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OSCP announces ArduPilot support across its MK2 IMU family

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An ArduPilot driver is now available for download at docs.oscp.com for every member of the MK2 family. The company is meeting drone builders at Commercial UAV Expo in Las Vegas this week.

LAS VEGAS, Sept. 1, 2026 /PRNewswire/ — OSCPS Motion Sensing Inc., operating as OSCP, today announced ArduPilot support across its MK2 family of inertial measurement units. The OSCP ArduPilot driver is available for download at docs.oscp.com, alongside integration documentation, a C SDK and Python examples.

For uncrewed aircraft the failure mode is the same everywhere: the platform flies until the satellite fix goes away. GNSS jamming and interference now reach far beyond declared conflict zones, and beyond-visual-line-of-sight operations leave no one with eyes on the aircraft. What bounds the drift in those minutes is the quality of the gyroscope.

The driver connects any MK2-family unit to an ArduPilot system over standard RS-422 or CAN-FD. Builders can start with the MK2M2, a MEMS unit measuring 40 by 40 by 25 millimetres, weighing 75 grams and drawing 1.2 watts, and move to the photonic MK2E2 for tactical-grade performance with the same driver and the same interfaces.

The photonic option matters on airframes because it is resilient to vibration: MEMS gyros are g-sensitive and accrue extra error under vibration and sustained acceleration, where OSCP’s photonic sensing holds its bias stability.

“Drone builders settled on ArduPilot a long time ago, and they were right,” said Kazem Zandi, founder and chief executive of OSCP. “We are not asking anyone to change their autopilot. We are giving the autopilot they already trust a better sense of motion.”

In a published road test over 21 minutes with satellite positioning denied, navigating on the gyroscope and a one-hertz speed input with no filter, OSCP’s photonic IMU finished 5.7 metres from ground truth against 20.5 metres for a MEMS unit on identical aiding.

OSCP sensors are designed and manufactured in Montreal and are ITAR-free. The company’s sales leadership is at Commercial UAV Expo, September 1 to 3. To arrange a meeting, contact sales@oscp.com. For details, visit oscp.com.

ABOUT OSCP

OSCPS Motion Sensing Inc., operating as OSCP, designs and manufactures photonic gyroscopes and inertial measurement units. Founded in 2015 and based in Montréal, Québec, the company builds inertial sensors that deliver tactical-grade accuracy at the size, weight, power and cost of MEMS, for navigation where GNSS is jammed, degraded or unavailable. Its customers work in space, defence, marine and subsea, rail, robotics and ground autonomy. OSCP products are made in Canada and are ITAR-free.

Media contact: info@oscp.com, +1 (438) 383-6727

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New Report Reveals How Airports Can Successfully Scale Electrified GSE Fleets in 2027

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The report from electrification partner Enatel draws on industry expertise, data and research to outline how airports can successfully transition to electric ground support equipment in 2027.

Read the Report

CHRISTCHURCH, New Zealand, Sept. 2, 2026 /PRNewswire/ — Airports across the world are adopting electric ground support equipment (eGSE), and a new report reveals unique barriers depending on operation size. Enatel, a global leader in electrification solutions, today launches The Global State of Airside Electrification: From Commitment to Operational Reality, backed by industry data, case studies and interviews.

The report finds that electrification is accelerating globally, but airports face different execution challenges depending on scale. From power availability constraints at major hubs to knowledge and planning gaps at regional operations, both need actionable guidance to move from commitment to execution and meet sustainability goals.

The insights come at a pivotal time. A recent survey by Ground Support Worldwide found that nearly 65% of airports intend to invest in eGSE fleets over the next five years to meet sustainability targets, improve operational efficiency and comply with new regulations. However, over 70% of respondents indicated their current charging infrastructure is lacking.

“The question for most airports is no longer whether to electrify, it’s how to plan and grow new electric GSE fleets effectively,” said Mike Clifford, General Manager of Enatel. “This report explores how GSE operators should prioritize infrastructure strategies and long-term implementation planning.”

