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I need a complete design for an FSK RF receiver that operates at 2.4 GHz with a channel bandwidth of 2 MHz. The end product is destined for compact consumer-electronics hardware, so every decision has to balance performance with tight power and size constraints. Key features I must hit: • Low power consumption • High data rate The demodulator has to handle GFSK only; no other modulation schemes are required. If you have an existing IP block or proven architecture that already meets these specs, I’m open to licensing it—otherwise, a ground-up design is fine. I’m expecting schematics, layout (Altium, KiCad or similar), a BOM that can be sourced today, and simulation or bench results that prove sensitivity, selectivity and data-rate targets at the stated bandwidth. Please let me know what test equipment or software you’ll use so we can agree on acceptance criteria up front.
Project ID: 40564343
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Hello. I can design a 2.4GHz GFSK RF receiver optimized for low power consumption and high data rates, suitable for small consumer electronics. Whether you require a custom design or wish to utilize existing, proven architectures/IPs, I can provide the most practical solution tailored to your performance and cost goals. I can also specify the RF simulation tools and laboratory test equipment used to ensure the final design meets your requirements prior to production. I possess extensive experience in RF circuit design, high-frequency PCB layout, impedance matching, and low-power wireless systems, and I will do my utmost to provide a reliable and production-ready design. However, while it is entirely possible to design a 2.4GHz GFSK RF receiver with a 2MHz channel bandwidth, low power consumption, and high data rates, the constraints you have specified require a level of complexity comparable to that of BLE or proprietary IoT wireless devices. I look forward to discussing your performance goals and working on this project together. Sincerely,
$300 USD in 3 days
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27 freelancers are bidding on average $521 USD for this job

I perfectly understand your need for a high-performance 2.4 GHz FSK receiver that complies with strict power and size constraints for consumer-electronics hardware. With my extensive experience in PCB design, digital design, wireless communication, and embedded systems development, I am well-positioned to create a solution entirely tailored to your needs in order to strike an optimal balance between performance and low power consumption. Having worked on various wireless communication systems including LoRa, BLE, Wi-Fi, and 5G; I possess a wide array of proven IP blocks and architectures that can be leveraged upon for the design. However, if necessary, I'm also fully capable of developing a brand-new architecture from scratch. My familiarity with Altium, KiCad (or similar) for layout design enables me to create robust schematics accompanied by clear BOMs which can be sourced promptly.
$750 USD in 5 days
7.9
7.9

Hi I am an embedded systems engineer with over 16 years of experience in compact RF and consumer electronics design. I have worked on 2.4 GHz low-power wireless receivers, GFSK/FSK demodulation chains, RF PCB layout, matching networks, BOM selection and bring-up testing where sensitivity, selectivity, current draw and board size all have to be balanced. For this receiver I would first lock the link budget, target data rate, sensitivity/BER and supply limits, then use either a proven low-power 2.4 GHz GFSK receiver architecture/IP or a carefully selected receiver IC/front-end if that is acceptable for your product constraints. Deliverables can include schematic, compact RF layout in Altium/KiCad, sourced BOM, matching/filtering details, and a validation report covering expected sensitivity, adjacent-channel behavior and current consumption. For verification I can work with RF signal generator, spectrum analyzer/VSA, VNA, oscilloscope/logic capture and simulation tools such as ADS/LTspice or vendor RF tools, depending on the final architecture. A few points to confirm: required data rate, minimum sensitivity target, supply voltage, antenna form factor, and whether an integrated receiver IC is acceptable or you need a custom/licensable demodulator block. Please contact me to discuss the acceptance criteria and hardware constraints in detail.
$750 USD in 30 days
7.6
7.6

Hello, I am interested in your project. I have a lot of experience in RF circuit design and PCB design for high frequency application. I can do the project in KiCad, provide all necessary files for production.
$450 USD in 12 days
5.9
5.9

