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INTELCA Achieves Premier Integrator Status

June 12, 2026 INTELCA Achieves Ignition Premier Integrator Status Today we celebrate a new milestone in our journey: Intelca has achieved Ignition Premier Integrator status, the highest certification level awarded to system integrators by Inductive Automation. This certification represents a significant milestone for our team and reinforces the commitment to innovation, technical excellence, and the development of high-value industrial automation solutions that we have maintained over the years. For more than 25 years, Intelca has partnered with companies across industries, commercial buildings, hospitals, and corporate facilities to deliver comprehensive electromechanical engineering, industrial automation, and technology projects focused on improving operational efficiency, reliability, and sustainability. Our expertise includes the design and implementation of SCADA systems, industrial automation solutions, Building Management Systems (BMS), process control, and energy management solutions for industrial and commercial environments. Through technologies such as Ignition, we help optimize industrial operations, smart buildings, electrical systems, and critical production processes. These solutions reduce downtime, streamline maintenance and fault detection, optimize energy consumption, and support data-driven decision-making. “Becoming an Ignition Premier Integrator is a true honor for everyone at Intelca and a meaningful recognition of the dedication, expertise, and technical capabilities we have built over the years. This achievement is not only a milestone for our team, but also reaffirms our commitment to delivering innovative, reliable, and intelligent solutions that help our clients operate more efficiently. We are proud to represent Inductive Automation at this level and will continue to work closely with them to deliver world-class Ignition solutions.” – Pedro Núñez, Digital Solutions Manager, Intelca A Recognition That Strengthens Our Vision The global community of Ignition integrators has played a key role in the platform’s worldwide growth. Today, the Inductive Automation Integrator Program includes more than 4,000 integrators around the world, providing technical support, business resources, marketing tools, and benefits focused on delivering high-quality industrial solutions. By becoming part of the Premier Integrator level, Intelca strengthens its position as a strategic partner for organizations seeking to modernize operations through flexible, scalable platforms designed for industrial data integration. About Ignition and Inductive Automation Ignition is an industrial software platform developed by Inductive Automation, founded in 2003 to address the industry’s most significant SCADA challenges. Today, Ignition is deployed in more than 140 countries and is used by a large number of organizations, including over 70% of Fortune 100 companies. The platform is widely recognized for SCADA, HMI, IIoT, MES, and other industrial applications thanks to its flexibility, integration capabilities, and modern approach to industrial automation. This achievement reinforces our commitment to integrating technologies that deliver measurable value to our clients while contributing to more efficient, reliable, and intelligent industrial operations. Learn more, contact us.

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Monitoring and Control of Critical Systems

