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Attenuators Market to Grow by USD 434.7 Million (2024-2028) as Demand for Wave Protection in Marine Environments Increases; AI-Powered Market Evolution Report – Technavio

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NEW YORK, Oct. 30, 2024 /PRNewswire/ — Report on how AI is driving market transformation – The global attenuators market size is estimated to grow by USD 434.7 million from 2024-2028, according to Technavio. The market is estimated to grow at a CAGR of 6.4% during the forecast period. Need for protection against wave action in marine environments is driving market growth, with a trend towards expanding innovation in material technology. However, uncertainty in producing accurate measurements poses a challenge.Key market players include Amphenol Corp., Analog Devices Inc., Bird, Eravant, HUBER SUHNER AG, HYPERLABS INC., Infinite Electronics International, Inc., JFW Industries Inc, MECA Electronics Inc, Narda MITEQ, Qorvo Inc., Renesas Electronics Corp., RF Industries Ltd., RF Lambda, Roho Connector Ltd, Scientific Components Corp, Smiths Interconnect Group Ltd, Spectrum Control Ltd, TTM Technologies Inc., and Valtir LLC.

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Forecast period

2024-2028

Base Year

2023

Historic Data

2018 – 2022

Segment Covered

Type (Fixed attenuators and Variable attenuators), Application (Telecommunications, Broad casting, Data centers, Automotive, and Others), and Geography (APAC, North America, Europe, South America, and Middle East and Africa)

Region Covered

APAC, North America, Europe, South America, and Middle East and Africa

Key companies profiled

Amphenol Corp., Analog Devices Inc., Bird, Eravant, HUBER SUHNER AG, HYPERLABS INC., Infinite Electronics International, Inc., JFW Industries Inc, MECA Electronics Inc, Narda MITEQ, Qorvo Inc., Renesas Electronics Corp., RF Industries Ltd., RF Lambda, Roho Connector Ltd, Scientific Components Corp, Smiths Interconnect Group Ltd, Spectrum Control Ltd, TTM Technologies Inc., and Valtir LLC

Key Market Trends Fueling Growth

The global attenuators market is experiencing significant growth due to advancements in material technology, specifically in the development of terahertz attenuators. Traditional attenuators have faced challenges in achieving effective performance in the terahertz band. However, recent innovations, such as the use of aerogels made from cellulose and conducting polymer PEDOT:PSS, are revolutionizing the industry. These aerogels offer unique benefits, including the ability to switch between conducting and insulating states, enabling precise control over THz signal transmission. This capability results in a substantial increase in performance, with modulation ranging from 2% to 90%. The reversible nature of this process makes aerogel attenuators highly adaptable for various applications. The use of biocompatible and durable PEDOT:PSS, combined with the renewable and cost-effective cellulose, enhances the sustainability of these materials. The aqueous fabrication process simplifies production and supports large-scale manufacturing. As the demand for high-performance attenuators in advanced communication systems continues to rise, the integration of innovative materials like conducting polymer-cellulose aerogels is poised to redefine industry standards, aligning with broader sustainability goals and driving the growth of the global attenuators market. 

The Attenuators Market is experiencing significant growth due to increasing trends in Data Centers, Data Transmission, and Network Communication. With the rise of Cloud Computing and IoT, the need for maintaining Signal Integrity in Wireless Infrastructure and 5G Technology is crucial. Attenuators, as passive devices, play a vital role in reducing signal power and ensuring Quality of Service (QoS) in various applications. Single-channel and Multi-channel Jitter Attenuators find extensive use in Telecommunications and Data Center Applications. Digital Attenuators, using Voltage Divider Network and Semiconductor Devices, offer precise amplitude reduction. The Telecommunication Industry’s shift towards 5G, LTE Networks, and IoT applications necessitates advanced solutions like Active Attenuators, Variable Attenuators, and Power Wattage management. Attenuators find applications in Military Applications, Consumer Electronics, and Test and Measurement equipment. High Bandwidth Technologies, Smart Grid Technology, and Time-sensitive Smart Meters require precise attenuation for Financial Security and Digital Transformation. Attenuators are essential components in various industries, including Telecommunications, Automotive (Autonomous and Connected Cars), and Supply Chain. 

