Understanding Cable Landing Station and Undersea Internet Cables

The global internet works through cables under the ocean. In fact, more than 99% of internet traffic between countries goes through these undersea cables. To make this work, the cables need special spots to reach land and connect to local networks. Basically, a cable landing station joins undersea cables to land fiber networks. Without it, internet data cannot get to people on land. The submarine cable industry has grown a lot in recent years. According to TeleGeography’s 2024 Submarine Cable Map, there are now 559 cable systems and 1,636 landing points that are active or being built. From 2023 to 2025, a $10 billion cable boom added 78 new systems with over 300,000 kilometers of cables. This increases the need for more dark fiber to connect cable landing stations to data centers and users. What is a Cable Landing Station? A cable landing station is a building where undersea cables connect to land networks. Also, these stations have machines to receive signals from the undersea cables and send them through land networks. It also protects the machines and gives power to the cable system. Inside, there are repeaters, amplifiers, and other devices that keep signals strong over long distances. Because of this, modern cable landing stations can handle a lot of data. For example, big companies like Google and Meta put money into submarine cables. The 2024 Submarine Cable Map shows that Google has 26 cable systems and Meta has 15. This means these companies need dark fiber connections from the stations to their data centers. So, these stations are important places where international internet enters a country and joins local networks. How Deep Can Undersea Cables Go? Undersea cables can go as deep as 8,000 meters, but usually they stay on the ocean floor at different depths. Some are in shallow water, while others go very deep. The Atlantic Ocean is about 3,650 meters deep, so cables usually follow the seabed at this depth. In 2024, the Italian company Prysmian made a record by putting a power cable 2,150 meters deep for the Tyrrhenian Link project between Sicily and Sardinia, connecting to a cable landing station onshore. Cable depth can also change depending on the place. Near the shore, cables are buried to keep them safe from anchors and fishing. In deep water, they just lie on the seabed. Also, cable routes avoid deep ocean trenches. Operators choose paths that balance depth and distance. When cables reach a cable landing station, they move from the ocean to safe buildings, where dark fiber carries the data on land. What Happens If Undersea Cables Are Cut? If undersea cables are cut, internet traffic goes through other cables automatically. Luckily, modern networks have backups for failures. Submarine Network shows that about 199 cable faults happen worldwide every year (2010–2024). Because of this, most companies use more than one cable landing station or system to avoid total outages. Still, cable cuts can cause problems. For example, cuts in the Red Sea stopped 25% of data traffic between Europe and Asia in 2024, based on UN insights. Most of the time, fishing and anchoring caused the faults. This shows why having many dark fiber routes from cable landing stations to data centers is important. Then, multiple fiber paths can act as backup when submarine cables fail, and landing stations with these connections are stronger. How Long Does It Take to Fix an Undersea Cable? Repairing undersea cables usually takes 1–2 weeks, plus time for ships to reach the site. Ghana’s National Communications Authority, 2024 says repair ships need 2–3 weeks to travel from Europe to West Africa and get spare parts. Total repair time from the nearest cable landing station can be 5 weeks or more. Repair time depends on location and depth. Deeper cables are harder to fix. Submarine Networks says repairs cost $500,000 to $1 million per incident. Some take longer. In 2023, the longest repair took 947 days. These long repairs show why reliable dark fiber and well-managed cable landing stations are needed to keep data flowing during cable problems. Building Reliable Networks for the Future A cable landing station is very important for the internet. It connects undersea cables to networks on land. With 559 submarine systems planned or active, this station is needed more than ever. Dark fiber networks carry the connection from the station to data centers and users in different areas. Together, the undersea cable and fiber routes make a strong network for growing internet needs. ARNet operates a large dark fiber network in Southeast Asia. It provides dedicated fiber in Thailand, Malaysia, Singapore, and Indonesia. ARNet owns over 10,000 kilometers of fiber connecting 60+ data centers. The network includes long-haul routes between cities, metro fiber in urban areas, and last-mile fiber to facilities. This infrastructure supports major companies and hyperscalers in the region. ARNet has several advantages. It controls its network from planning to deployment, ensuring faster and more predictable results. It promises over 99.99% uptime with real-time monitoring. The network spans multiple countries and offers diverse routes, protecting against cable cuts. ARNet also holds all needed licenses as the only single-entity provider in Southeast Asia. For companies needing reliable dark fiber from a cable landing station to data centers, ARNet provides the infrastructure and expertise to keep operations running smoothly. About the Author Nabila Choirunnisa, Digital Marketing Executive at ARNet
Underground Cable Basics: Types, Depth, and Installation Guide

