In less than two weeks, EFFECT Photonics will be exhibiting at the Optical Networking and…
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In less than two weeks, EFFECT Photonics will be exhibiting at the Optical Networking and…
In less than two weeks, EFFECT Photonics will be exhibiting at the Optical Networking and Communication Conference & Exhibition in Los Angeles, US. OFC is the largest optical communications conference in the world. Itโs a conference you cannot afford to miss! Think OFC is just about fibre optics? Think again! OFC has in-depth coverage of photonic integrated circuits, optical networking, free-space optical communications, quantum optics, and more.
Interested in what EFFECT Photonics is working on right now? You can find us at booth #1328!
Tags: Integrated Photonics, Photonics
– Lightwave
Tunable SFP+ modules powered by photonics System-on-Chip (SoC) technology successfully tested on live Dutch network…
Tunable SFP+ modules powered by photonics System-on-Chip (SoC) technology successfully tested on live Dutch network for increased capacity, network efficiency and maintenance cost savings.
VodafoneZiggo, the second largest mobile telecommunications company in the Netherlands, has teamed up withย EFFECT Photonicsย to bring 5G connectivity to its existing mobile networks utilizing photonic system-on-chips (SoCs).ย EFFECT Photonicsโ SoC technology and tunable SFP+ modules, first tested in theย 5G Hub in the High Tech Campus at Eindhovenย and now in the field on a live VodafoneZiggo network, represent a significant transformation of mobile access networks.ย
The successful results of both trials demonstrate how photonics can be utilized to improve network performance, capacity and efficiency, while requiring significantly less energy.ย For the past 30 years, telecommunications networks and equipment have been based on traditional electronic and fiber optics hardware. While electronics technology has undergone many developments over the decades, integrated photonics are best suited for 5G networks and beyond in order to meet the insatiable demand for data, network capacity and lower network latency. As photonic SoCs transmit and process data based on light signals, they significantly improve the performance of mobile networks, while requiring less energy.ย
The successful tests conducted in the field by VodafoneZiggo are a significant milestone and have confirmed the maturity and benefits ofย EFFECT Photonics Tunable SFP+ย andย NarroWave technologyย that can be expected in terms of cost savings, performance improvements and network service quality. VodafoneZiggo is the first telecom provider in the Netherlands to test this technology in a live network.ย The telecom link involved, services a 10 Gbps 40km backhaul DWDM connection between the cities of Breda and Etten-Leur, located in the southwest of the Netherlands.ย
Using EFFECT Photonicsโ tunable SFP+ modules in DWDM networks can have an enormous impact in ease of deployment and saving costs. During the setup and installation of the technology, we immediately noticed that the NarroWave automatic tuning feature is a game-changer for upgrading networks in a timely and efficient manner. If we multiply this time-saving with the number of lanes per DWDM link and the number of links used in the Netherlands, the technology choice becomes simple
Jan-Willem Winters, Technical Manager, VodafoneZiggo.
We are delighted to partner with VodafoneZiggo to help bring 5G connectivity to the Netherlands. The recent successful testing of EFFECT Photonicsโ SoC on a live mobile network further demonstrates the benefits that can be achieved with photonics technology and how easily and cost-effectively network capacity can be upgraded.
Joost Verberk, Director of Product Management at EFFECT Photonics.
EFFECT Photonics SFP+ Modules and NarroWave Technologyย Based on Indium Phosphide technology, the EFFECT Photonicsย 10 Gbps Narrow Tunable SFP+ Transceiver Moduleย leverages the companyโs unique Photonics Integrated Circuit (PIC) technology. It features EFFECT Photonics NarroWave technology, which allows operators to set up, monitor and control remote SFP+ modules from the central office, without making any hardware or software changes in the field.ย
VodafoneZiggoย is a leading Dutch company that provides fixed, mobile and integrated communication and entertainment services to consumers and business. As of March 31, 2022, we have over 5 million mobile, over 3 million video and fixed broadband internet and approximately 2 million fixed telephony subscribers. Approximately 7,000 people are employed by VodafoneZiggo. The Vodafone Ziggo offices are located in Utrecht, Amsterdam, Maastricht, Hilversum, Leeuwarden, Groningen, Nijmegen, Helmond and Rotterdam.ย www.vodafoneziggo.nl
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Eindhoven, The Netherlands EFFECT Photonics, a leading developer of highly integrated optical solutions, has secured…
EFFECT Photonics, a leading developer of highly integrated optical solutions, has secured an additional $40 million in funding from a group of investors led by Invest-NL ย and Innovation Industries, along with other existing investors.
