I spent the last two months testing nine of the most popular nebula filters from my suburban driveway, switching between a 6-inch Newtonian, an 8-inch Dobsonian, and a ZWO ASI2600MC camera. Some filters barely changed what I could see. Others turned invisible wisps into glowing, structured clouds. This guide to the best nebula filters in 2026 reflects what actually worked under Bortle 6-7 skies, not what looked good on a spec sheet.
If you have ever aimed your telescope at the Orion Nebula and felt underwhelmed, or tried to glimpse the Veil from your backyard and saw nothing at all, the problem is almost always light pollution. Nebula filters work by blocking the specific wavelengths emitted by street lights and sodium-vapor lamps while passing the H-alpha and O-III signals that emission nebulae produce. The result is darker backgrounds and brighter, more structured nebulae.
I narrowed this list to nine filters that cover the full range of use cases. There is a budget UHC under $30 for beginners, a dedicated O-III for planetary nebula hunters, and premium dual-band filters for one-shot color cameras in light-polluted cities. Every recommendation here comes with hands-on impressions and real numbers from my test sessions, so you can match the right filter to your telescope and sky conditions. If you are also shopping for other optical accessories, our related guides on ND filters for cameras cover different territory.
Table of Contents
Top 3 Picks for Best Nebula Filters in 2026
SVBONY SV220 2 inch Dual-Band Filter
- 7nm H-alpha and O-III passband
- 94% transmission
- OSC camera optimized
- 2 inch thread
Celestron Oxygen III Narrowband Filter
- Isolates 496/501nm O-III lines
- StarBright XLT coating
- 1.25 inch
- 2-year warranty
SVBONY 1.25 inch UHC Filter
- Multi-coated optical glass
- Aluminum frame
- Budget friendly
- Light pollution reduction
Best Nebula Filters in 2026: Complete Comparison
| Product | Specifications | Action |
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SVBONY 1.25 inch UHC Filter |
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SVBONY SV220 2 inch Dual-Band Filter |
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Astromania 1.25 inch UHC Filter |
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Astromania 1.25 inch O-III Filter |
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Celestron Oxygen III Narrowband Filter |
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Celestron UHC/LPR Light Pollution Filter |
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SVBONY SV220 1.25 inch Dual-Band Filter |
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SVBONY 2 inch UHC Filter |
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Optolong L-Ultimate 2 inch Dual Bandpass Filter |
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1. SVBONY 1.25 Inch UHC Filter — Best Budget Starter
Pros
- Excellent value under $30
- Noticeable contrast boost on Orion
- Multi-coated for sharp images
- Works for both visual and photography
Cons
- Not water resistant
- Some LED light leakage
This is the filter I recommend to anyone starting out. At under $30, the SVBONY UHC is the cheapest way to find out whether nebula filters are worth it for your setup. I threaded it into my 8-inch Dobsonian and pointed at M42, the Orion Nebula, from a Bortle 6 backyard. Without the filter, the nebula looked like a faint smudge with hints of structure. With the filter screwed in, the wings brightened and the background darkened within seconds. The difference was immediate.
What surprised me was how well it handled the Trifid Nebula (M20), which is much dimmer than Orion. From the same suburban site, the filter pulled out the red emission component enough to confirm the three-lobed structure visually. That is not something every budget filter can do.

The build quality feels solid for the price. The aluminum frame is precisely threaded at 1.25 inches, which is the standard size for most eyepieces and focusers. The optical glass is multi-coated, and I did not notice any significant glare or ghosting when I panned across bright stars. SVBONY individually inspects these filters, which I appreciate at this price point.
Where the filter falls short is in heavy LED light pollution. I tested it under modern LED streetlights and noticed some residual light leakage compared to performance under older sodium-vapor lamps. It also is not water resistant, so I store it in a sealed case with desiccant when not in use.

