Choosing the right Printing Equipment is a business decision, not merely a technical purchase. The machine must fit your materials, order sizes, finishing needs, operators, and future workload. A fast press can still be expensive if it sits idle between short jobs.
Smithers’ Future of Global Printing to 2028 report forecasts a relatively stable global print market, despite major shifts toward digital production and shorter runs. Its analysis highlights efficiency, automation, sustainability, and variable data as important competitive factors. PRINTING United Alliance research also shows that labor, operating costs, and changing customer expectations continue to pressure print providers. The numbers are useful, but they do not replace a site visit or a realistic production test.
Benny Landa, founder of Landa Digital Printing, has said, “Everything that can be digital, will be digital.” His statement reflects a broader industry movement toward flexible, data-driven workflows. However, digital is not automatically better. Offset, inkjet, toner, hybrid, and finishing systems each solve different problems. Consider substrate behavior. Check drying time. Measure setup waste. Ask for service-response records, not only showroom samples.
No checklist is flawless. A machine may perform beautifully during a demonstration, then struggle with your recycled stock or peak-season schedule. That uncomfortable possibility deserves attention. The following ten tips examine equipment capability, total ownership cost, workflow integration, operator training, maintenance, energy use, and supplier reliability. The goal is practical judgment: choosing equipment that performs consistently on ordinary production days, not only under perfect demonstration conditions.
When choosing printing equipment, define output needs with ISO/IEC 24711 page-yield data. This standard measures inkjet cartridge performance under controlled conditions. It gives a useful comparison point for equipment planning.
Check the rated yield beside your monthly print volume. A cartridge rated for 600 pages may suit 400 pages monthly, but heavy graphics can reduce that margin. Coverage changes everything. A page filled with dark charts consumes more ink than a lightly printed document. Review real files, not only blank templates. For example, inspect a typical invoice, a training handout, and a ten-page report with color images.
Use the data as a planning tool, not a promise. Testing conditions may differ from your office, including document complexity, cleaning cycles, paper type, and print settings. Actual results can vary. I have seen teams select equipment by the lowest cartridge price, then face frequent replacements during busy weeks. That choice looked efficient on paper. It was not. Record your monthly pages, estimate average coverage, and add a practical reserve. A small pilot test can expose unrealistic assumptions before purchase. Even then, the estimate may need revision. That is acceptable. Reliable decisions improve when usage evidence replaces guesswork.
Choosing printing equipment starts with monthly volume, not the machine’s maximum speed. A realistic estimate should include invoices, labels, marketing materials, and seasonal spikes. Then add a 20% capacity buffer. This protects production when demand rises unexpectedly.
For example, a company producing 10,000 pages monthly should select equipment rated for at least 12,000 pages. Duty cycles matter because advertised maximums often assume ideal conditions. The Keypoint Intelligence report “U.S. Production Digital Printing Market Forecast” highlights continuing demand for reliable, short-run production and faster turnaround. That makes usable capacity more important than impressive peak speed. A machine running constantly near its limit may create heat, maintenance delays, and inconsistent output.
Check the numbers against real work. Record monthly pages for six months, including the busiest month. The Smithers report “The Future of Global Printing to 2028” estimates the global print market will remain above 800 billion U.S. dollars, while digital and customized applications continue expanding. Growth is uneven, though. Your forecast may be wrong. Review it every quarter. Also examine paper size, color coverage, finishing, and operator workload. A lower-volume device with the right duty cycle can outperform a faster machine that requires frequent pauses. Leave room for mistakes. That buffer is not waste; it is operational insurance.
Match Monthly Volume to Duty Cycles with a 20% Capacity Buffer
The chart compares typical monthly print volumes with the recommended equipment duty cycle. Selecting a device rated for at least 120% of expected monthly output provides a practical 20% capacity buffer for seasonal demand, maintenance downtime, and workload variation.
Choosing printing equipment requires more than comparing speed and paper capacity. Color accuracy should be tested against ISO 12647 process targets, not a supplier’s showroom sample. ISO 12647-2:2013 defines color aims for offset production, while ISO 13655 specifies measurement conditions for printed color. Ask whether the equipment supports spectrophotometer-based control under consistent lighting.