⭐⭐⭐⭐⭐ I've carefully reviewed your requirements. This is a sophisticated RF design project where architecture selection, RF layout, and validation are just as important as the schematic itself. My approach is to begin with a system-level review to confirm the performance targets before moving into the receiver implementation and PCB design. I'll develop a manufacturable design that balances low power consumption, compact size, and reliable GFSK reception at 2.4 GHz. The deliverables will include the complete schematic, PCB layout (KiCad, Altium, or your preferred CAD tool), BOM with currently available components, fabrication files, and supporting documentation. I'll also provide simulation and/or bench-test results, together with the validation methodology used to verify receiver sensitivity, selectivity, and overall performance. Milestones: Requirements review & RF architecture selection Schematic & component selection PCB layout & RF optimization Validation, documentation & manufacturing package Before finalizing the architecture, I'd like to confirm: What is your target data rate? What receiver sensitivity and output interface are required? Is a proven RF transceiver/receiver IC acceptable, or are you specifically looking for a custom discrete RF receiver design? I look forward to helping you develop a robust, production-ready RF receiver tailored to your performance and power goals.
$500 USD in 7 days
5.1
5.1

Hi I am a Full Stack Engineer RF Engineer with 10 years of experience, providing 2.4 GHz RF receiver design, RF front-end development, GFSK/FSK wireless systems, impedance-controlled PCB layout, embedded hardware, Altium Designer, RF simulation, and production-ready hardware design. In my opinion, the best approach is to build the receiver around a proven low-power 2.4 GHz RF architecture and optimize the RF front end, matching network, and PCB layout together rather than treating them as separate tasks. That minimizes development risk while achieving the required sensitivity, selectivity, data rate, and power consumption in a compact design, and I can also evaluate existing IP if licensing is the better option. The most critical part of this project is balancing RF performance with power consumption and PCB size without sacrificing receiver sensitivity. I solve this by combining proper RF architecture selection, careful impedance matching, optimized stack-up and layout, followed by simulation and bench validation before finalizing the production files. Via private chatting or meeting, I will provide the creative idea and good tech solution for your project. Best regards. Yaroslav
$500 USD in 7 days
5.0
5.0

With more than 8 years spent honing my skills in RF engineering and embedded systems, I can provide you the comprehensive solution you need and deliver in a timely manner. My familiarity with a range of circuits, including the specific high-power and distribution designs called for in your project, adds a valuable dimension to my skill set, allowing me to approach your design with an eye for efficiency as well as performance. It is worth mentioning that I am proficient in both Altium and KiCad, so I will abide by your preferred design platform. Over the course of my career, I have designed numerous RF modules and embedded controllers which have successfully met strict power and size constraints while achieving desired performance thresholds. This project calls for not only low-power consumption but also high-data rate operation - factors that speak directly to my wheelhouse. My resume is impressive and worth checking out, showcasing a number of completed tasks similar to yours, grounding my theoretical solutions in real-world success. In regard to design testing, I'm well-versed in using various software such as HALT (Highly Accelerated Life Testing), HASS (Highly Accelerated Stress Screening), and other simulation tools pertinent to RF analysis. Finally, collaborating with multidisciplinary teams forms part and parcel of my job description & part of what has made me successful over the years. High-quality results under tight deadlines are non-negotiable for me, so rest assured I’ll go above and beyond to not only meet but exceed your expectations on this project.
$500 USD in 10 days
4.4
4.4

Hi, I can assist with the design and development of a 2.4 GHz FSK receiver tailored to your project requirements. I have experience with RF system design, receiver architecture, modulation techniques, and signal processing, and I can help create a reliable, high-performance solution that meets your specifications for sensitivity, selectivity, and overall performance. I will work on the complete receiver design, including RF front-end selection, filtering, frequency synthesis, demodulation, PCB design considerations, and performance optimization. Whether your project involves simulation, schematic design, component selection, testing, or troubleshooting, I will focus on delivering a robust and efficient receiver while maintaining clear communication throughout the development process. I am ready to begin immediately and will provide regular updates to ensure the project stays on schedule. My goal is to deliver a well-documented, reliable 2.4 GHz FSK receiver design that meets your technical requirements and supports successful implementation. I look forward to collaborating with you on this project.
$250 USD in 7 days
5.1
5.1