Underground cables play a very important role in today’s world. They carry internet, phone signals, and electricity from one place to another. Engineers place these cables under the ground to protect them from rain, heat, wind, and accidents. The placement provides cities and countries with a more stable and safe connection. More companies have started to use them. The market for underground fiber optic cables reached USD 13 billion in 2024, based on GM Insights. Businesses need strong and stable networks to support more data use. Understanding how these systems work helps companies make better choices for their network plans. This is helpful for businesses that want to expand to many locations. What type of cable is used underground? Fiber optic, copper, and power are the main types of underground cables. Fiber optic sends data as light signals through glass or plastic fibers. This allows very fast data transfer over long distances. GSMA reported that 5G use drives higher demand for fiber, with global 5G use expected to reach over 56% by 2030. Copper cables, such as twisted pair and coaxial, carry telephone, internet, and cable TV services. Workers install power lines underground to deliver electricity to homes and offices. Engineers choose the type of cable based on purpose and local regulations, ensuring each cable has strong insulation and outer protection. How deep should underground cables be buried? Contractors bury underground cables 24 to 36 inches deep, depending on the type and local rules. Telecommunication cables usually go at least 24 inches (60 cm) deep to avoid light digging. In 2024, the Fiber Broadband Association reported a median cost of $18.25 per foot for underground fiber. Power cables go deeper because they carry electricity, often 30 to 36 inches (75 to 90 cm) or more. Installers check soil conditions, traffic, cold weather, and local rules before work. How long does direct burial wire last in the ground? Direct burial fiber optic underground cables usually last 20 to 30 years. High-quality ones can last up to 40 years or more if installed properly. Their lifespan depends on several factors, especially water exposure. Water entering through a cracked jacket can damage the fibers inside. Soil type also matters. Wet or acidic soil wears them down faster than dry, stable soil. Proper installation of underground cables protects them from stress and damage during digging and placement. Regular checks and signal monitoring detect small problems early. Network teams can fix issues before they become bigger and more expensive. Building reliable networks with dark fiber Underground cables form the base of modern telecom networks. Companies that choose the right cable, bury it at the correct depth, and install it properly can make the network last for many years. Businesses enjoy stable and fast connections and can expand their network as their needs grow. Dark fiber gives companies full control of their network. ARNet operates more than 10,000 km of fiber network across Southeast Asia. The company supports hyperscalers and large businesses in Malaysia, Indonesia, Singapore, and Thailand. It provides long haul links, metro fiber networks, and last mile fiber delivery. This wide coverage allows businesses to build networks that match their exact needs. ARNet is the only provider in the region that controls all key licenses under one company. This leads to fewer delays and smoother coordination. The company builds and manages its own underground cables, so performance stays consistent in every location. It uses real-time monitoring to keep a committed SLA. Fast deployment and strong network control help ARNet provide businesses with stable and scalable dark fiber networks across Southeast Asia. About the Author Nabila Choirunnisa, Digital Marketing Executive at ARNet
Understanding Broadband: Your Simple Guide to Internet Connections

Broadband is the internet connection that brings the online world into homes and businesses. People use the internet for work, school, shopping, and daily communication. Because of this, internet services keep growing every year. Grand View Research reported that the global market reached $500.30 billion in 2024. This number shows how important internet access has become in daily life. Many people feel confused when they hear technical terms about internet networks. For this reason, this guide explains broadband in simple words. You will learn what it means. You will also see how it is different from Wi-Fi. In addition, you will understand how it is installed. By the end, you will have a clear picture of how modern internet connections work. What do you mean by broadband? Broadband is a high-speed internet connection. It sends and receives data much faster than old dial-up connections. As a result, users can stream videos, join video calls, and download files without long waiting times. There are different types of internet connections available today. For example, fiber optic uses light signals through glass cables and offers very fast speeds. Cable internet delivers service through television cables, while DSL uses telephone lines and works faster than dial-up. Even though these technologies are different, they all provide continuous internet access without dialing a phone number. Among these options, fiber broadband is very common. In fact, the Fiber Association reports that fiber now reaches 56.5% of U.S. homes in 2024. Is broadband and wi-fi the same thing? No, broadband is not the same thing as Wi-Fi. These are two different things that even work in different ways. It is the internet connection that comes from your service provider into your home or office. Wi-Fi shares that connection wirelessly with your devices. In simple words, it brings the internet to your building, and Wi-Fi spreads it inside. The internet line enters your home through a cable or fiber wire. After that, a router creates a Wi-Fi network. Your phone, laptop, and smart TV connect to this Wi-Fi network. Without it, Wi-Fi cannot provide internet