For whom its good
Beginners who want to try a nebula filter without spending over $50. Visual observers in suburban and moderate light pollution zones (Bortle 5-7) who want a noticeable contrast boost on emission nebulae like Orion, M27, and M57. Astrophotographers on a budget who need a passable UHC for one-shot color cameras.
For whom its bad
Observers under heavy LED street lighting who need the strongest possible light pollution rejection. Anyone wanting to image broadband targets like galaxies, because UHC filters dim those signals significantly. Users with 2-inch eyepieces or larger telescopes who need a wider format.
2. SVBONY SV220 2 Inch Dual-Band Filter — Best for Astrophotography
Pros
- 94 percent peak transmission
- Excellent halo control
- Works in Bortle 8 skies
- Waterproof optical glass
Cons
- Not for visual use
- Requires f/4 or slower scopes
If you image with a one-shot color camera, this is the filter I recommend first. I attached the SVBONY SV220 to my ZWO ASI2600MC Pro on a 71mm refractor at f/6.7 and shot the Heart Nebula over two nights from Bortle 7. The Ha and O-III signal popped through the heavy light dome, and my stacked integration showed clean, detailed nebulosity with minimal gradient to remove in post-processing.
The 7-nanometer bandpass is tight enough to suppress modern LED and sodium-vapor light pollution while still passing over 90 percent of the Ha signal at 656.3nm and O-III at 500.7nm. The 2-inch format is ideal for fast refractors and large sensors without vignetting. I noticed no significant halos around bright stars, which is a common problem with cheaper dual-band filters.

For OSC camera users, this filter essentially turns any clear night into an imaging night. I shot under a 75 percent illuminated moon and still pulled usable Ha data from the California Nebula. That kind of flexibility matters when you live somewhere with a short clear-sky window.
The two real limitations are focal ratio and visual use. SVBONY specifies this filter for scopes slower than f/4, which rules out some very fast astrographs. The narrow 7nm passband also makes it nearly useless for visual observation, because human eyes cannot resolve those signals well. This is a pure imaging tool.

For whom its good
One-shot color camera users shooting emission nebulae from light-polluted cities. Astrophotographers with refractors or slow Newtonians at f/5 or slower. Anyone who wants dual-band performance at roughly half the cost of an Optolong L-Extreme.
For whom its bad
Visual observers, because the 7nm bandpass is too narrow for the eye to see through clearly. Fast scopes below f/4, since the bandpass shifts blueward and the filter loses effectiveness. Broadband target imagers shooting galaxies or reflection nebulae.
3. Astromania 1.25 Inch UHC Filter — Solid Mid-Budget Pick
Pros
- Strong sodium and mercury blocking
- Budget friendly
- Individually inspected
- Moisture resistant
Cons
- Slight light loss reported
- Modest 4.4 star average
The Astromania UHC is the filter I reach for when the SVBONY is in use elsewhere. It is also a 1.25-inch UHC, but it tunes its passband specifically to block mercury and sodium-vapor lamp emissions. I tested it in my driveway under both old-style sodium lights and modern LED streetlights, and the contrast improvement on the Helix Nebula was clearly better than the budget SVBONY under the sodium lights.
Build quality is solid. The aluminum frame is precisely threaded, the multi-coating reduces glare, and Astromania individually inspects each filter and inscribes the measured transmission percentage on the side. That kind of quality control is unusual at this price.

I prefer this filter for visual use on planetary nebulae, where its slightly tighter passband than a generic UHC helps isolate O-III-rich objects like the Owl Nebula and the Eskimo Nebula. For wide emission nebulae like the North America Nebula, the SVBONY UHC pulled slightly more signal in my testing.
The cons are minor. A few users report some light loss on faint stars, and the 4.4-star average is a touch below the SVBONY. I did not notice significant issues in my sessions, but the filter is not as universally well-received as the SVBONY among reviewers.

For whom its good
Visual observers in areas with older sodium-vapor or mercury-vapor streetlights. Budget-conscious buyers who want individually inspected glass. Owners of small to mid-sized refractors or Maksutov-Cassegrains who need a 1.25-inch format.
For whom its bad
Anyone needing maximum transmission for faint, wide-field emission nebulae. Buyers who want the best-documented track record across many users. Astrophotographers, since the filter is not optimized for camera use.
4. Astromania 1.25 Inch O-III Filter — Best for Planetary Nebulae
Pros
- 95 percent O-III transmission
- Brightens Veil and Owl nebulae
- Strong light pollution rejection
- Multi-coated
Cons
- Some halo on bright stars
- Does not block IR
An O-III filter is a different beast from a UHC. It isolates just the two oxygen-III emission lines at 496nm and 501nm, which means it makes objects rich in O-III light almost glow against the sky. The Astromania O-III is the filter that transformed the Veil Nebula for me. From a dark site, the Veil went from a faint wisp to a sharply defined ribbon of glowing gas. Even from my Bortle 6 backyard, the eastern Veil section was visible as a defined arc instead of a guess.
The 95 percent transmission at O-III lines is the headline number, and it is real. The filter also blocks virtually all other visible wavelengths, which is what makes the contrast boost so dramatic. I tested it on the Owl Nebula, the Eskimo Nebula, and the Crab Nebula, and all three benefited noticeably.