The new investment enables the company to accelerate product development and fuel go-to-market initiatives, specifically those related to its integrated coherent optical product portfolio and solutions that meet the industry need for disaggregation of the key components for the growing needs of coherent optical interfaces.
Weโre thankful to Invest-NL, Innovation Industries, and our other existing investors for their continued support and confidence in EFFECT Photonics mission and products. This investment positions us well to advance our portfolio of integrated optic solutions that will reshape the future of communications and positively disrupt the status quo.
Roberto Marcoccia, CEO, EFFECT Photonics
Invest-NLโs Deep Tech Fund is establishedย to support companies with innovative, complex technologies focusing on future societal challenges. Our investment in EFFECT Photonics is within that goal. We are very happy to support our existing deep tech portfolio company EFFECT Photonics, together with the other shareholders, for further growth. Management is well-focused on future developments and has positioned EFFECT Photonics as a tier-one business partner.
Gert-Jan Vaessen, Fund Manager Deep Tech Fund at Invest-NL
Innovation Industries is excited to offer our continued support of EFFECT Photonics. We are impressed by the companyโs plans for future growth and innovative product portfolio, which is forging new grounds in offering the lowest power per bit.
Nard Sintenie, Partner, Innovation Industries
Where Light Meets Digital โ EFFECT Photonics is a highly vertically integrated, independent optical systems company addressing the need for high-performance, affordable optic solutions driven by the ever-increasing demand for bandwidth and faster data transfer capabilities. Using our field-proven digital signal processing and forward error correction technologies and ultra-pure light sources, we offer compact form factor solutions with seamless integration, cost efficiency, low power, and security of supply. By leveraging established microelectronics ecosystems, we aim to make our products affordable and available in high volumes to address the challenges in 5G and beyond, access-ready coherent solutions, and cloud and cloud edge services. For more information, please visit: www.effectphotonics.com. Follow EFFECT Photonics on LinkedIn and Twitter.
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Media Contact:
Colleen Cronin
EFFECT Photonics
colleencronin@effectphotonics.com
As part of the Welsh Governmentโs efforts to ensure all residents have access to fast…
As part of the Welsh Governmentโs efforts to ensure all residents have access to fast and reliable digital infrastructure, EFFECT Photonics is assisting with the roll out of 5G Fixed Wireless Access (FWA) services in hard-to-reach areas in Wales. Led by Vodafone, the project seeks to deliver broadband connectivity to 422 households in Anglesey, an island off the northwest coast of Wales. This is the latest collaboration between EFFECT Photonics and Vodafone, with the two companies already working together to bring 5G connectivity in the Netherlands.
The project will be carried out over two phases during an 18-month period. It is supported by the governmentโs Local Broadband Fund (LBF) as well as the Isle of Anglesey County Council and North Wales Economic Ambition Board. In addition to EFFECT Photonics and Vodafone, Bangor Universityโs Digital Signal Processing (DSP) Centre for Excellence is a supplier along with others. EFFECT Photonics and Bangor University have also partnered on the DESTINI project, for the development of an algorithm which can be introduced into existing telecommunications networks to expedite 5G connectivity.
โPhotonics technology is an ideal solution for fixed wireless access due to its ability to provide increased bandwidth density with less energy consumption over significant distances,โ said Joost Verberk, Director of Product Management, EFFECT Photonics. “We look forward to collaborating with the Welsh government, along with Vodafone and Bangor University once again, to bring 5G broadband access to areas never seemed possible before.โ
Based on Indium Phosphide technology, the EFFECT Photonics 10 Gbps Narrow Tunable SFP+ Transceiver Module leverages the companyโs unique Photonics Integrated Circuit (PIC) technology. It features EFFECT Photonics NarroWave technology, which allows operators to set up, monitor and control remote SFP+ modules from the central office, without making any hardware or software changes in the field.
