. The ESD circuit can be applied to the CANH and CANL lines to protect both CAN FD bus lines from damage caused by ESD and other transients, while ensuring signal integrity. In addition, selecting an appropriate working voltage ensures robustness in different environments. The diagram of Shanghai Leiditech’s CAN FD protection scheme is as follows:
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The above scheme uses Shanghai Leiditech’s SMC24LVQ and SMC27LVQ for protection. The reason for these two options is that customers can choose according to the working voltage.
1、 Alternatives
Shanghai Leiditech’s SMC24LVQ and SMC27LVQ can fully replace TI’s ESD2CANFD24 and Nexperia’s PESD2CANFD27V-T, two types of CAN FD ESD protection diodes, respectively. The parameter comparison tables are as follows:
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To determine whether an ESD diode can be replaced, it is recommended to focus on the following points:
(1) Whether VRWM is close;
(2) Whether the ESD protection capability is close;
(3) Whether VBR is close;
(4) Whether IPP is close;
(5) Whether CJ is close.
The above parameters in the comparison table are relatively close, and some parameters of Leiditech’s products are better. For example, SMC27LVQ has an IPP of 3.5A, which is higher than 2.5A of PESD2CANFD27V-T, with a lower VC and stronger ESD protection capability of 30KV.
1、 Application Fields
1)Automotive Electronics
l Dynamic Lighting Systems
Controlling multi-pixel OLED vehicle lamps through the CAN FD Light protocol to achieve complex animation and dimming effects (such as taillights and turn signals).
l Intelligent Driving and Electrification
Used for transmitting data from ADAS sensors (radar, cameras), battery management systems (BMS), and on-board diagnostics (OBD).
2)Industrial Automation
l Multi-device Collaborative Control: Such as high-precision command transmission between industrial robots, PLCs, and CNC machine tools. The CAN FD to UART protocol realizes real-time data exchange and reduces system latency.
l  Energy Management: In new energy storage projects, connecting battery packs through the CAN FD interface to collect multi-node data at a rate of 5 Mbps, and improving processing efficiency with HyperRAM cache.
3)Emerging Intelligent Vehicles
l Unmanned Transportation Systems
Anjieke’s CAN FD solution combines GNSS positioning and inertial navigation to ensure reliable communication of logistics AGVs in weak signal environments such as tunnels.
In conclusion, CAN FD is rapidly penetrating into automotive lighting, autonomous driving, industrial interconnection, and flying vehicles. For our protection, it is optimal to select protection devices with low capacitance (<6pF is preferred) and high ESD level (>±15kV).
Leiditech is committed to becoming a leading brand in electromagnetic compatibility solutions and component supply, providing products such as ESD, TVS, TSS, GDT, MOV, MOSFET, Zener, and inductors. Leiditech has an experienced R&D team that can provide personalized customization services according to customer needs and offer the highest quality solutions.
#CANFD #ESDProtection #AutomotiveElectronics #ADAS #IndustrialAutomation #TVSDiode #ESDDiode #CircuitProtection #ElectronicsDesign #SmartVehicles #Leiditech #ComponentEngineering #PCBDesign #ElectricVehicles #TechInnovation
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semiconductorlogs · 16 days ago
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Multi Purpose Diodes for ESD Protection Market:  Share, Size, Trends, 2025–2032
Multi Purpose Diodes for ESD Protection Market, Global Outlook and Forecast 2025-2032
Multi Purpose Diodes for ESD Protection Market was valued at US$ 1.24 billion in 2024 and is projected to reach US$ 1.87 billion by 2032, at a CAGR of 5.43% during the forecast period 2025-2032
Our comprehensive Market report is ready with the latest trends, growth opportunities, and strategic analysis https://semiconductorinsight.com/download-sample-report/?product_id=88022
MARKET INSIGHTS
The global Multi Purpose Diodes for ESD Protection Market was valued at US$ 1.24 billion in 2024 and is projected to reach US$ 1.87 billion by 2032, at a CAGR of 5.43% during the forecast period 2025-2032.