access. How is broadband installed without a landline? Broadband is installed without a landline by using fiber optic cables, cable lines, or wireless technology instead of traditional telephone lines. Modern services do not require phone lines at all. The process varies by connection type: Moving forward with better connectivity Understanding internet service helps you choose the right option for your needs. For example, fiber optic broadband offers high speed and strong reliability, which makes it a popular choice for many businesses. As internet use continues to grow, strong infrastructure becomes even more important to support this demand. That is why good internet service always depends on the physical network behind it. Because businesses rely on daily online operations, they need stable and secure connections. To meet this need, dark fiber solutions give companies full control over their network. In Southeast Asia, ARNet operates a large fiber network to support this demand. The company serves hyperscalers and major businesses in Malaysia, Indonesia, Singapore, and Thailand. To ensure wide coverage, the network includes long distance links between countries, metro fiber inside cities, and last mile fiber that connects directly to buildings. With dark fiber, companies can use their own equipment on dedicated lines. As a result, this setup provides high speed, strong security, and flexibility for broadband needs. To strengthen its position in the region, ARNet controls key licenses and infrastructure. The network now covers more than 10,000 kilometers and connects over 60 data centers. Since the company builds and operates its own infrastructure, it can help ensure stable performance. In addition, ARNet provides clear project timelines and careful monitoring. With a 99.99% uptime commitment, ARNet supports modern businesses with reliable connectivity across Southeast Asia. About the Author Nabila Choirunnisa, Digital Marketing Executive at ARNet
What Is Ethernet? A Simple Explanation for Beginners

Network connections are very important in today’s world because they keep offices, data centers, and businesses running smoothly. Among different connection types, Ethernet is one of the most trusted ways to connect devices. In fact, this wired connection has been used for many years in homes and offices, helping devices access the internet and communicate with each other. Moreover, wired connections are becoming more important as digital needs grow. For example, research by IMARC Group shows the global industrial market reached USD 12.19 billion in 2024. This means that many businesses rely on wired connections for their main network systems. Therefore, learning how wired connections work can help you make better choices for your network. What is ethernet used for? Ethernet is a way to connect devices in a network. For example, offices use it to join computers, printers, and servers. The cables move data between devices, so they can share information fast and safely. Also, data centers need wires. They have many servers that must work all the time. Because of this, wired connections are strong and do not fail. In the same way, factories use wires to connect machines. HMS Networks 2024 says 71% of new factory machines use networks, and this number grows every year. This shows wires are very important for industry. Besides, homes use Ethernet too. Gamers, people working from home, and people watching videos use wires because they are faster and do not drop. Even security cameras, smart devices, and video calls work better with wires. The difference between ethernet and internet Many people get confused between these two because they often work together. But they are not the same. Ethernet is the cable connection between devices. While the internet is the big network that lets you visit websites and use apps. Knowing this difference helps you see how devices talk to each other at home and online. How to set up an ethernet connection? There are several simple steps you can follow to set up ethernet. You can start by: Step 1: Check Your Equipment You need an Ethernet cable, a router or switch, and devices with network ports. Network ports look like wide phone jacks and may have a network symbol. Step 2: Connect the Cable Plug one end into your device and the other into your router or switch. You should hear a click. Your device usually detects the connection automatically. Step 3: Check the Connection Most devices show a network icon right away. You can run an online speed test to check performance. Step 4: Advanced Setup (Optional) For bigger setups, you might need switches or patch panels. Many businesses hire technicians to install structured cabling. Moving forward with network infrastructure Strong network connections need good planning and good equipment. Because businesses use more data, they need systems that can handle more traffic without slowing down. For example, some companies use dark fiber. Dark fiber is unused fiber cable that can send data very fast. Also, Ethernet works on this fiber to give fast and steady connections. ARNet provides hyperscaler-friendly dark fiber infrastructure in Southeast Asia. We help big companies and hyperscalers in Malaysia, Indonesia, Singapore, and Thailand. Our network is over 10,000 kilometers long and connects more than 60 data centers. It also links cities, connects buildings in cities, and reaches offices directly. With 99.99% uptime and fast setup, ARNet gives reliable networks that grow as your business grows. This means companies can use cloud apps, fast internet, and large data systems without problems. So, choosing ARNet makes your network ready for the future and able to handle new technology easily. About the Author Nabila Choirunnisa, Digital Marketing Executive at ARNet
How Cloud Connectivity Powers Modern Business Networks?

