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Double Girder Crane Standards (2026)

CMAA 70, FEM 1.001 / ISO 4301 and EN 15011 — the three standard systems that decide how your double girder crane is classified, designed and priced. Written for plant engineers and project managers in steel mills, shipyards and heavy industry comparing quotes across markets.

Written by Wang Lei, Senior Structural Engineer at SIEC Cranes. Sep 2, 2026.

Three standard systems govern double girder crane design worldwide, and the one buyers most often get wrong is which North American specification applies. A top-running double girder crane with a trolley on rails is classified under CMAA 70, not CMAA 74, which is written for single girder cranes with under running hoists. In Europe and most export markets, FEM 1.001 / ISO 4301 duty groups M3-M8 classify the mechanism while EN 15011 plus EN 13001 set the design and safety rules that CE certification is built on. The choice is not academic: moving from an A5/M5 to an A7/M7 duty class adds roughly 15-25% to price, the electrical system differs between NEMA (480V/60Hz) and IEC (400V/50Hz) components, and from 20 January 2027 the EU Machinery Regulation 2023/1230 replaces the old Machinery Directive for all cranes placed on the European market. This guide compares the three systems, maps the classes to real heavy-industry applications, and gives you an RFQ checklist so your supplier quotes on the same page.

Which Standard System Applies to Your Double Girder Crane?

The first question is configuration, then geography. Double girder cranes carry heavier loads, wider spans and higher duty cycles than single girder units, and each standard family grew out of a different industrial tradition. In North America the split is sharp: CMAA 70 for top-running multiple girder cranes, CMAA 74 for single girder. Outside North America, FEM/ISO classification plus EN design rules dominate, though US-consultant-led projects may specify CMAA even overseas. The table below shows the core differences.

Aspect CMAA 70 (2020) FEM 1.001 / ISO 4301 EN 15011 + EN 13001
Issuing body Crane Manufacturers Association of America FEM / ISO CEN (European Committee for Standardization)
Scope Top running bridge & gantry cranes, multiple girder (double girder), trolley on rails Hoisting appliance design and mechanism classification Bridge and gantry crane safety (15011), structural design (13001 series)
Classification Service classes A-F for the whole crane Duty groups M1-M8 for the mechanism, load spectrum L1-L3 Refers to FEM/ISO classes; adds risk-based design assessment
Design approach Conservative, robust twin box girder structures Detailed fatigue analysis, modular lightweight design Limit-state design (like Eurocode), dynamic factors phi 1.2-1.6
Electrical components NEMA-rated, typically 480V/60Hz IEC-rated, typically 400V/50Hz, VFDs common IEC-rated per EN 60204-32 electrical safety
Typical use US/Canada heavy industry, 10-100+ ton cranes European and global exports, automated systems EU market, CE-certified projects

Industry estimates put the global overhead crane market between USD 5.3 and 6.2 billion in 2026, growing 5-7% annually, with double girder units concentrated at the heavy end of the value range. Because so many suppliers ship across regions, the standard mismatch is one of the most common causes of wrong quotes on 20-100 ton cranes.

Why Double Girder Cranes Are Classified Under CMAA 70, Not CMAA 74

This is the detail that trips up more procurement teams than any other. CMAA 74 is frequently quoted as 'the overhead crane standard' because single girder cranes are the higher-volume product, but it only covers top running and under running single girder cranes with under running trolley hoists. Your double girder crane has two girders, a trolley running on top of the rails, heavier end carriages and typically a much higher service class, so the applicable specification is CMAA 70: Specifications for Top Running Bridge and Gantry Type Multiple Girder Electric Overhead Traveling Cranes.

The practical difference shows up in the structural and component rules. CMAA 70 assumes a trolley that rides on the girder rails rather than a hoist hanging from a bottom flange, which changes how the girder carries torsion and side loads, how wheel loads are calculated, and how the runway is designed. If a supplier quotes 'CMAA 74 compliant' for a 50-ton top-running double girder crane, that is a red flag, because CMAA 74 simply does not cover that configuration. Ask for the specific specification number, not a vague 'CMAA compliant' claim.

Both CMAA 70 and CMAA 74 use the same A-F service class philosophy, which makes the mapping to FEM/ISO duty groups similar. But the class drives a heavier structure at the double girder end of the market: a Class D/F double girder crane for a steel mill has substantially larger box girders and wheel assemblies than a Class C unit of the same capacity.

What Do CMAA 70 Service Classes A-F Mean for Heavy Industry?

CMAA 70 rates the entire crane by its lifetime load spectrum and expected cycle count. The class decides girder stiffness, wheel loads, motor ratings and component life. Double girder cranes are bought for the heavy end of the spectrum, so most installations sit in Class C to F, and a steel mill or casting plant rarely buys below Class D.