Delta E values make accuracy measurable. In production testing, a ΔE00 below 2 is commonly treated as a strong match for critical brand colors, while values between 2 and 5 may be acceptable for general images. These are practical industry thresholds, not universal ISO pass limits. Fogra’s ProcessStandard guidance uses media wedges and measured color differences to verify process stability. Request a test sheet with solids, tints, skin tones, and neutral grays. Small numbers matter.
My testing experience suggests that gray balance exposes weak calibration quickly. A machine may match a blue patch but still produce warm shadows. Compare at least three consecutive sheets, then repeat after a short production pause. Environmental conditions can interfere. Paper moisture, ink temperature, and measurement geometry all affect results. The 2024 Fogra Color Management research materials also emphasize standardized measurement and characterization data for repeatable output. I would still question one perfect sample. It may hide drift. A useful equipment choice is the one that reports ΔE values consistently, preserves calibration, and gives operators enough control to correct real production variation.
Choosing printing equipment should begin with a three-year total cost of ownership calculation, not the purchase price. In daily operations, consumables often become the largest recurring expense. Record expected pages per month, coverage levels, cartridge yields, and waste rates. Ask suppliers for yield data under your actual print conditions. Laboratory figures can disappoint. A finance colleague should verify the assumptions, because production estimates are often optimistic.
Add electricity costs for standby, warm-up, and continuous production. A machine drawing modest power can still affect budgets when it runs twelve hours daily. Use your local tariff and a realistic operating schedule. Service deserves a separate line. Include preventive visits, replacement parts, technician travel, and emergency response fees. Downtime is harder to price, but not impossible. Multiply lost production hours by labor cost, contribution margin, or outsourcing expense. Then include overtime caused by delayed work. This exposes risks that brochures rarely show.
Compare three-year totals in a spreadsheet with low, expected, and high-use scenarios. Track paper waste, cleaning cycles, software updates, and staff training. I have seen a cheaper device lose its advantage after repeated stoppages and rushed external jobs. Still, estimates remain estimates. A minor assumption can distort the result. Recheck figures after a month of real production, and adjust the model before approving a purchase. Keep service records and meter readings; they provide stronger evidence than promises.
Printing equipment should fit your workflow, not force your team to rebuild it.
Before comparing speed or ink capacity, map every file path. Ask how designs move from prepress to proofing, production, inspection, and delivery. Then test the proposed machine with your actual RIP settings, not sample files supplied for demonstrations.
A RIP must interpret transparencies, spot colors, nesting rules, and variable data accurately. Small differences can change output, waste media, or delay a deadline. Confirm supported file formats and processing speeds under peak workloads.
ICC profiles matter just as much. Print color targets on the intended media, measure them, and check skin tones, gradients, and brand colors. A screen preview is not proof.
Automation can reduce repetitive work, but compatibility deserves careful attention. Check whether the equipment accepts hot folders, job tickets, barcode data, and production scheduling signals.
I once assumed an automated queue would remove manual checks. That assumption was wrong. Operators still needed alerts for missing profiles and unexpected dimensions. Plan those safeguards before installation.
Request a live workflow test, document every setting, and let the production team review the results. A machine may perform impressively during a short demonstration, yet struggle after several hours of mixed jobs. That is where the real decision appears.


For those larger-sized parts, or smaller quantity runs, we have 2 independent powder coat booths and ovens. The quality, durability and affordability of today’s powder coating finishes make this the process of choice for world-class companies.
Powder coating advantages over other forms of coating are many. Materials used in the Powder coating process can be metals and non-metals that come in a multitude of thicknesses, textures, colors, etc. Another of Powder coating’s biggest advantages over conventional coatings is its ability to create finishes in many different textures. Powder Coating Booths allow us the ability to apply these advantages to large products.
Tri-State Fabricators runs a full-service conveyor line for painting. Wet painting can provide protection or decoration to many different part styles. From start to finish, every project is easier to undergo random and point-based inspection by our skilled painting team.
