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I have a hand-drawn 1 V-to-9 V boost converter that uses the LT1615-1. First, I need you to reproduce that sketch as a clean KiCad schematic and net-list—the usual .kicad_sch and .kicad_pcb files backed by a tidy component library will be perfect. Once I confirm the schematic, use it to lay out a compact, double-sided PCB that measures no more than 2.1 cm × 1.1 cm with a maximum height of less than 0.8 cm. The design should support a maximum load current of 20mA. Key layout notes: • Keep a solid ground plane on the component (top) layer. • Follow every placement and routing recommendation in the LT1615-1 datasheet, especially the switch node trace length and feedback routing. • The design may mix SMD and through-hole footprints where it truly benefits performance or ease of assembly. • Use high-quality components such as low-resistance capacitors and inductors as outlined in the LT1615-1 datasheet. Ensure grounding, component location, and track width strictly follow the specifications in the datasheet. Deliverables 1. KiCad schematic, libraries, and net-list. 2. Manufacturing-ready output: Gerber X2 set, drill files, IPC-2581 or ODB++, pick-and-place, and a simple BOM. 3. (Optional) If you also run prototypes, let me know your price to fabricate and ship three assembled boards. I’ll review the schematic first, then the board files; once both pass ERC/DRC and match the datasheet’s example layout, the project is complete.
Project ID: 40602508
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39 freelancers are bidding on average $138 AUD for this job

Hi I am an embedded systems engineer with over 16 years of experience. I have extensive experience taking compact power-electronics designs from an initial sketch through KiCad capture, PCB layout, manufacturing files, assembly, and production testing. I can first reproduce your LT1615-1 boost converter as a clean, organized KiCad schematic with verified symbols, footprints, libraries, and net connectivity for your approval. I will then create the double-sided PCB within the 21 mm × 11 mm limit, carefully following the datasheet guidance for the switching loop, ground plane, switch node, feedback path, and component placement. The finished design will pass ERC/DRC and include Gerber X2, drill data, IPC-2581 where supported, pick-and-place, and a clear BOM. Please share the hand-drawn circuit, expected 9 V load current, preferred connectors or wire pads, and any assembly constraints. I can also help arrange and assemble three prototypes; that cost can be confirmed separately once parts availability and delivery location are reviewed. Please contact me to discuss details.
$250 AUD in 7 days
7.6
7.6

Every matches perfectly with my expertise. If you need the boards shipped to you, then I will create the design according to JLCPCB from where you can order directly from them. It's the fastest and cost effective PCBA in the world. LT1615-1 is alaos available with them and cost breakups of this particular part 1+ $5.5331 10+ $4.8028.
$115 AUD in 7 days
7.0
7.0

With over a decade of experience in electrical engineering and a focused expertise on power electronics and PCB design, I'm confident that I can deliver exceptional results on your KiCad DC-DC Converter project. Having worked extensively with the LT1615-1 and similar components in designing AC/DC converters, DC/DC converters, and battery chargers, I am well-acquainted with ensuring grounding precision, excellent component location, optimal track width, and meeting datasheet specifications. Your project requires mixing SMD and through-hole footprints for performance benefits, and that's an area where my expertise truly shines as well. I can produce comprehensive KiCad files (including .kicad_sch and .kicad_pcb) with an organized component library—my thorough approach ensures we're on the same page every step of the way. My skillset extends to creating manufacturing-ready output including Gerber X2 set, drill files, IPC-2581 or ODB++, pick-and-place data, and building a simple BOM. I run prototypes too—and fabricating and shipping three assembled boards for you won't be any problem. Count on me to ensure your schematics and board files pass ERC/DRC checks meticulously, leaving no room for error. An error-free layout is an absolute necessity for effective circuit operation. In conclusion, entrusting your project to me means having someone who genuinely loves their job and treats each project with strong dedication.
$140 AUD in 7 days
7.5
7.5

Having worked on intricate PCB designing projects for over 8 years now, I understand the importance of precision and spec adherence, which makes me a perfect match for your KiCad DC-DC converter project. My skillset goes well beyond mere proficiency in tools like KiCad, Eagle, Altium, and EasyEDA - I've developed a deep understanding of the underlying principles and techniques involved in circuit design and layout. In addition, my knowledge of CAD/housing design for PCBs using Fusion360 can be of immense value to ensure optimal component placement and efficient routing. Finally, as mentioned in my profile, I'm an active Certified EasyEDA designer, which is testament to not just my theoretical knowledge but also practical dexterity. My delivery doesn't stop at files; I'm equipped to fabricate and ship assembled prototypes if requested. Consider opting for the service - it'd ensure holistic project control while obtaining three functioning converters for testing. In conclusion, what sets me apart is not just competency but also commitment to deliver the best within given parameters. Hence, my proposal: Sit back and relax while I convert your hand-drawn sketch into a clean KiCad schematic and net-list with utmost diligence - followed by a compact and optimized PCB design that trul matches the datasheet's guidelines. You can count on my certifiedщ expertise to bring your project to fruition efficiently & effectively. Dare to dream - Let's get designing!
$140 AUD in 7 days
6.9
6.9