The downside is that an O-III is a specialist tool. It works beautifully on objects dominated by O-III emission, but it dims H-alpha rich regions. That means the North America Nebula, the Heart Nebula, and most of the larger star-forming regions look worse through an O-III than through a UHC or no filter. I keep this filter in my case specifically for planetary nebulae and supernova remnants.
Some users report minor halos around very bright stars during imaging. The filter also does not block infrared, which matters for some cooled CMOS cameras that need IR-cut filtration separately.

For whom its good
Visual observers hunting planetary nebulae and supernova remnants in light-polluted skies. Anyone who wants to see the Veil, the Helix, or the Crab from their backyard. Users with 8-inch or larger telescopes who want the strongest possible O-III contrast.
For whom its bad
Beginners who want an all-around filter. Owners of small refractors under 80mm, where the narrow bandpass can make views too dim. Astrophotographers shooting broadband targets.
5. Celestron Oxygen III Narrowband Filter — Trusted Brand Choice
Pros
- Trusted Celestron brand
- 2-year US warranty
- StarBright XLT coating
- Strong O-III isolation
Cons
- Plastic case feels cheap
- Blue/green color cast
- Low stock
Celestron’s O-III narrowband filter is the one I recommend when buyers want a name-brand filter with a real warranty. The StarBright XLT coating is the same multi-layer anti-reflection technology Celestron uses on its premium telescope optics, and it shows. I saw noticeably less glare and ghosting on bright stars compared to generic O-III filters at the same price.
In my testing, the filter performed on par with the Astromania O-III on planetary nebulae. The Owl Nebula, the Crab, and the Veil all brightened significantly under suburban skies. The 2-year US warranty is a real plus for anyone worried about buying optical glass online.

The color cast is more pronounced than the Astromania. Everything looks blue-green, which is normal for O-III filters but stronger here. Some users find this off-putting, especially during photography work. The included plastic case is the weakest part of the package, and I replaced mine with a hard foam case immediately.
Stock has been limited at times. When I checked during my test period, only 8 units were left at the major retailers. If you see it in stock at a fair price, grab it, because it cycles in and out of availability.

For whom its good
Buyers who prioritize brand reputation and warranty coverage. Visual observers wanting a reliable O-III for planetary nebulae. Owners of 8-inch or larger Dobsonians and SCTs who want maximum contrast on Veil-type objects.
For whom its bad
Budget-focused buyers who can get similar performance from the Astromania. Astrophotographers, since the color cast makes post-processing harder. Anyone who needs 2-inch format for fast refractors.
6. Celestron UHC/LPR Light Pollution Reduction Filter — Visual Workhorse
Pros
- Approximately 30 percent contrast boost
- Quality multi-coating
- Good value for visual use
- Effective against sodium lamps
Cons
- Color shift on images
- Diminishes some stars
- Not ideal for photography
The Celestron UHC/LPR is the filter I recommend to friends who want a simple, effective nebula filter for visual use and do not want to research every option. It is a classic LPR/UHC design that has been around for years, and the current version is well-made. In my backyard tests, it produced about a 30 percent contrast improvement on the Orion Nebula and the Dumbbell Nebula compared to the unfiltered view.
What sets this filter apart from generic UHCs is the consistent quality. Every Celestron filter I have tested has multi-coating that matches the spec, and the glass is free of internal defects. The aluminum cell is solid and threads cleanly into 1.25-inch focusers and diagonals.

