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Reddit
reddit.com › r/mechanicalkeyboards › hall effect pcbs
r/MechanicalKeyboards on Reddit: Hall effect PCBs
March 3, 2024 -

Since Hall effect Keyboards/Switches took basically the whole gaming industry over, and I want to equip one of my endgame keebs with a Hall effect pcb, does anyone know if any company sells/plans to sell 65% Pcbs that will fit in the likes of a Keycult 65 or SingaKBD Kohaku???

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Reddit
reddit.com › r/buildapcsales › [keyboard] boog75 + zoom75 pcb bundle, hall effect keyboard fully assembled + mechanical switch pcb - $150 w/ free ship
r/buildapcsales on Reddit: [Keyboard] BOOG75 + Zoom75 PCB bundle, Hall Effect Keyboard fully assembled + Mechanical switch PCB - $150 w/ Free Ship
March 21, 2025 - Rainy 75 RT is the sweet spot I've found for price and performance. Full aluminum construction, gasket mount, TTC KOM switches, carbon fiber plate for $200. The software is wonky though, nowhere near as good as Wooting, but I don't do anything to fancy with hall effect other than SOCD and reducing actuation points.
People also ask

Does the PCB have wireless capability?

You can contact us through our contact page! We will be happy to assist you.

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deskhero.ca
deskhero.ca › home › boog75 hall effect keyboard
BOOG75 Hall Effect Keyboard
Will it support Zoom 75 LCD Module or Knob Module?

It depends on where you are. Orders processed here will take 5-7 business days to arrive. Overseas deliveries can take anywhere from 7-16 days. Delivery details will be provided in your confirmation email.