Hello sir, I am a professional kicad DC DC pacb design expert and can do your task perfectly because I have done lots of similar tasks and also I am in top 1% here so just text me so I can help you out with your task perfectly Kind regards
$140 AUD in 1 day
6.7
6.7

Hi there, I reviewed your LT1615-1 boost converter sketch and datasheet, and understand that you need it recreated as a clean KiCad schematic first, then laid out as a compact 2-layer PCB within 2.1 cm × 1.1 cm. I can create the KiCad schematic, tidy symbols/footprints, netlist, compact PCB layout, ground plane, short switch-node routing, proper feedback routing, ERC/DRC cleanup, Gerber X2, drill files, IPC-2581/ODB++, pick-and-place, and BOM. My experience with compact DC-DC converter layouts, KiCad/Altium PCB design, power electronics, component selection, and manufacturing-ready files fits this project well. Just send me a message and I can start with the schematic stage quickly. Best regards, Samuel Tshibangu
$175 AUD in 1 day
6.4
6.4

I can deliver your 1 V-to-9 V (20mA) LT1615-1 boost converter design in KiCad, strictly adhering to the datasheet's switch-node, feedback, and grounding guidelines. Deliverables 1- KiCad Source Files: Clean schematic (.kicad_sch), custom component libraries, and net-list for your initial ERC review. 2- PCB Layout (≤ 2.1 cm × 1.1 cm): Compact, double-sided board featuring a top ground plane, low-ESR components, and pass DRC. 3- Manufacturing Package: Gerber X2, drill files, IPC-2581, Pick-and-Place, and complete BOM. The quoted price not include pcb manufacturing and shipping cost.
$90 AUD in 5 days
6.6
6.6

Hi, I can convert your hand-drawn LT1615-1 boost converter into a clean, fully editable KiCad project and design a compact PCB optimized for both performance and manufacturability. I have extensive experience designing switch-mode power supplies, DC-DC converters, and compact mixed SMD/through-hole PCBs while following manufacturer layout recommendations. I will first recreate the schematic and verify it against the LT1615-1 datasheet before proceeding with the PCB layout. Special attention will be given to minimizing the switch-node loop, feedback routing, grounding, and decoupling to achieve stable operation and low EMI within the 21 × 11 mm size constraint. The final design will pass ERC/DRC and be ready for fabrication. You will receive the complete KiCad project, custom libraries if required, Gerber X2, drill files, IPC-2581/ODB++, pick-and-place files, BOM, and manufacturing documentation. If needed, I can also assist with prototype review and manufacturing support. I can start immediately and look forward to discussing your design. Regards,
$140 AUD in 1 day
5.8
5.8

Hey there! I’m Alok, A PCB, Circuit and Mechanical designer with a passion for turning ideas into rock-solid, high-performance circuit boards. even expert on Python, C, C++ With nearly a decade of experience, I’ve tackled everything from compact consumer gadgets to complex industrial systems—always with a focus on precision, efficiency, and reliability. # Schematic & Layout Design – Clean, optimized, and manufacturable. # Component Selection & Library Management – No surprises, just the right parts for the job. # Reverse Engineering – PCB cloning, replication, and improvements. # Gerber, BOM & CPL Generation – Ready for seamless production. # DFM & DFA Expertise – Because great design means smooth manufacturing. # Multi-Layer, Flex, & High-Density PCB Design – Whatever the project needs. If you need a PCB and Code that’s efficient, reliable, and built for real-world performance, let’s chat. I’d love to help bring your project to life!
$110 AUD in 3 days
5.9
5.9

