Resistance Spot Weld Guns FOR SALE
Portable, Suspended, Robot Weld Guns | AC and MFDC | C-Type and Scissors-Type (X-Type)
Weld Systems Integrators (WSI) supplies resistance spot weld guns for manual, suspended, robotic and automated welding applications. Available configurations include C-type, X-type, pneumatic and servo weld guns with AC and MFDC power options for applications ranging from portable maintenance welding to high-production automated manufacturing.
WSI supplies resistance weld guns from leading manufacturers, along with replacement components, transformers, controls, cables, electrodes, and other resistance welding accessories. New and available inventory may include complete weld guns as well as equipment suitable for integration into existing resistance welding systems.
Available Resistance Spot Weld Guns
TECNA Weld GunsMilco Weld GunsAro Weld GunsCenterline Weld Guns
TECNA Portable, Suspended and Robot Spot Weld Guns
Weld Systems Integrators (WSI) is a stocking master distributor of TECNA resistance weld guns for portable, suspended and robot spot welding applications. TECNA resistance welding guns are available in a variety of configurations, including manual and pneumatic spot welding guns, with different electrode forces, arm lengths, and throat depths to accommodate specific part geometries and welding requirements. Depending on the application, weld guns can be paired with TECNA transformers, weld controls, cables, and tool balancers to create a complete resistance spot welding system.
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| MILCO Resistance Weld Guns |
| Standard Modular Pinch, C and Scissor Weld Guns |
XR Modular Pinch, C and Scissor Weld Guns |
Titan Series (Extra Large Throat) Pinch and C Weld Guns |
Global Pinch
and C Weld Guns |
100 – 170 kVA MFDC
65 – 136 kVA AC |
100 – 170 kVA MFDC
65 – 136 kVA AC |
100 – 170 kVA MFDC
65 – 136 kVA AC |
100 – 170 kVA MFDC
65 – 136 kVA AC |
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| Delta Series (Aluminum Welding) Pinch and C Weld Guns |
Delta Series (Extra Large Aluminum Welding) Pinch and C Weld Guns |
Pinch, C and Scissor Weld
e-Guns |
Pinch and C Manual Trans Weld Guns |
| 170 – 225 kVA |
170 – 225 kVA |
100 – 160 kVA MFDC
65 – 136 kVA AC |
170 – 225 kVA |
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Milco Resistance Weld Guns
Weld Systems Integrators (WSI) supplies MILCO resistance weld guns for industrial spot welding and resistance welding applications. Available MILCO resistance welding equipment includes portable and suspended weld guns, robotic weld guns, C-type and X-type weld guns, transformers, cylinders, electrodes, replacement components, and related accessories. Weld gun configurations can be selected based on required weld force, throat depth, electrode access, material thickness, production rate, and available power supply.
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| ARO Resistance Weld Guns |
| ARO Servoline Weld Guns |
ARO Ergoline Weld Guns |
ARO 3G Modular
Robotic Weld Guns |
ARO HD “Heavy Duty”
Weld Guns |
| Servo MFDC |
Pneumatic AC or MFDC |
9 shared modules
7 specific modules
2 plug-and-play arms |
Weld currents and forces (up to 65 kA / 2000 daN) |
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ARO Resistance Weld Guns
ARO resistance weld guns are designed for high-performance spot welding in automotive, metal fabrication, and industrial production applications. Available in manual, robotic, and automated configurations, ARO resistance welding guns provide consistent weld quality, high electrode force, and reliable operation for demanding manufacturing environments. Weld Systems Integrators (WSI) supplies and supports ARO resistance weld guns, components, replacement parts, and integrated resistance welding solutions to help manufacturers improve weld consistency, productivity, and equipment reliability.
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| CenterLine Resistance Weld Guns |
| Centerline FlexGun™ 3 |
Centerline FlexGun™ Ultra and Ultra HC (High-Capacity) |
Centerline FlexGun™ RA |
Centerline FlexGun™ Standard |
100 – 225 kVA MFDC
(AC available on request) |
100 – 225 kVA |
MFDC (100 – 185 kVA)
AC (55 – 136 kVA) |
AC and MFDC – C Gun, Pinch and 90° Pinch |
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CenterLine Resistance Weld Guns
Weld Systems Integrators supplies CenterLine resistance weld guns for industrial spot welding, automated welding, and robotic resistance welding applications. Available CenterLine resistance welding equipment includes portable and suspended weld guns, robotic weld guns, manual weld guns, and related resistance welding components. Weld gun configurations can be selected based on part geometry, material thickness, required electrode force, throat depth, accessibility, production rate, and integration requirements.
Choosing the Right Resistance Spot Weld Gun
Selecting the correct spot weld gun depends on several application requirements, including material type and thickness, required weld force, throat depth, electrode configuration, available power supply, duty cycle, and production volume. Proper gun selection helps provide consistent weld quality while improving electrode access, operator ergonomics, and production efficiency.
- Material and thickness — Determines the required current, force, and weld schedule.