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deskhero.ca
deskhero.ca › home › boog75 hall effect keyboard
BOOG75 Hall Effect Keyboard
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Matt3o.com
matt3o.com › drunkdeer-a75-a-hall-effect-keyboard-for-the-masses
DrunkDeer A75: a Hall Effect keyboard for the masses
Looking inside the keyboard we find a well executed PCB that shows once again the simplicity of hall effect. This product at the very least made me willing to build my own magnetic keyboard… gotta add that to the infinite list of projects I have.
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Deskhero
deskhero.ca › home › boog75 hall effect keyboard
BOOG75 Hall Effect Keyboard
BOOG75 Hall Effect Keyboard · Sale price$247.00 USD · Color: Shockwave (Black) Shockwave (Black) Induction Coil (White) Is the PCB only compatible with Zoom 75? Yes · Will it support Zoom 75 LCD Module or Knob Module? It depends on where you are. Orders processed here will take 5-7 business days to arrive.
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epomaker
epomaker.com › products › epomaker-he75-mag
Epomaker HE75 Mag – epomaker
Epomaker HE75 Mag
8K Polling Magnetic Keyboard with Ultimate Control Equipped with hot-swappable Hall Effect switches, the EPOMAKER HE75 magnetic keyboard enables unparalleled precision and control. Much faster than conventional mechanical switches, the elimination of physical contact significantly boosts keyboard speed, shrinking the wireless latency of HE75 keyboard to a mere 0.125ms. More Information... Tailor each keystroke to your exact preference with 40 finely adjustable levels of actuation distance, ranging from 0.1mm to 4.0mm, as HE75 becomes your unmatchable gaming buff. Interchangeable Knob
Price   US$99.99
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Rebult Keyboards
rebultkeyboards.com › products › boog75-by-meletrix
Meletrix Boog75: Magnetic Hall Effect Pre-built Keyboard – Rebult Keyboards
Meletrix Boog75: Magnetic Hall Effect Pre-built Keyboard
The Boog75 is a magnetic hall effect switch variant of the ever-so-popular Zoom75, available in the forms of a pre-built keyboard or a module compatible with any existing Zoom75. Rebult Keyboards is the official Malaysian vendor. Stocks are limited!
Price   MYR 499.00
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Amazon
amazon.com › Keyboard-Magnetic-Adjustable-Actuation-Mechanical › dp › B0D3X34GK3
Amazon.com: OHY Rapid Trigger Gaming Keyboard,XVX G75 Hall Effect Keyboard Magnetic Switch Adjustable Actuation Esports 75% Layout TKL RGB PBT Keycaps (Retro Gery, Outemu Switch) : Electronics
【⌨75% Layout Magnetic Switch Keyboard】Equipped with adjustable hall effect magnetic switches, featured with customizable dynamic keystroke and rapid trigger function, the actuation point can be 0.1mm precision adjusted between 0.3-4.0 mm (The ...
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TechPowerUp
techpowerup.com › review › gamakay-tk75he-hall-effect-wireless-mechanical-keyboard › 4.html
GamaKay TK75HE Hall Effect Wireless Mechanical Keyboard Review - Disassembly | TechPowerUp
GamaKay TK75HE Hall Effect Wireless Mechanical Keyboard
The GamaKay TK75HE builds upon its successful TK75 series with magnetic Hall effect switches. It features two first party linear switches that offer customizable actuation force and even multiple keystrokes per switch. Software control for fine-tuning, extensive onboard customization, and RGB ... The GamaKay TK75HE builds upon its successful TK75 series with magnetic Hall effect switches. It features two first party linear switches that offer customizable actuation force and even multiple keystrokes per switch. Software control for fine-tuning, extensive onboard customization, and RGB lighting
Rating: 3 ​
Find elsewhere
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GamaKay
gamakay.com › home
Most Budget-Friendly 75% Hall Effect Keyboard - Gamakay TK75HE Review – GamaKay
March 14, 2024 - Yes,the desgin of the PCB of TK75HE is support Hot-swappable. But, this is important to use the magnetic switch with the same magnetic flux and need to do calibration Via the software. We are welcome that the customer can give us feed back when you used other brand magnetic switch on our keyboard. Here are the leading 75% of keyboards on the market, and we have decided to make a small comparison. Only compare the 75% layout of the Hall effect ...
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GamaKay
gamakay.com › products › gamakay-tk75-he-hall-effect-wireless-custom-keyboard
Hall Effect Keyboard​ TK75 HE 75% Tri-mode | Gamakay
1. Hall Effect Switches: The keyboard ... the Gamakay Software. 4. 75% Layout: The TK75 HE is a compact 75% layout mechanical keyboard featuring 81 keys and a polished metal knob....
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Meletrix
meletrix.com › home › zoom75 he prebuilt
ZOOM75 HE Prebuilt