Tags: 5G, access networks, coherent, connectivity, cost-effective, DESTNI, DWDM, FWA, integration, NarroWave, network, Networks, photonic integration, Photonics, pluggable, reach, telecommunication, Transceiver, Tunable SFP+, Vodafone, Wales, Welsh, Welsh Government
– Link Magazine
EFFECT Photonics is a corporate member of the European Photonics Industry Consortium (EPIC), the industry…
EFFECT Photonics is a corporate member of the European Photonics Industry Consortium (EPIC), the industry association that promotes the sustainable development of organizations working in the field of photonics in Europe. EPIC fosters a vibrant photonics ecosystem by maintaining a strong network and acting as a catalyst and facilitator for technological and commercial advancement. EPIC publishes market and technology reports, organizes technical workshops and B2B roundtables, supports EU funding proposals, advocacy and lobbying, education and training activities, standards and roadmaps, pavilions at exhibitions. www.epic-assoc.com
Together with other members from the photonics related technologies, we at EFFECT Photonics are committed to actively contribute to the technological and commercial advancement of the integrated photonics industry globally. EFFECT Photonics delivers highly integrated optical communications products based on its Dense Wavelength Division Multiplexing (DWDM) optical System-on-Chip technology. The key enabling technology for DWDM systems is full monolithic integration of all photonic components within a single chip and being able to produce these in volume with high yield at low cost. With this capability, EFFECT Photonics is addressing the need for low cost DWDM solutions driven by the soaring demand for high bandwidth connections between datacenters and back from mobile cell towers. Headquartered in Eindhoven, The Netherlands, with additional R&D and manufacturing in South West UK, with sales partners worldwide. www.effectphotonics.com
This partnership is a significant addition to the already impressive member list of EPIC of more than 600 companies in 35 countries: https://www.epic-assoc.com/membership/epic-members/

EFFECT Photonics, a leading developer of high-performance dense wavelength division multiplexing (DWDM) optical components based…
EFFECT Photonics, a leading developer of high-performance dense wavelength division multiplexing (DWDM) optical components based on its optical System-on-Chip technology, collaborates with TU Delft researchers and 20 more partners to develop reliable and safe wireless broadband connections using light instead of radio waves.
Optical Wireless Superhighways: Free photons (at home and in space): FREE
Information is the lifeblood of todayโs digital society. The amount of data, and the use of that data, has increased exponentially over the last 50 years. However, traditional technologies used to distribute data, from Wi-Fi in our homes to satellite communications, have already reached or will soon be reaching their limit in terms of capacity. There is a growing need for a new and unifying paradigm for wireless connectivity. As part of the FREE consortium, 21 partners have joined forces to develop new solutions that use light instead of radio waves (which is what the 5G network is based on, for example) to create reliable and secure wireless broadband connections.
The consortium will develop the technology that ultimately may enable a โnetwork of networksโ, in which satellite communications are seamlessly integrated with ground-based networks to provide satellite-to-satellite Network Functions Virtualisation (NFV) and Software Defined Networking (SDN). This simplified integration between terrestrial and satellite networks will open up new opportunities for the Internet of Things (IOT), as well as for more accurate weather forecasting, for example. The consortium anticipates that the huge amount of available bandwidth, the inherent security, the limited latency and license-free operation will result in a 10- to 100-fold increase in wireless connectivity.
Prof. Dr. Henri Werij, Dean of the Faculty of Aerospace Engineering at TU Delft, explains in a video how this technology will allow to securely send and process digital data at high speeds, with low latency.
