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Nikon SLM 500 vs Nikon SLM NXG XII 600

Start with the differences that could affect your part. Confirm the complete configuration with each supplier.

The big difference

Side by side

QuestionNikon SLM 500Nikon SLM NXG XII 600
Quick descriptionLPBF machine; compare published build space and laser configuration below.LPBF machine; compare published build space and laser configuration below.
ProcessPowder bed fusion · laser powder bed fusion (LPBF)Powder bed fusion · laser powder bed fusion (LPBF)
Build size500 x 280 x 365 mm (reduced by substrate plate); quad 4 x 700 W600 x 600 x 600 mm
Energy / lasers4 × 700 W12 × 1000 W
FeedstockMetal powderMetal powder
Machine statusAvailability unconfirmedManufacturer listing reviewed · confirm configuration
Public priceCurrent quote requiredCurrent quote required

Published build-space comparison

Nikon SLM 500500 × 280 × 365 mm
Nikon SLM NXG XII 600600 × 600 × 600 mm

Proportional X and Z dimensions. Depth is listed in the numbers. Nominal envelopes are not usable part space; see configuration and platform caveats below.

Build size is the maximum published physical space. Energy or laser counts describe the machine configuration; they do not prove a throughput winner.

What do these differences actually mean?

A difference may matter when your part size, material, production plan or process qualification requires it. Confirm the exact application with both suppliers; this page does not declare a winner.

What public specs cannot tell you

Real throughputYour geometry, orientation, parameters and finishing route matter.
Actual yieldPublished specs do not tell you your accepted-part rejection rate.
Total installed priceInstallation, training, service, software and options require a current quote.
Finished-part costPrinting is only one part of the complete accepted-part route.
Service qualityLocal response, parts availability and support experience need supplier validation.
Qualified application fitPublic specs cannot approve your material, parameters, tolerances or inspection plan.

Nikon SLM 500

CapabilitySource-backed detail
Nikon SLM 500 build envelope + lasers500 x 280 x 365 mm (reduced by substrate plate); quad 4 x 700 WOEM ↗ · Source reviewed
More published specifications and source notes
Published detailEvidence
Nikon SLM 500 productivity/gas figurestheoretical build rate up to 345 cm3/h; min feature 150 um; max scan 10 m/s; process Ar 16 L/min; average inert gas 250 L/minOEM ↗ · Source reviewed
Layer thickness20–90 µm; additional values available on request, per the four-700 W configuration brochure.OEM ↗ · OEM source checked
Machine dimensions / footprint6080 x 2530 x 2620 mm (L x W x H), documented four-700 W configuration.OEM ↗ · OEM source checked
Published print speed / throughput — stated basisUp to 345 cm³/h theoretical system build rate, four-700 W configuration; not finished-part output.OEM ↗ · OEM source checked
Manufacturer positioningNikon describes the SLM 500 as a system for serial production with removable build cylinders.OEM ↗ · OEM source checked

Nikon SLM NXG XII 600

CapabilitySource-backed detail
Nikon SLM NXG XII 600 build envelope600 x 600 x 600 mmOEM ↗ · Source reviewed
Nikon SLM NXG XII 600 lasers12 x 1000 W lasersOEM ↗ · Source reviewed
More published specifications and source notes
Published detailEvidence
Nikon SLM NXG XII 600 commercial statusNikon currently presents the NXG XII 600 on its system page and provides a Get a Quote path; exact current configuration and availability should be confirmed directly with Nikon.OEM ↗ · Source reviewed
Nikon SLM NXG XII 600 priceNo public retail price found in the reviewed OEM source; current quote required.OEM ↗ · Source reviewed
Published print speed / throughput — stated basisOEM campaign advertises a 1000 cm³/h build rate with Double Jump Speed. Material/parameter conditions are not stated there; this is not a guaranteed finished-part output.OEM ↗ · OEM source checked
Manufacturer positioningNikon positions NXG XII 600 for high-volume serial production.OEM ↗ · OEM source checked
These public specifications cannot establish a throughput, finished-part quality, support or price winner. Confirm usable envelope, exact alloy and process parameters, effective build time, finishing and local service for both options.
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