Keyboard Specifications: ZOOM75 HE Black Prebuilt: ZOOM75 Black Case + HE Module+ WOB Keycaps ZOOM75 HE White Prebuilt: ZOOM75 White Case + HE Module+ BOW Keycaps Wired Gasket Mount Design 75% Layout PCB: 1.6mm, with Ai03 DB 5° Typing angle 22.14 mm front height Dimension: 323.6 x 145.78 x 34.73 (mm) Default plate: Alu Case Material: 6063 Aluminum Case Finish: Electrostatic glitter white top and bottom case Backplate: White: PVD silver back plate Black: PVD black back plate External Weight: White: Anodized gold weight Black: Anodized gold weight Switches Type: Gateron KS37B, compatible with KS37 The Orientation of the Switches: North Facing No SS Internal Weight Boog 75 Wired Polling Rate: 1000hz QMK or VIA Support: No, customization requires to use of our independent driver.
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KeebFinder
keeb-finder.com › home › keyboards › hall effect mechanical keyboards: precision & durability
Hall Effect Keyboards: Magnetic Switch Mechanical Keyboards
75%, Hotswap, Wireless, Wired, RGB, Knob, HE, Alu case, Gasket Mount View on Mchose · Showing 48 of 323 products · Show more · 12345...7 · Hall Effect mechanical keyboards represent a significant advancement in keyboard technology, offering unparalleled responsiveness and longevity.
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Ozokeyboards
ozokeyboards.com › products › mchose-jet-75-75-hall-effect-magnetic-switch-gaming-keyboard
MCHOSE - Jet75 75% HE Magnetic Keyboard – OZO Keyboards
• Layout: 75% • Switch type: Hall effect magnetic switches • Adjustable actuation range: ultra-short to full travel • Polling rate: up to 8000 Hz • Mount style: Gasket mount • PCB: Hot-swappable magnetic-switch compatible • Connectivity: USB-C wired • Keycaps: PBT keycaps • RGB lighting: Full RGB backlighting • Full NKRO support
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Qwertykeys
qwertykeys.com › products › neo65-sonic-he-hall-effect-custom-keyboard
Neo65 Sonic He+ Hall Effect Custom Keyboard – Qwertykeys
I would recommend 3 things: 1. Option to choose alu or cf 2. option for a more subtle set of keycaps in off white or shade of black/gray. 3. A few mm addiontal length to the cable. Last comment: of the different HE boards I've tried, the sound from the polar 65 and 75 HE were the most enjoyable to me.
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Epomaker
epomaker.es › products › cidoo-c75
CIDOO C75
CIDOO C75
Hall Effect Magnetic Switches for Precision The CIDOO C75 marks the brand's initial foray into full aluminum keyboards, equipped with Hall Effect magnetic switches. These switches are renowned for their fast feedback, dynamic triggering, and customizable actuation points, enhancing your gaming experience by allowing for tailored responsiveness. To improve the typing experience, which can sometimes feel less than ideal with magnetic switches, CIDOO has integrated a full aluminum case, a gasket structure, and multiple layers of sound-dampening materials, making each keystroke smooth and satisfyi
Price   US$139.99
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Keebz N Cables
keebzncables.com › products › zoom75-hall-effect-edition-magnetic-gaming-keyboard
Zoom75 HE - Hall Effect Gaming Pre-built Keyboard – Keebz N Cables
Zoom75 HE - Hall Effect Gaming Pre-built Keyboard
Introducing the Zoom75 HE Pre-Built Keyboard, a magnetic switch version of Meletrix's popular Zoom75. Meletrix's HE module and magnetic switches for lightning fast responses for gamers - especially FPS enthusiasts. Current Zoom75 users can also upgrade their board by purchasing an independent HE module. Enhance your gaming experience with the Zoom75 HE Pre-built - where customization meets performance. Zoom75 HE at a Glance: Magnetic Switch Traditional mechanical keyboards require pressing the switch and reaching the actuation point to activate a key. In contrast, magnetic switches oper
Price   US$180.08
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GeekHack
geekhack.org › index.php
How to make PCB compatible to HE (hall effect) switches?
How to make PCB compatible to HE (hall effect) switches? XHTML · RSS ·
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Amazon
amazon.com › Chilkey-Slice75-Gaming-Keyboard-Key › dp › B0F291BZMT
Amazon.com: Mechanical Keyboard, Chilkey Slice75 HE Gaming Keyboard Wired, 75% Hall Effect Magnetic Aluminum Keyboard with WS Flux HE Clacky Switch, Rapid Trigger, 8K Polling, Per-Key RGB Custom, PC/Mac Support : Electronics
Size: 75% Connection: Wired Technology: Hall Effect (Magnetic) Switch: Gateron Magnetic Jade Pro/WS Flux Switches Polling Rate: 8K Actuation Adjustment: 0.005mm Mount: Silicone Bead Gasket Mount PCB Plate: Alu Dampening: Cork Dampening (Moisture Protection with Gauze Coating) Case Material: CNC Alu Weight: 1.85±0.15kg
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Mechanical Keyboards
mechanicalkeyboards.com › collections › magnetic-hall-effect-switch-keyboards
Magnetic / Hall Effect Switch Keyboards
Hall effect, TMR, and other magnetic keyboards use a system consisting of sensors and magnets to detect keypresses, instead of a physical electrical connection. This allows the keyboard to detect very slight changes in the position of the switch, ...
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Reddit
reddit.com › r/printedcircuitboard › [review request] analog hall effect 75% iso keyboard with encoder knob
r/PrintedCircuitBoard on Reddit: [Review Request] Analog Hall Effect 75% ISO Keyboard with Encoder Knob
May 17, 2023 -

