I will simulate layout flex pcb antennas for metal housing wearables device
About this Gig
Expert Flex PCB Antenna Simulation & Layout for Metal Housing Wearables HFSS/CST Optimized
Developing wearables in metal housings like premium smartwatches or fitness trackers? Metal enclosures cause detuning, poor efficiency & isolation issues. I specialize in custom Flex PCB (FPC) antennas for LTE, GNSS, BLE in metal-cased devices, using Ansys HFSS or CST Studio Suite for precise simulation & Altium/KiCad layout.
Why My Service?
- Years of RF Expertise
- Full Workflow
- Key Metrics
- Metal-Specific Solutions
Tools: HFSS/CST for 3D sims (S-params, patterns, gain), PCB layout software.
Process:
- Specs Review: Bands, housing dims, flex constraints.
- Simulation: Model metal body, tune for BW/isolation.
- Layout & Export: Multi-layer Gerber, stackup, assembly notes.
- Validation: Reports + iterations.
Ready to Conquer Metal Housing Challenges in Your Wearables?
Message me TODAY with your specs for a FREE consultation, custom quote, and first sim preview! Let's launch high-performance wearables Order now and get priority support
File format:
Gerber
•
STEP
•
BRD
•
SCH
•
Software:
Allegro
•
Eagle CAD
•
EasyEDA
•
KiCad
•
LabVIEW
•
Arduino
Interface:
Wi-Fi
•
BLE
•
BT
•
LTE
•
Controller Area Network (CAN)
•
Ethernet
FAQ
What challenges do you handle for metal housings?
Metal detuning, shielding – I model enclosures in HFSS/CST, use slots/clearance for >60% efficiency.
Supported bands?
LTE/5G sub-6GHz, GNSS L1/L5, BLE 2.4GHz. Custom freqs OK.
What deliverables?
HFSS/CST files, Gerber/ODB++, BOM, stackup, sim reports (VSWR, gain, patterns).
Flex PCB specifics?
Polyimide substrates (0.1-0.2mm), multi-layer, bend radius optimized for wearables.
HFSS vs CST?
HFSS for accuracy in complex metals; CST for speed. Your choice or my rec.

