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IoT (Internet Of Things)  or "Internet of things" , is the interconnection of devices and objects through a network, where all devices can interact with each other.

These devices can be, from sensors, mechanical actuators to household objects, a lock, the refrigerator, clothes, shoes, thermostats and even medical devices, they can be strategically connected devices to collect useful information that will be analyzed later.

Anything could be connected to the internet through wireless networks and interact without the need for human intervention, using various data platforms to make decisions, the objective is a machine-to-machine interaction, or what is known as an M2M interaction ( machine to machine) or M2M devices, there are expected to be nearly 20 billion Internet of Things (IoT) devices with cellular connections.

The IoT refers, as has been anticipated, to a technology based on the connection of everyday objects to the Internet that exchange, aggregate and process information about their physical environment to provide value-added services to end users.

It also recognizes events or changes, and such systems can react autonomously and appropriately. Its purpose is, therefore, to provide an infrastructure that overcomes the barrier between objects in the physical world and their representation in information systems.

These interconnections allow to improve operations, increase security, protection and productivity, implementing business models that adjust to specific needs.

The interconnection of these devices can be through current IoT_NB cellular networks (GSM, WCDMA and LTE) or through unlicensed networks such as LoRaWAN.



Interconnectivity: Anything can be interconnected with the global ICT infrastructure.

Object-related services: IoT is capable of providing object-related services and the things associated with them virtually.

Heterogeneity: IoT devices are heterogeneous as they are based on a wide variety of hardware platforms and networks, and in turn can interact with other devices or services on other platforms or networks.

Dynamic changes: the state of the devices changes very dynamically, generally according to the user. For example, from sleep to wake up, online or offline, and also according to the context and speed needed.

IoT is going to change our day to day, through the devices that are connected to each other and to the networks, therefore the information in our daily environment will be available in an accessible way and in real time, so that it can enrich the experience to interact with our environment.

The number of applications and services that can be developed is practically unlimited and these can be adapted to different fields of daily life, facilitating and improving the quality of life in different ways, that is why at C&C WIRELESSS we are prepared to accompany you at each stage of the process. process related to your project, we work on your idea to develop the application that best suits your IOT needs.

IOT APPLICATIONS to Develop According to Customer Need


Smart Connectivity: Data Management and Service Delivery, Interactive Group Communication, Real-time Streaming, Interactive Gaming, Virtual Reality, Network Security Monitoring, Biometric Authentication Methods, Consumer Telematics, Big Data Analytics , smart antennas.

Smart shopping:  RFID and other electronic labels and readers, barcodes in retail, inventory control and product quality, validation of the geographical origin of products.

Manufacturing Processes, Control and optimization of manufacturing processes.

Sensors for flow, humidity, temperature, movement, force, load and levels,

Acoustic and vibration detection, intelligent robot control, pattern recognition, predictive analysis, warehouse management, control overproduction through efficient logistics.

Energy services: intelligent measurement of accurate data on energy consumption, analysis and prediction of energy consumption behaviors and patterns, forecast trends and future energy needs.

Agriculture and environment: Measurement and control of environmental pollution, forecast climate changes based on the monitoring of smart sensors, passive RFID tags associated with agricultural products, Sensors in crops to monitor production, waste management.

Health: Monitoring of chronic diseases, improvement of the quality of care and quality of life of patients, remote diagnosis, connected bracelets, interactive belts, sport and fitness activities monitoring, smart labels for drugs, monitoring of the use of drugs, biochips, monitoring of eating habits.

Consumer electronics: Refrigerators, washers and dryers, smart.

Sensors for pet collars, personalization of the user experience, operation of autonomous products, personal locators, smart glasses.



Education: Linking virtual classrooms for learning, access services to virtual libraries and educational portals, exchange of reports and results in real time, foreign language learning, attendance management.

Home automation applications including smart sensors and actuators to control home appliances, automatic shutdown of electronics when not in use, smart thermostats, smoke detectors and alarms, smart locks, sensors embedded in building infrastructure to guide first responders and assistance, security for all family members.

Smart connected buildings: Improvements in efficiency (energy management and savings) and security (sensors and alarms).


Automotive , Smart Cars, traffic control, vehicle tire pressure monitoring, self-diagnosis, position, presence and proximity sensors, analysis of destination routes to save time, GPS location, control of the vehicle speed.


Smart cities and transportation:

  • Integration of security services (cameras, smart sensors, information to citizens).

  • Optimization of public and private transport.

  • Intelligent management of parking services and traffic in real time.

  • Intelligent management of traffic lights based on traffic queues.

  • Location of cars that have exceeded the parking time.

  • Water Administration, Irrigation of parks and gardens.

  • Smart garbage containers, pollution and mobility controls.

  • Obtain an immediate response and know the opinions of citizens.

  • Smart governance. Voting Systems. Accident monitoring, coordination of emergency actions.
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