March 2024 EnergyWiseSM Tip: Kicking the Can

March 13, 2024

By: NPPD Energy Efficiency Program Manager Cory Fuehrer

First introduced in the 1950s, recessed lighting or “can lighting” is still a popular choice for residential and commercial lighting. Traditionally, these fixtures consist of a cylindrical or square-shaped metal housing that extends above the ceiling so only the trim or baffle is visible on the ceiling surface. A lamp or bulb is screwed into a socket mounted inside the top of the housing. When switched on, the fixture provides a streamlined and unobtrusive appearance that complements various interior design styles.

Despite these benefits, recessed can lights have a reputation for being inefficient. Though they can be fitted with an energy-efficient LED bulb, many still use less-efficient incandescent bulbs. Recessed fixtures with housing that is not sealed can also lose costly heated or cooled air from the space below. According to the U.S. Department of Energy, these energy losses can account for up to 50% of a ceiling’s total thermal loss. Though customers can install a more expensive, sealed can light or retrofit existing fixtures with seals, they now have another choice: canless recessed lights.

Canless recessed lighting refers to a type of fixture installed directly into the ceiling. They do not have a recessed can or housing that extends above. Moreover, canless recessed lights are self-contained units that integrate the housing, trim, and light source into a single fixture. They are an ideal option for existing homes and facilities as they do not require any large holes in the ceiling and can be easily retrofitted to existing can lights.

Compared to traditional recessed lights, canless recessed lights are generally more compact, allowing for quick and easy installation. This makes them suitable for installations in areas with limited space between the ceiling and other structures, like ductwork or pipes. They also have better energy efficiency since they eliminate the need for separate housing that is prone to air leakage and heat loss while utilizing solid-state LED lighting technology which produces the most amount of light per watt of electricity. Since LEDs produce very little heat compared to other bulb options, customers also save on cooling costs.

Much like their predecessors, canless recessed lights offer multiple trim options, like baffle, pinhole or eyeball trim, to suit different design preferences. Perhaps the best surprise customers find is that canless fixtures typically cost 25% to 50% less when compared to their canned cousins.

Like many other high-performing lighting products, manufacturers can submit their canless recessed fixture products for ENERGY STAR® recognition. Those displaying the ENERGY STAR® label on their packaging are the easiest way customers can assure they are selecting a quality, energy-efficient light.

In partnership with Nebraska Public Power District, Southwest Public Power District wants to help their customers gain the most benefit from the electricity they provide. For additional ideas on ways you can make cost-effective efficiency improvements to your home or business, contact Southwest Public Power District or visit www.energywisenebraska.com for more information.