May 18, 2026 Monitoring and Control of Critical Systems A strategic need for hotels, airports, and large-scale tourism infrastructure The tourism industry in the Dominican Republic continues to consolidate its position as one of the country’s main economic drivers. In 2025, the Dominican Republic reached a new historic milestone by welcoming more than 11.6 million visitors, strengthening its position as one of the leading destinations in the Caribbean. This growth is not only reflected in tourist arrivals, but also in the expansion of new hotel, airport, and infrastructure investments in strategic areas such as Punta Cana-Bávaro, Miches, Pedernales, Santo Domingo, and the southern region of the country. This momentum brings an important challenge: as hotels, airports, shopping centers, and tourism developments continue to grow, the operational complexity of their critical systems also increases. A resort, an airport terminal, or a large commercial building does not depend solely on its architecture or customer service capacity. To a great extent, it depends on the reliability, efficiency, and continuity of its utilities. Chilled water systems, HVAC, potable water, reverse osmosis, hot water, electrical power, emergency generation, fuels, lighting, water treatment, and data centers must operate in a coordinated, safe, and efficient manner. In high-occupancy facilities with continuous operations, a failure in any of these subsystems can directly impact the user experience, operating costs, building safety, and business continuity. Technology infrastructure as a foundation for efficient operations In this new context, facility management can no longer rely solely on manual inspections, isolated reports, or reactive interventions. Modern operations require platforms capable of integrating real-time data, generating timely alarms, centralizing historical information, and providing complete visibility into the behavior of each system. A robust technology infrastructure enables technical service and facility teams to anticipate failures, optimize consumption, reduce response times, and make decisions based on reliable information. This is especially relevant in the hotel and airport industries, where energy efficiency, service availability, and operational continuity are directly linked to profitability and service quality. At INTELCA, we have dedicated extensive work to the design and development of comprehensive solutions focused on the monitoring and control of critical operations for the hotel, airport, commercial, and industrial sectors. Our approach begins with understanding how each facility operates, which systems are most critical, and how technology integration can help optimize each of these subsystems. Solutions for monitoring and controlling critical systems Our solutions make it possible to integrate, visualize, control, and analyze different systems within a single technology architecture, adapted to the needs of each building or operational complex. Monitoring and control of HVAC systems Including chilled water systems, hot water systems, air handling units, fan coils, VRFs, pumps, valves, temperature sensors, humidity sensors, differential pressure sensors, and other equipment associated with comfort and indoor environmental quality. The objective is to achieve a more efficient operation, with greater visibility into thermal performance, improved control of energy demand, and the ability to detect deviations before they become operational failures. Monitoring and control of electrical systems Including emergency generation synchronization, automatic transfer, energy monitoring, consumption metering, load distribution, electrical alarms, breaker status, main electrical panels, and performance reports. This type of integration makes it possible to understand, in real time, how the electrical infrastructure is behaving, identify efficiency opportunities, and ensure a faster response to power loss events, overloads, or failures in critical systems. Monitoring and control of potable water supply systems Including reservoirs, cisterns, pressure groups, distribution pumps, reverse osmosis systems, irrigation, swimming pools, and other services associated with the supply and efficient use of water. Visibility into levels, pressures, pump status, consumption, and alarms helps improve service continuity, prevent overflows or low levels, and optimize the operation of hydraulic equipment. Monitoring and control of lighting systems Including scheduled control, zone-based control, dimming, integration with operating schedules, and energy-saving strategies. In hotels, airports, and shopping centers, lighting represents an important part of daily operations. An integrated system makes it possible to automate schedules, reduce unnecessary consumption, and maintain an appropriate visual experience for users and visitors. Monitoring and control of water treatment systems Including potable water treatment plants, domestic and industrial wastewater treatment plants, dosing systems, measurement of critical variables, pumps, blowers, valves, and process alarms. These solutions help maintain the operational stability of processes, facilitate the monitoring of key parameters, and provide useful information for reporting, maintenance, and operational compliance. Monitoring and control of fuel supply systems Including LPG, natural gas, diesel, storage tanks, levels, pressures, pumps, valves, alarms, and consumption associated with power generation, kitchens, laundries, boilers, or other services. The integration of these systems enables safer, more traceable, and more efficient operations, especially in facilities where fuel supply is directly related to service continuity. Monitoring and control of data centers and critical areas Including environmental conditions, power, backup systems, UPS, precision cooling, alarms, technical access, and availability of critical equipment. In airports, hotels, and large commercial complexes, data centers and technical rooms support reservation systems, security, communications, BMS, networks, CCTV, access control, and administrative operations. Continuous monitoring is essential to ensure availability and reduce operational risks. From isolated systems to integrated operations The true value of these solutions is not limited to monitoring individual pieces of equipment. It lies in integrating critical systems into a centralized platform that provides a complete understanding of the facility’s operation. This makes it possible to visualize general indicators, priority alarms, historical trends, consumption reports, operational status, and abnormal conditions from a single interface. At the same time, it helps technical teams move from reactive management to a more preventive, planned, and data-driven approach. For hotels, airports, and large tourism-related facilities, this translates into concrete benefits: Greater operational continuity.Reduced energy costs.Better control of critical utilities.Faster response to failures.Longer equipment service life.Improved experience for guests, passengers, and users.Reliable information for maintenance, management, and decision-making. Designing today the technology infrastructure for the future of tourism The growth of the tourism, hotel, and airport industries in the Dominican Republic requires increasingly reliable and efficient infrastructure, prepared to operate continuously. In this context, the technology

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