Multi Purpose Diodes for ESD Protection are semiconductor devices designed to safeguard electronic circuits from electrostatic discharge (ESD) and transient voltage events. These diodes function as voltage clamps, diverting excess current away from sensitive components to prevent damage. The product range includes TVS diodes, switching diodes, rectifier diodes, and specialized variants catering to different voltage thresholds and response times. These components are critical for modern electronics where miniaturization increases ESD sensitivity.
The market growth is driven by increasing adoption in consumer electronics, automotive applications, and industrial automation systems. Rising demand for compact circuit protection solutions in 5G infrastructure and IoT devices further accelerates adoption. Key industry players like Infineon, Nexperia, and STMicroelectronics are expanding their portfolios with advanced low-capacitance diodes optimized for high-speed data lines. The U.S. accounts for approximately 28% of global demand, while China’s market is growing at 9.2% CAGR through 2031, fueled by local semiconductor manufacturing expansion.
List of Key Multi-Purpose Diodes for ESD Protection Companies
Infineon Technologies AG (Germany)
Nexperia BV (Netherlands)
SEMTECH Corporation (U.S.)
Vishay Intertechnology (U.S.)
Littelfuse, Inc. (U.S.)
BrightKing (China)
Amazing Microelectronic Corp (Taiwan)
STMicroelectronics (Switzerland)
ON Semiconductor (U.S.)
OmniVision Technologies (U.S.)
WAYON (China)
Prisemi (China)
Bourns, Inc. (U.S.)
LAN technology (China)
ANOVA (China)
MDE Semiconductor (U.S.)
TOSHIBA Electronic Devices (Japan)
UN Semiconductor (China)
PROTEK Devices (U.S.)
INPAQ Technology (China)
EIC Semiconductor (U.S.)
Segment Analysis:
By Type
TVS Diodes Segment Dominates the Market Due to High Demand for Robust ESD Protection
The market is segmented based on type into:
TVS Diodes
Subtypes: Uni-directional, Bi-directional, and others
Switching Diode
Rectifier Diode
Others
By Application
Automotive Segment Leads Due to Growing Adoption of Advanced Electronics in Vehicles
The market is segmented based on application into:
Automobile
Industrial
Power Supply
Military/Aerospace
Telecommunications
Others
Regional Analysis: Multi-Purpose Diodes for ESD Protection Market
North America The North American market for multi-purpose diodes for ESD protection is driven by high demand from the telecommunications, automotive, and aerospace sectors. With stringent safety and reliability standards, particularly in the U.S., industries prioritize high-performance ESD protection solutions. The rapid expansion of 5G infrastructure and electric vehicle (EV) adoption further fuels demand. Leading semiconductor manufacturers like Littelfuse and ON Semiconductor dominate the market, supported by technological innovation and regulatory compliance. However, supply chain disruptions and semiconductor shortages have recently impacted production timelines, increasing lead times for critical components.
Europe Europe’s market is shaped by strong industrial and automotive sectors, with Germany and the U.K. as key contributors. The European Union’s emphasis on environmental sustainability and advanced manufacturing drives adoption of diodes with low power consumption and high efficiency. Companies like Infineon and STMicroelectronics lead in innovation, particularly in automotive and IoT applications. However, the market faces challenges due to regulatory complexities and the need for RoHS-compliant components. The rise in renewable energy projects also creates opportunities for ESD protection diodes in power supply systems, boosting regional demand.
Asia-Pacific Asia-Pacific is the largest and fastest-growing market, led by China, Japan, and South Korea, owing to massive electronics manufacturing and industrial automation investments. The region benefits from cost-effective production capabilities and a robust semiconductor supply chain. TVS diodes are particularly in demand due to their widespread use in consumer electronics, including smartphones and wearables. However, competition is fierce, with local players like WAYON and BrightKing challenging global leaders. While affordability drives sales, quality concerns and intellectual property issues remain challenges for market expansion.
