Diode Laser vs CO2 Laser: Which Is Better for Metal, Acrylic, and Wood? — AtomStack A70 Max vs Hurricane Guide (2026)
Your product list has wood signs, clear acrylic LED letters, and maybe a few metal dog-tag orders — so do you buy a diode laser or a CO2 laser? You can read spec sheets all day and still not get an answer. That's because there is no single answer, only a division of labor by material. We (AtomStack) put our own two machines' rated test data side by side: the A70 Max (77W peak diode) versus the Hurricane (55W CO2). Conclusion first: the diode wins thick wood cutting and opaque acrylic, CO2 wins transparent acrylic and glass surface engraving; for metal marking, both routes are only part-timers — the real workhorse is a 1064nm fiber laser. Whether you run a workshop or a side hustle, you can match your own material list to a machine by the end of this guide.
Key Takeaways
- Wavelength decides everything: diode lasers emit ~455nm blue light, CO2 lasers emit 10.6μm far-infrared — a 20x+ difference, so material absorption is completely different
- Thick wood cutting favors the diode: the A70 Max is rated to cut 28mm paulownia in a single pass; the Hurricane (CO2) tops out at 18mm wood
- Acrylic splits by transparency: opaque acrylic — diode rated up to 26mm; transparent acrylic — CO2 only (rated 20mm)
- Cost of ownership favors the diode: roughly a $1,300 price gap, plus an air-cooled semiconductor light source with no glass tube consumable or water-cooling maintenance
- Price anchors: A70 Max $1,639, Hurricane $2,929 (both MSRP; see product pages for current pricing)
What Is the Difference Between a Diode Laser and a CO2 Laser?
A diode laser uses a semiconductor as its gain medium; desktop models typically output ~455nm blue light. A CO2 laser uses carbon dioxide gas as its gain medium and outputs 10.6μm far-infrared light. The wavelengths differ by more than 20x, so material absorption differs completely:
- Metal: strongly reflects 10.6μm — CO2 cannot process it without a coating; absorbs 455nm relatively better, but even the diode is limited to surface marking on materials in its recommended list — neither route is a mainstay metal solution (that is the 1064nm fiber laser)
-
Transparent acrylic: nearly "invisible" to 455nm (no absorption), absorbs 10.6μm fully → CO2 only
So the right question is not "which laser is stronger" — it is: what is your primary material?
Metal, Acrylic, Wood: The Head-to-Head
Benchmarked against our two machines' rated test data (A70 Max: 70W/35W dual-mode diode, 77W peak output; Hurricane: 55W CO2):
|
Material |
Diode (A70 Max rated) |
CO2 (Hurricane rated) |
Winner |
|
Wood cutting |
28mm paulownia in one pass (25mm standard) |
Max 18mm |
Thick cuts: diode |
|
Opaque acrylic |
Max 26mm |
Black acrylic only 8mm |
Diode |
|
Transparent acrylic |
Cannot process (455nm passes through, no absorption) |
Max 20mm |
CO2 |
|
Metal surface marking |
Recommended-list materials only: oxidized aluminum, non-reflective plated/painted metal, 304 stainless steel (0.01mm surface level) |
Coated metal only (0.05mm) |
Relative edge: diode; mainstay solution: 1064nm fiber |
|
Ceramic/slate
|
Surface engraving, 0.01mm |
Surface engraving, 0.05mm |
Both engrave |
|
Leather |
Max 4mm |
Max 3mm |
Close |
|
Glass |
Not in the rated list (common workaround: apply a dark coating, then surface-mark) |
Surface engraving: rapid surface heating creates micro-fracture frosting — not cutting (glass is in the compatibility list)
|
Surface engraving: CO2; glass cutting: neither |
A counterintuitive verdict: neither diode nor CO2 wins the metal round — the diode only has a relative edge; the real answer is a 1064nm fiber laser.
