TorvexLab
90/100-16 E-Moto Heavy Duty Inner Tube (3.25/3.50-16) – 2MM Reinforced
90/100-16 E-Moto Heavy Duty Inner Tube (3.25/3.50-16) – 2MM Reinforced
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Engineered specifically for modern e-motos and small-wheel motocross setups, this 90/100-16 heavy-duty inner tube delivers the perfect balance of strength and weight savings.
Built from 100% natural rubber and reinforced at 2.0mm thickness, it provides dependable puncture resistance without the extra rotational weight of traditional 3mm tubes — making it ideal for aggressive trail, street, and track riding.
🔥 Key Features
• Balanced 2.0MM Reinforced Construction
Strong enough to resist pinch flats and punctures, yet lighter and more responsive than thicker heavy-duty tubes.
• 100% Natural Rubber (10 MPa Tensile Strength)
High elasticity resists twisting, valve stem tearing, and splitting under torque.
• Premium TR4 Valve Stem
Center-mounted, threaded, and vulcanized directly into the tube for secure seating and reliable inflation.
• Designed for E-Moto Performance
Optimized shape and flexibility for 3.25–3.50-16 rear tire setups.
✅ Compatibility & Fitment
Tube Size: 90/100-16
Fits Tire Sizes: 3.25/3.50-16
Rear Tire Width Range: 90–120mm
Ideal for e-moto and small motocross platforms including:
-
Altis Sigma MX
-
Sur-Ron Light Bee X
-
Talaria Sting MX
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E-Ride Pro SS
-
Segway X160 / Segway X260 (with 16” rear upgrade)
-
Small-wheel MX bikes and pit bikes with compatible rear tire sizing
(Always confirm tire size before purchase.)
📊 Specifications
| Feature | Details |
|---|---|
| Tube Size | 90/100-16 (3.25/3.50-16) |
| Material | 100% Natural Rubber |
| Wall Thickness | 2.0MM Reinforced |
| Tensile Strength | 10 MPa |
| Valve Type | TR4 Threaded, Vulcanized |
| Application | Off-Road / E-Moto / Motocross |
🛠 Rider Tips
• Use Talcum Powder – Lightly dust the tube before installation to reduce friction and heat buildup.
• Inspect the Tire Interior – Remove debris or exposed spoke nipples before mounting.
• Check PSI After 48 Hours – Re-check pressure after initial installation to account for natural stretch.
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