As more business activities move online, many daily tasks now depend on the internet. Because of this shift, companies use cloud connectivity to open apps, save data, and run their systems online instead of only using office computers. In the past, most companies kept servers inside their own buildings. Over time, many of them started moving to cloud systems because they want more flexibility and easier access. This change is growing fast. Data Bridge Market Research says the global cloud connectivity market reached USD 557.66 billion in 2024, and it is still increasing. As more businesses move their systems to the cloud, they need stronger and more stable networks to support this growth. When the network is reliable, work can run smoothly without delay or downtime. Because of that, understanding how these networks work can help companies choose the right technology and plan better for the future. What is cloud connectivity? Cloud connectivity is the network that connects users to cloud services. It creates a link between your office and the cloud data centers where apps and data are stored. Through this connection, employees can open files, use software, and access systems from different locations. To support this access, companies use different types of networks, such as fiber connections or internet networks. Many daily operations, from email to customer databases, depend on this system. When the network is strong and stable, employees can work without delays. Key types of cloud connectivity Different businesses need different types of cloud connectivity based on their needs. It includes: 1. Public cloud connection This connects your business to shared platforms like AWS, Microsoft Azure, or Google Cloud. Since many companies use the same system, the cost is lower. It is suitable for small and medium businesses. 2. Private cloud connection This uses a dedicated link that is not shared with others. It gives better control over security and performance, so it is ideal for companies with sensitive data. 3. Hybrid cloud connection This combines public and private clouds. Businesses can keep sensitive data in a private cloud and use the public cloud for other tasks. According to Research and Markets, the hybrid cloud market is expected to reach nearly US$175 billion by 2030. 4. Direct connect services This provides a dedicated link between your office and the cloud provider. It does not use the public internet, so it offers faster speed and lower delay. Benefits of cloud connectivity Strong network connections give many benefits to companies. These benefits include: Building strong network infrastructure Choosing the right solution starts with knowing your business needs. Companies that handle a lot of data need high capacity connections. Businesses with many offices need a network that connects all sites to the cloud. Fiber optic networks are a good choice because cloud services need fast and stable data transfer. Fierce Network says hyperscalers buy up to 48 pairs of dark fiber for enough capacity and backup. Cloud use is growing fast in Southeast Asia, especially in Malaysia, Indonesia, Singapore, and Thailand. As cloud use grows, more data moves across networks. Because of this, companies need better control over their network speed and capacity. Dark fiber gives this control. That is why many hyperscalers use their own fiber network to connect data centers. ARNet delivers hyperscaler-friendly dark fiber infrastructure to support large-scale cloud operations and meet these needs. Our network connects more than 60 data centers and covers over 10,000 kilometers in Southeast Asia. ARNet owns and manages its fiber network, so we can keep it stable and deliver more than 99.99% uptime. This makes ARNet a trusted partner for strong and secure connections. About the Author Nabila Choirunnisa, Digital Marketing Executive at ARNet
3 Types of Manholes and Their Uses in Telecom Networks

Modern cities need many underground systems to work properly. Under the streets, there are fiber optic cables, power lines, water pipes, and communication lines. They all work together to provide important services. These systems must be checked and updated often as needs grow. Because of this, easy access is very important for telecom and infrastructure companies. That is why a manhole is important in managing these systems. In the dark fiber industry, a manhole is also very useful. It allows technicians to reach underground fiber cables for setup, maintenance, and repairs. For dark fiber providers that own or rent unused fiber, good access points help them build networks faster and keep the connection stable over long distances. What is meant by manhole? A manhole is an opening in the ground that lets workers reach underground utility systems. The structure has a cover on the surface and a vertical shaft that goes down to the pipes or cables below. Most access points use a metal or concrete cover that is level with the road surface. The main parts of a manhole are the cover, the