Dear Community,

I recently came across an interesting channel on youtube, someone building a completely custom analog keyboard, even designing and 3D printing their own switches (You can see the keyboard here: https://www.youtube.com/watch?v=sFR6E_Ejot0&t=2659s).

I got inspired and decided I really want a custom analog keyboard of my own now. Making custom switches and cases is a bit too much for me though so I am planning to put this PCB in a Keychron Q1. I plan to then swap out the switches for lekker switches (those found in the increasingly popular Wooting analog hall effect keyboards, and also for sale separately), and swap the included PCB for my own to work with the lekker switches. These switches just have a magnet connected to the stem, and no contacts like most regular keyboard switches. I mostly followed the guide from riskable (the video I mentioned), but things became a lot harder when I realized he used a blackpill breakout board. I believe this wouldn't fit in the Q1 case, (nor any other 75% cases with a knob I could find). So I then also had to include a microcontroller in my design (I chose the STM32F411CEU6 or STM32F401CEU6 since those are used on the blackpill board). I used a 2-layer board to keep things as simple as possible for myself.

Getting an LED to light up from a battery has been my only experience with electrical engineering until now, so this was quite a challenge for me. I expect many beginner mistakes in my design, but would love to learn, since I really enjoy engineering.

GOALS

The board should:

- have hall effect sensors to measure the distance all keys have been pressed in.

- be able to connect to a pc via USB-c 2.0 connection.

- have an acceptably high sample rate.

- be programmable via ST-link and/or preferably USB.

- have a rotary encoder.

- be accurate enough in measuring key depression (preferably 0.1mm steps or smaller, but anything up to 0.3mm is pretty acceptable to me).

SOURCES

Since this is my first time designing PCB, I relied heavily on youtube video guides.

These are the guides by the person who initially inspired this project of mine:

  • https://www.youtube.com/watch?v=TfKz_FbZWLQ

  • https://www.youtube.com/watch?v=sFR6E_Ejot0

I also found Phil's Lab's videos to be quite helpful, especially this one on STM32 PCB design:

  • https://www.youtube.com/watch?v=aVUqaB0IMh4

DESIGN & UNCERTAINTIES

Firstly, I want to say I am aware the positioning of my microcontroller is pretty terrible. It's kind of annoying that I only came to this conclusion late into the process of designing the PCB. So I figured before making drastic changes to a board that could be fundamentally flawed, I should get someone else to look at it. In the next iteration, I would place the microcontroller somewhere in the middle up top, or on the top right, next to the USB-c port. This depends on what I should prioritize, the distance to the analog multiplexers or the USB port (if it's placed in the middle, it would still be quite far from the USB port, since the board is around 320mm wide).

The next thing I'm not so sure about, is the placement of some resistors and capacitors, for example, the resistors for the rotary encoder (R8 and R11). Do I need to place these next to the microcontroller instead of just placing them anywhere along the trace? I assumed since there's a direct uninterrupted connection between the IC and the rotary encoder, it wouldn't matter where I placed them. However, for decoupling capacitors for the IC, the documentation mentioned they should be placed as close to the IC as possible, so that made me unsure.

I was also a bit confused about USB inrush currents. The documentation mentioned you could have at most 10uF worth of capacitors on the VBUS line. However, as you can see in my design, I have 2.2uF, then a ferrite bead, followed by another 24.2uF. Will the resistance from the ferrite bead be enough to fix the issue, or is this setup just wrong? A guide I followed on youtube (I couldn't find it anymore) just directly connected the AMS1117 with its 22uF capacitors directly to the VBUS line, without a ferrite bead. I found this strange since it isn't within spec according to the datasheet.