Key Insights from the GSE Report

From large international airports to smaller regional hubs, airside ground support equipment electrification is gaining momentum globally. The report finds that some of the biggest opportunities and challenges for the industry include:

New methods to respond to power limitations, including battery energy storage systems, can reduce peak demand and lower total system costs by up to $10 million for large US airports.

Operators that adopt airport GSE battery charger partners early and develop long-term strategies are better positioned to scale electrification without disrupting day-to-day operations.

Charging equipment reliability and durability are essential to long-term electrification success, particularly in demanding airport environments.

Industry Experts in the GSE Report

The report also highlights insights from airport operators and charging specialists around the world. Contributors include Tony Smith of Bahrain Airport Services, who provides perspective on a real-world charging case study, along with other experts from Deerns, FastCharge, Enatel, and IDEAL Industries.

“This report provides airport operators with the strategies they need to move from electrification commitment to scalable execution,” said Rachel Whitehead, Director of Marketing and Product at Enatel. “Infrastructure decisions made today will support long-term electrification success.”

Read the report here.

About Enatel®

Enatel is a global leader in advanced battery charging technology designed for industrial vehicles. With more than 200,000 chargers deployed globally, they design and manufacture efficient, scalable charging solutions used across the material handling equipment, ground support equipment, and AGV industries. Enatel is headquartered in New Zealand and is part of the IDEAL Industries Inc. family of companies.

Media Contact:
Kaitlin Liebling
Kaitlin.Liebling@idealindustries.com

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SOURCE IDEAL Industries Inc.

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A Shrinking Supply of New Physical Games May Be Making Old Ones Scarcer and More Valuable

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Physical game spending fell to $1.5 billion in calendar year 2025, even as exceptional vintage sealed copies have reached seven-figure auction prices, according to Circana and Heritage Auctions.

MORTON GROVE, Ill., Sept. 1, 2026 /PRNewswire/ — The market for physical video games is no longer moving in a single direction. The Old School Game Vault has released an analysis of public sales and auction data showing a widening distinction between the mainstream physical-game market and the much smaller market for rare vintage collectibles.

The analysis does not conclude that falling physical-game sales automatically make older games more valuable. Rarity, condition, completeness, edition, and collector demand can make individual items behave differently from the broader retail market.

U.S. physical video game sales reached $1.5 billion in 2025

U.S. spending on new physical video games totaled $1.5 billion in calendar year 2025, according to Circana Retail Tracking Service data shared by Mat Piscatella. This was the lowest annual level since Circana began tracking the category in 1995.

Circana data show that spending peaked at $11.6 billion in calendar year 2008, illustrating the scale of the long-term contraction. The measurement period matters, however. Circana’s separate rolling 12-month series peaked at approximately $11.5 billion for the 12 months ending May 2009, while spending for the 12 months ending May 2026 was approximately $1.6 billion. These are different measurement periods, not conflicting totals.

A title released decades ago may remain inexpensive if many copies survive, while another from the same era may attract more collector interest because complete or well-preserved copies are scarce.

The condition of the game also matters. A loose cartridge, a complete copy with its original box and manual, and a factory-sealed example are not interchangeable from a collector’s perspective.

Record auction prices show the difference between ordinary and exceptional games

Heritage Auctions reported that a sealed Wata 9.8 A++ copy of Super Mario 64 sold for $1.56 million in 2021, becoming the first video game sold at auction for more than $1 million.

The sale was exceptional rather than representative. Its sealed condition, grade, title significance, and scarcity placed it outside ordinary used-game transactions.

For sellers, the practical lesson is to identify each item before accepting a broad valuation. A collection can contain common mass-market titles alongside rarer games, consoles, accessories, and editions that warrant closer examination.

