The Ozobot Evo is a pocket-sized coding robot built for screen-free Color Codes, block-based programming, K–5 STEM learning, computational thinking, and classroom activities.
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The Ozobot Evo is a compact educational robot designed to make coding accessible through physical and digital activities.
It combines optical line and Color Code sensing, proximity sensors, Bluetooth Low Energy, programmable RGB LEDs, a speaker, a rechargeable battery, and Ozobot Blockly support.
Evo is best suited for K–5 computer science, mathematics, science, language, creative projects, libraries, homeschool programs, and scalable classroom robotics.
Its combination of screen-free Color Codes and progressive Blockly programming makes Evo particularly effective for introducing coding concepts before moving learners into more structured digital projects.
Use screen-free Color Codes or digital Ozobot Blockly programs.
Reads lines and colour sequences drawn on paper or suitable screens.
Allows programs to react to nearby objects and obstacles.
Ten RGB LEDs and a speaker make code visible and audible.
Connects to supported devices for digital programming workflows.
Available as individual and multi-robot education packages.
Educational coding robot
K–12 coding and robotics
Indoor classrooms and homes
Portable classroom/home deployment
No rated carrying payload
No manipulator arm
Two-wheel line following and programmable free movement
No manipulator arm
Not publicly specified
Approx. 60 min
140 mAh LiPo; USB/wireless charging
Color Codes, Blockly, Python and Bluetooth
Optical line/color + proximity sensors
Approx. 33.5 × 33.0 mm width × height
Approx. 28 g



The Ozobot Evo price is publicly listed by Ozobot. The current Evo Entry Kit is around US$175, while multi-robot classroom kits cost more depending on the number of robots, charging equipment and included professional development. The displayed robot or kit price is not always the final amount a school, university, family, lab or organisation will pay.
The total cost can change with country, taxes, shipping, classroom quantity, accessories, charging equipment, spare parts, software requirements, training, warranty and distributor support. Schools should compare the Entry Kit with 6-, 12- and 18-robot classroom packages rather than multiplying a single-bot price without checking the included charging and training resources.
This is why buyers should compare the complete package rather than only the lowest headline price. A lower offer may omit essential items, while a higher package may include curriculum, storage, charging, replacement components or local technical support. For primary schools, libraries, STEM programs, homeschool families and districts, it is useful to confirm the exact model, included hardware, device compatibility, delivery estimate and after-sales process before ordering.
The better question is: what is included, what is excluded, and who supports the product after delivery? You can request a Ozobot Evo quote through Anton Robots to compare the full package, availability and support options before buying.
You can buy or request the Ozobot Evo through Anton Robots. We help buyers compare classroom coding robot packages, check current availability, understand what is included and decide whether the product is suitable for screen-free Color Code activities, Ozobot Blockly projects, K–5 computer science and cross-curricular STEM. The Ozobot Evo may also be available through Ozobot and selected authorised education or robotics sellers. Not every listing represents the same package. Some sellers offer only the core robot, while others include chargers, curriculum, storage, accessories, software access, replacement parts, setup help or institutional support.
Before buying, confirm the Evo robot, charging cable or cradle, Color Code markers, protective storage, curriculum access, professional development, delivery and warranty. This matters when several students will share the robot or when the purchase must work with a specific operating system, tablet, classroom network or lesson plan. For schools, universities, makerspaces, libraries and families, total package value is normally more important than the lowest displayed price.
To start, request a Ozobot Evo quote and Anton Robots can help you compare price, package, shipping and support.
You can look for the Ozobot Evo for sale through Ozobot, authorised education suppliers, robotics distributors and specialist robot marketplaces such as Anton Robots. Finding a listing is only the first step. The important part is confirming the exact model, condition, package and support terms. A low advertised price may exclude chargers, cables, curriculum, accessories, replacement components, shipping, taxes, warranty handling or technical support.
For professional and education buyers, compare the complete delivered package rather than the robot alone. Check the kit size, robot colour, charging method, marker sets, protective case, curriculum access, software compatibility, delivery, warranty and support. This is especially important for schools, districts, libraries, makerspaces and families that need the equipment to work across a full class, research project, workshop or fixed teaching calendar. Used and old-stock listings may also have worn batteries, missing parts or software compatibility limitations.
If you are looking for a Ozobot Evo for sale and want help checking whether an offer is complete and current, contact Anton Robots before placing an order.
Yes. You can get a quote for the Ozobot Evo through Anton Robots. A useful quote should include more than the base coding robot price. It should clearly show the number of robots, marker sets, charging cradle, storage, curriculum, professional development, shipping, warranty and support.
This matters because two packages with the same product name can have very different classroom or project value. A cheaper quote may become more expensive once charging, accessories, software, shipping, taxes, replacement parts or training are added.