- Common misconception: assuming enough power (70W diode or 55W CO2) can handle any metal
- CO2: 10.6μm is strongly reflected by metal — coated metal engraving only (0.05mm)
- Diode: 455nm absorbs relatively better, but only for surface marking on recommended-list materials — oxidized aluminum, non-reflective plated/painted metal, 304 stainless steel; highly reflective bare aluminum, copper, and precious metals are off the table
-
The real answer for a metal business: 1064nm fiber — our A20 Pro 1064nm 20W fiber laser ($889 MSRP) or the A24 Pro, or the R30 V2 infrared module; if metal is your main business, go straight to fiber
- The diode's rightful role: wood and opaque acrylic as the main business, picking up light-duty stainless steel name-tag marking jobs from the recommended list on the side; transparent acrylic is outside diode capability — see the table above
Boundaries worth stating:
- CO2 has the speed advantage (Hurricane rated 600mm/s) — more efficient for batch shallow engraving on thin stock
- The diode's thick-cutting edge depends on true optical power + auto focus + air assist working together — never judge by the wattage number alone
Cost and Maintenance: Buying the Machine Is Only the Beginning
The two routes have completely different cost-of-ownership structures:
|
Cost item |
A70 Max (diode) |
Hurricane (CO2) |
|
Price (MSRP) |
$1,639 |
$2,929 |
|
Light source |
Semiconductor laser module, air-cooled |
CO2 glass tube — a consumable; full tube replacement at end of life |
|
Cooling |
Air-cooled, no water circuit |
Water-cooled; watch water temperature, quality, and winter freezing |
|
Optical path |
Fixed path, no alignment needed |
Mirrors require periodic cleaning and alignment |
|
Body |
19kg, open frame |
59kg, fully enclosed Class 1 |
|
Working area |
850×800mm |
500×300mm (conveyor version 500×800mm)
|
Reading the cost table:
- The ~$1,300 gap buys the Hurricane's fully enclosed Class 1 body, built-in fire extinguisher, and 5MP camera — real value, not padding
- The test: if your material list has no transparent acrylic or glass, that premium plus glass-tube and water-cooling upkeep is paying for capability you will never use
When Should You Choose a Diode Laser (A70 Max)?
If your primary materials are wood and opaque acrylic , take the diode route. Etsy trend data (weekly snapshots, May–June 2026) shows a real, currently selling case for each of these two materials:
Case 1: Wood — layered name signs

- Listing: Large Wood Name Sign (nursery name sign, layered/cut-out), from $30.71
- Market data: 124.7k cumulative shop sales (8-year shop), 15 buyers in the last 24 hours
- Business logic: nursery decor is evergreen custom demand; layered cut-outs = sheet cutting + fine text engraving, new names on a reusable template — built for batching
- Hard spec match: 70W/35W dual-mode one-click switching — no choosing between cutting and engraving
Case 2: Opaque acrylic — business logo signs
- Listing: Custom Laser Cut Business Logo Sign, $33.75
- Market data: 99.2k cumulative shop sales (9-year shop), 20+ views in the last 24 hours
- Business logic: B2B small-merchant signage is repeat-order revenue; clean-edged opaque acrylic cutting is the ticket to entry
- Hard spec match: 26mm rated opaque acrylic ceiling, 0.01mm precision
What the two cases share: two materials, three product lines, all inside the diode's capability list — direct evidence that when your primary materials match, one diode machine feeds multiple product lines. That maps to our A70 Max: 77W peak output + one-click auto focus for reliable thick cuts, a 4.3-inch touchscreen for offline jobs, intelligent air assist to flatten the learning curve, and full LightBurn / AtomStack Studio / LaserGRBL compatibility. Machine only $1,639 (MSRP); bundles with honeycomb, rotary, enclosure, and purifier run $1,739–$3,029.

An honest boundary: the numbers above are Etsy demand-side data (weekly trend snapshots; shop sales are cumulative, not per-listing). They prove these product categories sell — whether you profit still depends on your order flow, pricing, and capacity. This article makes no income promises.
When Should You Choose a CO2 Laser?
If your main products live on transparent acrylic and glass surface engraving, don't hesitate — go CO2. Also from the Etsy trend data:
-
Transparent acrylic: Custom LED Acrylic Plaque, from $31.50, 106.4k cumulative shop sales (5-year shop)
-
Glass: Laser Engraved Pint Glasses with Gold Rim, 4pc, from $39.95, 203.6k cumulative shop sales (11-year shop)
5 Steps to Choose: Match the Machine to Your Material List
- List your primary products and materials for the next 12 months (use platform best-seller data, not gut feel)
- Transparent acrylic or glass surface engraving on the list → you need a CO2; none → diode first
- Check cutting thickness: wood jobs over 18mm need a 70W-class diode even if you own a CO2
- Check working area: full-sheet work and batch orders want an 800mm-class bed — anything less means splicing
- Count cost of ownership: tube replacement, water-cooling upkeep, and mirror alignment go in the CO2 column
FAQ
Q1: Can a diode laser cut transparent acrylic?