Methodology

The Old School Game Vault synthesized public U.S. physical video game sales data from Circana Retail Tracking Service, shared directly by Mat Piscatella, together with Heritage Auctions’ 2021 press releases and auction records. No proprietary survey or original research was conducted. Circana figures describe mainstream physical software spending, while Heritage results represent individual collectible-market transactions.

Frequently Asked Questions

These questions summarize what the analysis means for the broader physical market and individual sellers.

Is the physical video game market growing or shrinking?

The U.S. physical video game market has undergone a major long-term contraction. Calendar-year 2025 spending was $1.5 billion, while the separate 12 months ending May 2026 reached approximately $1.6 billion. Neither figure determines the value of an individual retro title.

Why do some old games sell for so much?

Exceptional prices can occur when scarcity, condition, completeness, historical importance, and collector demand converge. The $1.56 million Super Mario 64 sale represents the extreme high end of the market, not a typical resale value.

What should sellers compare before choosing a buyer?

Sellers can compare specialization, offer transparency, condition requirements, testing procedures, shipping arrangements, and payment options.

About The Old School Game Vault

The Old School Game Vault is a nationwide retro video game buyer and seller based in Morton Grove, Illinois, and has operated since 2008. The company purchases video games, consoles, and accessories from customers across the United States and pays sellers in cash rather than store credit. The Old School Game Vault maintains an A+ rating with the Better Business Bureau, and its online pricing database includes more than 22,000 games, consoles, and accessories.

Media Contact

Contact: Brandon Perton

Email: brandon@theoldschoolgamevault.com

Location: Morton Grove, Illinois

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Clean electricity supplied 40% of new energy demand in 2025. Faster deployment and sectoral breakthroughs can cut emissions permanently, says annual Energy Transition Monitor

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A progress paradox: Clean electricity is growing more than twice the speed of overall energy supply, but emissions are not yet falling as overall demand for both fossil and clean energy is simultaneously expanding – driven by data centres, higher cooling needs and heavy industry.A two-speed transition: ~60% of global emissions – primarily from power generation and road transport – are rapidly being addressed by clean electrification at little or no extra cost. Progress is slower in the remaining 40% of emissions – from aviation, shipping, heavy industry and agriculture – which require solutions that carry a green cost premium or are at early-stages of commercial scale.Four levers remain largely unaddressed: coal use, methane emissions, deforestation, and slow scale up of carbon removals.

LONDON, Sept. 2, 2026 /PRNewswire/ — Global clean energy investment hit a record $2.1 trillion in 2025. Solar, batteries and electric vehicles again outperformed every forecast. But rising energy demand means global greenhouse gas emissions are only plateauing, not falling. The world has already breached 1.5°C of global heating and remains on track for around 2.5°C, according to the Energy Transitions Commission’s (ETC) Energy Transition Monitor 2026, published today.

As wildfires and intense heatwaves cause widespread economic and human damage and energy security costs mount since the Hormuz closure, demand for clean alternatives to volatile fossil fuels has grown. The annual assessment from the ETC Secretariat — representing a global coalition of energy, industry and finance leaders – finds that renewables supplied 99% of the growth in global electricity generation in 2025, while coal-fired and oil-fired generation both contracted. Global renewable capacity has almost doubled since 2022 and is on track to double again by 2030 — around 900 GW short of the tripling pledged at COP28.

But clean power is chasing a moving target: because electricity remains only a fifth of total final energy use, this growth in clean electricity covered just 40% of the rise in global energy demand, with fossil fuels supplying the rest, as demand from buildings, heavy industry and long-distance transport kept rising.

Clean technologies must be deployed faster to meet this growing demand. The report also identifies four other key levers for global emissions reductions that remain largely unaddressed: coal use, methane emissions, deforestation, and scale up of carbon removals.

The report describes a two-speed transition. Around 60% of global emissions could be abated through clean electrification alone at little or no extra cost — primarily in power generation and road transport, where electrification is already accelerating.