South America The market in South America is developing, with Brazil and Argentina as primary growth drivers. The increasing adoption of telecommunications infrastructure and industrial automation is boosting demand for ESD protection diodes. However, economic instability and limited local semiconductor manufacturing restrict market growth, making the region heavily reliant on imports. Despite these challenges, the renewable energy sector offers potential opportunities as governments invest in wind and solar power projects, requiring reliable power protection solutions.
Middle East & Africa This region exhibits gradual growth, supported by telecommunications expansion and increasing industrial investments in the UAE, Saudi Arabia, and South Africa. The demand for ESD protection diodes is rising in power supply and military/aerospace applications. However, the market remains constrained by limited local production, supply chain inefficiencies, and price sensitivity. Long-term growth potential exists if regional governments prioritize infrastructure development and regulatory frameworks to attract international semiconductor suppliers.
MARKET DYNAMICS
As telecommunications companies prepare for 6G deployment, the need for ESD protection capable of handling frequencies above 100GHz is creating significant opportunities. Early development cycles show that 6G components will require protection diodes with capacitance below 0.1pF while maintaining robust clamping performance. Several leading manufacturers have already announced development programs targeting these specifications, with prototype availability expected within the next two years. This technological evolution represents a potential market expansion worth $800M annually by 2028.
The AI revolution in semiconductor design is enabling more sophisticated ESD protection strategies. Machine learning algorithms are being used to optimize diode performance for specific application scenarios, creating opportunities for customized solutions. In automotive applications, intelligent ESD protection systems that adapt to changing environmental conditions are gaining traction, with adoption rates growing 40% year-over-year in advanced driver assistance systems. This trend is expected to accelerate as autonomous vehicle development progresses.
The semiconductor industry’s ongoing supply chain challenges are particularly acute for specialized components like multi-purpose diodes. Lead times for certain diode variants have extended beyond 52 weeks, forcing OEMs to redesign circuits or accept performance compromises. The situation is exacerbated by the concentration of specialty wafer production in limited geographic regions. While the industry is working to diversify manufacturing bases, establishing new capacity for specialized semiconductor processes remains a multi-year endeavor.
Modern electronic designs require ESD protection that doesn’t compromise signal integrity or power efficiency. Balancing these competing requirements has become increasingly difficult as data rates climb into the multi-gigabit range. A recent industry survey revealed that 68% of design engineers cite ESD protection integration as a significant challenge in high-speed interface design. This complexity is driving demand for application-specific diode arrays and integrated protection solutions, though these often carry higher price tags that impact project budgets.
The market is highly fragmented, with a mix of global and regional players competing for market share. To Learn More About the Global Trends Impacting the Future of Top 10 Companies https://semiconductorinsight.com/download-sample-report/?product_id=88022
FREQUENTLY ASKED QUESTIONS:
What is the current market size of Global Multi Purpose Diodes for ESD Protection Market?
Which key companies operate in this market?
What are the key growth drivers?
Which region dominates the market?
What are the emerging trends?
Related Reports:
https://semiconductorblogs21.blogspot.com/2025/07/global-market-for-gas-scrubbers-for.htmlhttps://semiconductorblogs21.blogspot.com/2025/07/transistor-outline-to-package-market.htmlhttps://semiconductorblogs21.blogspot.com/2025/07/force-sensing-capacitor-market-size.htmlhttps://semiconductorblogs21.blogspot.com/2025/07/video-adapter-market-opportunities.htmlhttps://semiconductorblogs21.blogspot.com/2025/07/storage-adapters-market-segmentation.htmlhttps://semiconductorblogs21.blogspot.com/2025/07/emi-suppression-filters-market.htmlhttps://semiconductorblogs21.blogspot.com/2025/07/cpu-embedded-wireless-lan-market-demand_8.html
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Robots' Body --- Why Does the Mechanical Arm "Malfunction"? The Invisible Pit of Electromagnetic Interference, and Leiditech's Solution to Fix It!