- Required weld force — Helps determine gun size and actuator requirements.
- Throat depth and arm configuration — Determines whether the electrodes can reach the weld location.
- AC vs. MFDC — Depends on material, production requirements, transformer configuration, and available power.
- Duty cycle — Higher-production applications may require greater cooling capacity and heavier-duty equipment.
- Manual vs. robotic operation — Depends on production volume, repeatability requirements, and automation needs.
WSI can help evaluate your resistance welding application and recommend a weld gun configuration based on your parts, materials, production requirements, and existing equipment. For help sizing a gun to your application, or to request a quote, please give us a call at 844-WSI-WELD or 216-475-5629
Frequently Asked Questions – Resistance Spot Weld Gun
What is a resistance spot weld gun?
A resistance spot weld gun is a welding tool used to join two or more overlapping metal sheets by applying electrode force and electrical current to a small, concentrated area. The current generates resistance heat at the interface between the metal sheets, forming a weld nugget without the need for filler metal.
Spot weld guns typically use two opposing copper-alloy electrodes that clamp the workpieces together. Once the required electrode force is applied, a high electrical current passes through the electrodes and workpieces for a controlled amount of time. The electrical resistance at the joint produces enough heat to melt the metal locally and create a strong spot weld as it cools.
Resistance spot weld guns are commonly used in automotive manufacturing, sheet metal fabrication, appliance production, metal enclosures, cabinets, doors and frames, and other high-production welding applications.
Common types include portable hand-held weld guns, suspended spot welding guns, robotic weld guns, C-type guns, and X-type (scissor) guns. Depending on the application, they can be manually, pneumatically, hydraulically, servo, or robotically operated.
What is the difference between a C-type and X-type weld gun?
A C-type weld gun and an X-type weld gun are two common configurations of resistance spot welding guns. The main difference is how the electrodes move and apply force to the workpiece.
C-Type Weld Gun – C-type guns have a rigid C-shaped frame, with one electrode fixed and the other electrode moving linearly toward it.
Advantages:
- Direct, straight-line electrode force
- Generally very rigid with minimal deflection
- Good electrode alignment
- Well suited for high weld forces
- Often provides excellent repeatability
- Common in robotic automotive and high-production applications
Limitation: The C-frame can restrict access around complex parts or deep flanges.
X-Type Weld Gun – X-type guns use two arms that pivot like scissors or pliers. The electrodes close toward each other as the arms rotate around a pivot point.
Advantages:
Better access to difficult or recessed weld locations
Can reach around part geometry, flanges, and obstructions
Different arm lengths and shapes can be used for specific applications
Common for robotic, suspended, and manual spot welding guns
Limitation: Because the arms pivot, electrode force and tip movement are affected by the gun’s geometry. Long arms can also produce more deflection than a comparable C-type gun.
| Feature |
C-Type Gun |
X-Type Gun |
| Electrode motion |
Linear |
Pivoting/scissor |
| Frame |
C-shaped |
Pivoting arms |
| Rigidity |
Generally higher |
Depends on arm length/design |
| Electrode alignment |
Excellent |
More geometry-dependent |
| Part access |
More limited |
Generally better |
| Deep/recessed locations |
Less suitable |
Often better |
| High weld forces |
Excellent |
Application-dependent |
| Typical selection factor |
Rigidity & direct force |
Accessibility & reach |
What is the difference between AC and MFDC weld guns?
The main difference between AC and MFDC weld guns is the type of electrical power used to create the resistance weld. That difference affects transformer size, weld speed, energy efficiency, process control, and how easily the gun can be integrated into automated or robotic applications.
| Feature |
AC Weld Gun |
MFDC Weld Gun |
| Power |
Single-phase AC |
Medium-frequency DC |
| Typical frequency |
50/60 Hz |
Commonly ~1,000 Hz before rectification |
| Transformer |
Larger/heavier |
Smaller/lighter |
| Weld current |
Alternating |
Direct current |
| Weld time |
Generally longer |
Generally shorter |
| Energy efficiency |
Lower |
Higher |
| Current control |
Good |
More precise |
| Electrical load |
Higher peak/less balanced |
Generally better efficiency/load characteristics |
| Robotic applications |
Possible |
Excellent |
| Equipment cost |
Lower |
Higher |
| Typical use |
General-purpose welding |
High-production/automated welding |
AC Weld Guns – An AC resistance weld gun uses conventional single-phase alternating current. The welding transformer steps the incoming voltage down and produces the high secondary current required to form the weld.
AC weld guns are a proven, relatively simple and economical solution. They work well for many manual, suspended and general-purpose spot welding applications, particularly when production rates and weight are not major concerns.
One disadvantage is that a 50/60 Hz transformer is relatively large and heavy. This can become important with suspended guns and especially robotic weld guns.
MFDC Weld Guns – An MFDC (Medium-Frequency Direct Current) weld gun uses an inverter power supply, typically operating around 1,000 Hz, with the transformer output rectified to DC.