Hi, I am a Senior PCB Design Engineer with 10+ years of experience in power electronics, DC-DC converters, and compact embedded hardware, having designed multi-layer PCBs, battery-powered systems, and power management circuits with successful prototype-to-production delivery. I have experience with KiCad, Altium, LT/ADI power ICs, switching regulators, and high-efficiency layouts, including optimized power paths, EMI control, and datasheet-guided component placement for reliable operation. Approach: ✅ I will first recreate the hand-drawn LT1615-1 boost converter into a clean KiCad schematic with verified symbols, footprints, netlist, and component library, following the datasheet reference design and electrical rules. ✅ I will then design the compact 2-layer PCB within the 21mm × 11mm limit, applying proper switch-node minimization, feedback isolation, short current loops, and top-layer ground plane techniques. ✅ I will generate manufacturing outputs including Gerbers, drill files, IPC-2581/ODB++, pick-and-place data, BOM, and perform ERC/DRC validation before delivery. Questions: ✅ I would like to confirm the target output current/load requirement for the 1V-to-9V boost converter, as it affects inductor, diode, capacitor selection, and thermal performance. ✅ Do you have any preferred PCB manufacturer or assembly requirements that should be considered for footprint selection and manufacturing files? Best, Yaroslav
$140 AUD in 7 days
5.4
5.4

Hello. I have checked the attachments and can design the required DC-DC converter PCB is KiCAD. The LT1615-1 is a well documented IC and provide a detailed design guidelines. I have experience of working in KiCAD and can setup a clean schematic and footprint library for your task. Feel free to contact me for your task.
$110 AUD in 2 days
5.6
5.6

⭐⭐⭐⭐⭐ I've carefully reviewed your requirements, and this is exactly the kind of compact power-supply PCB project I enjoy working on. I'll first recreate your hand-drawn LT1615-1 boost converter as a clean, fully organized KiCad schematic with proper symbols, footprints, libraries, and netlist. After your approval, I'll design a compact 2-layer PCB within the 21 mm × 11 mm size limit while closely following the LT1615-1 datasheet recommendations for switch-node routing, feedback isolation, grounding, component placement, and low-noise layout. You'll receive: • KiCad schematic, PCB, libraries, and netlist • ERC/DRC-clean production-ready design • Gerber X2, NC drill, Pick & Place, IPC-2581/ODB++ (or preferred manufacturing format) • Complete BOM with high-quality, readily available components • Compact layout optimized for reliable 9 V / 20 mA operation I have extensive experience designing compact DC-DC converters and production-ready KiCad boards where layout quality directly impacts efficiency and noise performance. Proposed Milestones Recreate and review schematic PCB layout and optimization ERC/DRC verification and manufacturing package I can also assemble and ship prototype boards if needed—I'd be happy to provide a separate quote once we finalize the design. One question: will your hand-drawn schematic exactly match the LT1615-1 reference circuit, or are there any custom modifications I should preserve?
$140 AUD in 7 days
5.1
5.1

HI, I am an experienced electronics and PCB Design engineer, specialised in use of ECAD software such as Altium Designer, KICAD, EasyEDA, etc. for the the design of electronics and PCB. I will design your projects to meet your Requirements and the industry standard. I do all kinds of circuits such as Power delivery circuit, Sensor Integrated Circuits, wireless control, MCUs etc. I will deliver the following. The Schematics for your Design The PCB for the design Bill of materials(If needed) Gerber, Pick and Place and other manufacturing and assembly drawings needed. Full Support and consultancy till the project is done. Kindly send me message for my previous designs and also so we can discuss further on your project I look Forward to working with you. Best Regards, Abdur-Rafiq
$120 AUD in 7 days
5.3
5.3

I am an Embedded Systems and PCB Design Engineer with experience in Altium Designer, Kicad, Easyeda, Protious and custom hardware development. I can design your PCB from schematic to production-ready files, including: • Schematic Design • PCB Layout • Component Selection • Design Rule Check (DRC) • Gerber Generation • BOM Preparation • Manufacturing Support (JLCPCB, PCBWay, etc.) I have experience with ESP32, STM32, sensor interfaces, power supplies, RF modules, Ethernet, and industrial electronics. Please share the project requirements, schematic (if available), board dimensions, and any special requirements. I can start immediately. Looking forward to working with you.
$70 AUD in 4 days
4.9
4.9

With over a decade of experience in electrical engineering and PCB design, I, Usman Haider, believe I'm the ideal candidate for your KiCad DC-DC Converter PCB project. My deep understanding of circuit design coupled with my professionalism in using KiCad will ensure that your hand-drawn 1V-to-9V boost converter becomes a clean schematic and net-list with the utmost accuracy. The .kicad_sch and .kicad_pcb files will be backed by a carefully curated component library. Precision is key to me, so rest assured that I'll comply with all layout guidelines in the datasheet and maintain a solid top layer ground plane. When it comes to mixing SMD and through-hole footprints, my extensive knowledge will be employed to guarantee performance optimization and ease of assembly. Additionally, relying on my experience working with high-quality components like the ones required (low-resistance caps and inductors), I'll ensure every component location, grounding, and track width strictly adhere to the specs in the datasheet. Delivering quality work with an attention to details is my forte consistently evidenced through complefunctionalntact. Let's bring your vision to life while meeting the project requirements within the set timeframes! Reach out so we can get started on producing impeccable KiCad schematics, libraries, Gerber X2 sets, drill files, IPC-2581 or ODB++, pick-and-place information which perfectly match
$150 AUD in 7 days
4.1
4.1