Advantages to our Wet Paint Line are these lines start with product prep and ends with a thorough inspection of a high quality finished product. Our ability to complete large and small projects with a superior finish and doing so in a timely and economical fashion. This passes along the savings in production to our customers. When powder coating ins not an option, our Wet Paint Line gets the job done right the first time.
When the parts get big and heavy we roll-out our custom paint racks and oversize booth. By utilizing our partnerships with all the major paint brands, we can match virtually any color with wet paint.
The advantages of having access to a Wet Paint Booth are many. Large projects of many different shapes can be loaded into the booth. The Wet Paint Booth offers an environment that is much more controlled than a typical parts painting operation.
Not only are they used because of their controlled environment, but they’re are also advantageous when it comes to applying paint to parts that are needed in industries that require specialty coatings such as medical, aerospace, etc.
Our military forces have some very high standards when it comes to the finish of their vehicles and equipment. From the first pre-treatment step to final coat, it takes a great deal of knowledge and experience to protect the men and women of our armed forces. They deserve only the best, and Tri-State Fabricators provides it.
All of our processes are closely monitored by our staff and management teams. Both of which are highly trained in the processes of metal fabrication and finishing. Tri-State Fabricators’ goal is to always fully satisfy each and every customer, including the military. We will always put a 110% into what we do.
Abrasive media blasting is an excellent way to remove old paint, rust, and increase the paint/powder adhesion. Glass beads produce a much smoother and brighter finish than angular abrasives; leaving the part clean yet without any dimensional change. Chemically inert and environmentally friendly, we can recycle our beads approximately 30 times; making them a more preferred method of metal cleaning or surface finishing.
Advantages to Glass Bead Blasting are many. Glass bead blast media is used when a project is needing rough surfaces need to become smooth for applications of coatings such as paint. It is typically used to clean paint and rust from a product surface without deforming the surface it is being used on. Overall, compared to many other blasting media, Glass Bead Blasting is a very economical choice and those savings are always passed on to our customers.
Tri-State Fabricators utilize a zinc phosphate wash to clean and etch the material to ensure the best paint adhesion possible. The unique design of our 3-stage wash system does the work like a 5-stage. From Cleaning and rinsing to conversion coating and post-treatment, Our Part Washing process is a complete service and works throughout the fabrication service and the finishing service.
Along with the previously mentioned benefits, Curing is a vital chemical reaction that leaves the product finish hard and relatively safe from mild abrasion and aggressive corrosion. This process can be done in more than one way; ambient air-dry or in curing ovens at temps that exceed 240°.
From fixing paint mistakes (someone else’s of course) to simply cleaning our paint line hooks, our burn-off oven is put to good use. After a quick burn-off, a little clean up, and a fresh coat of paint, your parts will look better than new.
Why does our Burn-Off Oven work so well? Because super heating the air around parts turns the materials into ashes. From paint and powder coatings to rubber and machining oils, high temps do the job without degrading the integrity of the part.
Masking is a vital part of producing high quality products. We have die-cut masking patterns to protect machined surfaces as well as a wide range of plugs and caps to protect threaded holes and bolts. We provide permanent and temporary masking.
Masking allows the selected sections of a product to be protected from a fabrication or finishing service. This can be with both chemicals when etching and tapes, paints when only finishing just a section of the product. Masking is great in aiding the customization process of a project.
Screen printing is a photographic process that transfers artwork onto a porous nylon screen which allows colored ink to flow through the screen and be deposited on an aluminum or plastic component. We can generally have just about any design created onto a screen for your parts.
Some of the advantages of Screen Printing are, brand recognition for your business displaying on your products, assembly instructions, product warnings/hazards, etc. Tri-State Fabricators produces Screen Printing of the highest quality so you know it’s durable.
Metal Finishing is the art of treating the exterior portion of product, often metal but can also be made of other materials, so that the surface is clean and free of any debris. Then the process of applying coats or either paint of powder coat takes place. This coating process improves the quality of the product in both appearance and resistance to wear and corrosion.
Tri-State Fabricators, Inc., understands that a project typically isn’t complete until a high-quality finish has been added to your product. This is why our painting and powder coating teams continuously inspect the products throughout the Metal Finishing process.