September 16, 2026
By: NPPD's Energy Efficiency Program Manager Cory Fuehrer According to Consumer Reports , 2018 was the first automotive production year when more new models were equipped with light-emitting diode (LED) headlights than halogen or high-intensity discharge (HID) headlights. Today, all new electric and hybrid vehicles are equipped with LEDS, as are most internal combustion engine vehicles. However, in June of 2026, of the 297.5 million registered vehicles in the United States, more than two-thirds were manufactured before 2018. If you drive one of these earlier-model cars, you are likely to be using the older lighting technologies to see your way down the road at night. Should you upgrade your headlights? Consider these points: Brighter illumination The number of lumens a light produces is a measurement of the total perceived light emitted by a source. As an example, a standard 100-watt incandescent lightbulb produces about 1,600 lumens. LED headlights produce 3,000 to 12,000 lumens to provide impressive lighting ranges that can reach beyond 300 yards. In comparison, halogen or HID headlights only produce 1,000 to 1,500 lumens and have a shorter lighting range that only reaches up to 150 yards. Energy Efficiency Depending on which headlights are being compared, LEDs are four to ten times more efficient than halogen or HID headlights in converting electricity to light. This is one of the main reasons LEDs can produce so many more lumens on an automobile’s headlamp circuit than the older technologies. Better visual acuity and safety When describing “white” light, the term “Kelvin” (using the symbol “K”) is used to describe how “warm” or “cool” the color is; the lower the Kelvin level, the warmer and more yellowish the light is. Traditional halogen and HID headlights produce light around 3200K. LED headlights produce crisp, directional white light around 5000K to 6500K, which improves contrast and distance visibility to the human eye. Less eye fatigue Studies have shown that the sharper contrast described above allows drivers to spot road signs, lane markings and obstacles much earlier, thus reducing cognitive and visual load during extended nighttime trips. Longer lifespan and lower overall cost Drivers using halogen or HID headlights typically get about 1,000 to 2,000 hours of use before they replace them again at an average cost of $20 to $60 per pair. Even though LED headlights cost three to five times more at an average cost of $50 to $175 per pair, they will last 30,000 to 50,000 hours and save money and time through fewer future replacements. Your local public power provider, in partnership with Nebraska Public Power District, wants to help you make the most of the energy they provide. That includes helping you safely and comfortably travel from point A to point B at night. To find additional ways electrical technologies can improve efficient use of energy in our lives, contact your local utility or visit www.energywisenebraska.com.
September 10, 2026
Smart thermostats promise to help homeowners save energy while keeping their homes comfortable. But are they worth the investment? The short answer: They’re worth it. Unlike traditional thermostats, smart models connect to home wi-fi and can be controlled through a smartphone app. Many also “learn” a household’s schedule and automatically adjust temperatures when people are asleep or away. When a smart thermostat lowers or raises the temperature for several hours a day, it can reduce heating and cooling costs. Because smart thermostats automate these adjustments, they can help households maintain energy-saving settings without anyone having to remember to change them manually. Some models also compile energy reports that show how often the system runs and offer suggestions for reducing energy use. However, smart thermostats may not be necessary for every home. If you live in an older home, you might need an electrician to install additional wiring to support yours. And smart units are pricier than basic programmable units. Plus, you need a stable internet connection for a smart model to operate consistently well. If you already have a programmable thermostat, a smart unit might not save you much additional money. And if you work at home all day and need to keep the heat or a/c at a comfortable setting, you won’t want a thermostat that automatically makes your home colder on winter days or warmer during summertime working hours.  Still, for homeowners who frequently forget to adjust the temperature or want the convenience of remote control, a smart thermostat can be a useful tool for improving comfort and managing energy use.
September 2, 2026
Summer heat can be tough on people. It can also be tough on batteries. Many of the devices we use every day contain lithium-ion batteries. That includes phones, laptops, tablets, power tools, e-bikes and e-scooters. These batteries work best when they stay within a moderate temperature range. Excessive heat can shorten battery life and, in rare cases, create safety risks. One of the worst places for a battery-powered device is a parked car. On a sunny day, temperatures inside a vehicle can climb quickly. Leaving a phone or laptop in a hot car can damage the battery and reduce its ability to hold a charge. Watch for warning signs. If a battery becomes unusually hot, starts swelling, leaks fluid or gives off a burning smell, stop using the device immediately. Damaged lithium-ion batteries can become dangerous. A few simple steps can help: • Keep devices out of direct sunlight. • Do not leave them in hot vehicles. • Use the charger recommended by the manufacturer. • If a battery-powered device becomes very hot while charging, unplug it and let it cool.  A little heat awareness can help your devices last longer and operate more safely.
August 20, 2026
