Module laser à diode bleue NEJE E160 50W 300DPI avec optique 8-FAC
Module laser à diode bleue NEJE E160 50W 300DPI avec optique 8-FAC
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5 avantages clés du NEJE E160
Expédition / Informations de livraison
Expédié depuis la Chine : Livré dans les États membres de l'Union européenne, en Suisse, en Norvège, en Albanie, en Islande, en Serbie, en Ukraine et en Turquie, aux États-Unis (à l'exclusion de l'Alaska, de Guam, de Hawaï, de Porto Rico, des Forces armées américaines des Amériques, des Forces armées américaines d'Europe et des Forces armées américaines du Pacifique), au Canada, en Nouvelle-Zélande, à Singapour, en Corée du Sud, au Japon, en Afrique du Sud, au Mexique et dans d'autres pays/régions.
the modul E160 can i use in laser 3max v2?
Hello, this NEJE E160 module is built for wide compatibility. It works with laser engravers and CNC routers from various brands. Two adapter plates are supplied for multi‑device fit; please refer to the product renderings for details.
The package includes 3.2 m motion cables, water hoses and air tubes. A separate 48V 200W+ power supply and cooling water pump are required. This module is compatible with all NEJE machines, including the 3Max V2. Please note motion performance will differ depending on your motion‑control hardware.
I have been looking at this product on your website, but I cannot find information regarding its ideal operating temperature. Considering that the unit is water-cooled and there is no information on whether the water cooling system is active or passive, one must account for the ambient temperature of the operating environment to determine if the cooling will be effective. This is a highly important factor for anyone doing photo engravings that can take several hours.
It has been known for some time that you have been working on this model, but so far, little to no information has been made available regarding whether the product will actually be commercialized. Based on this video, what leads us to believe that the product launch will proceed? And what is the reason for so many delays? Have there been any issues with these modules?
Thank you for raising this question, and I also want to sincerely apologize to NEJE fans for making you wait so long. But I want you to know that the NEJE R&D team has never stopped developing new things—it's just that I believe a great product requires constant reinvention and the test of time. To answer your question properly, I need to address it from multiple angles: optical system design and selection, process complexity, chip reliability, lifespan engineering, why extreme lightweighting was essential, and why water cooling was non-negotiable. This is not a quick marketing stunt to grab eyeballs, but the crystallization of years of dedicated work.
Regarding the optical system design: for high-power 450 nm diode modules, the optical system is the most critical component—it determines the output beam quality. NEJE has consistently insisted on pushing laser output quality to the limit, which is why we chose the most costly, complex, and difficult-to-manufacture solution: FAC + multi-stage composite lens system.
Very few professional consumers ever dig into the optical system. Other brands, rushing to market, opt for solutions where beam quality and lifespan are invisible to the naked eye—quick mass-production designs like fiber compression + reflection or the unreliable COB approach. Fiber compression and COB are cheap and simple to produce, but the beam quality is poor. A standard 20W fiber-compressed module can easily ignite wood; imagine the risks at higher powers.
Beyond safety, how does our system differ from ordinary fiber-compressed reflective modules in real-world performance?
First, XY focal spot symmetry: Our system achieves near-perfect XY symmetry with a 90-micron spot, while typical fiber modules exceed 200 microns with severe asymmetry. That's why you never see manufacturers showcasing fine-detail tests with high-power modules—their optics can't deliver.
What does fine detail actually mean?
Smaller proportional text engraving
Photo resolution and clarity
Narrower kerf width
Symmetrical cuts regardless of direction
Hard-material cutting capability (HDF, MDF)
Faster cutting speeds (higher energy density = less material removal per pass = greater speed)
Verticality in thick-material cutting
Broader material compatibility (e.g., steel, stainless steel engraving)
These details are precisely where optical system differences manifest. Designing such a complex optical system requires relentless iteration and refinement—that's why we took longer.
it looks like the future. the design is elegant. I am using a compressor + filter with my E80. do i understand correctly that i must upgrade to a pro oil separator to protect the lens on this new design? I don't see a secondary feed to send an air shield over the lens...