Programme leader: Prof. Dr. Eberhard Gill (TU Delft)
Consortium partners: Airbus DS, Aircision, Demcon, EFFECT Photonics, Flexible, Hyperion Technologies, ISIS, Lionix, NLR, Phix, Quix, Signify, Single Quantum, S&T, TU Delft, Eindhoven University of Technology, TNO, Leiden University, Twente University, Vrije Universiteit Amsterdam, VTEC
Article source: https://www.tudelft.nl/en/2021/tu-delft/tu-delft-and-partners-to-create-superhighway-for-digital-data
โ About EFFECT Photonics โ
EFFECT Photonics delivers highly integrated optical communications products based on its Dense Wavelength Division Multiplexing (DWDM) optical System-on-Chip technology. The key enabling technology for DWDM systems is full monolithic integration of all photonic components within a single chip and being able to produce these in volume with high yield at low cost. With this capability, EFFECT Photonics is addressing the need for low cost DWDM solutions driven by the soaring demand for high bandwidth connections between datacenters and back from mobile cell towers. Headquartered in Eindhoven, The Netherlands, with additional R&D and manufacturing in South West UK, with sales partners worldwide. www.effectphotonics.com

Data usage and, thus, data traffic over the mobile and fibre networks is growing exponentially…
Data usage and, thus, data traffic over the mobile and fibre networks is growing exponentially every year. While the currently used optical transmission solutions are reaching their limits, a new technology is ready to be implemented. Traditional photonics (phos = light) use manipulation of light to generate, detect, or process information. More recently, integrated photonics has shown the advantage of squeezing complex functions into a single chip. ย This yields a more energy-efficient and low-cost solution. Here, Giuseppe Coppola and Jorn Smeets from PhotonDelta, and Ruben Fokkema from Brainport Development, discuss integrated photonics, the landscape and the challenges that the world faces in the upcoming years. They also explain the potential of integrated photonics and what their organisations are doing speed up the development of this technology. Boudewijn Doctor, Joost Verberk and Michiel Boermans from EFFECT Photonics discuss the advantages of using their SFP module platform with tuneable transceivers in the 5G network. Field trials are being executed in the VodafoneZiggo network and in the 5G Hub to show the performance of their transceivers. But it is not only about the results now, it is about what their technology is able to do in the future.
Integrated Photonics is one of the key technologies from the Brainport region and it can be the next big thing. Ruben says: โI truly believe that it is worthwhile to invest in all kinds of ways in this next generation chip industry. We have to bring everything to the game to make it happen as integrated photonics is one of the most promising industries in developmentโ. According to Giuseppe, Europe should cooperate on this: โThe Netherlands, in particular the Brainport area, can aspire to be the integrated photonics valley of the world. Still joining forces with the rest of Europe is needed to ensure that the industry has enough scope to stay competitiveโ.
PhotonDelta drives the creation and acceleration of the growth of Dutch-based companies and technology institutes active in the integrated photonics industry. A national strategic plan is being drawn up to build the industry for integrated photonics. Jorn mentions: โWhere does the Netherlands see itself in twenty/thirty years? We must act now to get there. We already have the three universities that publish the highest number of articles on photonics. We need to transform that to a production industry.โ Brainport Development supports PhotonDelta by identifying and prioritizing the most promising companies to work together on their ecosystem. As Ruben mentions, the Brainport region contains a lot of knowledge, but the focus needs to be on creating an industry in a holistic manner.
From designing to developing and the actual manufacturing, when someone says, โintegrated photonics,โ people should think immediately about the Brainport region. But what is integrated photonics? And what is the potential for the use of it?

Integrated photonics enables photonic circuits to process and transmit light, just as electronic signals are processed and transmitted by electronic integrated circuits. Photons (light particles) move at the speed of light without interference. This means that information can move faster and more efficiently while using less power.
So, why is photonics not used on a large scale already? According to Giuseppe, the two biggest challenges are creating a solid base of the supply chain and connecting it to the market. The supply chain needs to mature, and opportunities need to become more concrete. Jorn adds that the expected energy savings of using integrated photonics in datacentres is in practice not as high as expected. However, photonics does not only add value from a savings point of view. It has a lot more to offer for for instance 5G.
Giuseppe mentions that the added value for 5G can be classified into three categories. The first one belongs to the backbone of the 5G network: by using photonics, one can send more data with lower latency and with higher capacity. This is the solution that EFFECT Photonics is working on. EFFECT Photonics delivers tuneable optical transceivers that connect both ends of the fibre in a mobile fronthaul DWDM (Dense Wavelength Division Multiplexing) network. The DWDM technology multiplexes several optical signals onto a single optical fibre by using different wavelengths of laser light, hence increasing the capacity of the network. โEFFECT Photonics is different from other transceiver companies because we are able to put all optical elements into one chip. It makes the assembly easier because you just need to design the chip, make it, and connect it to the fibre,โ Joost mentions. This System-on-Chip (SoC) technology provides cost-effective modules with a complete solution on one chip.
At the same time, a bit further out in the future, photonics could enable free space communications by sending light out in the air. It is like an invisible fibre. One important aspect that should be considered, though, is the safety for the human eye. However, developments in this aspect are going fast. Imagine Li-Fi (wireless internet connection based on light) where you can direct beam to your laptop so that you can use all the bandwidth available. Light does not only create links, but the beam can also be moved around. That brings us to the third category.