By: NPPD's Energy Efficiency Program Manager Cory Fuehrer If you have traveled from Nebraska’s panhandle towards the southeast in the middle of summer, you likely know it can be a long and hot road trip. However, the further south and east you travel, you will probably notice that it is not only the temperature that is rising: humidity. High humidity can make those summer days feel even sweltering. While air-conditioning systems are tasked with removing most of this excess indoor humidity, many homes and businesses in the eastern half of the state also require stand-alone dehumidifiers to achieve acceptable levels. The Consumer Product Safety Commission and the U.S. Environmental Protection Agency recommend a humidity levels between 40 and 50% for most indoor environments. In addition to eliminating the muggy, clammy feeling, additional dehumidification can: Improve air quality Lessen allergy and asthma symptoms Inhibit mold growth Diminish musty odors Reduce airborne dust Suppress dust mites Protect a home or building’s structural integrity However, operating dehumidifiers can have a dramatic impact on summer utility bills. Even a medium-sized portable unit (50 pints per day) can add an additional $100 per month if the unit is set to operate continuously on its highest setting. If your home or business requires a separate dehumidifier to manage humidity level, here are some ideas of how to do it most efficiently. When shopping for a dehumidifier, purchase an ENERGY STAR®-certified model. Dehumidifiers that earn this certification use more efficient refrigeration coils, compressors and fans to remove the same amount of moisture as a similarly sized conventional unit but use about 15% less energy. Dehumidifier efficiency is measured with an Integrated Energy Factor (IEF), which is in the amount of electricity (kilowatt hours (kWh)) the unit consumes for each liter (L) of moisture removed from the air. To be eligible for certification, minimum IEF values are: Units rated up to 25 pints/day – IEF of =.70 L/kWh or greater. Units rated at 25.01 to 50 pints/day – IEF = 2.01 L/kWh or greater. Units at over 50 pints/day – IEF = 3.30 L/kWh or greater. Set the humidistat so the dehumidifier does not run continuously. For basements in the summertime, 50% relative humidity is recommended. In colder weather, relative humidity levels between 25 and 40% are advised to reduce condensation on windows. Tightly close all windows and doors to the area being conditioned to minimize humidity coming from outside air. Place the dehumidifier in the area with the highest humidity but avoid creating a safety hazard by placing it in or near water. Dehumidifiers are not the solution to standing water (or running water) in basements. Make sure the dehumidifier is connected to a properly grounded outlet. Position the dehumidifier away from the wall or furniture so air can freely circulate through the unit. Hook up a drain hose to the dehumidifier to eliminate the need to continuously empty the tank. Keep the dehumidifier clean. Wipe or vacuum dust and dirt from the coils and fan. If you have a choice of fan speeds, higher speeds are more efficient, though lower speeds are quieter. Reduce energy use during peak electric use periods. Put your dehumidifier on a timer to turn it on at 9 p.m. and off at 10 a.m. In partnership with Nebraska Public Power District, your local utility wants to help you stay cool, comfortable and healthy this summer. Contact them or visit www.enerywisenebraska.com if you would like more information on ways to improve your energy efficiency, as well as various EnergyWiseSM incentives that may be available to you for implementing energy efficient technologies.
August 13, 2026
Summer heat can be tough on people. It can also be tough on batteries. Many of the devices we use every day contain lithium-ion batteries. That includes phones, laptops, tablets, power tools, e-bikes and e-scooters. These batteries work best when they stay within a moderate temperature range. Excessive heat can shorten battery life and, in rare cases, create safety risks. One of the worst places for a battery-powered device is a parked car. On a sunny day, temperatures inside a vehicle can climb quickly. Leaving a phone or laptop in a hot car can damage the battery and reduce its ability to hold a charge. Watch for warning signs. If a battery becomes unusually hot, starts swelling, leaks fluid or gives off a burning smell, stop using the device immediately. Damaged lithium-ion batteries can become dangerous. A few simple steps can help: • Keep devices out of direct sunlight. • Do not leave them in hot vehicles. • Use the charger recommended by the manufacturer. • If a battery-powered device becomes very hot while charging, unplug it and let it cool. A little heat awareness can help your devices last longer and operate more safely.
August 5, 2026
During the summer, attic temperatures can climb far above outdoor levels, allowing heat to radiate down into living spaces. This hidden source of heat can make your air conditioning system work harder than necessary. Start by checking attic ventilation. Soffit and ridge vents should be clear and unobstructed to allow hot air to escape. Blocked vents can trap heat and increase indoor temperatures. Gaps around attic access points, such as pull-down stairs or hatches, can also allow hot air to enter the home. Sealing these areas with weatherstripping or insulation can help reduce heat transfer. In some cases, attic fans may improve airflow, but they should be used carefully to avoid disrupting the balance of the home’s ventilation system. Still, addressing attic heat does not require a full renovation. Even small improvements in insulation can make a difference by slowing the movement of heat into living areas.
July 29, 2026