frame, and the vertical chamber. Inside, there are steps or ladder rungs fixed to the walls. At the bottom, workers can reach the infrastructure that needs work. Because of that, these access points come in different sizes depending on their use and must be big enough for workers to enter while carrying tools. What is the difference between a sewer and a manhole? The difference between a sewer and a manhole is their function. A sewer carries dirty water, while the other one gives access to underground systems. A sewer is a pipe that moves wastewater from buildings to treatment plants. These access points can connect to sewers, telecom cables, power lines, and water pipes. Not all manholes connect to sewers. Fiber optic and telecom networks use many of these access points. In telecom projects, technicians place these access points at regular distances along cable routes so they can pull cables and make connections. 3 Key types of manholes These access points are grouped into three categories based on how deep they are below the ground surface. According to Blair Supply Corp, manholes are categorized as Type 1, 2, and 3 based on their depth and purpose: Building better underground networks Understanding manholes and their types is important for people who work in telecommunications. In practice, these access points are a key part of networks that connect cities and support modern communication. As a result, engineers use each type for different depth and installation needs. With this in mind, companies building fiber networks in Southeast Asia need to choose the right infrastructure partner. ARNet operates more than 10,000 km of dark fiber in Malaysia, Indonesia, Singapore, and Thailand. In addition, the company owns and maintains its full network, including access points and underground routes. It also provides long-haul, metro, and last-mile fiber services for hyperscalers and major telecom companies in the region. Because of this integrated approach, working with ARNet means working with a single dark fiber provider in Southeast Asia that controls its licenses and infrastructure. The company builds and runs its own network with its own teams and equipment. This setup helps speed up deployment and improve network reliability. To ensure performance, ARNet promises more than 99.99% uptime and uses real-time monitoring to detect issues early. Overall, for organizations that need scalable fiber networks with well-managed underground systems, ARNet can support long-term growth. About the Author Nabila Choirunnisa, Digital Marketing Executive at ARNet
5 Essential Things to Know About KMZ File for Telecom Network Planning

Digital mapping plays an important role in managing network systems. Because of this, many companies rely on visual map files to plan and explain their infrastructure. A KMZ file is a compressed map file that helps businesses clearly show network paths, equipment locations, and coverage areas on digital maps. This file type is widely used in telecommunications, where network planning depends on clear and easy-to-read visuals. To better understand why this file format is so useful, it is important to first know what a KMZ file is and how it works. What is a KMZ file? A KMZ file is a compressed version of a KML (Keyhole Markup Language) file. In simple terms, it stores location points, map markers, shapes, and images that can be displayed on a map. The letter “Z” in KMZ means “zipped,” which explains why the file size is smaller. According to Google for Developers, a 10 KB KML file can be reduced to about 1 KB when compressed. This format can include images, custom icons, and even 3D objects within a single package. Because of these features, telecommunications companies often use it to show their fiber routes to customers in a clear and visual way. After understanding what this format is and what it contains, the next step is to know which tools can open and view it. What software opens KMZ files? You can open a KMZ file using map software like Google Earth (desktop or web). You can also use GIS tools such as QGIS, ArcGIS, or web viewers like Equator or KMZView. Here are the main software options for opening a KMZ file: Because a KMZ file works across many devices and tools, it is very practical for telecommunications work. Once you can open and view it, it is helpful to know how to create one for your own network needs. How to create a KMZ file in Google earth There are several steps you can follow to create a KMZ file in Google earth. You can start by: Step 1: Open Google Earth First, launch Google Earth on your computer. Step 2: Add Place Markers Next, click the pin icon to add locations, along with names and short descriptions. Step 3: Draw Fiber Routes Then, use the path tool to draw cable routes by clicking along the map. Step 4: Save as KMZ Format Finally, go to the File menu, choose “Save Place As,” and select the KMZ format. Because of this simple process, network providers often use Google Earth to create map files that show their infrastructure