Budget: 800 UAH Deadline: 1 day
An engineer with experience in designing and assembling electrical switchgear will gladly become a spider-man and figure out your panel. You will receive a diagram and a sketch of the panel in the required format.
Budget: 1000 UAH Deadline: 1 day
Hello! 👋
I can accurately recreate your electrical panel diagram based on the sketch and photos.
I will prepare it in a convenient format (AutoCAD, Figma, or PDF) with clear labeling of all elements.
I am ready to discuss the details and start right away.
Hristina Tarasyuk
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- Rating 26
Budget: 700 UAH Deadline: 10 days
Good day. I can offer my services at a lower price than the one you specified, as I am a newcomer to the site. I will also complete the drawing on the same day.
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- Rating 408
Budget: 1000 UAH Deadline: 2 days
Hello! I will create a diagram for you in pdf/dwg format. Quickly, neatly, and with quality. Feel free to contact me.
Budget: 700 UAH Deadline: 1 day
Good day!
I can complete your task. The result will be in DWG and PDF format.
Feel free to contact me, have a nice day!
Budget: 1000 UAH Deadline: 1 day
Hello Oleg.
The task is clear and interesting, you need a diagram of the existing electrical panel with all connections and markings, I am ready to complete it today without any unnecessary questions.
You will receive a vector image of the diagram, which will allow you to print or zoom in on the screen at any scale without losing quality.
I look forward to discussing the details in private.
Budget: 1000 UAH Deadline: 1 day
Good afternoon. I can do this carefully and beautifully. The work will take about half a day.
Budget: 700 UAH Deadline: 1 day
Good day.
I will do the work quickly and efficiently.
Extensive practical experience.
I am engaged in Architectural, Construction projects, developing concepts of varying complexity, 3D modeling, 3D visualization, 3D video animation, project presentation, interior and exterior design, video editing, working with AI, as well as product design, developing furniture prototypes (designed and produced for an exhibition in Canada, after which they were launched into mass production), industrial design for mass production (a street lamp designed was installed in large quantities in various cities in different countries), product listing. Excellent knowledge of ergonomics, regulatory framework in the field of construction design. Extensive practical experience. Creative approach to work. I work in programs 3ds Max + V-Ray + Corona, SketchUp + V-Ray, AutoCAD, Revit, Photoshop, Lumion, After Effects, Archicad. My portfolio https://3ddomkiev.wixsite.com/website-2
Budget: 1200 UAH Deadline: 2 days
If it's not urgent - I can complete it according to the sample and based on the scheme. I will provide the files in pdf, jpg format. Feel free to reach out for discussion.
Budget: 700 UAH Deadline: 1 day
Good afternoon.
I can create a drawing of the electrical panel diagram for you.
In what format would you like to receive the file?
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Current freelance projects in the category Drawings & Diagrams
We are looking for a physicist engineer or a design engineer with experience in developing induction chargers, Qi/Qi2, and working in KiCad. We already have: a ready-made wireless charging board for two devices; two coils for charging a phone and headphones; the case design and 3D models. What needs to be done Add a third charging channel for Apple Watch. Select and calculate the coil, electronic components, and connection scheme. Resolve the issue of correct Apple handshake and compatibility with Qi/Qi2. Check if the system can stably charge three devices simultaneously. Calculate the required power of the power supply, heating, and main electrical parameters. Consider the shielding of the coils, as the charger is installed inside a wooden case. Prepare or refine the schematic and PCB in KiCad. Provide recommendations on design, safety, and further certification of the device. We are considering two work formats: full development and preparation of files; engineering consultation with calculations and recommendations that our specialist can implement. Please, when responding, write: whether you have experience with wireless chargers Qi/Qi2; whether you have worked with Apple Watch or MFi components; whether you can perform calculations for coils, power, heating, and shielding; attach examples of similar projects.
Planning options for a shower module for military use based on 20 and 40-foot shipping containers. Various combinations are available. This is an AI-generated photo; it needs to be adjusted and smart dimensions for walls, partitions, and overall sizes applied for further manufacturing.
Assembly Principle: Completely weld-free, exclusively using bolted connections (“NO-WELD BOLTED CONSTRUCTION”). The structure is modular (Flat-Pack) to minimize logistics costs and facilitate self-assembly by the customer. 1. TECHNICAL REQUIREMENTS AND AESTHETICS • Requirement for the developer: The product must be designed to have a flawless, presentable commercial appearance for export to the EU market. • Intuitive assembly: The design should allow for the simplest assembly possible, enabling the customer to assemble the box independently without special tools. • Frame material: Stainless steel AISI 304 (matte), sheet thickness — 1 mm. • Construction: Corner system with flanging for rigidity and safety. Stacking (nesting) during transportation. • Wall filling (sandwich): PIR board (30 mm) with a tolerance of ±4 mm. The groove design should compensate for this tolerance, eliminating gaps. • Wall cladding: PIR board is covered on both sides with smooth stainless steel sheets of 0.5–0.6 mm. • Assembly: Strictly with bolts (stainless steel A2/A4). Minimum number of bolted connections inside the working area for ease of cleaning and disinfection. • Feet: Height 30 mm, integrated into the lower binding contour. 2. DOOR CONSTRUCTION AND LOCKING • Sealing: Rubber seal around the entire perimeter of the reveal and a stop (false bar) for 100% elimination of gaps. • Hinges: Seat design that eliminates play (bolts serve only the function of clamping). • Locking: Mechanical latch lock “finger in hole”. • Door configuration: Doors spanning the full width and height of the facade, divided horizontally into two independent sections: upper and lower. ◦ Lower section: blind. ◦ Upper section: has a viewing window. ◦ Operating principle: The lower section opens first and, when closing, tightly presses against the upper section. • Viewing window (Product No. 1): Located in the upper section. Double-sided, with an air layer. Clamping strips for securing any transparent material (glass, plastic, or film) with a thickness of from 2 to 5 mm. 3. VENTILATION SYSTEMS (Identical for both products) • Protection: Mesh (stainless steel, wire 0.5 mm, cell 0.8 mm). Installation — through clamping frames with bolts (without drilling the mesh). • Upper exhaust (120 cooler): Cutout 200x200 mm in the roof, cooler installation through a flange with M4 thread. Under the cooler (above the mesh) — adjustable damper (shutter). • Lower intake: Two openings (left and right), raised 100 mm from the floor. Area of each — 300 cm². Both intakes have adjustable dampers (shutters). 4. PRODUCT SPECIFICATION • PRODUCT No. 1 (Vertical 600x600x1200 mm): Two-section doors (lower blind, upper with window). Equipment: lamp mounts, cable pass-throughs, mounts for IR film (on the wall), curtains for mesh suspension, strip for the shield from the end. • PRODUCT No. 2 (Horizontal cabinet 600x600x600 mm): Single-section doors without glazing. Equipment: lamp mounts, cable pass-throughs, mounts for IR film (on the wall), stainless steel guides for shelves, strip for the shield from the end. 5. WHAT IS REQUIRED TO BE DELIVERED: 1. 3D assembly: STEP / SolidWorks formats, with the ability to freely disassemble the model. 2. Drawings: Detailed drawings of assembly nodes. 3. Unfoldings: DXF format (considering the K-factor of bending). 4. Specification table (BOM): All stainless steel fasteners.
A gerber file is required to order a board based on the description; there is no schematic, part of the schematic (the PWM) will be drawn by hand. The set is very simple: a power stabilizer based on the ATmega 328, a 1602 display, and three buttons with a couple of small connectors.
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