Shopping Cart

Your cart is empty.

Your cart is empty.

SVBONY Red Laser Collimator for Newtonian Marca Telescope Alignment 1.25 inches 7 Bright Levels Triple Cemented Lens with 2 inches Adapter

Free shipping on orders over $29.99

$22.09

$ 9 .99 $9.99

In Stock

About this item

  • Designed for calibrating reflecting telescopes; SVBONY laser collimator allows anyone easily collimate 1.25'' and 2'' reflector telescopes; come with removable 2" adapter; built with metal material; make alignment no longer boring and time consuming
  • Easy to use;accurate collimation in a few minutes provide a more clearer image;no longer have to go back forth;just watch the collimator from the mirror end of the scope and adjust the screws
  • 7 brightness levels red laser beam;adjustable brightness;suit for different light conditions;amazing alignment in dark and day;so can get the better views possible from your reflector telescope
  • Solid metal body;for a long term use; comes with a full set of instructions with a step by step procedure on how to properly align a relfecting telescope
  • Triple cemented of Lens;Improve the stability of red dot;Red laser with 7 brightness levels;Quick alignment;much faster than a manual collimator ; It's a great Halloween birthday christmas gift
  • This collimator comes with a 2" adapter; when you upgrade your 1.25" telescope to a 2" telescope; you do not need an additional 2" calibrator that can calibrate the 2" telescope



Product Description

Red laser collimator is very convenient to calibrate targets!

red laser collimator

This SVBONY red laser collimator has a 1.25" barrel and comes with a 2" adapter. It is suitable for both 1.25" and 2" Newtonian reflector telescopes. When you upgrade your 1.25" telescope to a 2" telescope, you do not need to buy an additional collimator to calibrate the 2" telescope.

Using it when you are taking astronomy classes can highly improve your speed

No telescope can align its optical axis for a long time, even if it is already factory calibrated. The Newtonian reflection telescope is very sensitive to the optical axis; a slight movement of the calibration screw can deflect the entire optical axis. Its precision is so high that it goes out in the car, the optical axis will have a small deviation, and sometimes it will completely collapse.

Even if the lens barrel is pointed differently, the optical axis will be different. (An interesting experiment is to point the same star through the equatorial mount, then move the equatorial mount's right ascension axis from left to right through the field of view to observe the optical axis.Offset).

This is why you should choose a star to calibrate, not the target of interest (Jupiter or Moon). If you observe deep space, you feel that the slight deviation can be tolerated, and then you will not be calibrated when you turn to planet observation. This is actually very risky. The good way is to check the optical axis before each observation, just like checking the mailbox and the tire before driving far away.

Red Laser Collimator

Removable 2" adapter

This is a newest 1.25" laser collimator includes removable 2" adapter;the triple cemented lens to improve the stability of dot;it's designed for accurate collimation of all Newtonian and SCT reflector telescopes

Red Laser Collimator

Sturdy metal material

SVBONY Red Laser Collimator is made of all-metal material and has a long service life.

Specification:

Name: Laser Collimator
Fit Type: compatible with Newtonian and SCT reflector telescopes
Body Material: Metal
Net Weight: 135g/4.79oz
Note: The Best working distance is two meters

