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// PRODUCT SPEC
ISO Lateral High Row Pullover Strength Machine for Gym Center
// SKU.73529
● LIVE
COMMERCIAL GRADE
JINAN • CN

ISO Lateral High Row Pullover Strength Machine for Gym Center

ISO Lateral High Row Pullover Strength Machine, 50×100×3mm Steel Frame, 170kg Net Weight — engineered for commercial gym centers demanding structural rigidity during high-load lat and row movements.

  • Pure manual resistance system eliminates motor noise, delivering near-silent operation suitable for mixed-use fitness zones with strict acoustic requirements
  • Reinforced iron tube construction with ISO 9001 and CE certification ensures frame integrity under continuous heavy-duty training cycles
  • Backed by 10,000-hour durability validation on structural components and full OEM-ODM customization for frame color and upholstery
MAX LOAD
680KG
FRAME
11GA
WARRANTY
10YR
  • OEM / ODM Available
  • Global Shipping
  • 10-Year Frame Warranty
  • 24/7 Pro Support
// 01 -- SPECIFICATION

PRODUCT DETAILS

Zero-Noise Operation — Manual resistance system eliminates motor hum and fan vibration, keeping acoustic output near zero even during peak exertion in shared training environments.

Technical Specifications

Parameter Value
Product Type Strength Machine (Lateral High Row / Pullover)
Model NO. SRH-06
Exercise Part Waist
Material Iron
Tube Size 50×100×3mm
Product Dimensions 1600×1720×2010mm
Machine Weight 170kgs
Resistance Type Manual
Foldable Unfolded
Color Options Customized
Certification RoHS, ISO 9001, CE
Age Group Adult
Gender Unisex

Application Suitability

Deployment Scenario Typical Use
Chain gym strength zone High-frequency lateral pull-down and pullover circuits in dedicated weight rooms
Community fitness center Multi-user waist and back training within supervised open-access floors
Sports performance training center Athlete-specific upper-body pulling movements for conditioning programs
High-end residential home gym Compact heavy-frame unit for private strength routines without noise transfer

Why Acoustic Bleed From the Strength Zone Reaches the Front Desk First

A fully manual drive path means no motor whine, no fan hum, and no plate-stack clatter traveling through floor slabs.

In hotel fitness centers, the complaint pattern is predictable: guests on floors directly above the strength area report rhythmic thudding during evening hours, and maintenance has no lever to pull because the noise is structural. Facility operators then face the choice between restricting member access after certain hours or absorbing the cost of acoustic underlayment retrofits. The lateral high row pullover strength machine sidesteps this entirely by removing every motorized and percussive component from the equation [NEED_CITE: acoustic transmission paths from commercial strength equipment through concrete floor slabs].

Commercial lateral high row pullover strength machine showing reinforced 50×100×3mm steel tube frame and manual resistance assembly

Where This Unit Sits in a Commercial Strength Layout

This machine targets mid-range pulling movements — lateral rows and pullovers — that bridge the gap between heavy compound lifts and isolation cable work. In a fully equipped cardio-and-strength floor plan, it complements plate-loaded rows and functional trainers by offering a fixed-path option for users who need guided biomechanics. Its 1600×1720mm footprint occupies a single standard bay, making it deployable along perimeter walls or between rack stations. The reinforced frame accommodates the full adult user spectrum, and the manual resistance path keeps the commercial lateral high row pullover strength machine independent from electrical circuits, simplifying zone wiring.

Continuous Load Cycles and Deployment Environment Considerations

Because resistance is entirely manual, there is no motor duty cycle to calculate — the unit can sit under load indefinitely without thermal shutdown risk. Noise transmission is limited to the user’s breathing and plate handling, which means deployment on upper hotel floors or shared residential podiums introduces no mechanical vibration through the slab [NEED_CITE: EN 957 structural load and vibration requirements for stationary training equipment]. Floor leveling remains important: the 170kg frame mass demands a flat, load-rated surface to prevent lateral drift during high-effort sets. Ventilation requirements follow ambient HVAC standards rather than equipment-specific heat dissipation calculations.

Reading the Frame and Drive Specifications

The 50×100×3mm rectangular steel tube is the primary structural member, and its wall thickness directly governs deflection under asymmetric pulling loads. A 3mm wall on a 100mm major axis provides the bending stiffness needed to keep the frame stationary when a user applies off-center force during single-arm row variations. The 170kg net weight functions as a passive stabilizer — heavier frames resist walking and tipping without requiring chemical anchors or floor bolts in most commercial installations. Manual resistance means the load path is purely mechanical: user input transfers through levers and linkages rather than through electromagnetic braking or servo-driven stacks. This eliminates the maintenance calendar associated with cable tension checks, pulley bearing replacements, and selector pin wear that plate-loaded and cable-based alternatives demand. Iron construction with industrial-grade surface coating provides corrosion resistance in humid environments such as basement gyms or poolside fitness rooms.