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Market Challenges

The global attenuators market encounters challenges in obtaining accurate measurements, especially with direct reading attenuators. These instruments are vital in test labs and production settings for precise attenuation settings in component and system characterizations. However, the reliability of these measurements can be affected by the non-linearity issues of power sensing devices, such as power sensors and detectors. This concern results in the need for consistent power exposure levels to ensure measurement accuracy. To achieve this, a precise attenuation value is necessary. The standard method involves using direct reading attenuators to establish the desired attenuation level, enabling accurate gain or loss readings. However, the accuracy of these readings for the Device Under Test (DUT) depends on the precision of the attenuation readings. Discrepancies in attenuator accuracy can lead to significant measurement errors. Furthermore, applications like bit error rate testing in communication systems and sensitivity assessments in radar systems necessitate extremely high accuracy and attenuation levels, often surpassing 120 dB. This demand adds complexity, as a flat attenuation response across the entire waveguide operating bandwidth is crucial for reliable performance in broadband components and subsystems. The uncertainties in producing accurate measurements may hinder the growth of the global attenuators market during the forecast period.The Attenuators Market encompasses passive devices designed for signal power reduction in various industries. Digital Attenuators, a modern solution, offer precise amplitude reduction for applications like Test and Measurement and Communication Equipment. Maximum Rated Attenuation varies for Semiconductor Devices and Driver Circuitry, including Transistor-Transistor Logic (TTL). Challenges include meeting the power wattage requirements for Military Applications and Consumer Electronics, as well as the demands of High Bandwidth Technologies in the Telecommunication Industry, such as LTE Network and 5G. Active Attenuators and Variable Attenuators cater to different use cases. Vibration Dampers and Machine Learning Algorithms ensure optimal performance. Financial Security, Digital Transformation, Supply Chain, and emerging technologies like 5G, Autonomous Cars, Connected Cars, Silicon-based Timing Devices, Data Centers, and Smart Grid Technology also present significant opportunities.

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Segment Overview 

This attenuators market report extensively covers market segmentation by

Type1.1 Fixed attenuators1.2 Variable attenuatorsApplication2.1 Telecommunications2.2 Broad casting2.3 Data centers2.4 Automotive2.5 OthersGeography3.1 APAC3.2 North America3.3 Europe3.4 South America3.5 Middle East and Africa

1.1 Fixed attenuators- Fixed attenuators are essential devices in signal management, providing consistent attenuation across various applications. These devices reduce signal amplitude by a fixed amount, typically measured in decibels (dB), using a fixed resistance network to dissipate excess power as heat. The market for fixed attenuators includes various types, such as standard, cryogenic, space-grade, superconducting, and microwave models. Manufacturers rigorously test these devices in thermal vacuum chambers and radiation testing facilities to ensure reliability under extreme conditions. The use of high-reliability materials is crucial to resist degradation from radiation and temperature variations. The growing demand for advanced communication systems and space exploration technologies is driving the expansion of the fixed attenuators segment and the global attenuators market. Innovations in materials and design continue to enhance their performance and reliability.

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Research Analysis

The Attenuators Market encompasses a range of passive devices used to reduce signal power while maintaining signal integrity in various applications, including Data Centers, Data Transmission, Network Communication, Cloud Computing, Internet of Things (IoT), Wireless Infrastructure, and 5G Technology. Attenuators are essential in managing QoS (Quality of Service) and mitigating jitter in these systems. They come in different types, such as Single-channel Jitter Attenuators, Multi-channel Jitter Attenuators, Digital Attenuators, and Passive Devices like Voltage Divider Networks. Semiconductor devices, Driver Circuitry, CMOS Logic, and Transistor-Transistor Logic (TTL) are commonly used in attenuator designs. Maximum Rated Attenuation and Amplitude Reduction are critical specifications for these components. Test and Measurement equipment and Communication Equipment industries, Telecommunications, and Silicon-based Timing Devices also rely on attenuators for signal management.