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High-speed robotic operations generate heat that risks controller crashes. Leiditech’s solution integrates:
l Intelligent temperature-controlled fan drives with real-time speed adjustment, reducing noise by 30% and energy consumption by 20%.
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Flickering LEDs cause operational errors. Leiditech’s design ensures:
l A low-power drive circuit paired with the SM5819WS diode to stabilize display signals and reduce power waste.
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Delayed or muffled alarms waste critical response time. Leiditech’s solution delivers:
l An optimized PWM-driven circuit with the SM5819WS diode, enabling 0.1-second alarm response.
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Industrial EMI often causes RS485 packet loss. Leiditech’s dual-protection design includes:
l The PCI0420T-142-N common-mode choke to suppress differential-mode noise.
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Gigabit Ethernet stability is critical for robotic control. Leiditech’s solution features:
l The 3R090–5S gas discharge tube (≤2pF capacitance) for surge protection, ensuring gigabit compatibility.
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Static discharge during UART hot-plugging risks MCU failure. Leiditech’s protection includes:
l 3.3V lines: ESDA33CP30 (22kV contact/25kV air discharge, 12pF capacitance).
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Core Value: Precision Engineering
With 15 years of industrial EMC expertise, Leiditech optimizes component selection and circuit design to minimize faults, extend service life, and boost operational efficiency. From thermal management to communication, every module is engineered for rugged EMI resilience.
Leiditech Electronics is committed to becoming a leading brand in electromagnetic compatibility (EMC) solutions and component supply. We offer a wide range of products, including ESD, TVS, TSS, GDT, MOV, MOSFET, Zener diodes, and inductors. With an experienced R&D team, we provide personalized customization services to deliver the highest quality EMC solutions tailored to our customers’ needs.
#Leiditech #RoboticAutomation #EMCsolutions #IndustrialElectronics #ESDProtection #FactoryAutomation #MechanicalArm #EngineeringInnovation #RS485 #EthernetStability #ElectromagneticInterference #SmartManufacturing #TechBlog #IndustrialSolutions
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kvin2dson · 11 months ago
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https://www.futureelectronics.com/p/electromechanical--circuit-protection--esd-protection/srda05-4-tbt-semtech-1727932
Electrostatic discharge protection, ESD protection diode, ESD protection circuit
SRDA Series 20 V 8 pF SMT RailClamp® Low Capacitance TVS Diode Array - SOIC-8
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bhoyarankita1510 · 1 year ago
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electronalytics · 1 year ago
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Robot's Nose- Electrochemical Gas Sensor ESD and Surge Protection Solution
Electrochemical gas sensors are devices that measure gas concentration by detecting the current signal generated from oxidation or reduction reactions of target gases on the electrode surface. They play a crucial role in industrial safety, environmental monitoring, indoor air quality assessment, and portable gas detection equipment.
Core Principle
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Leiditech’s ESD and Surge Protection Guidelines for Electrochemical Sensor Circuits
1. Sensor Interfaces (WE/CE/RE)
A low-capacitance ESD device (Leiditech SD05C) is connected in parallel. Its bidirectional protection characteristic is compatible with the signal range of the three electrodes, and its low capacitance of 11pF minimizes attenuation of nanoampere-level weak current signals. It ensures that under IEC 61000–4–2 Level 4 tests (±8kV contact discharge, ±15kV air discharge), the clamping voltage remains within 13V, which is lower than the power supply voltage withstand limit of the downstream ADA4505–2 operational amplifier.
2. Potentiostatic Control Module and Transimpedance Amplifier
It is recommended to connect an ESDA05CC (SOD-523 package) in parallel across the feedback network (100kΩ resistor) of the transimpedance amplifier. Its 39pF capacitance matches the circuit’s capacitive reactance characteristics, and its 20A current handling capacity copes with sudden surges, protecting the high-impedance feedback node from ESD breakdown.
