The company Comidor started its course in the high Tech industry at the beginning of 2004 (formerly B-open). In 2004 the jPlaton Platform was already developed, tested and the same year applied in the Vehicle Technical Control industry with the jKteoVTC. The product has been adopted by 60% of the VTC Market making Comidor a leader in the industry of Technical Controls.
jPlaton platform is a modern design environment for the development of Open Distributed Management Applications (Design, Development and Runtime Environment for Open Distributed Enterprise Applications).
It is the first worldwide known implementation of an integrated programming model of ‘multi-level programming’ (Multi-Layer Programming – MLP), which was first presented in the 2004 Infosystem exhibition and since then grows along with the theoretical background. Multi-Layer planning is an idea that has been already applied in image processing (Multilayer Image Processing). It allows an application to be developed on multiple layers which affect each other in a hierarchical model based on conditions.
Since 2007 Comidor started exploring the possibilities of Cloud Computing with jPlaton’s architecture allowing the company to implement any type of Cloud Solution (Public, Private, Hybrid e.t.c) in any kind of Application. Development was focused on Comidor, a Low-Code Automation platform for private as well as public organizations. Comidor is a platform that besides its own implemented tools and email client, can connect to any kind of database allowing every kind of integration.
Comidor has been certified with ISO 9001:2015 and 27001:2013
The 9001:2015 refers to the Design, Development, Analysis, and Support of business software and applications.
The 27001:2013 refers to the Design, Development, Implementation, Sales, and Technical Support of business software applications.
The MediLudus project proposes the development of an integrated system for health care at home and the provision of suggestions for the improvement of living conditions for elderly people living alone or without constant monitoring and support at home. This system has two pillars: one relates to the use of sensors around the house and on the patient (wearables and individual wearable sensors) that constantly provide information about the activities and the patient’s clinical data, but also for the conditions at home (temperature, air quality, lighting), while the other of a local decision-making system for the empowerment and mobilization of the patient.
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