Hi, I can recreate your hand-drawn LT1615-1 1V-to-9V boost converter as a clean KiCad schematic first, then turn the approved design into a compact 2-layer PCB within 2.1 cm × 1.1 cm. I’ll follow the datasheet layout guidance closely, especially switch-node minimization, feedback routing, grounding, and top-layer ground plane strategy. Deliverables will include the KiCad project files, tidy custom libraries if needed, netlist, ERC/DRC-clean PCB, Gerber X2, drill files, IPC-2581 or ODB++, pick-and-place, and BOM. I understand the review flow: schematic approval first, then PCB layout, then final manufacturing package. This is a good fit for precise power-layout work in KiCad, and I can keep the files organized for easy fabrication or future revisions. Best, Miguel
$140 AUD in 5 days
3.7
3.7

I am ready to accurately translate your hand-drawn boost converter schematic into a clean KiCad format, adhering strictly to your specifications. With expertise in PCB design and familiarity with the LT1615-1 datasheet, I will ensure optimal component placement, routing, and layout efficiency within the tight 2.1 cm x 1.1 cm constraints. Upon confirming the schematic, I will proceed to develop a manufacturing-ready PCB, including Gerber files, drill files, and an accurate BOM. If needed, I can also provide a cost estimate for prototype fabrication and shipping of three assembled units. Your project will benefit from meticulous design aligning with your technical notes and datasheet guidelines, ensuring a seamless transition from schematic to functional PCB.
$80 AUD in 7 days
2.6
2.6

Hello, I would be happy to help with your LT1615-1 boost converter project. My approach is to first recreate your hand-drawn circuit as a clean and fully organized KiCad schematic, carefully verifying every connection against the LT1615-1 datasheet before moving on to the PCB layout. After you review and approve the schematic, I will design a compact two-layer PCB that follows the recommended layout practices from Analog Devices as closely as possible, especially for the switching loop, feedback routing, grounding, and component placement to achieve stable, low-noise operation. I have extensive experience designing compact power supply circuits and embedded hardware, and I understand that switching regulator layouts are often more critical than the schematic itself. My goal is to deliver a design that is not only electrically correct but also reliable, manufacturable, and optimized for performance. You will receive the complete KiCad project, manufacturing-ready Gerber X2, drill files, IPC-2581 or ODB++, Pick-and-Place file, BOM, and all supporting design files. Every design is checked with ERC and DRC before delivery. I would be glad to discuss the project in more detail and review your hand-drawn schematic before getting started. I am ready to begin immediately once we reach an agreement. I look forward to working with you. Thank you.
$140 AUD in 7 days
2.1
2.1

Hello, I can reproduce your hand-drawn LT1615-1 boost converter into a clean, well-organized KiCad project and ensure it follows the datasheet recommendations. I will first deliver the schematic, custom libraries (if needed), and netlist for your review. After your approval, I will design a compact 2-layer PCB within the 21 × 11 mm size limit, paying special attention to the switch node, feedback routing, ground plane, and component placement for stable 1 V to 9 V operation at up to 20 mA. The final package will include KiCad source files, Gerber X2, drill files, IPC-2581/ODB++, pick-and-place, and a BOM. I will verify ERC/DRC before delivery and make revisions until the design matches the LT1615-1 reference layout. I can also provide a quotation for assembling and shipping three prototype boards if required.
$110 AUD in 7 days
1.6
1.6

I’ll translate your hand-drawn 1V→9V boost using the LT1615-1 into a clean KiCad schematic (.kicad_sch) with an accurate net-list and a tidy component library. First goal is schematic parity: I’ll mirror the datasheet’s placement/layout guidance for switch-node length and feedback routing, so ERC/DRC passes and the circuit matches the documented example behavior. After you approve the schematic, I’ll lay out a compact double-sided PCB (≤2.1cm × 1.1cm, max height <0.8cm) sized for up to 20mA load. The top layer will include a solid ground plane, with careful grounding, track widths, and component placement per LT1615-1 requirements. I’ll use a mix of SMD and through-hole footprints only where it improves performance or assembly, and verify routing constraints before finalizing manufacturing files. Deliverables: KiCad libs/sch + PCB, Gerber X2, drill files, IPC-2581 or ODB++, pick-and-place, and a simple BOM.
$140 AUD in 7 days
1.1
1.1

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