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Pcb design: Nyák tervezés: Szeretnék egy olyan extender-t, ami kiterjeszti a wigig hálózatot optikai kábelen keresztül. Tehát meghosszabbítja a wigig antennát optikai kábelen. Optikai kábel mindkét végére kerül egy-egy box, ami átalakítja a wigig antennajelet optikai jelre és az optikai jelet visszaalakítja wigig-re. Az összes ~60ghz wigig csatornát át kell vinnie egy szálon. Mimo is működjön. 802.11ay szabvány menjen vele.
Project ID: 39732333
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Active 8 mos ago
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2 freelancers are bidding on average $500 USD for this job

Best Optical Extender Circuit Design Expert! ⭐⭐⭐⭐⭐ Hi, I can help you design a high-performance PCB for a Wigig-over-fiber extender that reliably transmits the full 60 GHz Wigig antenna signal through optical cable. With over 30 years of experience in RF system design, high-speed signal integrity, and optical transceiver integration, I’ll deliver a prototype-ready solution optimized for throughput, stability, and compliance with the 802.11ay standard. ✅ 1. Valuable Suggestion: For robust performance, I recommend using a wideband RF-to-optical front-end that supports the full Wigig spectrum and MIMO channels. Proper impedance matching, ultra-low jitter clocking, and careful PCB layout will be critical to ensuring minimal loss and distortion over fiber. ✅ 2. Similar Projects: 1. RF-over-fiber PCB design for broadband wireless links 2. High-frequency (mmWave) antenna front-end boards with optical interfaces 3. Multi-channel optical transceiver integration for high-speed networking ✅ 3. What You’ll Get: 1. Complete schematic and PCB layout optimized for high-frequency Wigig (60 GHz) transmission 2. BOM with recommended RF and optical components for minimal noise and signal loss ✅ 4. Quick Questions: 1. What maximum fiber length should the extender support? 2. Do you prefer single-mode or multi-mode optical fiber? Please note: I can’t initiate conversation on this platform. Kindly message me if you’d like to proceed. Best regards, PCB Must Innovations
$500 USD in 4 days
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Hi, When I saw your request for a WiGig over fiber optic extender, it reminded me of other high-frequency RF-to-optical conversion systems I’ve developed that combined multi-GHz signal integrity, PCB layout optimization, and low-latency optical transport. ✅ With 11+ years of experience in designing compact RF/microwave circuits and fiber-optic integrated electronics, I can deliver your WiGig extender concept from schematic to fully tested prototype. Before I outline a full development approach, may I clarify: 1. Do you want full-duplex operation on a single fiber, or will you use separate fibers for transmit and receive? 2. Are there any specific size or form-factor constraints for the boxes at either end of the fiber? 3. Is the design limited to a particular modulation scheme, or should it support the full 802.11ay MIMO PHY? 4. Do you have a preferred optical transceiver type and connector style? Two quick suggestions: ✅ Pay careful attention to PCB stack-up and trace impedance to minimize insertion loss at ~60 GHz ✅ Use high-speed SERDES or analog optical modulators with low-jitter clock recovery to maintain WiGig channel fidelity Freelancer doesn’t let me message first—please feel free to reach out, and I’d be happy to help make your WiGig-over-fiber extender a reality. Kind regards, Avi Gupta Quality is never an accident
$500 USD in 7 days
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Budapest, Hungary
Member since Jun 21, 2025
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