Additionally, I'm not sure if using 2 ferrite beads is necessary. I used one for the 5V, and another for the analog 3.3V line. Do I need both or should I remove the one on the 5V line? If so, what should I do about inrush current?

Another uncertainty of mine is the handling of analog signals. The hall effect sensors all give an analog signal, which I've read you have to be a little more careful around with routing, so I tried to maximize the distance between traces. I hope this is enough to make this system at least usable. Would something similar to the sensitivity of a Wooting keyboard be possible? (They advertise 0.1mm measurement precision) I will try to increase precision through firmware, but obviously, firmware can't always solve bad design.

Perhaps a small remark, but something that confused me nonetheless. The footprint of the STM32 microcontroller I'm using has a ground connection in the middle of the IC, I connected this to ground through a single connection, is this the correct way of doing this? I couldn't find how I should handle this connection on the datasheet.

Finally, I also want to mention that while I tried my best to look everything up when it comes to safety and protection, many things seemed quite complicated and I just ended up not integrating them (yet). For example, I wanted to add a fuse on the VBUS line, just to be safe, but then I realized that might not be the best idea because of inrush current. Any advice on how to integrate more safety measures into the board? And is it even necessary, or is the ESD protection on the USB data lines enough?

IMAGES

Schematic Front Layer Back Layer Both Layers 3D View

The 3D view is lacking a model for the rotary encoder. I plan on using an EC11. It's the one used in the Q1 keyboard's original PCB, so it should fit perfectly.

I also didn't include a model for the USB port because, in the final design, I will replace it with a ribbon cable connector, so I can connect it to the original daughterboard included with the keyboard (the daughterboard has a toggle switch which I won't be using, and the USB port).

The 4-pin STL-Link connector is something I put in because one of the guides I followed advised me to add it even though I have a boot button. When putting the PCB in the case I will probably snip the pins shorter or bend them out of the way to make them fit under the plate.

I deduced the location of the mounting holes from the plate file which can be found on the official Keychron website (https://www.keychron.com/pages/q1-keyboard-plate-file-1). The other holes next to the backspace, enter and spacebar are for screw-in stabilizers.

If I wasn't clear enough on certain things, or you have any more questions, don't hesitate to ask!

Any feedback/advice, of any kind, relating to the design, component selection, project, post and my questions is greatly appreciated!

Thanks in advance!

Top answer
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Just addressing your design & uncertainties section: I would prioritize the MCU placement closer to the usb as those will be differential pairs and it’s probably a good idea to impedance match them too. Look up some usb MCU design videos for more tips on that. The caps should definetly go very close to the MCU pins with the shortest path to ground possible (no long ground traces just use a ground pour). The resistors however can go anywhere in that trace that fits your layout, it will not affect anything. As for usb inrush current. You should be fine with the amount of capacitance you have. You really are only running a small risk of dropping the usb voltage by about 300mV and maybe browning out other usb devices but I doubt you’ll see any issues. If you want to add a very simple circuit to address that small worry check out this video. https://youtu.be/SVLGHB2IxxU Use both ferrite beads as the 3.3V bead is on the other side of the switching regulator and can help eliminate any new noise introduced from the reg. Best practices for routing signals you want to be ultra accurate are routing over an interrupted ground plane and keeping traces a decent distance from them. You can also use some RC filters or implement them in software. That stm32 ground pad is mostly for heat and you can drop a few vías in there directly. You could add a resettable fuse, but TVS should be fine for usb with small load capacitance. Even more fine if you add the inrush control.
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SCHEMATIC: 11) change schematic symbol for J2 to a symbol that has a box around the pins. You chose the wrong KiCad symbol. In comparison, your USB connector symbol has a box around it. 12) if connected all power circuits together with lines, then it might make more sense that 1 or 2 capacitors isn't needed.