Study for the Internet of Things (IOT102) Test. Access comprehensive flashcards and multiple choice questions, each with hints and explanations. Get prepared for your exam!

Multiple Choice

In IoT developments, researchers are looking for devices with which characteristics?

In IoT deployments, devices must run for long periods with minimal upkeep while staying affordable and able to communicate wirelessly. Low power wireless transmitting capability is essential because wireless radios are a major energy drain; using radios that consume very little power, along with strategies like sleep modes and duty cycling, lets devices wake only when needed and conserve energy between transmissions. Long battery life follows from that same energy-conscious design: devices that consume little power can operate for years on a small battery, reducing maintenance costs and the need for frequent replacements across large networks. Battery efficiency matters too, since not all stored energy is usable; batteries and power-management techniques that minimize losses ensure more of the stored energy is available for sensing, processing, and transmission rather than wasted as heat or voltage drop. Taken together, these characteristics enable scalable, reliable IoT networks with low total cost of ownership and fewer maintenance visits, which is why all of these factors are sought after.

In IoT deployments, devices must run for long periods with minimal upkeep while staying affordable and able to communicate wirelessly. Low power wireless transmitting capability is essential because wireless radios are a major energy drain; using radios that consume very little power, along with strategies like sleep modes and duty cycling, lets devices wake only when needed and conserve energy between transmissions. Long battery life follows from that same energy-conscious design: devices that consume little power can operate for years on a small battery, reducing maintenance costs and the need for frequent replacements across large networks. Battery efficiency matters too, since not all stored energy is usable; batteries and power-management techniques that minimize losses ensure more of the stored energy is available for sensing, processing, and transmission rather than wasted as heat or voltage drop.

Taken together, these characteristics enable scalable, reliable IoT networks with low total cost of ownership and fewer maintenance visits, which is why all of these factors are sought after.