If you are buying for K–5 classrooms, STEM labs, libraries, after-school programs, homeschool learning or district deployments, also confirm that the robot matches the learner level, devices, network environment, programming language and number of users. Anton Robots can help you compare Evo entry and classroom kits with Ozobot Ari, Bit+ replacements and other beginner coding robots and prepare a quote based on your country, quantity, use case and support requirements. Before approving the order, ask for an itemised package and a written delivery estimate. That makes it easier to compare offers accurately and reduces the risk of receiving a robot without the components or support needed to use it.
A typical Ozobot Evo package may include one Evo coding robot, USB charging cable, dual-tip Color Code markers, starter activities and a protective zip case in the Entry Kit. The exact contents can vary by country, seller, kit version and classroom bundle. Before buying, ask for a clear packing list and confirm whether the offer includes:
This matters because product photographs often show accessories, maps, devices, modules or classroom equipment that are not part of the basic package. For schools, districts and families, missing chargers, cables, consumables or curriculum can delay implementation even when the robot itself arrives correctly. You should also check whether batteries are included, whether a computer or tablet is required, which software is supported and whether replacement parts remain available. Two offers can both use the same product name while containing very different quantities and support.
If you want to compare what is included, you can request an itemised Ozobot Evo package quote through Anton Robots before buying.
The Ozobot Evo is designed mainly for K–5 coding and STEM learning, although Ozobot also markets kits across a broader K–12 range. Younger students can begin with screen-free Color Codes drawn on paper, learning sequencing, direction, speed and cause-and-effect. Older elementary learners can move into Ozobot Blockly and create programs using movement, lights, sounds, sensors, loops, variables and logic.
The same robot can therefore support a progression rather than a single one-off activity. The correct grade level depends on the lesson design and how independently students are expected to use computers. Evo is not intended as an advanced ROS, electronics or mechanical engineering platform. Secondary students may still use it for rapid coding demonstrations or cross-curricular projects, but learners ready for Python, AI development or robot construction may need a more advanced system.
Before buying, compare the curriculum, student age, device availability and teacher experience rather than relying only on the grade label.
The Ozobot Evo can be programmed in two main ways. Students can use screen-free Color Codes by drawing coloured sequences on black lines, allowing the robot’s optical sensors to read commands such as speed changes, turns and special behaviours.
They can also use Ozobot Blockly, a browser-based visual programming environment with progressive skill levels. Evo supports Bluetooth Low Energy for loading and running compatible programs from supported computers or tablets. The robot’s movement, LEDs, speaker and proximity sensors can be programmed for more advanced activities.
This dual approach makes it useful for mixed-ability classrooms: beginners can start with markers and paper, while experienced learners can progress into digital coding. Teachers should check browser, Bluetooth and device compatibility before class and keep screen brightness and calibration guidance available. Evo is not a conventional text-code development robot, although some classroom materials may introduce higher-level concepts. Its strength is accessible visual coding with immediate physical feedback.
Yes. The Ozobot Evo supports fully screen-free coding through Color Codes. Students draw black paths and short sequences of coloured blocks with suitable markers, and the robot’s optical sensors interpret those codes while following the line.
This lets teachers introduce sequencing, direction, speed, debugging and logic without requiring a computer for every learner. Evo can also be used with Ozobot Blockly when a digital programming experience is needed.
The screen-free method works best when lines are clean, code colours are correctly spaced and the robot is calibrated for the paper and lighting conditions. Ozobot markers are recommended because overly dark or inconsistent colours can be misread. Screen-free coding does not expose every programmable feature available through Blockly, so schools should decide whether they need one method or a progression between both. For early learners and short cross-curricular activities, Color Codes are one of Evo’s strongest advantages.
The Ozobot Evo includes optical sensors, proximity detection, programmable RGB LEDs, a built-in speaker and Bluetooth Low Energy. Its optical system reads lines and Color Codes on paper or suitable screens.
Proximity sensors allow programs to react to nearby objects, while the LED ring provides visual feedback and creative display options. The speaker supports sounds and audio responses. Ozobot states that Evo has ten RGB LEDs, a rechargeable LiPo battery and a durable polycarbonate shell designed for classroom use. These features can be controlled through Ozobot Blockly to build projects around movement, sensing, light and sound.
Sensor performance still depends on calibration, surface quality, lighting and robot condition. Evo is a compact learning robot, not a precision mobile platform for mapping or autonomous navigation. Its sensors are intended to make coding concepts visible and interactive rather than to support industrial or research-grade autonomy.
Yes. The Ozobot Evo is designed for classroom use and is sold in individual and multi-robot packages. Schools can use it for computer science, mathematics, science, language arts, social studies and general STEAM activities.
The robot is compact, quick to deploy and supports both screen-free and digital coding, which reduces barriers for younger learners. For larger purchases, compare 6-, 12- and 18-bot classroom kits, charging cradles, marker sets, robot labels, curriculum and included professional development.
Teachers should define a student-to-robot ratio, keep markers and robots organised and build calibration into the lesson routine. Bluetooth and browser access should be tested before digital activities. Evo is suitable for repeated classroom use, but the small size means robots and accessories can be misplaced. Districts should also plan replacement, charging, storage and teacher onboarding rather than treating the purchase as hardware alone.