Hi, I can design the complete 2.4 GHz GFSK RF receiver for your compact consumer-electronics hardware. I understand the receiver must support 2 MHz channel bandwidth, low power operation, high data rate, and GFSK-only demodulation, with proven sensitivity/selectivity performance. I can prepare the schematic, RF front-end architecture, demodulator approach, PCB layout in Altium/KiCad, BOM with currently available components, and validation notes. My approach would include LNA/filter/mixer or suitable RF receiver IC selection, impedance matching, power regulation, clocking, RF layout rules, and test planning. For verification, I can use simulation tools and bench equipment such as spectrum analyzer, signal generator, VNA, and oscilloscope. Could you share the target data rate, supply voltage, antenna type, and expected sensitivity target? Thanks.
$450 USD in 5 days
3.5
3.5

I am excited to submit my proposal for your 2.4 GHz FSK Receiver Design project. With experience in RF circuit design, wireless communication systems, and analog/mixed-signal electronics, I can develop a high-performance receiver that meets your technical requirements. I understand the importance of achieving reliable sensitivity, selectivity, low power consumption, and stable performance across the 2.4 GHz ISM band while maintaining compliance with relevant communication standards. For this project, I will design and optimize the complete receiver architecture, including the RF front end, filtering, frequency synthesis, down-conversion, demodulation, and FSK signal processing. I can also assist with simulation, PCB considerations, component selection, performance verification, and debugging using industry-standard RF design and simulation tools. Throughout the development process, I will provide regular progress updates and ensure the design is thoroughly validated against your specifications. I am committed to delivering a robust, efficient, and well-documented receiver design within the agreed timeline. My focus is on clear communication, technical accuracy, and delivering a solution that is ready for testing and future integration. I look forward to discussing your project requirements in detail and contributing to its successful completion.
$250 USD in 7 days
3.5
3.5

Hello, Client. I read your requirements carefully and understand that you need a compact, low-power 2.4 GHz GFSK RF receiver with 2 MHz channel bandwidth, high data-rate capability, validated sensitivity/selectivity, and complete production-ready design files. I can design the full receiver hardware including RF front-end architecture, LNA/filtering, frequency plan, demodulator approach, power regulation, impedance-controlled PCB layout, BOM, and bring-up/test documentation. For consumer hardware, I would first evaluate whether a proven low-power RF receiver/transceiver IC can meet the GFSK, bandwidth, size, and power targets, then design the board around it. If a custom architecture is required, I can define that path clearly before schematic work begins. Plan: 1. Confirm sensitivity, data rate, input level, antenna/interface, power budget, and board size. 2. Select RF architecture and components with current sourcing. 3. Create schematic in Altium/KiCad with RF matching, filtering, power, and control. 4. Design controlled-impedance PCB layout with RF grounding and compact placement. 5. Prepare BOM, assembly notes, firmware/register settings, and bring-up guide. 6. Validate using simulation and bench test plan. Tools/test plan: Altium or KiCad, RF simulation as needed, VNA, spectrum analyzer, RF signal generator, oscilloscope, logic analyzer, and power meter/analyzer. Estimated timeline: 3 weeks
$750 USD in 7 days
2.8
2.8

Designing a 2.4 GHz FSK RF receiver with a focus on compactness, low power, and high data rate is my expertise. I will leverage my experience in embedded systems, digital design, and electronics to develop schematics, layout, BOM, and simulations. I will ensure the design meets sensitivity, selectivity, and data-rate targets, using industry-standard tools like Altium or KiCad. My approach includes thorough testing and validation to deliver a reliable, efficient solution tailored to your specifications. Let's realize this project with precision and innovation.
$600 USD in 15 days
2.6
2.6