to customers. Making network infrastructure more accessible As network systems expand, geographic map files such as a KMZ file have changed how telecommunications companies work with customers. In particular, visual maps make complex infrastructure easier to understand. Businesses can clearly see where fiber cables are installed and how providers connect to data centers. Because networks are becoming larger and more complex, this type of technology is more important than ever. In this context, dark fiber networks play a key role, allowing companies to rent unused fiber cables to build private networks. Within this growing market, ARNet provides dark fiber solutions across Southeast Asia. The company operates an all-fiber network that stretches over 10,000 km. ARNet supports hyperscalers and major businesses across Malaysia, Indonesia, Singapore, and Thailand. Its infrastructure includes metro fiber, long-distance routes, and last-mile connections. Choosing the right dark fiber provider requires careful consideration. In this case, ARNet stands out as the only single-entity provider in the region that controls all required licenses. The company builds and manages its own network, with coverage that can be reviewed through a KMZ file. To ensure reliability, ARNet commits to more than 99.99% uptime, supported by real-time monitoring systems. About the Author Nabila Choirunnisa, Digital Marketing Executive at ARNet
Long Haul Dark Fiber Networks: Definition, Benefits, and Market Growth

Fiber optic networks, including long haul networks, are very important today. They help data travel long distances between cities, countries, and continents. Because of this, businesses can send information faster and more securely. Today, companies need higher speed and more capacity for cloud services, AI, and big data. As a result, the demand for dark fiber is growing. Dark fiber means unused fiber optic cables that companies can use to build their own private networks. Long haul dark fiber networks connect locations that are far apart. They help move large amounts of data over long distances. According to Polaris Market Research, the global dark fiber market reached USD 6.51 billion in 2024. This shows strong demand for fast and high-capacity connections. What is the definition of a long haul? In telecommunications, long haul refers to fiber optic cables that cover very long distances. These distances can be hundreds or even thousands of kilometers. In simple terms, these networks connect cities, regions, and countries. They can run on land or under the sea using submarine cables. Meanwhile, the market keeps growing. Mordor Intelligence report shows that the dark fiber market could reach USD 9.21 billion in 2026 and grow to USD 17.06 billion by 2031. This growth happens because more companies use cloud services and AI. Most importantly, long haul networks connect large data centers and global network hubs. Companies choose dark fiber when they want full control over how their data moves across long distances. Key benefits of long haul dark fiber networks Long haul dark fiber networks have many clear benefits. It includes: Role of long haul networks in global connectivity Long haul dark fiber networks are the main physical paths for global data traffic. Because of this, Asia Pacific is growing very fast. Fortune Business Insights says Asia Pacific had 42.10% of the global dark fiber market in 2025. This growth comes from more people using the internet and needing faster, more stable connections. In Southeast Asia, large tech companies use private fiber links to connect data centers. This helps them avoid regular internet providers and get more direct and reliable connections. Building your network infrastructure strategy As data use grows around the world, long haul dark fiber is still important. It gives full control, large capacity, and saves money over time. Because of this, many companies choose dark fiber. ARNet runs a big fiber network in Southeast Asia. It works in Malaysia, Indonesia, Singapore, and Thailand. ARNet owns more than 10,000 kilometers of fiber and connects over 60 data centers. ARNet also offers full dark fiber services. These include long-distance links between cities and countries, city fiber, and last-mile fiber to buildings. Many companies trust ARNet because it owns its licenses and fiber network. As a result, ARNet gives stable and steady service across Southeast Asia. As one provider, it can build and manage networks faster and more easily. With live monitoring and strong systems, ARNet delivers 99.99% uptime. Because of this, it is a good choice for digital work, especially for cloud companies that need their own fiber networks. About the Author Nabila Choirunnisa, Digital Marketing Executive at ARNet
7 Easy Ways to Improve Network Performance and Support Business Growth

