Uploaded September 2026 | Updated September 2026, 1 week ago
The SUNLU x Inslogic FilaDC i10 stores up to ten 1 kg filament spools inside a humidity-controlled cabinet—but it is not a conventional heated filament dryer.
I tested the FilaDC i10 for several weeks to see whether it can reduce and maintain cabinet humidity, how its molecular-sieve system works, how noisy it is and where it fits alongside a normal filament dryer.
🛒 SUNLU x Inslogic FilaDC i10:
My Aff link: tinyurl.com/2nhzd8xc (discount code ILTSSG5EIW)
SUNLU: bit.ly/4xEdzZg
INSLOGIC: bit.ly/4qoRUlp
This Channel is sponsored by **PCBWay**. If you need custom PCBs, CNC machining, brackets, plates, enclosures, sheet metal, 3D printing, or prototype-to-production manufacturing for your own projects, check them out here: pcbway.com/g/M3R75n
👇 Grab the Prusa Core One L using my affiliate link:
🛒 Buy your CORE ONE L: prusa3d.com/?promocode=SamPrentice
SUNLU supplied the FilaDC i10 featured in this video. Some product links may be affiliate links, which means the channel may receive a small commission without affecting the price you pay. All testing, findings and opinions are my own.
Unlike a traditional filament dryer, the FilaDC i10 does not heat the complete storage chamber to normal filament-drying temperatures. It circulates the cabinet air through a molecular sieve, which adsorbs moisture before being automatically regenerated using a PTC heater.
The sensible workflow is:
Wet filament → Heated dryer → FilaDC i10 storage → Printer → FilaDC i10 storage
In this review, I cover:
✅ Ten-spool filament capacity
✅ Humidity-controlled filament storage
✅ PLA, PETG, TPU, nylon and polycarbonate
✅ Symptoms of wet filament
✅ Molecular-sieve adsorption and regeneration
✅ Why the humidity reading rises and falls
✅ Setup and everyday operation
✅ Real-world humidity reduction
✅ SUNLU’s stated power consumption
✅ Fan noise during regeneration
✅ Filament dryer versus storage cabinet
✅ Who the FilaDC i10 is actually designed for
QUESTION OF THE DAY:
Would this solve your filament-storage problem, or is it an extremely elaborate cupboard for people who have accumulated more filament than self-control?
CHAPTERS
00:00 Tool Changers and the Filament Problem
01:41 What the FilaDC i10 Actually Solves
02:59 SUNLU and Inslogic Explained
03:53 Capacity, Humidity and Specifications
04:42 How Molecular Sieve Dehumidification Works
05:59 PCBWay
06:33 Setup and Real-World Humidity Testing
07:48 Power Consumption and Fan Noise
08:23 The Correct Dryer-to-Storage Workflow
08:59 Verdict: Who Is the FilaDC i10 For?
Thanks for watching. Please like, subscribe and leave something pleasant in the comments if you can.
#SUNLU #FilamentStorage #3DPrinting
The SUNLU x Inslogic FilaDC i10 stores up to ten 1 kg filament spools inside a humidity-controlled cabinet—but it is not a conventional heated filament dryer.
I tested the FilaDC i10 for several weeks to see whether it can reduce and maintain cabinet humidity, how its molecular-sieve system works, how noisy it is and where it fits alongside a normal filament dryer.
🛒 SUNLU x Inslogic FilaDC i10:
My Aff link: tinyurl.com/2nhzd8xc (discount code ILTSSG5EIW)
SUNLU: bit.ly/4xEdzZg
INSLOGIC: bit.ly/4qoRUlp
This Channel is sponsored by **PCBWay**. If you need custom PCBs, CNC machining, brackets, plates, enclosures, sheet metal, 3D printing, or prototype-to-production manufacturing for your own projects, check them out here: pcbway.com/g/M3R75n
👇 Grab the Prusa Core One L using my affiliate link:
🛒 Buy your CORE ONE L: prusa3d.com/?promocode=SamPrentice
SUNLU supplied the FilaDC i10 featured in this video. Some product links may be affiliate links, which means the channel may receive a small commission without affecting the price you pay. All testing, findings and opinions are my own.
Unlike a traditional filament dryer, the FilaDC i10 does not heat the complete storage chamber to normal filament-drying temperatures. It circulates the cabinet air through a molecular sieve, which adsorbs moisture before being automatically regenerated using a PTC heater.
The sensible workflow is:
Wet filament → Heated dryer → FilaDC i10 storage → Printer → FilaDC i10 storage
In this review, I cover:
✅ Ten-spool filament capacity
✅ Humidity-controlled filament storage
✅ PLA, PETG, TPU, nylon and polycarbonate
✅ Symptoms of wet filament
✅ Molecular-sieve adsorption and regeneration
✅ Why the humidity reading rises and falls
✅ Setup and everyday operation
✅ Real-world humidity reduction
✅ SUNLU’s stated power consumption
✅ Fan noise during regeneration
✅ Filament dryer versus storage cabinet
✅ Who the FilaDC i10 is actually designed for
QUESTION OF THE DAY:
Would this solve your filament-storage problem, or is it an extremely elaborate cupboard for people who have accumulated more filament than self-control?
CHAPTERS
00:00 Tool Changers and the Filament Problem
01:41 What the FilaDC i10 Actually Solves
02:59 SUNLU and Inslogic Explained
03:53 Capacity, Humidity and Specifications
04:42 How Molecular Sieve Dehumidification Works
05:59 PCBWay
06:33 Setup and Real-World Humidity Testing
07:48 Power Consumption and Fan Noise
08:23 The Correct Dryer-to-Storage Workflow
08:59 Verdict: Who Is the FilaDC i10 For?
Thanks for watching. Please like, subscribe and leave something pleasant in the comments if you can.
#SUNLU #FilamentStorage #3DPrinting