Greetings! I will design a 2.4 GHz FSK RF receiver with 2 MHz channel bandwidth, low power consumption, and high data rate. I will deliver schematics, PCB layout, BOM, and simulation results. I have RF receiver design experience. Send your data rate and sensitivity targets. Thanks, Revival
$250 USD in 7 days
2.7
2.7

Challenge: at 2.4 GHz with a 2 MHz channel, meeting both high data rate and ultra-low power hinges on RF front-end sensitivity and tight demodulator selectivity—while keeping PCB size and BOM realistic for consumer hardware. I’ll solve this by delivering a GFSK-only receiver architecture with an RF/IF chain matched to the bandwidth, then using simulations to tune filtering, noise figure, and symbol timing for the target throughput. I can provide either a proven licensed demodulator IP (if you have one in mind) or a ground-up design: LNA + SAW/ceramic/active IF filtering or direct-conversion/low-IF option, limiter/AGC, GFSK demod (FM discriminator or digital frequency discriminator feeding a phase/frequency estimator), and decision logic. Outputs will include schematics, KiCad/Altium-ready layout, and an auditable BOM from today’s distributors with alternates for lead-time risk.
$500 USD in 7 days
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Deliver a verified 2.4 GHz GFSK FSK receiver with a 2 MHz channel and targets for sensitivity, selectivity, and high data rate—while keeping power and PCB area tight for consumer hardware. I’ll propose a proven architecture (or, if you prefer, adapt an existing licensed IP block) using a low-power RF front-end, accurate frequency discrimination, and FPGA-assisted demod/decision logic sized for your bandwidth. You’ll get full schematics and PCB layout (KiCad/Altium compatible), plus a BOM with parts you can source today. I’ll provide MATLAB/Simulink-style system modeling and RF/digital co-simulation, then translate it into HDL (VHDL/Verilog) for clean GFSK-only demodulation. Sim/bench results will include sensitivity curves, adjacent-channel behavior/selectivity, and achieved throughput at 2 MHz. To align on acceptance criteria, I’ll specify required test gear/software up front (e.g., RF signal generator, spectrum analyzer/SDR, BER tester, and MATLAB/Python flow).
$500 USD in 7 days
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2.4 GHz FSK receiver design: I’ve delivered RF+digital mixed-signal hardware with tight power/size budgets, and I can bring that same discipline to 2 MHz channel bandwidth. I match FSK/GFSK demod needs using proven architectures from receiver front-end through baseband and bit timing, plus PCB layout in Altium/KiCad. For performance proof, I validate circuits with LTspice/ADS-style simulations and bench measurements (sensitivity/selectivity vs. noise) using scope/DAQ-style workflows and documented acceptance criteria. I can provide a complete ground-up or IP-licensed solution: schematics, RF/IF component selection, GFSK-only demodulator chain, PCB layout, and a BOM sourced today. I’ll define the test plan up front: BER vs. Eb/N0 at your target data rate, adjacent-channel selectivity at ±2 MHz spacing, and power consumption across modes. We’ll use agreed parameters (RSSI threshold, demod lock range, reference clock accuracy). Tell me your target data rate, sensitivity spec (e.g.
$500 USD in 7 days
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You may worry a 2.4 GHz FSK receiver that hits both low power and high data rate will be hard to prove quickly. I address that by planning acceptance criteria from day one and designing for measurable sensitivity/selectivity at 2 MHz channel bandwidth for GFSK only. I can deliver a complete receiver architecture (RF front-end + GFSK demod), using either proven IP you provide/licence or a ground-up design optimized for compact consumer hardware. I’ll produce schematics and an Altium/KiCad layout, plus a production-ready BOM with today-sourcable parts. Simulations (link budget, noise figure, expected sensitivity, bandwidth/selectivity) will be followed by bench verification: conducted RX sensitivity and BER/packet error rate across the target data rate, with spectrum measurements to confirm adjacent-channel performance. I’ll specify test equipment/software (e.g., vector signal generator/receiver, spectrum analyzer, MATLAB/Python scripts) based on your lab setup.
$500 USD in 7 days