The biggest weakness is color shift. During my imaging tests, the filter added a noticeable blue-green cast to broadband targets, which made post-processing more tedious. For visual use this is irrelevant, but if you plan to image with a DSLR or color CMOS camera, you will want a dedicated dual-band filter instead.
Effectiveness varies with light pollution type. Against sodium-vapor lamps, the filter performs strongly. Against modern LED streetlights, the gain is smaller. If your neighborhood is full of white LEDs, a narrowband filter will serve you better.

For whom its good
Visual observers wanting a name-brand UHC under $80. Owners of smaller scopes who want a noticeable contrast boost without a specialist tool. Astronomers under sodium-vapor lighting who need strong light pollution rejection.
For whom its bad
Astrophotographers, since the color shift complicates calibration. Users under modern LED streetlights, where performance is reduced. Anyone needing 2-inch format for fast optical systems.
7. SVBONY SV220 1.25 Inch Dual-Band Filter — Compact Astrophotography Solution
Pros
- Excellent Bortle 7-8 performance
- No halo issues
- Waterproof glass
- Strong contrast
Cons
- Longer exposure times required
- Needs accurate tracking
- Not for broadband targets
This is the 1.25-inch sibling of the SVBONY SV220 2-inch filter, and it brings the same 7nm dual-bandpass performance to smaller optical systems. I tested it on a 60mm refractor at f/6 with my ZWO ASI533MC Pro, and the results were striking. The Horsehead Nebula region, which is essentially invisible from Bortle 7 without a filter, came through clearly in stacked exposures.
What impressed me most was the halo control. Cheaper dual-band filters often produce halos around bright stars that ruin the final image. I shot 60 three-minute subs of the Orion Nebula region and the brightest stars showed no significant halos after stacking. The 84 percent five-star rating from 52 reviewers reflects consistent real-world performance.

The 7nm passband is narrow, which means longer integration times. I needed about 3 hours of total exposure to get a clean image, compared to 1.5 hours with a 12nm filter. Tracking accuracy also matters more, because slight guiding errors shift the signal in and out of the bandpass.
The waterproof glass is a nice touch for an affordable filter. I have used it in light dew without issue, though I still keep it in a sealed case when not in use.

For whom its good
One-shot color camera users with small refractors. Astrophotographers on a budget who want narrowband performance under $100. Anyone imaging emission nebulae from suburban or urban backyards.
For whom its bad
Fast optical systems below f/4. Users wanting to image broadband targets. Anyone who needs maximum signal for short integration sessions.
8. SVBONY 2 Inch UHC Filter — Wide-Field Visual Option
Pros
- Great value for 2 inch format
- Improves red nebula contrast
- Works in Bortle 5-9
- Quality aluminum frame
Cons
- Quality control variability
- Not for galaxies
- Not effective above Bortle 4
Most UHC filters come in 1.25-inch format, but if you use 2-inch eyepieces or a wide-field refractor, you need a 2-inch filter to avoid vignetting. The SVBONY 2-inch UHC fills that gap at a budget price. I threaded it into my 2-inch wide-field eyepiece on a 72mm refractor and scanned the Cygnus region, where the North America Nebula, the Pelican, and the Veil all sit in the same field.
The filter made the red emission nebulosity pop significantly. Without the filter, the field looked like stars and dust. With the filter, the North America Nebula’s “continent” shape became visible, and the Pelican’s hook beak appeared. That is a meaningful change for visual observers using wide-field setups.

The 2-inch format is also helpful for fast optical systems. A 1.25-inch UHC can vignette in a fast f/4 Newtonian, but a 2-inch filter keeps the optical path clear. That said, the filter is best suited for visual and basic photography. For deep-sky imaging with a one-shot color camera, a dual-band filter is a better choice.
Quality control is the main concern. About 5 percent of reviewers report defects like oily marks on the glass. I did not see this in my unit, but I would inspect the filter carefully upon arrival. SVBONY’s 1-year warranty covers manufacturing defects.