Hi Jonathan,If your current oil-water filter has been working fine with the E80 module, you can continue using it with the E160—no upgrade required. We only added this note because some very cheap filters on the market don't actually provide effective oil-water separation. Just a heads-up.
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I have been looking at this product on your website, but I cannot find information regarding its ideal operating temperature. Considering that the unit is water-cooled and there is no information on whether the water cooling system is active or passive, one must account for the ambient temperature of the operating environment to determine if the cooling will be effective. This is a highly important factor for anyone doing photo engravings that can take several hours.
It has been known for some time that you have been working on this model, but so far, little to no information has been made available regarding whether the product will actually be commercialized. Based on this video, what leads us to believe that the product launch will proceed? And what is the reason for so many delays? Have there been any issues with these modules?
Thank you for raising this question, and I also want to sincerely apologize to NEJE fans for making you wait so long. But I want you to know that the NEJE R&D team has never stopped developing new things—it's just that I believe a great product requires constant reinvention and the test of time. To answer your question properly, I need to address it from multiple angles: optical system design and selection, process complexity, chip reliability, lifespan engineering, why extreme lightweighting was essential, and why water cooling was non-negotiable. This is not a quick marketing stunt to grab eyeballs, but the crystallization of years of dedicated work.
Regarding the optical system design: for high-power 450 nm diode modules, the optical system is the most critical component—it determines the output beam quality. NEJE has consistently insisted on pushing laser output quality to the limit, which is why we chose the most costly, complex, and difficult-to-manufacture solution: FAC + multi-stage composite lens system.
Very few professional consumers ever dig into the optical system. Other brands, rushing to market, opt for solutions where beam quality and lifespan are invisible to the naked eye—quick mass-production designs like fiber compression + reflection or the unreliable COB approach. Fiber compression and COB are cheap and simple to produce, but the beam quality is poor. A standard 20W fiber-compressed module can easily ignite wood; imagine the risks at higher powers.
Beyond safety, how does our system differ from ordinary fiber-compressed reflective modules in real-world performance?
First, XY focal spot symmetry: Our system achieves near-perfect XY symmetry with a 90-micron spot, while typical fiber modules exceed 200 microns with severe asymmetry. That's why you never see manufacturers showcasing fine-detail tests with high-power modules—their optics can't deliver.
What does fine detail actually mean?
Smaller proportional text engraving
Photo resolution and clarity
Narrower kerf width
Symmetrical cuts regardless of direction
Hard-material cutting capability (HDF, MDF)
Faster cutting speeds (higher energy density = less material removal per pass = greater speed)
Verticality in thick-material cutting
Broader material compatibility (e.g., steel, stainless steel engraving)
These details are precisely where optical system differences manifest. Designing such a complex optical system requires relentless iteration and refinement—that's why we took longer.
it looks like the future. the design is elegant. I am using a compressor + filter with my E80. do i understand correctly that i must upgrade to a pro oil separator to protect the lens on this new design? I don't see a secondary feed to send an air shield over the lens...
Hi Jonathan,If your current oil-water filter has been working fine with the E80 module, you can continue using it with the E160—no upgrade required. We only added this note because some very cheap filters on the market don't actually provide effective oil-water separation. Just a heads-up.
the modul E160 can i use in laser 3max v2?
Hello, this NEJE E160 module is built for wide compatibility. It works with laser engravers and CNC routers from various brands. Two adapter plates are supplied for multi‑device fit; please refer to the product renderings for details.
The package includes 3.2 m motion cables, water hoses and air tubes. A separate 48V 200W+ power supply and cooling water pump are required. This module is compatible with all NEJE machines, including the 3Max V2. Please note motion performance will differ depending on your motion‑control hardware.