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Bench Talk
Bench Talk for Design Engineers | The Official Blog of Mouser Electronics
Quantum Computing Paves a Smarter Path to Resource Optimization
On sausis 27, 2026 in
All
,
Computing
,
Energy Harvesting
,
Industrial
,
IoT
,
Low Power
by
Liam Critchley
Explore how quantum computing can transform resource optimization across sectors, particularly with energy efficiency and sustainability. To get there, though, challenges lie ahead.
Read More »
Tagged With:
ai energy impact
,
battery optimization
,
data center sustainability
,
energy efficiency
,
low power computing
,
quantum algorithms
,
quantum computing
,
renewable energy
,
resource optimization
,
smart grid
New Tech Tuesdays: Edge AI Motion Sensing for Wearables
On sausis 20, 2026 in
Industrial
,
Low Power
,
New Tech Tuesdays
,
Sensors
by
Mouser Technical Content Staff
Edge AI motion sensing enables wearables and industrial devices to process motion data locally for real-time, low-power, and privacy-focused applications.
Read More »
Tagged With:
ar/vr interfaces
,
bosch bhi385
,
edge ai motion sensing
,
embedded ai
,
gesture recognition
,
imu sensors
,
low-power processing
,
predictive maintenance
,
smart sensors
,
wearable technology
Why Wi-Fi 6 Is Still the IoT Connectivity Standard
On gruodis 18, 2025 in
Industrial
,
IoT
,
Low Power
,
Wireless
by
STMicroelectronics
Even as Wi Fi 7 enters the market, Wi Fi 6 remains the benchmark for IoT connectivity, offering a proven balance of power efficiency, reliability, and scalability that engineers can trust for dense, low power networks.
Read More »
Tagged With:
bluetooth low energy 5.4
,
ieee 802.11ax
,
iot connectivity
,
low-power iot design
,
mu-mimo
,
ofdma
,
stmicroelectronics st67w611
,
target wake time
,
thread protocol
,
wi-fi 6
Engineering the Invisible Smart Home with Ambient Computing
On gruodis 12, 2025 in
Automation
,
Energy Harvesting
,
IoT
,
Low Power
,
Sensors
by
Mouser Technical Content Staff
Ambient computing is reshaping smart homes, but it’s the engineering behind sensors, power efficiency, and edge intelligence that makes it work. Discover the technical backbone driving seamless, invisible technology in modern environments.
Read More »
Tagged With:
ambient computing
,
edge computing
,
energy harvesting
,
home automation
,
human-centered design
,
iot
,
low power electronics
,
matter protocol
,
sensor networks
,
smart home
New Tech Tuesdays: Hybrid Power Modules Simplify High-Power Bus Conversion
On gruodis 9, 2025 in
All
,
Circuit Protection
,
Energy Harvesting
,
General
,
Industrial
,
Low Power
,
New Tech Tuesdays
,
Power
by
Mouser Technical Content Staff
Analog Devices’ hybrid µModule® simplifies 48V bus conversion with high efficiency, low EMI, and scalable power for telecom and industrial systems.
Read More »
Tagged With:
48V bus converter
,
Analog Devices LTM4654
,
bidirectional power
,
DC-DC converter
,
hybrid µModule
,
high power density
,
industrial power
,
low EMI
,
switched-capacitor topology
,
telecom power
Smarter Industrial Control Panels with Siemens ET200SP
On gruodis 1, 2025 in
All
,
Automation
,
Industrial
,
Industrial Automation
,
IoT
,
Low Power
,
Motor Control
,
Security
,
Sensors
by
Siemens
Raj Rajendra of Siemens shares how the ET200SP helps control-panel designers keep pace with shrinking footprints, rising connectivity demands, and stricter sustainability rules—offering modular expansion, tool-free wiring, and advanced diagnostics to future-proof industrial automation.
Read More »
Tagged With:
control panel design
,
diagnostics
,
energy efficient
,
industrial automation
,
industrial connectivity
,
modular i/o system
,
profinet
,
siemens et200sp
,
sustainable manufacturing
,
tool-free wiring
Thermoelectric Nanomaterials for Energy Harvesting in Electronics
On lapkritis 24, 2025 in
All
,
Energy Harvesting
,
General
,
Industrial
,
Low Power
,
Medical
,
Power
,
Sensors
,
Wireless
by
Liam Critchley
Learn how thermoelectric nanomaterials are enabling more efficient, compact, and sustainable power solutions for modern electronics, ranging from wearables and IoT devices to industrial systems and space exploration.
Read More »
Tagged With:
carbon nanotubes
,
energy harvesting
,
graphene
,
iot power solutions
,
low power devices
,
nanowires
,
sustainable electronics
,
thermoelectric generator
,
thermoelectric nanomaterials
,
wearable electronics
Context-Driven Models for Smarter Forecasts
On lapkritis 17, 2025 in
All
,
Automation
,
Computing
,
Energy Harvesting
,
General
,
Industrial
,
IoT
,
Low Power
,
Sensors
by
Becks Simpson
Discover how context-aware LLMs improve forecasting accuracy by integrating real-world data, including outages, weather, and retail promotions.
Read More »
Tagged With:
anomaly detection
,
context-aware ai
,
energy demand
,
forecasting
,
interpretability
,
llm
,
predictive analytics
,
reasoning models
,
retail forecasting
,
time series models
Cutting the Cord: How Energy Harvesting Powers the Future of IoT
On lapkritis 5, 2025 in
All
,
Energy Harvesting
,
Industrial
,
IoT
,
Low Power
,
Power
,
Sensors
by
Mouser Technical Content Staff
From smart cities to factory floors, energy harvesting is revolutionizing how IoT devices are powered—tapping into ambient energy sources like light, vibration, and RF to eliminate batteries, reduce maintenance, and unlock new possibilities for smart, sustainable technology deployment.
Read More »
Tagged With:
ambient energy
,
energy harvesting
,
iot power solutions
,
low-power electronics
,
photovoltaic
,
piezoelectric
,
pmics
,
rf energy harvesting
,
thermoelectric generators
,
vibration energy
Sustainable Heat Shrink Tubing for Harsh Environments
On spalis 29, 2025 in
All
,
Automotive
,
Circuit Protection
,
Energy Harvesting
,
Industrial
,
Low Power
,
Power
by
TE Connectivity
Bio-based polymers from renewable feedstocks often face durability questions, but testing and a new solution prove they can meet the thermal, mechanical, and chemical demands of harsh environments.
Read More »
Tagged With:
automotive insulation
,
bio-based materials
,
carbon footprint reduction
,
eco-friendly engineering
,
harsh environment plastics
,
industrial sealing
,
renewable polymers
,
sustainable heat shrink tubing
,
te biofuse
,
ul 224 tubing
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