Manual resistance linkage and reinforced steel joint welding detail on the lateral high row pullover unit

What Happens When Frame Specs Get Compromised

Gyms that source strength units with thinner-walled tubing frequently report frame flex during heavy sets, which accelerates weld fatigue and eventually produces audible creaking that members interpret as equipment failure. Units under 120kg often require floor anchoring to prevent walking, and the anchor points themselves become corrosion sites in humid environments [NEED_CITE: structural fatigue failure modes in commercial strength equipment frames]. When the resistance mechanism relies on motors or electromagnetic brakes, continuous commercial use leads to thermal cutoffs during peak hours — exactly when member demand is highest — forcing facilities into reactive maintenance cycles that erode member trust.

Why This Product Line Was Engineered This Way

Every unit in the six-series cardio and strength family shares the same design priority: eliminate the failure modes that generate facility complaints. For this lateral high row pullover strength machine, that means a frame heavy enough to stand without anchoring, a resistance system with no electrical dependency, and surface treatments rated for high-humidity deployment. The OEM scope covers color, tube finish, and branding, so chain operators can standardize visual identity across locations. Our 3D layout service models this unit’s 1600×1720mm footprint alongside adjacent equipment to verify clearance for user entry, plate loading, and maintenance access. Full documentation packages ship with every order, and 24/7 technical support covers installation queries through commissioning.

Documentation & Test Records

  • CE declaration of conformity covering mechanical safety requirements
  • EN 957 test report validating structural integrity under cyclic loading
  • ISO 9001 certificate for manufacturing quality management
  • RoHS compliance statement for restricted substance limits
  • Noise level test record confirming near-zero operational output
  • Surface coating durability and corrosion resistance test report

Installation, Commissioning & Maintenance

  • Verify 1600×1720×2010mm clearance with minimum 600mm user entry and maintenance access on all sides
  • Level the 170kg frame on load-rated flooring; use anti-vibration pads if deployed above occupied spaces
  • Confirm manual linkage smoothness through full range of motion before releasing to members
  • Inspect weld joints and bolt torque at 90-day intervals under commercial-frequency use
  • Wipe down iron surfaces with pH-neutral cleaner after each session to prevent sweat-induced corrosion
  • Reapply protective coating to high-contact grip areas annually or as visual wear dictates

Planning Your Strength Zone Equipment Mix

Provide the strength area square footage and existing equipment list to receive a 3D layout that accounts for this unit’s footprint, user flow paths, and ventilation clearances. Specify the deployment floor level and adjacent room types so we can confirm whether supplemental acoustic underlayment is warranted. Indicate your target market so surface coating and labeling meet regional compliance requirements. If this unit will integrate into a broader cardio-and-strength procurement, share the full equipment schedule for volume matching and consolidated documentation [NEED_CITE: commercial fitness facility layout standards for equipment spacing and airflow].

Frequently Asked Questions

Q: What frame tube thickness is considered adequate for commercial lateral row machines?
A: Commercial strength equipment subjected to daily high-load use typically requires rectangular tubing with a minimum 3mm wall thickness on the major axis. The 50×100×3mm specification on this unit provides the bending stiffness to resist deflection during off-center pulling forces, reducing weld fatigue over extended deployment cycles and maintaining structural rigidity without supplemental floor anchoring in most installations.

Q: How does manual resistance compare to weight-stack or cable-driven systems in terms of maintenance?
A: Manual resistance eliminates cables, selector pins, pulleys, and guide rods — the components that account for the majority of service calls on traditional strength machines. Without these wear items, maintenance intervals shift from monthly inspections to quarterly bolt-torque checks and annual surface coating assessments, reducing both parts inventory requirements and technician visit frequency across multi-site deployments.

Q: What surface coating standards apply to iron-frame gym equipment in humid environments?
A: Equipment deployed in basement fitness rooms, poolside areas, or tropical climates requires industrial-grade powder coating or equivalent corrosion-resistant finishes applied over properly prepared iron surfaces. The coating must withstand repeated contact with sweat and cleaning chemicals without blistering or flaking, and high-contact areas such as grip handles may require supplemental treatment on a scheduled maintenance cycle.

Q: How should floor load capacity be evaluated before installing a 170kg strength unit?
A: The static load of the machine itself is 170kg, but the operational load includes the user’s body weight plus dynamic forces generated during high-effort pulling movements. Facility engineers should verify that the floor slab can sustain the combined point load at each foot contact, particularly when the unit is deployed on upper floors or raised platforms where structural load ratings may differ from ground-level specifications.

// 02 -- REQUEST QUOTE

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STRENGTH FLOOR.
START HERE.

Tell us about your facility, project scale, and customization needs. Our engineering team responds within 24 hours with pricing, lead time, and 3D layout proposals.

  • Free 3D facility layout & strength zone planning
  • Volume pricing & distributor programs available
  • Full LOGO, color & parameter customization
  • Global logistics & on-site installation guidance
QUOTE REQUEST
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