CMAA class Service level Typical lifts Example applications
A Standby / infrequent Rare lifts, long idle periods Powerhouse, motor room maintenance (rare in double girder)
B Light 2-5 lifts per hour, light loads Repair shop, light assembly
C Moderate 5-10 lifts per hour, 50% rated load typical Machine shop, fabrication, engine assembly
D Heavy 10-20 lifts per hour, up to 75% rated load Steel service center, precast yard, die handling
E Severe Continuous high-frequency lifts, near rated load Steel mill, scrap handling, foundry
F Continuous severe Continuous operation at or near rated load Casting plants, continuous production lines

For double girder cranes, the class is not a nice-to-have; it drives the box girder section size, the wheel diameter and the trolley mechanism group. A steel mill that buys a Class C crane because the price looked good will typically face girder fatigue cracks and wheel replacements within 3-5 years of A6-equivalent operation.

FEM 1.001 / ISO 4301 Duty Groups: M3 to M8

FEM 1.001 classifies the hoisting mechanism rather than the whole crane. The duty group combines a load spectrum (how often the hoist lifts near its rated load) with the average daily running time, producing a mechanism group from M1 (very light, occasional) to M8 (continuous, near-rated loads). ISO 4301-1 is the international equivalent, and most suppliers outside North America quote the M-class on their data sheets. For a double girder crane the mechanism matters more than for light single girder units, because the trolley itself is a substantial piece of equipment.

Duty group Rough CMAA equivalent Typical application
M3 Class B Light assembly, small workshops (rare in double girder)
M4 Class B/C General machine shops, moderate duty
M5 Class C Fabrication, paper mills, heavy machine shops
M6 Class D Steel service, precast yards, high-frequency production
M7 Class E Steelmaking, scrap handling, foundries
M8 Class F Casting plants, continuous near-rated operation

The mapping above is approximate; the two systems use different calculation methods, so always confirm with the supplier in writing. What matters for your budget is that the class appears on the quotation. A supplier who quotes '50 ton crane' without a duty class leaves room to ship the lightest mechanism that passes the load test, which is exactly the spec you do not want to discover after a year of mill operation.

EN 15011 and EN 13001: What CE Certification Covers for Double Girder Cranes

EN 15011 is the harmonized standard for bridge and gantry crane safety, covering design, controls, warnings and safe operation requirements. EN 13001 covers structural design: EN 13001-2 defines load actions with dynamic factors in the phi 1.2-1.6 range, and EN 13001-3-1 verifies steel structures against stress, buckling and fatigue using S-N curves. Electrical safety falls under EN 60204-32. Together they form the technical backbone of CE certification under the Machinery Directive, and from 20 January 2027 under the new Machinery Regulation (EU) 2023/1230.

Buyers misunderstand CE in the same way on double girder cranes as on single girder units: it is not a single test certificate. It is a conformity assessment where the manufacturer declares compliance, keeps a technical file, performs risk assessment and affixes the CE mark. The harmonized standards are how compliance is demonstrated. When a supplier says 'CE certified' on a 50-ton crane, ask for the EU declaration of conformity and the standards list. If they cannot produce it, the CE claim is worth nothing in an EU inspection.

The 2027 change matters more for heavy equipment than for light cranes because the stakes are higher. The Machinery Regulation strengthens obligations for importers and distributors, requires more detailed technical documentation, and tightens rules on substantial modification of machines already in service. A double girder crane placed on the EU market after January 2027 must comply with the Regulation even if the design was finalized under the old Directive.

How Duty Class Changes the Price: The 15-25% Reality on Big Cranes

Duty class is the most expensive line item hidden inside a double girder quotation. An A7/M7-rated crane typically costs 15-25% more than an A5/M5 equivalent at the same capacity and span. On a 50-ton unit at USD 75,000-130,000 FOB, that gap is USD 11,000-32,000. The extra cost buys heavier box girders, a stronger trolley mechanism, higher motor ratings, and wheels, rope and brakes rated for more cycles and longer life.

Capacity / span A5 / M5 price (FOB) A7 / M7 price (FOB) Installed total (est.)
10 t / 20 m span USD 22,000-35,000 USD 27,000-43,000 USD 40,000-70,000
20 t / 22 m span USD 38,000-62,000 USD 47,000-76,000 USD 68,000-120,000
50 t / 25 m span USD 75,000-130,000 USD 93,000-160,000 USD 130,000-230,000
100 t / 30 m span USD 150,000-280,000 USD 185,000-345,000 USD 260,000-480,000

Installed totals on heavy industrial sites typically add 50-100% over FOB for runway steel, electrification, installation and commissioning, so the duty class decision compounds across the whole project. Getting the class right on a 10-100 ton crane is usually worth more than any discount negotiation, and it protects the mill from a crane that cannot carry the production schedule.

Why the Electrical System Follows the Standard

This is the detail buyers discover last, usually at commissioning. CMAA-designed double girder cranes typically run NEMA-rated motors and components on 480V/60Hz. FEM/EN-designed cranes use IEC-rated components on 400V/50Hz, and European heavy-duty cranes commonly include variable frequency drives on hoist, trolley and crane travel as standard for smooth speed control and softer starts under load. If your plant runs 380V/50Hz, 415V/50Hz or 480V/60Hz, the mismatch only shows up at commissioning unless you specify it. State your voltage, phase and frequency in the RFQ, and confirm the supplier's motors, panels and travel drives match. SIEC double girder cranes cover 380V/415V/480V, 3-phase, 50/60Hz, with VFD travel standard on A6 and above, so the voltage question is settled at the factory.