An optical phased array is where the direction of light beams can be steered by dynamically controlling the optical properties of a surface. These beams can follow specific clients that need very fast access with the ability to dedicate the bandwidth to whoever needs it the most: for example, critical services.
Additional advantages of photonics are that you can reach higher speed and process huge amounts of data while saving energy (and thus costs). As Giuseppe says: โIf you can do it cleverly, you can have the physics working for you and be able to process data and compute faster. At the speed of light!โ.

Currently, EFFECT Photonics and the 5G Hub are running the first public 5G trial of optical transceivers based on a fully integrated photonic chip in the Netherlands. The SFP transceivers from EFFECT Photonics are tuneable transceivers, which are different from the standard devices with fixed wavelength. As Michiel explains: โThe tuneable devices can โdetectโ different kinds of colours, so that you only need to have one transceiver on stock for multiple applicationsโ. Although this seems very beneficial, there is also a downside, as Joost mentions, โYou need to explain to the technician how the tuning of the device works, and connecting it right is very sensitive to errors. That is why we have added a bit of extra intelligence to the transceiver where it scans the network and finds its own colour. That is exactly what we will test in the VodafoneZiggo network and at the 5G Hub. This means you have both the advantages from fixed as well as from tuneable.โ
The current trials work with transceivers that have 9 channels and can reach a throughput of 10 Gbps. โAlthough the network speed does not improve significantly with the current trials, the basis of their technology platform is very suitable for expanding that performance curveโ, as Joost explains. However, using photonic integration brings a cost advantage, and the field trials are a test for the future. It is not only about the current performance, but very important for the network of the future. With this platform technology you can build incredibly complex chips. As Boudewijn mentions: โThe more you put together, the more revolutionary it becomes.โ

Applying the transceiver in a 5G network is very interesting because there is a demand for extra capacity at the edge of the network. At no extra cost. Boudewijn states: โWe are bringing the high-end technology that is used in the centre of the network, now at affordable costs to the edge, supporting the architecture and bringing the technology that is now used on the inside of the network, to the outside.โ Their application is able to provide potentially unlimited data transmission capacity and bandwidth. Combine that with 5G that is designed to support a massive increase in traffic capacity and network efficiency, and you can imagine the potential benefits in the network. The DWDM technology allows for increased load on the fibre network. Which is beneficial not only right now, but also enables us to make better use of the optical fibre cables that are already underground, negating the need to replace them to improve our network. In addition, a shorter latency to the central point can be achieved and first signal processing can be done at location, which also enables time-critical applications. The application is not limited to the 5G network, but also FTTx or Remote PHY networks can be upgraded using DWDM.
EFFECT Photonics is a partner of the 5G Hub, which enables them to execute field trials. These field trials are a valuable addition to all the tests that EFFECT Photonics executes themselves, to see how it really works in the network but also to learn more about all the practicalities around the use of their application. From how the technicians work with it, to at which locations the transceivers are actually used. However, it is not only about these trials. Working together with the 5G Hub brings them in contact with the ecosystem around the Hub and its network. It opens a lot of doors for collaborations and together we can bring this ecosystem forward. As Boudewijn mentions: โWe want to learn more about not only the 5G network, but also about the possible applications of 5G and how we can add value to these applications.โ
Brainport Development and PhotonDelta are building an industry. When more progress is made, new applications are discovered on the way. And Jorn mentions that telecommunications seem ready for integrated photonics. With the ever-growing data flow, the need for always more and faster, integrated photonics can play a huge role in the future to fulfill our needs. EFFECT Photonics is one of the key players in shaping this future of photonics, applying their tuneable optical transceivers into the network already today. If you are interested in learning more, check out the website of EFFECT Photonics, PhotonDelta and Brainport Development.
Tags: 5GHub, Brainport, PhotonDelta, Photonics
Vodafone first telecom provider in the Netherlands to test this technology on mobile network Eindhoven…
Eindhoven – April 15, 2021 – Earlier this week, during a visit by NLdigital, the industry association of the digital sector, the 5G Hub in Eindhoven announced a first in the Netherlands: EFFECT Photonics and Vodafone have started testing the integration of so-called optical SoCs in the mobile network. This optical ‘System-on-Chip’ technology is expected to offer internet providers and users many advantages in the future. This includes less delay, higher capacity, but also improved network sustainability. These chips reduce the need for hardware and will significantly reduce both energy consumption and maintenance costs. Vodafone is the first telecom provider in the Netherlands to test this technology in the current network.