3. Signal Output and MCU Interfaces
l On the path where the sensor signal, after amplification, is transmitted to the MCU (e.g., AIN1± pin of AD7798), an RC filter network (1kΩ+100pF) is connected in series. The cutoff frequency of 1.6MHz is compatible with the sensor’s signal bandwidth (≤10Hz). Meanwhile, an ESDA33CP30 (3.3V) or SMDA05CCN (5V) is connected in parallel, both meeting IEC 61000–4–2 Level 4 protection requirements.
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4. Power Module
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For 3.3V VCC: Leiditech uses ESD0321CW (DFN0603 package, 30pF capacitance, 21A discharge current).
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Leiditech Electronics is committed to becoming a leading brand in electromagnetic compatibility (EMC) solutions and component supply. We offer a wide range of products, including ESD, TVS, TSS, GDT, MOV, MOSFET, Zener diodes, and inductors. With an experienced R&D team, we provide personalized customization services to deliver the highest quality EMC solutions tailored to our customers’ needs.
If you’d like to learn more or have any questions, don’t hesitate to reach out:
Visit us at [en.leiditech.com]
#GasSensorProtection #ElectrochemicalSensors #ESDProtection #SurgeProtection #Leiditech #CircuitDesign #IndustrialSafety #EMCsolutions #TechBlog #SensorDesign #IoTDesign #SmartSensors #EmbeddedEngineering #PCBDesignTips
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lanshengic · 2 years ago
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Diodes Incorporated Introduces Space-Saving TVS with Superior ESD and Surge Protection for High-Speed I/O
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【Lansheng Technology Information】On April 6, 2023, Diodes announced the launch of a new bidirectional transient voltage suppressor diode (TVS) to meet the market's demand for robust protection of high-speed data ports. The D3V3Z1BD2CSP is designed to meet protection against electrostatic discharge (ESD) shock and surge events. Primary applications for this product are high-performance computing hardware, I/O ports for smartphones, laptops and tablets, monitors, and game consoles.
While many competing products have to make a design compromise between strong surge protection features or low input capacitance, the D3V3Z1BD2CSP can provide both. Its extremely low capacitance value (0.3pF typical) does not interfere or prevent high-speed data communications, thus ensuring that signal integrity is maintained. Its high peak pulse current (10.5A typical) and low clamping voltage (5.3V) protect I/O ports and their sensitive electronic components from transient voltages. The risk of electrical overload damage caused by activities such as frequent hot swapping is thus avoided. The D3V3Z1BD2CSP complies with the IEC61000-4-2 immunity standard and provides robust ESD protection against ±20kV air and contact discharge, thereby increasing system reliability.
The D3V3Z1BD2CSP can be used to protect I/O interfaces such as USB Type-C®, DisplayPort™, HDMI™, and SD cards, carrying high-speed data transfer rates up to 20Gbps. The -55°C to +150°C operating temperature range ensures continuous protection in challenging product application environments.
Diodes' D3V3Z1BD2CSP TVS is packaged in an extremely compact DSN0603 wafer-level chip size package measuring only 0.6mm x 0.3mm x 0.3mm.
Lansheng Technology Limited, which is a spot stock distributor of many well-known brands, we have price advantage of the first-hand spot channel, and have technical supports. 
Our main brands: STMicroelectronics, Toshiba, Microchip, Vishay, Marvell, ON Semiconductor, AOS, DIODES, Murata, Samsung, Hyundai/Hynix, Xilinx, Micron, Infinone, Texas Instruments, ADI, Maxim Integrated, NXP, etc
To learn more about our products, services, and capabilities, please visit our website at http://www.lanshengic.com
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dena2crry · 2 years ago
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Circuit Protection Devices, ESD protection circuit, ESD protection equipment
USBLC6 Series 4 Channel 5.25 V SMT Uni-Directional Auto ESD Protection - SOT-23-6
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jnic2nssn · 2 years ago
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Diode arrays, ESD protection arrays, Diode circuit, Circuit Breakers
PGB1 Series 150 V 0.06 pF Bi-Directional 0402 SMT PulseGuard® ESD Suppressor
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