Market Research Overview

The Attenuators Market encompasses a range of passive devices used to reduce signal power, primarily in data centers, data transmission, and network communication applications. These devices ensure signal integrity and improve Quality of Service (QoS) in various industries, including telecommunications, cloud computing, IoT, wireless infrastructure, and 5G technology. Attenuators come in different types such as single-channel and multi-channel jitter attenuators, digital attenuators, and active or variable attenuators. They are used in data center applications, test and measurement equipment, communication equipment, and military applications. Semiconductor devices, driver circuitry, and voltage divider networks are essential components of these attenuators. With the advent of high bandwidth technologies like 5G, LTE networks, and the Internet of Things (IoT), the demand for attenuators is increasing in various sectors like consumer electronics, autonomous cars, and connected cars. Silicon-based timing devices, smart grid technology, time-sensitive smart meters, financial security, digital transformation, and supply chain are other potential applications. Vibration dampers and machine learning algorithms are also being integrated into attenuators to improve their performance. In summary, the Attenuators Market is a significant and growing sector, driven by the increasing demand for reliable and high-performance signal transmission in various industries.

Table of Contents:

1 Executive Summary
2 Market Landscape
3 Market Sizing
4 Historic Market Size
5 Five Forces Analysis
6 Market Segmentation

Type Fixed AttenuatorsVariable AttenuatorsApplication TelecommunicationsBroad CastingData CentersAutomotiveOthersGeography APACNorth AmericaEuropeSouth AmericaMiddle East And Africa

7 Customer Landscape
8 Geographic Landscape
9 Drivers, Challenges, and Trends
10 Company Landscape
11 Company Analysis
12 Appendix

About Technavio

Technavio is a leading global technology research and advisory company. Their research and analysis focuses on emerging market trends and provides actionable insights to help businesses identify market opportunities and develop effective strategies to optimize their market positions.

With over 500 specialized analysts, Technavio’s report library consists of more than 17,000 reports and counting, covering 800 technologies, spanning across 50 countries. Their client base consists of enterprises of all sizes, including more than 100 Fortune 500 companies. This growing client base relies on Technavio’s comprehensive coverage, extensive research, and actionable market insights to identify opportunities in existing and potential markets and assess their competitive positions within changing market scenarios.

Contacts

Technavio Research
Jesse Maida
Media & Marketing Executive
US: +1 844 364 1100
UK: +44 203 893 3200
Email: media@technavio.com
Website: www.technavio.com/

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SOURCE Technavio

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FranklinWH Joins Efficiency Maine to Help Homeowners to Earn up to $600 Annually From Home Batteries

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Efficiency Maine Small Battery Program taps residential storage to support grid during peak demand

SAN JOSE, Calif., April 23, 2026 /PRNewswire/ — FranklinWH, a leading provider of whole-home energy management and storage systems, announced today it is participating in the Efficiency Maine Small Battery Program, allowing Maine homeowners to earn up to $600 per battery each year by supplying stored energy to the grid during peak demand periods.

The program reflects a growing use of residential energy storage systems as both backup power sources and grid resources that can generate income while helping stabilize electricity supply.

Homeowners who enroll can allow their systems to discharge energy during peak demand events, typically on weekday evenings, in exchange for annual payments.

“I work from home, so losing power really isn’t an option,” said Brian Duggan, a Maine homeowner who has used the system for four months. “There have been several community-wide outages since we installed our system, and we didn’t even notice. Our power stayed on.” Duggan said the system is a maintenance-free alternative to a generator, pairs with electric vehicle charging, and helps protect his home during winter travel.

“This is where the economics of home energy storage are heading,” said Gary Lam, CEO of FranklinWH. “Homeowners are no longer only consumers of electricity; they’re becoming active participants in the energy system. Programs such as this allow them to receive payments while strengthening the grid in their communities.”

Maine’s virtual power plant (VPP) program is administered by Efficiency Maine, which compensates homeowners for the energy their systems send back to the grid during peak events, creating a new revenue stream tied to system participation.

