Redefining the
physical limits of display
with Z‑gen algorithms.
I’m Bill Hu. I don’t rely on gut feeling — I trust math and the real waveforms on my oscilloscope. I use dynamic compensation to kill OLED burn‑in and Fourier analysis to erase E‑Paper ghosting.


From London's streets to Shenzhen's core — building trust, one display at a time.
I'm Bill Hu. Over a decade ago, I founded my first company in London, selling LCD display modules. Armed with samples from Shenzhen Jictech, I knocked on doors across Europe — and was turned away, again and again. But I held onto one belief: great products speak for themselves.
Through relentless persistence, obsessive quality control, and sharp market instincts, I gradually broke into the European market. Clients who once said “no” became repeat partners. That journey taught me a lesson no classroom could: trust matters more than orders — and trust is built on uncompromising quality and obsessive attention to detail.
In 2025, I returned to Shenzhen to take the helm of Jictech's Global Sales Center. I restructured our sales network, deepened our penetration in automotive, industrial control, and medical displays, and secured multi‑million‑dollar contracts with global Tier‑1 brands. Today, we proudly partner with Samsung, LG, Foxconn, Canon, Harman — and our annual revenue is steadily approaching ¥700 million.

While veterans rely on trial‑and‑error,
I go straight with Fourier.
The industry “truth”: On my first day, I was told E‑Paper ghosting is a physical dead end — only new materials could help.
My “disbelief”: If charge trapping is the problem, it must have a frequency signature. I spent four months decomposing drive waveforms with discrete Fourier transforms to pinpoint the trap frequency.
The result: Ghosting dropped 90%, power fell 15%. That's not material science — it's the algorithmic knockout of hardware guesswork.
My tech assets, far beyond youth.
* All data backed by project archives and third‑party test reports.
Algorithm‑Defined Hardware
OLED lifetime extended via self‑developed DCC dynamic capacitance compensation.
DCC PatentedExtreme‑Temp Survivor
Cold start at -40°C using pre‑charge waveform shaping, no external heaters.
AEC‑Q100 readyGlobal Chip Native
Faster alternative sourcing by direct liaison with Renesas, NXP, MediaTek.
Direct FAE accessGreen Display Advocate
E‑Paper modules with near‑zero static power; optimized TFT/OLED for lower energy.
Eco‑design“I hate boardroom PowerPoints.
Bring your oscilloscope そして logic analyzer to my office, point at the overshoot, and we'll solder till dawn — I'll buy the cold brew.”
🧊 Truth Above All
No slides, no titles — only measured data matters. Every solution must pass blind A/B tests before shipment.
🚀 First Principles
Any display challenge is solved by going back to physics and math — never by copying existing reference designs.
🌍 Egalitarian Engineering
Whether you're a Fortune 500 CTO or a solo startup hardware hacker, your schematic gets my personal technical review.
Stop emailing — bring your schematics and
let's have a tech duel.
Whether you're a director or an indie hardware engineer, all schematics are equal. Show me your design, and we'll talk.
* The checklist covers ESD protection, FPC impedance, and wide‑temp compensation.