Older homes can be especially difficult to keep cool during peak summer heat, but expensive window replacements are not the only solution. Small, targeted changes can make a noticeable difference. Start by sealing air leaks. Caulking and weatherstripping around outlets and windows—both indoors and out—can help keep hot air out and cooled air in. At night, take advantage of lower outdoor temperatures by opening windows and using fans to pull in cooler air. In the morning, close windows and blinds early to trap that cooler air inside. Temporary window improvements can also help. Interior inserts, cellular shades and reflective panels reduce heat gain without permanent installation. Focus on south- and west-facing windows, which receive the most direct sunlight. It may also help to run your air conditioning earlier in the day, before outdoor temperatures peak. This can reduce strain on the system later. While older homes present energy-efficiency challenges, a combination of sealing and shading, along with smart timing, can improve comfort without major renovations.
July 22, 2026
Window air conditioning units are a common solution for summer cooling, but many lose efficiency due to simple installation issues. A few small adjustments can improve performance and reduce energy use. · Start by sealing gaps around the unit. Even small openings above or beside the unit allow hot air to enter and cooled air to escape. The accordion panels that come with many units often provide minimal insulation, so adding foam board or insulation can improve their effectiveness. · Outdoor shade can also make a difference. Direct sunlight forces the unit to work harder, so installing an awning or placing shade above the unit can reduce the load. Inside, keep curtains or blinds closed during the hottest part of the day.  · Regular maintenance matters as well. Clean or replace filters to maintain proper airflow and check that the unit is slightly tilted outward so condensation drains correctly.
July 16, 2026
By: NPPD Energy Efficiency Program Manager Cory Fuehrer According to data from the Air-Conditioning, Heating and Refrigeration Institute, more U.S. homes purchased heat pumps than traditional gas furnaces combined with central air-conditioner (AC) systems for the last four years. Though sales in 2025 declined nearly 500,000 units from 2024, heat pump systems still outsold traditional central furnace/air-conditioning combinations 4,122,000 to 3,247,000. To achieve this level of popularity, heat pumps have had to overcome several misperceptions and falsehoods. Here are a few accurate descriptions of today’s modern heat pump: Heat pumps work really well when it is “real” cold According to Consumer Reports, “Heat pumps can work almost anywhere if carefully chosen and properly installed.” The misperception that heat pump systems can’t handle Nebraska’s harsh winters is simply not true. Though they are installed with back-up heating systems, those only operate during the most extremely cold hours of the year. The heat pump itself, with efficiencies two-to-more-than-five times greater than their back-up systems, can satisfy the overwhelming majority of heating requirements during the year. Heat pumps are for both heating and cooling Some people think a heat pump can only move heat from outside to inside a home or building. But in fact, air-source heat pumps operate like a central air-conditioning unit in the summer by removing heat from inside. They also appear nearly identical to a central air-conditioning unit. Unless you know that both refrigerant lines that attach to the outdoor unit are insulated for heat pumps, whereas only one of the lines to a central air conditioner unit is insulated, you probably will not know the difference. Heat pumps have few maintenance issues Most heat pump performance issues are caused by installation errors, improper sizing, airflow problems, or control settings, not by faulty equipment. Correct design, commissioning, and maintenance are critical to ensuring they can provide high levels of efficiency for years to come. Heat pumps blow warm air out of the vents Gas furnaces can blast air around 130°F to 140°F for a few minutes before turning off. But heat pumps gently blow warm air at 85°F to 95°F for longer periods to provide more consistent temperatures throughout the home or building. Because human body temperature is around 98.6 degrees Fahrenheit, this airflow can feel cool against your skin. To prevent this sensation, avoid sitting or standing directly in the path of airflows from vents. In partnership with Nebraska Public Power District, your local public power provider wants to help you efficiently heat and cool the spaces where you live in. To learn more about high-efficiency heat pump systems and EnergyWiseSM incentives to reduce the costs of efficiency improvements, contact your local utility or visit www.energywisenebraska.com.
July 8, 2026
As temperatures rise, so do reports of door-to-door home repair scams. Contractors may show up uninvited, claiming your air conditioner is about to fail or your roof was damaged in a recent storm. Some even say they are already working in your neighborhood and can offer a “today only” deal. Don’t fall for it. These high-pressure tactics are designed to push homeowners into quick decisions. Warning signs include requests for large upfront payments, insistence on cash, lack of a written estimate or no verifiable business address. In some cases, scammers may pose as utility workers and ask to check your meter or demand payment to avoid service shutoff. Before agreeing to any work, take a few minutes to verify the company. Ask for a license number and proof of insurance. Look up the business independently and check for reviews or complaints. Legitimate contractors will provide written estimates and allow time for questions. If something feels off, it probably is. Taking a pause can protect both your home and your wallet during the busiest repair season of the year.
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