Efficiency Maine may call up to 60 events per year, typically lasting three hours during peak demand windows. Homeowners receive advance notice through the FranklinWH App and can opt out of individual events or unenroll at any time. During events, a reserve level is maintained to ensure power remains available for household needs.

As utilities and policymakers look for new ways to manage rising demand and grid volatility, VPP programs are expected to expand, positioning distributed home energy systems as a critical part of the solution.

About FranklinWH

FranklinWH Energy Storage is the manufacturer of the FranklinWH System, a next-generation home energy management and storage solution. Headquartered in the San Francisco Bay Area, FranklinWH’s team brings decades of experience across energy system design, manufacturing, sales, and installation. The company is AVL-listed with multiple financial institutions and continues to empower homeowners to achieve true energy freedom. Learn more at franklinwh.com.

Media Contact:
Media@franklinwh.com

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SOURCE FranklinWH Energy Storage Inc.

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Marelli highlights vehicle dynamics technologies as a competitive advantage, elevating safety, comfort and performance, at Auto China 2026

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The company will introduce new advanced suspension solutions such as the new Active Camber and the Electromechanical Lifter, enabling real-time control of wheel angle and vehicle heightAlso in the spotlight, the Hybrid Electromechanical Suspensions, a new architecture combining full-active actuator technology and best-in-class semi-active dampers to deliver a high-end driving experience while maintaining cost efficiency.

SAITAMA, Japan, April 23, 2026 /PRNewswire/ — At Auto China 2026 in Beijing (April 24-May 3), Marelli, a global technology partner to the automotive industry, will highlight how vehicle dynamics and advanced suspension technologies are becoming increasingly central to vehicle safety, performance, user experience, comfort and brand differentiation, also supporting the evolution toward Software-Defined Vehicles.
In this perspective, at booth n. W2B08 in Hall W2 in the New China International Exhibition Center (NCIEC), as a relevant part of its wider portfolio of solutions for different vehicle domains, the company will showcase its latest suspension and chassis innovations, suchas the new Active Camber, the Electromechanical Lifter and the Hybrid Electromechanical suspensions.

Enabled by software control and advanced electromechanical actuators, active suspension systems play a key role in determining vehicles behavior under different driving conditions, with a direct impact on overall user experience, vehicle agility and safety.

“The importance of vehicle dynamics technology spans all propulsion systems, giving automakers a decisive tool to drive vehicle distinctiveness while offering end users a wide range of personalization options.” stated Piero Monchiero, Advanced Innovation VP of Marelli’s Ride Dynamics business. “This is particularly evident in China, where customer expectations for vehicle dynamics and ride comfort continue to rise.”

Active Camber: optimal tire contact with the road to increase drivability and safety
The first relevant innovation is the Active Camber system, designed to enhance vehicle stability by correcting wheel camber in real time, improving vehicle performance and safety while delivering a more comfortable experience.

Camber is the inward or outward tilt of a wheel when viewed from the front of the vehicle. Proper camber ensures optimal tire contact with the road, improving grip for better stability, braking and acceleration, while also supporting more uniform tire wear.

The new solution presented in Beijing features an electronically controlled smart actuator with integrated sensors that continuously monitor the road surface. An intelligent control unit processes data every millisecond and automatically adjusts wheel angles in real time, adapting to driving conditions. This reduces body movement and increases grip, resulting in more precise handling and safer cornering. The solution provides a smoother experience in different conditions and contributes to extend tire life through a more even wear.

Electromechanical Lifter, smartly adapting vehicle height
Another innovation within Marelli’s suspension showcase in Beijing will be the Electromechanical Lifter, a fully electromechanical device integrated into the shock absorber that adjusts vehicle height in some specific situations. The system uses a smart actuator to deliver automatic leveling functionality, maintaining vehicle balance across varying conditions. The solution is suitable in particular for vehicle segments like sport and performance cars and sporty SUVs, addressing different use cases. Regarding sport and performance cars, it can lift the vehicle to manage garage ramps, speed bumps or snowy roads. On sporty SUVs, this technology can adjust the vehicle setup within a certain level of speed, in order to improve aerodynamics by minimizing drag. The system also facilitates easier vehicle entry and exit. The solution is oil-free, lightweight and ensures easy integration for carmakers.

