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Your Position: Home - Electronic Products Machinery - How to Save Money When Buying robotic arm assembly line

How to Save Money When Buying robotic arm assembly line

Author: Marina

Jun. 17, 2024

How much does a robot arm cost?

Robot arm pricing guide

So, how much does a robot arm cost?

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When it comes to automation in the workplace, the price points of Industrial robots vary depending on their specifications. This all comes down to the:

  • Size
  • Payload capacity
  • Number of axes
  • Engineering design
  • Versatility
  • Automation features

Just remember, there's no "one size fits all" price solution when it comes to robotic arms.

Estimated price examples

  • A Six-Axis Industrial robot arm with an 11-13 lbs (5-6 kg) payload capacity that is used for welding and cutting can start anywhere in the region of $9,500 to $10,000.
  • A small, Four-Axis desktop Industrial robot arm (i.e. SCARA robot) that is used for assembly can start from roughly $4,500.
  • A high-speed, Six-Axis smoldering Industrial robot arm with programmable software features can range from about $15,600 to $35,000.

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Affordable robotic arm options

Collaborative robots, or Cobots, offer cost-effective solutions for businesses. These affordable robots are designed to work alongside humans in a shared workspace. They are often simpler in terms of engineering and design but are equipped to get the job done.

Cobots are user-friendly and offer quick integration into existing workflow systems. While they may not be as fast and as powerful as their Industrial robot counterparts (used in large-scale operations), they do serve as an affordable option for small- to medium-sized businesses.

Alternatively, a refurbished robot arm could save you a pretty penny if it's still in good working condition and performs the tasks you require.

The benefits of choosing affordable options

  • Budget-friendly options reduce the initial investment costs, making automation accessible to a broader range of businesses.
  • Due to the lower costs, companies can achieve a quicker return on investment (ROI).
  • Affordable options are designed to be versatile, handling multiple tasks with simple reprogramming.
  • Cobots are built with safety features (such as sensors) that allow them to work effortlessly with humans, preventing injury and accidents.
  • Cobots typically have 'plug-and-play' mechanics, require minimal setup time, and are easily integrable.

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Determining robotic arm costs

Here's a breakdown of the components and features that contribute to robot arm costs:

  • Base robot: This applies to the cost of the base robot itself, which varies based on its size, payload, and the number of axes. For example, a SCARA robot typically has 4-axes while an Articulated robot has Six-axes.
  • End of arm tooling (EOAT): This refers to the tools or "grippers" that are attached to the robot.
  • Software: An Industrial robot arm may come with patented software which requires licensing fees.
  • Safety components: Additional features - such as vision cameras, sensors, safety cages, emergency stop systems, and detectors - all contribute to the final price tag.
  • Installation: You may incur an installation fee for setting up your Industrial robot arm. Some robotic manufacturing companies may require that you only use selected professionals for setup, training, and maintenance.

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Link to Fuxin Intelligent

Exploring robot arm price ranges

Let's take a look at the types of robot arms that can be categorized into three price brackets:

  • Low range: Collaborative robots (Cobots) are the most affordable option. They are designed for simple tasks and are ideal for basic automation needs. However, they have fewer axes, basic software and machine learning, and lower payload capabilities.
  • Medium range: Robotics in this price bracket offer a balance of cost and functionality. Usually, these robots have slightly more features, higher payloads, and increased flexibility when compared to lower-priced robotics.
  • High range: These robots are designed for specialized tasks in large-scale industries. They have advanced software, heavy-duty payloads, and multiple axes for precision across complex tasks. They usually require programming from trained professionals and are not as user-friendly as Cobots.

Buying a cost effective robot

The bot­tom line: using robots for man­u­fac­tur­ing appli­ca­tions is cost-effec­tive. Robots offer inno­vat­ing and cost-effec­tive solu­tions com­pared to man­u­al process­es or hard automation.

KUKA under­stands that to stay com­pet­i­tive with­in the indus­try, cus­tomers need to auto­mate to reduce costs and improve qual­i­ty. Their pri­or­i­ty is robots, and they main­tain that robot­ics is the most flex­i­ble and cost-effec­tive solu­tion for automa­tion. Robots can be used in sim­ple mate­r­i­al han­dling appli­ca­tions to com­plex assem­bly systems.

Fanuc has a team of engi­neers ded­i­cat­ed to devel­op­ing inte­gral robot­ic vision prod­ucts. These vision prod­ucts pro­vide a lev­el of cost-effec­tive­ness, per­for­mance, and reli­a­bil­i­ty that a third-par­ty solu­tion can­not match. iRVi­sion is installed in Fanuc robots and acts as their eyes. The LR Mate 200iC robot can error proof with the help of vision guid­ance. The R&#;200iB is an expert at bin pick­ing, while the M&#;430iA can pick and place. The M&#;410iB spe­cial­izes in pal­letiz­ing oper­a­tions. The ARC Mate 0iA is the ide­al solu­tion for cost-effec­tive weld­ing of small parts. All of these cost-effec­tive robots save the user both mon­ey and time while increas­ing qual­i­ty in their operations.

In col­lab­o­ra­tion with Fanuc, Lin­coln Elec­tric intro­duced a cost-effi­cient robot­ic weld­ing solu­tion. The ARC Mate 0iA robot is used in con­junc­tion with Lincoln&#;s Pow­er Wave R350 pow­er source. This sim­pli­fied robot enables high-speed, qual­i­ty welds while pro­mot­ing cost efficiency.

Motoman offers more than 40 ful­ly inte­grat­ed, pre-engi­neered World work cell solu­tions that include robots, process equip­ment, and safe­ty equip­ment. World work cell solu­tions are cost-effec­tive and can meet most man­u­fac­tur­ing require­ments. They are easy to set up and oper­ate while low­er­ing costs.

ABB Robot­ics is anoth­er lead­ing indus­tri­al robot man­u­fac­tur­er, with over 200,000 robots installed world­wide. ABB Robot­ics focus­es on cre­at­ing high qual­i­ty robots to increase pro­duc­tion, safe­ty, and reli­a­bil­i­ty. With their diverse col­lec­tion of robots, you are sure to find one to fit your spe­cif­ic appli­ca­tion requirements. 

The role of robot­ics in the man­u­fac­tur­ing of aero­space prod­ucts is steadi­ly increas­ing. The largest use of robots in the aero­space indus­try is for drilling holes into com­po­nents. Robots can drill thou­sands of holes into the fuse­lage quick­ly and con­sis­tent­ly, which would be impos­si­ble for a human to do. Tool­ing costs are reduced when robots are used for drilling, since expen­sive tool­ing like jigs and fix­tures do not need to be pur­chased when a robot com­pletes the tasks. Fur­ther, robots can drill a hole in a sin­gle pass, while man­u­al drilling could take up to four oper­a­tions, sav­ing both time and mon­ey. Since the demand for air­craft is ris­ing sig­nif­i­cant­ly, the most cost-effec­tive way the aero­space indus­try can increase pro­duc­tion is through robot­ics.

Are you inter­est­ed in learn­ing more about Robots&#;.com and the robots we sell here? Then con­tact us online or give us a call today at 877&#;762&#;.

For more robotic arm assembly lineinformation, please contact us. We will provide professional answers.

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