Author name: Sanjay Barewar

Sanjay Barewar is Co-Founder and Global Chief Delivery Officer at Pinetics, with 22+ years in hardware systems design and electronic product delivery. He holds a BE in Electrical Engineering from Pune University. He leads schematic and PCB design, EMI/EMC and pre-compliance, analog front-end design, component obsolescence strategy, and end-to-end product delivery.

IoT Gateway

Which Is the Right IoT Gateway for Edge Computing Projects?

Choosing the right gateway for an IoT system starts with the work the gateway must do, not with a catalogue. An IoT gateway sits between the field devices and the cloud, translating protocols, filtering data, running local decisions and holding the security boundary, so off-the-shelf versus custom is an architecture decision for the whole edge

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Portable Brain Imaging

Is Portable Brain Imaging the Future of Emergency Diagnostics?

Brain injuries do not respect ideal clinical environments. Trauma, stroke, or neurological complications can strike anywhere, at any time. The crucial first hour after injury often determines long-term outcomes. Yet most diagnostic imaging tools remain confined to hospitals, tied to specialized infrastructure and trained operators. Computed tomography (CT) scanners and MRI systems have set the standard in neurological imaging for years.

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Medical Devices

How Do You Modernise Legacy Medical Devices Through Intelligent Redesign?

You modernise legacy medical devices through intelligent redesign by first learning what the device actually does, then reconstructing its schematic, redesigning with intent, closing the regulatory gaps and rebuilding the firmware against the original behaviour. Modernising legacy medical devices through redesign keeps the validated clinical function and replaces the obsolete electronics underneath it, without a

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Embedded Systems

Future of Cardiac Care Will Live Inside Embedded Systems

For decades, cardiovascular care has been centered around hospitals. Patients visit clinics for tests. Data is captured intermittently. Clinicians analyze results after the fact. Intervention happens when symptoms become visible or when it is already too late. This model is no longer sufficient. The future of cardiac care will move beyond hospitals, becoming seamlessly integrated into embedded

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Cardiovascular Diagnostics

Embedded Intelligence in Cardiovascular Diagnostics

Cardiovascular disease remains the leading cause of death worldwide, yet the most dangerous cardiac events rarely arrive without warning. Clinical studies suggest that nearly 70% of major cardiac incidents are preceded by subtle micro-patterns; brief, transient electrical anomalies that appear long before symptoms become obvious. The challenge is not the absence of signals. It is our inability to capture, interpret,

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Industrial Automation

How Is Industrial Automation Moving Intelligence to the Edge?

Industrial automation is moving intelligence to the edge: from static PLC logic and centralised control to machines, sensors and mobile assets that sense, decide and adapt locally. They are networked by OPC UA over TSN, a service-oriented architecture on deterministic Ethernet, and secured at the device. The engineering pattern is what a buyer specifies, not

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Medical Devices

Predictive Cardiology and the Future of Medical Devices

Atrial fibrillation (AF) is one of the most common and most dangerous cardiac arrhythmias worldwide. Its greatest threat lies in its silence. Many patients live with AF for months or even years without noticeable symptoms, until the condition suddenly manifests as a stroke or severe cardiovascular complication. Traditional diagnostics rely on episodic monitoring, symptom reporting,

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Embedded Systems

What Is the Foundation of Reliable Embedded Systems?

The foundation of reliable embedded systems is hardware and software engineered as one tightly coupled system rather than as layers stacked on each other. Silicon choice, firmware behaviour, timing, security, manufacturability and scale are decided together from day one, because an embedded product lives in the physical world of voltage, temperature, interference and real-time deadlines,

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Smart Tool

How Does AI-Driven Smart Tool Management Deliver Tool Accountability?

Smart tool management delivers tool accountability by making the record automatic. A worker authenticates at a locker, the locker releases a specific tool, a tag reports where that tool goes, and every event is logged with a name, a time and a location. Nobody writes anything down, and industrial safety stops depending on a paper

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