But barriers remain. Grid capacity is a major bottleneck to this acceleration: around 375 GW of renewables and 455 GW of battery storage are stuck in European connection and permitting queues, roughly 2,300 GW await grid connection in the United States, and nearly 10% of China’s wind and solar outputs were curtailed due to grid constraints in the first half of 2026. Supporting low-cost renewables through long-term contracts can also accelerate electrification.

The remaining 40% of global emissions, from high-temperature industrial heat, aviation, shipping and parts of agriculture, requires solutions that carry a green cost premium or are at early-stages of commercial scale. Of roughly 1,000 clean industrial projects announced globally, fewer than 20% have reached a final investment decision. Carbon pricing is strengthening, making clean projects more financially viable, but firm offtake commitments are still a major gap.

“Clean energy is now outpacing fossil growth, but deployment speed alone won’t cut emissions. Without removing grid bottlenecks, securing buyer commitments for clean industrial products, and achieving cost breakthroughs in shipping and aviation, emissions will continue to plateau and not fall.” said Adair Turner, Co-Chair, ETC.

“Coal is not phasing down, methane emissions are not falling, forests are still being cut down, and carbon removal is nowhere near the scale required. We must act to address these. Only by doing this can we stop the rapid heating of the planet, and we are seeing the effects of this in real time.” said Jules Kortenhorst, Co-Chair, ETC.

“The Energy Transition Monitor makes clear that the challenge is no longer whether clean energy technologies can scale, but whether we can deploy them fast enough to meet growing demand and reduce emissions simultaneously. As electricity demand accelerates, we have all the resources available to design energy solutions that pair abundant clean power with efficiency, flexibility, and modernized grids. The report points out solutions to unlock permitting and connection barriers to access resources at the scale of the opportunity. By combining clean electrification with smarter energy use, we can strengthen energy security and accelerate emissions reductions while still supporting economic growth.” said Jon Creyts, CEO, RMI, a member of the Energy Transitions Commission.

The picture varies sharply by region:

China: Building clean electrification faster than anywhere on earth.Supplies 83% of the world’s renewable-energy equipment, 45% of clean industrial plant equipment.Installs more than half the world’s wind and solar. In 2025, 56% of new passenger vehicle sales were EVs, and 13 of 19 global clean heavy-industry investment decisions were made in China in first half of 2026.United States: Federal action stops the transition accelerating but doesn’t stop it entirely.Since January 2025, 21 GW of clean energy was cancelled. Fossil capacity additions surged 71% in 2025-2026. Yet renewable growth slowed by only 2%.Data centres present the sharpest contradiction: accounting for half of all new clean energy contracts, while simultaneously driving the largest increase in new fossil fuel power capacity.EU and UK: Fastest emissions reduction progress of the major economies, though momentum has recently slowed.Renewable installations are strong and around 1 in 5 new passenger cars purchased are EVs. The European Commission’s electrification action plan targets a step change in the pace of deployment.Around 375 GW of renewables and 455 GW of battery storage are stuck in permitting and grid-connection queues.India: The world’s cheapest renewables but installs 9 times slower than China.Fastest electricity demand growth for a major economy at 6.4% a year, but new clean capacity is being absorbed by rising demand rather than displacing coal.Asia (excluding China & India) & Australia: Renewables contributed 62% of new power capacity in 2024, but progress across the region is uneven.High fossil fuel prices caused by the Hormuz strait closure has pulled the need for energy security and clean energy forward in the region. Countries including South Korea and Indonesia accelerated their renewables targets.

About the Energy Transitions Commission (ETC)
The Energy Transitions Commission is a global coalition of leaders from across the energy landscape committed to achieving net-zero emissions by mid-century while supporting economic growth and development. This report was produced by the ETC Secretariat and should not be taken as members agreeing with every finding or recommendation. The ETC is hosted by SYSTEMIQ Ltd.

All data in this release is pulled from the Energy Transition Monitor 2026 which can be downloaded here: https://www.energy-transitions.org/publications/energy-transition-monitor-2026

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