A: No. 455nm blue light passes straight through transparent acrylic — the energy is never absorbed. Transparent acrylic requires a CO2 machine (Hurricane rated 20mm). Opaque acrylic is the reverse: a diode cuts up to 26mm (A70 Max rated), beyond the CO2's 8mm rating for black acrylic.
Q2: Can a CO2 laser engrave metal?
A: CO2 only engraves coated metal (0.05mm rated depth) — metal strongly reflects the 10.6μm wavelength. A diode can surface-mark recommended-list materials only (304 stainless steel, oxidized aluminum, non-reflective plated/painted metal) at the 0.01mm level — marking, not cutting; bare aluminum, copper, and precious metals are off the table. If metal is your main business, skip both and go 1064nm fiber (our A20 Pro, $889 MSRP).
Q3: What does a 77W diode mean vs 70W?
A: 70W cutting / 35W engraving are the rated dual-mode tiers; 77W is peak output. For buying decisions, trust rated cutting capability instead: 28mm paulownia in one pass, 26mm opaque acrylic.
Q4: Which has lower maintenance costs, diode or CO2?
A: Diode. Air-cooled semiconductor module, fixed alignment-free optical path, no consumable light source. A CO2 glass tube is a consumable requiring full replacement at end of life, plus routine water-cooling and mirror upkeep. Purchase gap is about $1,300 (A70 Max $1,639 vs Hurricane $2,929, both MSRP).
Q5: How much does the AtomStack A70 Max cost?
A: $1,639 machine only (MSRP; see the product page for current promotions). Bundles with honeycomb panels, rotary, enclosure, and air purifier run $1,739–$3,029. Its CO2 sibling, the Hurricane, is $2,929 (MSRP). The ~$1,300 gap buys transparent acrylic/glass capability and a fully enclosed body — judge it against your material list.
Q6: Can a laser cut or engrave glass?
A: Cutting — no. Neither desktop diode nor CO2 machines can cut glass. Engraving splits by route: CO2 (glass is in the Hurricane's compatibility list) engraves glass surfaces directly — rapid surface heating creates micro-fractures that form a white frosted finish; this is surface treatment, not cutting through. The diode workaround is coating the glass with a dark layer to absorb energy before marking (glass is not in the A70 Max rated list; this is a field technique). Safety note: some colored/art glass contains cadmium and other heavy metals that laser heating can release — not recommended even with fume extraction; verify your material first.
Q7: Which should a beginner buy first?
A: Decide by material, not experience level. Starting with wood goods, small metal items, and opaque acrylic — choose the diode (A70 Max, $1,639 machine only). Building on transparent acrylic LED signs or glassware engraving — go straight to CO2, no detours.
Conclusion: If You Remember Only 3 Things
- Diode vs CO2 is not a strength contest — it's a wavelength division of labor: 28mm thick wood and 26mm opaque acrylic go to the diode; transparent acrylic and glass surface engraving go to CO2 (neither cuts glass); metal marking belongs to 1064nm fiber, with the diode moonlighting on light recommended-list jobs.
- Count the full ownership cycle: CO2 tube consumables, water cooling, and mirror alignment are ongoing costs beyond the sticker price — don't pay the premium if your material list never uses it.
- Match your primary material: wood/metal-light/opaque acrylic → A70 Max ($1,639); transparent acrylic/glass → Hurricane 55W CO2 ($2,929).
References
- AtomStack A70 Max product page (specs and rated material capabilities)
- AtomStack Hurricane 55W CO2 product page (specs and material compatibility)
- MDI: FAQ on CO2 laser processing of glass (surface micro-fracture mechanism)
- Etsy weekly trend data (May–June 2026 snapshots; shop sales are cumulative, not per-listing); listing links in the body