New active electromechanical suspension solutions to elevate onboard experience
Designed to drive affordable innovation, the new Hybrid Electromechanical Suspension is a new suspension architecture that combines full-active actuator technology and best-in-class semi-active dampers to deliver a high-end driving experience while maintaining cost efficiency. Controlled by an Electronic Control Unit, the system integrates full-active electromechanical actuators applied to the front suspension, which provide optimal damping or self-generate reactive forces to minimize roll, pitch, yaw and vibration. These are paired with semi-active rear shock absorbers and optimize vertical dynamic response. The result is smoother driving, improved stability and enhanced safety in a variety of conditions.

This system draws from the experience of the Fully Active Electromechanical Suspension, which will also be on display at Marelli’s booth in Beijing. This oil-free solution uses four electronically controlled actuators which modulate each wheel’s suspension and damping parameters in real time, actively defining the best behavior of each vehicle’s suspension, for optimal handling and ride comfort balance. Data is processed in milliseconds to determine, through a smart algorithm, the actions required to adapt to road irregularities and driving situations, providing a “magic carpet” experience for vehicle occupants.

By enhancing stability and comfort, these two active electromechanical suspension solutions help reduce motion sickness, especially during activities like reading or using a laptop, which are expected to become more common with the rise of autonomous driving. They are also designed to recover kinetic energy, ensuring up to 80% energy efficiency compared to passive or semi-active systems.

Marelli’s booth at the Beijing Auto Show will be themed “Rooted in innovation, everywhere”, which illustrates the company’s ‘distributed’ model for high-speed innovation, to support customers wherever they need, with localized design, development, sourcing and manufacturing in China and across different regions. This approach combines local expertise and global reach to deliver affordable, scalable solutions at speed, that accelerate customers’ time-to-market. The company showcase will feature innovative solutions in several technology domains, including automotive lighting, electronics, interiors, propulsion, thermal systems, alongside a comprehensive portfolio of advanced suspension innovations.

About Marelli
Marelli is a global mobility technology supplier to the automotive sector. With a strong and established track record in innovation and manufacturing excellence, our mission is to transform the future of mobility through working with customers and partners to create a safer, greener, and better-connected world. With around 40,000 employees worldwide, the Marelli footprint includes over 150 sites globally.

Photo – https://mma.prnewswire.com/media/2964531/Marelli_Photo_1.jpg
Photo – https://mma.prnewswire.com/media/2964532/Marelli_Photo_2.jpg

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SOURCE Marelli

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Oklahoma City Turns to ASAP Service to Speed Emergency Response

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Oklahoma City Police Department 911 Communications announced that it has gone live with ASAP Service, a standards-based solution developed by The Monitoring Association (TMA).

OKLAHOMA CITY, April 23, 2026 /PRNewswire-PRWeb/ —  Oklahoma City Police Department 911 Communications announced that it has gone live with ASAP Service, a standards-based solution developed by The Monitoring Association (TMA). ASAP Service automatically and digitally delivers prioritized alarm notifications to the computer-aided dispatch (CAD) systems used by emergency communications centers (ECCs) across the country. The expected results of this initiative are faster, better-informed emergency response, fewer communication errors, improved data accuracy, and reduced stress for citizens and 911 telecommunicators.

“Once ASAP Service is integrated with our CAD system, we no longer will need to dedicate a telecommunicator to monitoring the web portal,” said Katherine Underwood, the agency’s management specialist.

The first phase of the initiative deployed the solution through ASAP View, a web-based portal that reduced the city’s implementation timeline by roughly 50 percent. “Once we had the opportunity to review our call volume and processes, the value of having all the information upfront was clear,” said Katherine Underwood, the agency’s management specialist. “We moved forward with View because it was easy to implement and use, and we believe it will reduce call handling times and overall call volume. Ultimately, the benefits outweighed the manual effort, since we would have had to build those calls either way.”