Today, businesses need fast and reliable networks to stay ahead. A strong network helps companies save money and serve customers well. Knowing how networks work also helps businesses make better technology decisions. In this article, we explain what a good network is and share easy tips to improve it. These tips are very useful for companies using dark fiber networks to get the most value from their investment. What does network performance mean? Network speed and reliability shows how well a network works. It tells us how fast data moves and how stable the connections are between devices and services. A good network lets data travel quickly without problems. Key signs of a strong network include: By checking these indicators, companies can find problems and improve network performance. 7 Ways to improve network performance Here are simple steps to make network performance better: By following these steps, businesses can have a faster, smoother, and more reliable network. Factors that affect network performance Several things can slow down network performance: Paying attention to these factors helps companies optimize network operation. Building better networks for business success Good infrastructure is key to business success. In fact, strong connections help companies work faster and more efficiently. Moreover, knowing about network systems also helps businesses make better technology choices. For instance, businesses that need reliable networks can consider dark fiber as a smart option. ARNet provides dedicated fiber networks across Southeast Asia, with over 10,000 km of fiber connecting more than 60 data centers in Thailand, Malaysia, Singapore, and Indonesia. In addition, ARNet offers long-distance connections, city fiber, and last-mile fiber, which together ensure fast and stable network performance. Unlike other providers, ARNet builds and runs its own networks instead of reselling services. Furthermore, it controls all major licenses in the region. ARNet works with big companies and hyperscalers, providing over 99.99% uptime. Therefore, for businesses that need steady, high-quality connections, ARNet is a strong choice for long-term success. About the Author Nabila Choirunnisa, Digital Marketing Executive at ARNet
Modular Data Center Guide – Definition, Cost, and Key Advantages

A modular data center becomes popular because it is fast, flexible, and cheaper than building a traditional data center. As businesses handle more data every day, they need a system that can store and process information quickly. So, instead of waiting for long construction, many companies now choose modular solutions. What is a modular data center? A modular data center is made from pre-built modules. These modules include servers, storage, cooling systems, power supplies, and network equipment. Factory workers build and test the modules, then ship them to the company site for installation. This allows companies to set up a modular center in just a few weeks or months. On the other hand, a traditional data center usually takes 12 to 18 months to build. Businesses can move or expand it as they grow. Modular vs Traditional data centers The main difference is in their construction and expansion. Companies build traditional data centers from scratch, which takes a long time and costs more. Modular data centers use pre-made units that are easier to add or move. Here are the main advantages: How much does a modular data center cost? The cost depends on the type and size of the modules. According to StateTech Magazine, it includes: Schneider Electric reports that a full modular data center usually costs $2–$10 per watt of power. This means companies can start small and buy more capacity later. It helps control spending and avoid extra costs. Why does the network matter? A network is important because a modular data center needs a strong network. First, it helps send data quickly. Second, it makes backups easier. Third, it keeps the system running during problems. Big companies like AWS, Microsoft Azure, Google, and Meta are building more data centers in Southeast Asia. Therefore, they need private, fast networks like dark fiber. Dark fiber provides large capacity and reliable connections, so data can move without slowing down. Building a strong network with ARNet A modular data center is a fast, flexible, and cost-effective solution for businesses. Unlike traditional data centers, these centers are cheaper, faster to build, and easier to expand. With strong networks like ARNet, they can run smoothly and handle large amounts of data. They are a smart choice for companies that want to grow quickly and safely. ARNet has over 10,000 km of fiber. It connects more than 60 data centers in Malaysia, Indonesia, Singapore, and Thailand. ARNet’s network has fiber between cities and countries. It also has fiber inside cities for heavy data use. Last-mile fiber connects straight to customer places. ARNet owns and runs the whole network. It has all needed licenses. This helps keep the network steady with 99.99% uptime. Because of this, many data centers and cloud companies trust ARNet in the region. About the Author Nabila Choirunnisa, Digital Marketing Executive at ARNet