Customer
2025-08-04 12:08:00
As an avid stargazer, I've tested countless accessories to enhance my telescope's performance. The telescopic laser collimator, however, has truly revolutionized my observing experience. This tool is nothing short of amazing! From the moment I unpacked it, I was impressed by its sturdy build and sleek design. The instructions were clear and easy to follow, making alignment a breeze.Using the laser collimator, I achieved unparalleled accuracy in aligning my telescope. The precision of the laser beam allowed for quick and effortless adjustments, ensuring optimal performance every time. The difference in image clarity is astounding – stars are pin-sharp, and planets reveal stunning details that were previously elusive.What sets this collimator apart is its reliability and rigid design. Even during prolonged observation sessions, the alignment remains steadfast, saving me time and frustration. It's also compact and lightweight, making it a perfect companion for field trips.
Paul H
2025-06-23 19:13:08
Good range of brightness levels. Came reasonably collimated (adjustable). Works great with the Barlowed laser technique. Really easy and effective!Brightness: quite dim on the lowest setting to quite bright by the 4th or 5th.Collimation/alignment of the laser itself. I setup a fixture using Legos (great suggestion I read online), placed it on a granite countertop (tape the fixture to the countertop so it won’t move), and targeted the wall 6 meters away. The diameter of the circle traced on the wall as I rotated the laser on the fixture was 2 cm. Not bad but not perfect. This alignment (right out of the box) was +- 0.2% (equivalently +- 0.1 degree). For my 1200mm focal length scope, the targeting of the center of the primary would be +- 2mm; as reflected back onto the target on the laser (2x focal length): +- 4mm. (It could be adjusted better than that if I wanted to, but see below.)While googling to see if that alignment would be sufficient, I came across the Barlowed laser method. I tried it, and it works GREAT! I was very happy. Super easy and convenient!(Assuming your telescope collimation is pretty close, secondary ok, and you just need to fine-tune the primary, which is typically the case with a frequently-used and unabused Newtonian....)1. Put the laser in a 2x Barlow.2. Put the Barlow in your focuser.3. Turn on the laser, using a fairly bright setting.4. Observe the shadow of the primary mirror’s center marker “donut” in the target area of the laser.5. If the donut is already centered on the target, you’re done. Mine was about 1/4” off.6. Loosen the lock screws on the primary.7. Adjust the primary, turning one screw at a time to see where the donut shadow moves on the target. (You can see the target while at the primary end, so you don’t have to move back and forth between the primary end and the focuser like you would with a Cheshire or collimator cap.)7. When the donut shadow is centered on the target, tighten the lock screws, and you’re done.Quick and easy. Love the Barlowed laser method. Note: unlike with the direct laser method, the Barlowed laser method is insensitive to small laser collimation and positioning errors. So this works even with the laser alignment a little off.
M. Gotts
2025-06-08 10:10:38
Update: 02/21/2017The replacement collimator I received was also not in collimation. However, I was able to adjust this one into perfect collimation, unlike the original. So, still 4 stars, but now I have a collimator that can be used to properly adjust a telescope.Once again I had to use a tiny eyeglass screwdriver to dig out the rubber used to seal the adjustment screws. Would be nice if they simply acknowledged that it is probably impossible to ship these half way around the world and have them remain in collimation. Plastic plugs could be used instead of the rubber glue, for instance,which could be removed easily for access to the adjustment screws. Just a thought.Adjusting the laser is still not straightforward. The screws don't always do what you expect. Not sure if they are pushing the laser or pulling it. One screw on each of my collimators does almost nothing regardless of how much it is turned in or out. But, after a good 30 min I was able to get this one is nearly perfect collimation. Will see if it holds this setting.---------------------------------------------------Update: 02/08/2017I received a couple of emails from the seller over the past week asking for further explanation as to the problem I documented below with the collimator iteslf being out of collimation, and the inability to adjust it even after exposing the collimation screws. So I replied to them with details. Out of the blue I received a new collimator in the mail. I've yet to try it to see if it is in collimation, but I'm impressed with the customer service, regardless.I've changed my review to 4 stars based simply on the prompt customer service, desire to make things right, and unexpected replacement of the collimator. If it turns our that the new collimator is in alignment, I'll bump it to 5 stars.---------------------------------------------------The general construction, price and intent is fine. But the unit arrived out of collimation to a degree that makes it useless. I read here that this is a common problem. There are indeed three adjustment screws for aligning the collimator, but as others have noted they are potted with silicone that you have to dig out to gain access to the screws. Even after doing that and then creating a jig to perform the alignment, I've been unable to get the collimator collimated.It was not a simple job of just turning the screws one way or the other to adjust the laser, as you'd expect. The only way I can get the device even close to being aligned is to leave one alignment screw slightly slack. It makes no sense, but I can't see inside the device to determine what might be preventing the adjustment from working logically.I was able to use the collimator one time to adjust the telescope (after an hour of digging out silicone, making a jig, and trying to align the laser). But it appears that just one day later the collimator is already out of adjustment. I'm sure the fact that I can't tighten all three screws and have the collimator be in alignment is the reason.Anyway, not happy. A waste of $$. I suppose I can't return it since I dug out the silicone plugging the adjustment-screw holes. Orion sells a nearly identical looking collimator here on Amazon for 2.5x the price. Maybe the difference is that theirs comes aligned to begin with.
Harout Bedrossian
2025-04-24 10:31:17
It’s unfortunate that this laser collimation has 2 problems:1. The laser beam is not collimated, it traces a circle when I rotate it.2. The diameter of the collimation is slightly smaller than the diameter of the telescope focuser, this size mismatch is enough for the laser collimator to fit slightly differently each time you attach it to the focuser therefore it provides different results each time.Sure you can spend time and fix these defects by collimating and calibrating the laser beam using the screws on the sides and put a layer of tape on the collimator neck to make it fit snugly in the focuser, but when I buy a tool I expect it to perform and function properly right out of the box. I don’t expect to spend additional time and effort to fix the tool to be usable.
John
2025-02-25 09:50:15
great collimator for the price. Cleaned my dobsonian and used this to realign the mirrors. Worked a treat.
Ruthrapathi
2025-01-31 09:32:45
Good product, but Its not accurately calliberated out of the box, don't get me wrong, its just off by very small degree. Most of the time you can get away with that small degree of caliberation error.Highly recommended if you are using it for purely visual.
lt
2024-12-03 20:00:55
Exactly as advertised. Very bright on high settings, good to have the lower switch brightness. Not quite a perfect round bead of ight but close enough. Works VERY well.
Lucero
2024-11-16 16:17:39
Llegó un día antes de lo estimado y bien empaquetado sin daños en la caja. El colomador funciona excelente y se siente de buena calidad, se siente pesado y consistente.
Recommended Products

$34.00

$ 16 .99 $16.99

4.3
Select Option