Saturday morning brought an unexpected emergency to Rolling Hills Drive in Barrington Hills, where a house fire quickly escalated into a multi-alarm blaze. This post is the first in what will be a series covering the extensive response to this incident on April 18, 2015.
According to a listener from radioman911.com, the fire began when occupants of the house, who are renters, were burning leaves. Unfortunately, embers from the fire spread to nearby trees and eventually ignited the structure of the house. Strong winds exacerbated the situation, causing the flames to spread rapidly. By the time Barrington and Countryside fire units arrived, they had already called for a second alarm. This quickly evolved into a fourth alarm specifically for tender support as the fire continued to intensify. A fifth alarm was later requested, along with interdivisional alarms for tender task forces from Divisions 2 and 5. These additional alarms ultimately brought more personnel and resources to the scene.
The fire didn't stop at the house; embers carried by the wind ignited a prairie fire behind the residence. This fire spread dangerously close to electric transmission lines, prompting a special alarm for brush fire assets. Multiple counties and six MABAS divisions were represented at the scene, with engines dispatched from neighboring towns like Buffalo Grove, Arlington Heights, Des Plaines, Rolling Meadows, and Elgin.
The sheer scale of the response was staggering. Units from various departments, including Countryside, Long Grove, Cary, Carpentersville, Hoffman Estates, East Dundee, Fox River Grove, and others, all contributed to the effort. Even specialized vehicles such as tenders and tankers from surrounding areas were mobilized to assist in the firefighting efforts. In total, over thirty pieces of equipment were present, including apparatus from Buffalo Grove, Arlington Heights, Des Plaines, Rolling Meadows, and Elgin.
As the fire raged, it became clear that this was no ordinary house fire. Photos taken by Larry Shapiro reveal the extent of the damage, showing a massive mansion engulfed in flames. The images capture not only the intensity of the fire but also the coordinated efforts of firefighters working tirelessly to contain the blaze. E-ONE fire engines were seen drafting water from portable tanks, highlighting the resourcefulness required to manage such a large-scale incident.
Additional support came from ambulances and other emergency vehicles, ensuring that any potential injuries could be swiftly addressed. Despite the overwhelming nature of the fire, the community rallied together, with local residents and first responders alike demonstrating remarkable resilience and dedication.
For those interested in seeing more visuals from the scene, additional photos can be found at shapirophotography.net. This event serves as a stark reminder of both the dangers posed by wildfires and the importance of swift, coordinated responses in emergencies. As more details emerge, we'll continue to update this story to provide a comprehensive account of how the community came together to face this challenge.
UV conformal adhesive is an adhesive that can cure quickly under ultraviolet irradiation. It is mainly used to protect electronic components from moisture, dust and chemical substances.It can be used for protection of circuit boards.
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Characteristics of UV curable conformal coating:
1.Fast curing: Under ultraviolet irradiation, it can be quickly cured in a short time to improve production efficiency.
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2.Good protective performance: It can effectively prevent moisture, dust and chemical substances from damaging electronic components and extend the service life of electronic equipment.
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3.High transparency: It has good transparency after curing and does not affect the appearance and marking of electronic components.
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4.High and low temperature resistance: It can still maintain stable performance in different temperature environments.
5.Environmental protection: generally does not contain harmful solvents and meets environmental protection requirements.
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Application
1. Consumer Electronics
- ​Devices: Smartphones, wearables, tablets, laptops, and IoT devices.
- ​Purpose: Protect PCBs from moisture, dust, and chemical exposure in compact, high-density designs.
- ​Advantage: Fast curing (<1 minute) supports high-volume production.
​2. Automotive Electronics
- ​Components: Engine control units (ECUs), sensors, infotainment systems, EV battery management systems (BMS), and ADAS modules.
- ​Purpose: Shield against temperature extremes, vibration, humidity, and automotive fluids (e.g., oils, fuels).
- ​Advantage: Low thermal stress prevents damage to heat-sensitive parts.
​3. Aerospace and Defense
- ​Applications: Avionics, radar systems, satellite electronics, and communication modules.
- ​Purpose: Ensure reliability in extreme environments (high altitude, radiation, thermal cycling).
- ​Advantage: Meets stringent MIL-STD and IPC standards for durability.
​4. Medical Devices
- ​Examples: Implantable devices, diagnostic equipment, wearable monitors, and surgical tools.
- ​Purpose: Protect against bodily fluids, sterilization processes (e.g., autoclaving), and biocompatibility requirements.
- ​Advantage: Low-VOC formulations comply with FDA and ISO 13485 standards.
​5. Industrial Electronics
- ​Applications: Motor drives, robotics, power supplies, and automation controllers.
- ​Purpose: Resist dust, chemicals, and humidity in harsh factory or outdoor environments.
- ​Advantage: High dielectric strength prevents short circuits in high-voltage systems.
​6. LED Lighting
- ​Use Cases: PCB protection in LED drivers, streetlights, and horticultural lighting systems.
- ​Purpose: Guard against thermal stress, humidity, and UV/IR exposure.
- ​Advantage: Transparent coatings maintain light output efficiency.
​7. Telecommunications
- ​Components: 5G infrastructure, base stations, routers, and fiber-optic modules.
- ​Purpose: Ensure signal integrity and protect against environmental corrosion.
- ​Advantage: Thin, uniform coatings minimize signal interference.
​8. Military and Ruggedized Systems
- ​Examples: Battlefield communication devices, unmanned vehicles, and missile guidance systems.
- ​Purpose: Enhance survivability under shock, vibration, and extreme temperatures.
- ​Advantage: Rapid field repairs using portable UV lamps.
​9. IoT and Smart Devices
- ​Applications: Smart home sensors, agricultural monitors, and asset-tracking systems.
- ​Purpose: Enable long-term reliability in diverse environmental conditions.
- ​Advantage: Selective coating reduces material waste in small-scale designs.
​10. Renewable Energy Systems
- ​Components: Solar inverters, wind turbine controllers, and battery storage systems.
- ​Purpose: Protect against outdoor exposure, temperature fluctuations, and salt spray.
- ​Advantage: UV resistance prevents yellowing or degradation over time.
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