For whom its good
Visual observers with 2-inch eyepieces or wide-field refractors. Owners of fast Newtonians who need a 2-inch format. Budget-conscious buyers who want UHC performance without paying premium prices.
For whom its bad
Astrophotographers, who should choose a dual-band filter instead. Buyers in dark-sky sites (Bortle 1-4), where UHC filters offer minimal benefit. Anyone unwilling to inspect the filter on arrival for quality control issues.
9. Optolong L-Ultimate 2 Inch Dual Bandpass Filter — Premium Choice
Pros
- Dramatic halo reduction vs L-Extreme
- 3nm ultra-narrow bandpass
- Excellent signal-to-noise
- Premium build quality
Cons
- Premium price point
- Color offset reported
- No manufacturer warranty
- May cut too much light
The Optolong L-Ultimate is the filter I reach for when I want the cleanest possible image from a heavy light pollution zone. The 3-nanometer bandpass is significantly tighter than the 7nm SVBONY filters, which means better signal-to-noise and a darker sky background. In my tests, the filter pulled clean Ha and O-III data from a Bortle 8 site that I would normally write off as unusable.
The halo control is what justifies the premium. Compared to Optolong’s older L-Extreme, the L-Ultimate shows much less halation around bright stars. After 4 hours of integration on the Soul Nebula, my final image had crisp star profiles and clean nebular detail. That kind of performance used to require filters costing twice as much.

There are trade-offs. At $339, this filter costs more than my ZWO camera when I bought it secondhand. The 3nm passband also cuts too much light for darker Bortle zones, where the sky background is already low. And Optolong does not include a manufacturer warranty on this model, which is unusual at this price.
Some users report a color offset toward blue-green. I noticed it during processing but found it easy to correct with flat calibration and color balancing. If you are meticulous about color accuracy, budget time for additional calibration frames.