However, to realize the full potential of ASAP Service — for example, address pre-verification — the city plans to integrate ASAP with its CAD system as part of phase two. CentralSquare, the agency’s CAD-system vendor, is developing an application programming interface (API) for this purpose. The API will connect to the GovCloud-hosted version of ASAP, delivering scalability, reliability, and superior data security, as well as compliance with the Criminal Justice Information System (CJIS) security standards for handling criminal-justice information.

“Once ASAP Service is integrated with our CAD system, we no longer will need to dedicate a telecommunicator to monitoring the web portal,” Underwood said.

The agency’s ECC serves about 702,000 residents and provides 911 call-taking and dispatch services for law-enforcement, fire/rescue and emergency-medical incidents. In 2025, the center received 1.48 million calls for service, plus nearly 40,000 residential and business alarm notifications, the vast majority of which pertained to law-enforcement incidents.

Regarding alarm notifications, multiple voice calls typically are needed between 911 telecommunicators and alarm-monitoring-center personnel to verify the information needed to effectively dispatch emergency response. It is a time-consuming process — industry estimates indicate that it adds from two to eight minutes to response times, an eternity when lives and property are at risk. Because telecommunicators need to type the captured information into their CAD systems, the process also is prone to miscommunications, misinterpretations, and transcription errors.

ASAP Service is architected to resolve these issues. It was developed by TMA in collaboration with the Association of Public-Safety Communications Officials (APCO). The solution is built on two TMA-developed standards, the Automated Secure Alarm Protocol (ASAP) and the Alarm Verification Scoring Standard (AVS-01). Both are accredited by the American National Standards Institute (ANSI).

Of all the benefits that ASAP Service will provide, the one that resonates most with Underwood is the anticipated dramatic decrease in call volume for the center’s telecommunicators. Fewer calls mean telecommunicators will be free to focus on higher-priority incidents that require their unique skills and experience. They’ll also have more time to decompress between calls. “They’ll have time to breathe, which will reduce their stress,” Underwood said.

Further, Underwood predicted that citizens requiring emergency assistance will encounter fewer instances of being placed in queue and will experience shorter hold times when they are. “Our residents no longer will be competing with alarm companies to talk with one of us,” she said. “There’s nothing more frustrating than dialing 911 and getting the ‘all lines are busy, please hold and don’t hang up’ message when your house is burning down.”

As of go-live, the following alarm-monitoring companies are transmitting alarm notifications via ASAP Service to Oklahoma City Police Departments 911 Communications: Quick Response, CPI, Alert 360, Affiliated Monitoring, JCI, United Central Control, Allstate Security, Security Central, Rapid Response Monitoring, Everon/Protection One, Vector Security, Vivint, Guardian Protection, and Becklar.

Learn more about how TMA’s ASAP Service is saving lives every day nationwide at asap911.org.

About The Monitoring Association

The Monitoring Association (TMA), formerly the Central Station Alarm Association (CSAA), is an internationally recognized nonprofit trade association that represents professional monitoring companies, security systems integrators, and providers of products and services to the industry. Incorporated in 1950, TMA represents its members before Congress and regulatory agencies on the local, state and federal levels, and other authorities having jurisdiction (AHJ) over the industry. Learn more online at https://tma.us/about-tma/.

About TMA’s ASAP Service

Launched in 2011 as a public-private partnership, TMA’s Automated Secure Alarm Protocol (ASAP) Service enables direct electronic dispatch of emergency calls for service from alarm companies to emergency communications centers. Increasing the accuracy and efficiency of dispatches, ASAP Service utilizes American National Standards Institute (ANSI)-accredited protocols developed cooperatively by TMA and the Association of Public-Safety Communications Officials (APCO).

Media Contact

Julie Howerter, ASAP Service, 1 815-501-5832, rscarpino@pipitone.com, https://asap911.org/

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SOURCE ASAP Service

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