The right Ozobot robot depends on the learner level and whether the school is buying a current supported platform. Ozobot Evo is the current entry-friendly choice for screen-free Color Codes and digital Blockly coding, with Bluetooth, proximity sensors, programmable LEDs and sound. Ozobot Bit+ is an older platform that can still use Color Codes and Ozobot Blockly through flash loading, but it lacks Evo’s Bluetooth and broader interactive features and is no longer the main current product.
Ozobot Ari is positioned for more advanced learning with a built-in touchscreen and expanded capabilities. Evo is usually the safest choice for K–5 classrooms that want a balance of simplicity and progression.
Bit+ may make sense only for existing fleets or remaining stock. Ari is better when schools need a newer, more capable platform and have a higher budget. Compare curriculum, device requirements, support and replacement strategy before buying.
The Ozobot Evo uses a rechargeable LiPo battery, and Ozobot lists a charging time of approximately 60 minutes. Actual classroom runtime depends on movement, LED brightness, sound, Bluetooth use, program length, battery age and the number of activities run between charges.
Ozobot describes the current classroom design as supporting a full lesson, but schools should not assume one charge will cover every period in a full day. Entry Kits use a charging cable, while classroom kits may include a multi-robot charging cradle. For reliable deployment, charge robots before class, label them, inspect ports and keep the charging area organised.
Batteries are built into small robots and will degrade over time, so replacement and service options should be reviewed before a large district purchase. Avoid leaving robots deeply discharged for long periods. Ask the supplier to confirm charging hardware and regional power equipment in the quoted package.
Useful Ozobot Evo accessories include extra Color Code marker sets, charging cables or classroom cradles, protective cases, bot labels, storage trays and curriculum resources. Markers are consumable and line-reading quality matters, so schools should keep replacements available. A classroom with many robots benefits from a charging system that handles the whole set and from numbered labels that keep robots assigned to groups. Schools should also check access to Ozobot Classroom, lesson plans and professional development.
Decorative skins and activity kits can add engagement, but they should not replace the core need for charging, calibration and reliable markers. Before purchasing third-party accessories, confirm that they do not block the optical sensors or affect movement.
You can request an itemised Ozobot Evo classroom package through Anton Robots with robot quantity, charging, markers, storage, curriculum and training included.
The Ozobot Evo can usually be shipped internationally, but delivery depends on the seller, destination country, regional distribution, stock, customs rules, taxes and local product availability. Ozobot’s current shipping information varies by page and region, so international buyers should confirm whether the order is supplied directly or through a local representative. The headline product price may not include international freight, VAT, GST, import duties, customs handling or local delivery. The robot contains a rechargeable LiPo battery, so air transport and documentation may affect the shipping method.
Before ordering, ask whether shipping is included, who handles customs clearance and whether the warranty is valid in the destination country. Schools and organisations should also confirm invoicing, purchase-order acceptance, lead time and the process for replacing damaged or missing components. A product that is easy to buy in one country may require an authorised local distributor in another. This is why buyers should compare the delivered package rather than only the online price.
If you need the Ozobot Evo for an international education, research or STEM project, request an international quote through Anton Robots so availability, landed cost and support can be checked before purchase.
The Ozobot Evo is worth buying when you need an approachable coding robot that can grow from screen-free activities into block-based programming. Its main value comes from its Color Code system, Ozobot Blockly support, Bluetooth connection, proximity sensors, programmable LEDs, speaker and classroom-ready kits. It is especially useful when buyers want a physical robot that turns abstract programming or robotics concepts into visible movement and immediate feedback.
However, the Ozobot Evo is only a good purchase when the learner level, software environment and lesson goals match the platform. It is not a mechanical construction kit, Python development platform, ROS robot or precision autonomous system. Its learning value depends on good lesson content and reliable marker, calibration and charging routines.
Buyers should not select it only because it looks engaging or because a single online price appears low. Consider how many users will share each robot, how it will be charged, whether teachers need training and how easily parts can be replaced. Compare Ozobot Ari for more advanced capability, or other buildable robots when electronics and mechanical engineering are core goals. You can compare other education and research robots on Anton Robots before choosing and request advice based on age group, curriculum, budget and technical depth.
A complete Ozobot Evo deployment requires more than purchasing the robot itself. For a primary classroom, library, STEM program or district rollout, plan the number of robots, student-to-robot ratio, charging process, storage, supported devices, software accounts and lesson sequence before the first session.
Test one full workflow before rolling the product out across a class. Confirm how programs are transferred, whether the network permits the required connection method and whether teachers can reset, calibrate and troubleshoot the robot without losing lesson time. Keep spare cables, charging equipment and frequently handled components available where practical.
Buyers should also define supervision, age-appropriate use and a process for cleaning and inspecting devices between sessions. Evo works best as part of a structured coding sequence rather than as an isolated one-day activity. Use the request a quote form to obtain an itemised package rather than comparing robot-only prices.
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