An RFQ Checklist for Standard-Compliant Double Girder Quotes

Put these ten items in your inquiry and you will get comparable, honest quotations on heavy equipment. Most are one line each, and they save a full round of clarification emails on a USD 100,000+ purchase.

  1. Capacity and span — rated load in tons, runway span in meters, lifting height.
  2. Duty class — FEM/ISO M-class or CMAA class, with the load spectrum and daily running hours you expect.
  3. Destination standard — CMAA 70 (North America, top-running double girder), CE (EN 15011/EN 13001), or project-specified code. Do not accept a generic 'CMAA compliant'.
  4. Power supply — voltage, phase, frequency, e.g. 380V/50Hz/3-phase or 480V/60Hz.
  5. Trolley configuration — single trolley, auxiliary hoist, rotating grab, or twin trolley for long loads.
  6. Environment — indoor/outdoor, temperature range, humidity, dust, corrosive or explosive exposure.
  7. Speed profile — required lifting speed (m/min) and travel speeds; heavy plants often need faster travel than standard.
  8. Control mode — pendant, radio remote, cabin, or automation interface with VFD.
  9. Certification documents — declaration of conformity, test certificates, welding quality records, load test certificate.
  10. Installation scope — whether the quote includes runway rails, electrification, installation and commissioning.

If your project is in the EU or follows EU practices, add: harmonized standards list, risk assessment summary, and the EU declaration of conformity. If it is North America, add: compliance with CMAA 70, OSHA 29 CFR 1910.179 and ASME B30.2 where applicable.

Frequently Asked Questions

Which standard applies to my double girder crane?

North America: CMAA 70 for top-running double girder (multiple girder) cranes. Europe and most export markets: EN 15011 + EN 13001, with FEM 1.001 / ISO 4301 duty classification. Many Middle East, Southeast Asia and Africa projects accept CE-certified EN/FEM designs; US-led projects often specify CMAA. If the project does not name a standard, ask the supplier which system applies and get the duty class in writing.

What is the difference between CMAA 70 and CMAA 74?

CMAA 70 covers top running bridge and gantry cranes with multiple girders, the double girder configuration with a trolley on rails. CMAA 74 covers single girder cranes, typically with an under running hoist on the bottom flange. Both use A-F service classes, but the structural rules, wheel loads and component ratings are sized differently. A 'CMAA 74' quote for a top-running double girder crane is a red flag.

Is CE certification required for a double girder crane in Europe?

Yes. Cranes placed on the European market must meet the essential safety requirements of the Machinery Directive 2006/42/EC, and from 20 January 2027 the Machinery Regulation (EU) 2023/1230, then carry the CE mark with an EU declaration of conformity. CE is built on harmonized standards including EN 15011, EN 13001 and EN 60204-32. Ask for the declaration of conformity and standards list.

What duty class do I need for a heavy-duty application?

Match the class to real operating intensity, not the heaviest lift. A5 for 5-8 hours of medium work in machine shops and fabrication. A6 for 8-16 hours in steel service centers and precast yards. A7 for 16-24 hours with heavy loads in steelmaking and scrap handling. A8 for continuous severe duty in ports and casting plants. Under-classing causes girder fatigue and trolley failures; over-classing wastes 15-25% of capital. SIEC double girder cranes cover 5-100+ tons, spans 5-35 m, heights 6-30 m, duty A5-A8.

How much more does a higher duty class cost?

Roughly 15-25% for a meaningful jump. An A7/M7 double girder crane typically costs 15-25% more than an A5/M5 equivalent. On a 50-ton unit at USD 75,000-130,000 FOB, that is USD 11,000-32,000. The upgrade buys heavier box girders, a stronger trolley, higher motor ratings, and components rated for more cycles.

Does the standard affect the electrical system?

Yes. CMAA designs typically use NEMA components at 480V/60Hz; FEM/EN designs use IEC components at 400V/50Hz with VFDs common. State your voltage, phase and frequency in the RFQ. SIEC double girder cranes ship for 380V/415V/480V, 3-phase, 50/60Hz, with VFD travel standard on A6 and above.

Need a Double Girder Crane Specified to the Right Standard?

Send us your capacity, span, duty cycle and destination market — our engineering team will confirm the applicable standard (CMAA 70, FEM/ISO or EN), duty class, electrical configuration and certification documents before you commit. Quotes include a full specification sheet you can compare with other suppliers.

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Written by Wang Lei, Senior Structural Engineer at SIEC Cranes. Wang has 14 years of experience designing double girder overhead cranes for steel mills, shipyards and heavy industrial plants, with projects shipped to 20+ countries under CE, CMAA and FEM compliance frameworks.

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