The higher operating frequency allows the weld transformer to be considerably smaller and lighter than a conventional AC transformer. This is a major advantage for robotic and suspended weld guns because reducing transformer weight reduces the overall gun mass.
MFDC also provides more precise control over weld current and allows very short weld times. It is commonly used in automotive, robotic, and high-production resistance spot welding.
Simple answer – AC weld guns are simpler and generally less expensive, while MFDC weld guns provide faster, more precise, and energy-efficient welding with smaller, lighter transformers. For high-production and robotic resistance welding, MFDC is generally the preferred technology; AC remains a practical choice for many conventional spot-welding applications
What size spot welding gun do I need?
To properly size a spot welding gun, provide material type, individual sheet thicknesses, number of layers, desired throat depth, production rate, and available electrical power. From those specifications, the required welding current, electrode force, transformer size, and gun configuration can be determined.
For example, a gun for welding two thin sheets of mild steel may require substantially less current and force than a gun welding multiple layers of high-strength steel. There isn’t one standard spot welding gun size based solely on sheet thickness—the complete application should be evaluated.
For an industrial application, a weld schedule or sample parts can also be used to confirm the appropriate gun capacity before equipment is selected.
What is the difference between a portable, suspended and robotic weld gun?
Portable, suspended, and robotic resistance weld guns all perform the same basic function—applying electrode force and electrical current to create a resistance spot weld—but they differ primarily in how the gun is supported, positioned, and operated.
| Weld Gun Type |
How It Is Used |
Best For |
| Portable Weld Gun |
Manually carried and positioned by the operator |
Light-duty, repair, low-volume and flexible applications |
| Suspended Weld Gun |
Supported by a tool balancer/overhead system and manually positioned |
Repetitive manual production and heavier weld guns |
| Robotic Weld Gun |
Mounted to and positioned by an industrial robot |
Automated, high-volume production |
Portable Resistance Weld Guns – A portable weld gun is manually positioned by the operator at the weld location. The gun, transformer, cables, and supporting equipment are designed to provide flexibility when the workpiece cannot easily be brought to a stationary spot welder.
Portable guns are commonly used for lower-volume production, assembly, fabrication, maintenance, and applications involving large or difficult-to-position parts.
The main advantage is flexibility. The operator brings the welding gun to the workpiece rather than moving the workpiece into a stationary welding machine.
Suspended Resistance Weld Guns – A suspended weld gun is also manually operated, but the weight of the gun is supported by an overhead suspension system, typically using a tool balancer.
The balancer allows the operator to move a relatively heavy weld gun around the work area with much less effort. This makes suspended guns well suited for repetitive production welding where numerous welds must be made on large assemblies.
Compared with a basic portable gun, a suspended system can provide better ergonomics, easier positioning, and reduced operator fatigue.
Robotic Resistance Weld Guns – A robotic weld gun is designed to be mounted on an industrial robot rather than manually positioned by an operator.
The robot moves the gun to programmed weld locations while the weld control coordinates electrode force, current, weld time, and other process parameters.
Robotic guns are commonly used for high-volume automated manufacturing, particularly automotive body assembly and other applications requiring large numbers of repeatable spot welds.
Robotic weld guns are commonly available as C-type and X-type guns and may use pneumatic or servo actuation. Servo guns provide precise control over electrode movement and force and integrate well with automated production systems.
What materials can be welded with a resistance spot weld gun?
A resistance spot weld gun can weld many electrically conductive metals, but weldability depends on the material’s electrical resistance, thermal conductivity, thickness, surface coating, and the available weld current and electrode force.
| Material |
Spot Weldability |
Notes |
| Low-carbon / mild steel |
Excellent |
One of the easiest and most common materials to resistance spot weld |
| Galvanized steel |
Excellent–Good |
Common in automotive and sheet-metal fabrication; typically requires higher current than bare steel |
| Stainless steel |
Excellent |
High electrical resistance makes it well suited for resistance welding |
| High-strength steel (HSS/AHSS) |
Good–Excellent |
Frequently spot welded in automotive applications; weld schedules must be carefully controlled |
| Nickel and nickel alloys |
Good–Excellent |
Common in batteries, electronics, aerospace, and specialty applications |
| Titanium and titanium alloys |
Good |
Can be resistance welded with appropriate process control |
| Aluminum and aluminum alloys |
Good, but more difficult |
Requires high weld current because of aluminum’s high electrical and thermal conductivity |
| Copper and copper alloys |
Difficult |
High electrical and thermal conductivity makes conventional resistance spot welding challenging |
| Brass / bronze |
Difficult–Moderate |
Weldability varies significantly by alloy |
| Coated steels |
Good |
Galvanized, galvannealed, and other coated steels may require different weld parameters and electrode maintenance |
DON’T FORGET YOUR TOOL BALANCERS
Looking for an industrial-grade tool balancer or spring tool retractor? TECNA balancers are an ergonomic solution for suspending tools above an operator’s workstation, supporting the weight, providing controlled movement, and reducing worker fatigue.
SEARCH TECNA tool balancers and ORDER NOW from our available inventory.
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