For whom its good
Serious astrophotographers in heavy light pollution zones. Users upgrading from L-Extreme or older Optolong filters who want better halo control. Anyone with a cooled CMOS camera who wants maximum signal-to-noise on emission nebulae.
For whom its bad
Budget-conscious buyers, since the SVBONY 7nm filters perform well for one-third the price. Visual observers, since the 3nm passband is too narrow for eye use. Users under dark skies, where the narrow bandpass reduces signal unnecessarily.
How to Choose the Best Nebula Filter for Your Telescope?
Picking a nebula filter is less about brand and more about matching the filter type to your telescope, your sky, and your goals. Here is what I learned from testing all nine filters above and from years of using nebula filters under variable conditions.
Understand the Four Main Filter Types
UHC (Ultra-High Contrast) filters are the all-around workhorses. They pass H-beta, O-III, and some H-alpha while blocking light pollution. They work on most emission nebulae and are usable visually and photographically. If you only buy one filter, start with a UHC.
O-III filters isolate just the two oxygen-III emission lines at 496nm and 501nm. They make planetary nebulae and supernova remnants glow, but they dim H-alpha-rich regions. They are specialist tools for visual observers and dedicated imaging.
H-Beta filters pass only the hydrogen-beta line at 486nm. They are highly specialized, useful for objects like the Horsehead Nebula and the California Nebula. Most H-Beta filters work best on 8-inch or larger telescopes because the narrow bandpass dims views significantly on smaller scopes.
Dual narrowband filters pass H-alpha and O-III while blocking everything else. They are designed for one-shot color cameras in heavy light pollution. They are not usable for visual observation because human eyes cannot resolve the signals well.
Match Your Filter to Your Bortle Scale
The Bortle scale measures sky darkness from 1 (excellent dark site) to 9 (inner city). In Bortle 1-3 skies, nebula filters offer minimal benefit because the sky is already dark. In Bortle 4-6, UHC filters provide meaningful contrast improvement. In Bortle 7-9, you need aggressive narrowband or dual-band filters to see anything at all. If you observe from a city, a dual-band filter like the Optolong L-Ultimate or SVBONY SV220 is essentially required for deep-sky imaging.
Consider Visual vs Astrophotography
Visual observers should focus on UHC and O-III filters. The wider bandpass of UHC makes objects visible to the eye, and O-III filters reveal planetary nebulae that are otherwise washed out. Astrophotographers using one-shot color cameras should choose dual narrowband filters for the best light pollution rejection. Monochrome camera users typically use separate H-alpha, O-III, and S-II filters for Hubble palette imaging.
Match Filter Size to Your Equipment
Filter size matters. A 1.25-inch filter threads into standard eyepieces and 1.25-inch focusers. A 2-inch filter is required for 2-inch eyepieces and avoids vignetting in fast optical systems. If you use a 1.25-inch eyepiece in a 2-inch focuser, you can use a 1.25-inch filter with a step-down adapter, but a 2-inch filter with a 1.25-inch adapter is more versatile.
Smart Telescope Compatibility
Smart telescopes like the ZWO Seestar S50 and Vaonis Vespera have built-in filters or filter holders. The Vaonis Vespera and Stellina accept clip-in filters designed specifically for their sensors. Standard 1.25-inch and 2-inch filters do not physically fit these scopes, so check the manufacturer’s filter list before buying. For traditional computerized GoTo scopes like the Celestron NexStar Evolution or Sky-Watcher EQ8, the standard filters on this list all work as expected.
Budget vs Premium Trade-Offs
Budget filters under $50 perform surprisingly well for visual use. The SVBONY 1.25-inch UHC at $28 is a legitimate starting point. Premium filters like the Optolong L-Ultimate earn their price through tighter bandpass, better halo control, and stronger light pollution rejection, but the difference is most noticeable in astrophotography. Visual observers in moderate light pollution often do not need to spend more than $80 on a UHC.
For more optical accessory guides, our camera ND filter review and aquarium filter guide cover related gear in different categories.
Frequently Asked Questions
What filter is best for nebula?
A UHC (Ultra-High Contrast) filter is the best all-around choice for nebula observation. It passes the key H-alpha, O-III, and H-beta emission lines while blocking light pollution. For visual use, the SVBONY 1.25 inch UHC at around $28 is the best starter. For astrophotography with a one-shot color camera, a dual narrowband filter like the SVBONY SV220 or Optolong L-Ultimate provides much stronger light pollution rejection.
What filter is best for viewing the moon?
Nebula filters are not designed for lunar observation and will not improve moon views. For the moon, you want a neutral density moon filter that reduces glare and reveals surface detail. Nebula filters block specific emission lines and would make the moon appear dim without adding useful detail. A variable polarizer or standard ND filter is the right tool for lunar observation.
What filter is best for an Orion Nebula?
A UHC filter is the best choice for the Orion Nebula (M42). The nebula is bright enough that even a budget UHC filter provides a strong contrast boost. From light-polluted skies, a UHC reveals the wings of Orion that are otherwise washed out. From dark skies, the filter is less necessary, but it can help reveal subtle structure. An O-III filter is too narrow for Orion and actually dims the view, since the Trapezoid region is rich in H-alpha and H-beta.
What are the best astrophotography filters?
For one-shot color cameras in light-polluted areas, dual narrowband filters are the best choice. The SVBONY SV220 (7nm) and Optolong L-Ultimate (3nm) both pass H-alpha and O-III while blocking everything else. The SV220 offers excellent value at around $130, while the L-Ultimate provides the cleanest signal-to-noise at $339. For monochrome cameras, dedicated H-alpha, O-III, and S-II narrowband filters from Astronomik, Chroma, or Antlia provide the best results.
Final Verdict on the Best Nebula Filters in 2026
After testing all nine filters, the SVBONY SV220 2-inch dual-band filter earned my top spot for astrophotography, and the SVBONY 1.25-inch UHC earned the best value spot for visual observers. The Celestron Oxygen III is my pick for dedicated planetary nebula hunters, and the Optolong L-Ultimate is worth the premium for serious imagers in heavy light pollution.
The right filter depends on your telescope, your sky, and your goals. Start with a UHC if you are new to nebula filters. Add an O-III once you know which planetary nebulae you want to chase. Upgrade to a dual-band when you start imaging with a one-shot color camera from a light-polluted site. With the right filter in your case, even a Bortle 7 backyard can reveal nebulae you never thought possible.
That is my take on the best nebula filters for 2026. Drop me a line if you have a specific telescope or target in mind, and I will help you narrow down the choice. Clear skies.

There are people who love playing video games, and then there are enthusiasts who devote their lives to gaming.
Corey has been playing games since The Legend of Zelda and Final Fantasy III were still young.
Today, he blends his passion and experience to write reviews that can help others choose the best components in the gaming arena.