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Balancing 2.4 GHz performance with tight size and power means the RF chain and demodulator must be optimized for a 2 MHz channel at GFSK only. I’ll deliver a complete 2.4 GHz FSK receiver design that targets low-current operation while sustaining the required high data rate, with architecture decisions justified by link budget and sensitivity targets rather than generic modules. I can implement a ground-up receiver or integrate a proven GFSK demodulation approach if you prefer licensing. Output includes RF schematics (front-end, LNA, mixer/IF or direct conversion, filtering, limiter/AGC, demod), PCB layout in Altium/KiCad with stackup guidance, and a today-sourcable BOM. I’ll provide MATLAB/Python/ADS-style simulations for sensitivity, selectivity, and demod throughput at the specified bandwidth, plus a bench verification plan using a 2.
$500 USD in 7 days
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Hi, Thanks for sharing the requirements. I can design a compact low-power 2.4 GHz GFSK receiver using a proven RF receiver/transceiver IC rather than a risky fully discrete RF demodulator, which is the most practical approach for consumer-electronics size, power, and manufacturability. My approach would start with confirming the target data rate, sensitivity, packet format, supply voltage, antenna type, board size, and interface to the host MCU. I would then select a suitable 2.4 GHz GFSK RF IC, design the RF front end, matching network, crystal/reference section, power filtering, antenna feed, and host interface, followed by controlled-impedance PCB layout in KiCad or Altium. Deliverables can include schematic, PCB layout, Gerbers, BOM with available components, RF layout notes, bring-up configuration/register settings, and a test plan for sensitivity, selectivity, channel bandwidth, data-rate validation, and current consumption. For validation, I can use RF simulation/layout review methods and define bench testing with a spectrum analyzer, signal generator, SDR, VNA, and logic analyzer depending on available equipment. For the posted budget, I recommend an IC-based receiver design and validation plan. A ground-up custom demodulator/IP block would require a much larger budget and longer schedule. Regards,
$500 USD in 1 day
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Hi, this project comes down to three key areas: RF receiver architecture, signal integrity, and production-ready hardware implementation. I can assist with developing a robust 2.4 GHz GFSK receiver design, focusing on component selection, RF front-end integration, schematic development, PCB layout, and design optimization for low power consumption, compact size, and reliable performance. The implementation will prioritize RF layout best practices, impedance-controlled routing, grounding strategy, power integrity, filtering, and matching network optimization to maximize receiver sensitivity and communication reliability. The final design will include complete manufacturing documentation along with design notes covering the key engineering decisions. Before getting started, I'd like to clarify a few technical details: 1. Are you looking for a discrete RF implementation, or is the receiver expected to be based on an existing RF transceiver or receiver IC? 2. What are the target data rate, receiver sensitivity, and link budget requirements? 3. Do you have a preferred PCB stack-up, antenna type, or regulatory target (FCC, CE, etc.)? Once these details are confirmed, I can recommend the most suitable architecture and development approach. I look forward to discussing your project. Thank you, Ihor
$300 USD in 7 days
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As an experienced electrical engineer and embedded systems specialist, I have spent the better part of a decade specializing in designing and developing solutions similar to your requirements. On top of my proficiency in AutoCAD and Revit, which I can leverage to create schematic and layout designs for your 2.4 GHz FSK receiver, I am expertly skilled in PCB designing complemented by high-level control system design techniques. Usage of best-in-class sensors, methodologies and microwave management practices are areas where I've excelled in my previous projects, which makes me best suited for this job. Electronic equipment optimisation to strike a balance between power consumption, size constraint, high data rate and performance are skills that form just a fraction of my skillset. I'm familiar with the layout you've listed and work progressively with Altium or KiCad for precise sketches. Software validation via simulations stands core to the way I work, hence rest assured on forthcmoing transparency. As an added value, I'm always focused on continuity impeccably delivering according to specifications. As such, I guarantee your full satisfaction with detailed results displaying sensitivity, selectivity, and data rate targets at the stated bandwidth.
$500 USD in 3 days
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Jerusalem, Israel
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