“Photonics play a key role in the sustainable digital future of the Netherlands. I am proud that as a sector we are at the forefront of the development and application of this new technology”, says Lotte de Bruijn, Managing Director at NLdigital.
Photonics: the heart of the internet of the future
In almost all current electronic networks, electrons do the work โ electrical signals bring data from A to B. In this type of electronic hardware there are often system-on-chips (SoCs): entire computer systems on a single chip. For example, the heart of a smartphone also contains such a SoC. The technology behind “normal” chips, although further developed over the years, is already more than 30 years old. A trend that will grow exponentially in the coming years is a greater need for more network capacity and less delay. In order to meet this, the relatively new optical SoCs are a possible solution: these chips transmit and process data based on light signals via laser. This improves the performance of the mobile network, while requiring less energy.
“The first results of the tests are positive,” said Boudewijn Docter, President at EFFECT Photonics. “A working link has been established in the lab with all filters and other components that are also present in a real connection. The next step is testing in the field. This is an important step to show that the EFFECT Photonics SoC technology, for minimal investment, can help to upgrade the capacity of the existing networks. And it is also this SoC technology that has been created in collaboration with our eco-system partners PhotonDelta and Brainport. It is great to see that this technology is now actually used in the Netherlands and that it is also a first for our home base Eindhoven.”
“The Netherlands has strong networks, the best in Europe, and we would like to keep it that way. That is why we are constantly innovating to improve our network, including this implementation of the photonic chip technology in the network of the 5G Hub,” says Bram Tijdhof, Director Regulatory, Policy and Public Affairs at VodafoneZiggo. “Photonics is one of the key technologies in the Netherlands and also of Dutch origin. We should be proud of that. The collaboration with the photonics cluster on the High Tech Campus with the 5G Hub makes this first extra special.”
5G Hub: a hotbed of innovation
The 5G Hub is a collaboration with Brainport Development, Ericsson, High Tech Campus and Vodafone to drive results around certain social challenges. It is intended as a breeding ground for new 5G technology. The space on the High Tech Campus has more than 700m2 and is close to tech giants such as ASML, Philips, TNO and TomTom. The expectation is that in the coming years numerous new ideas and applications will emerge from here in the field of 5G and other technologies, such as photonics, blockchain and machine learning. To further enable this, radio technology has been installed in the Hub to be able to apply it to 5G. It is suitable for the 3.5 gigahertz test frequency and offers very high speed and ultra-short response times. For maximum capacity, this can be combined with existing 4G frequency bands 800, 1800, 2100 and 2600 megahertz which are also available in the Hub. This allows companies to take their 5G innovations from idea and research, to real life results.
Click here for an article which provides a deeper dive into integrated photonics and 5G.
For more information and/or questions as a result of this press release, please contact the following spokespersons/contacts as a journalist:
About EFFECT Photonics
EFFECT Photonics produces components for fiber optic networks based on photonic chip technology, originally developed at EINDHOVEN University of Technology. The unique chip technology from EFFECT Photonics delivers high communication speeds for low costs and low energy consumption. EFFECT Photonics products are used to connect mobile network transmitters to the rest of the Internet and to connect data centers. With the technology of EFFECT Photonics, the capacity of existing fiber optic networks can be increased without having to install additional cables. EFFECT Photonics has offices in Eindhoven Netherlands, Great Britain and Taiwan and an international network of sales partners.
For more information, go to www.effectphotonics.com t: +31 403041359 press@effectphotonics.com
About Vodafone
Vodafone Nederland is the second largest mobile telecommunications company in the Netherlands based on turnover and profitability and has more than 5 million customers as of 31 December 2020. The offices are located in Utrecht, Eindhoven and Maastricht. Vodafone Nederland is part of VodafoneZiggo, a 50/50 joint venture between Vodafone Group and Liberty Global. Vodafone Group is one of the world’s largest mobile telecommunications companies in revenue, with more than 300 million mobile customers, 27 million fixed broadband customers, more than 22 million TV customers and connecting more than 108 million IoT devices, since December 31, 2020. Vodafone has mobile networks in 22 countries and works with 48 mobile networks worldwide.
For more information, go to www.vodafoneziggo.nl t: +31 (0)88-7170717 m: pers@vodafoneziggo.com

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