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Locking Safety : Project-Defined Electronic Protection + 30 RPM Mechanical Safety Condition
Waterproof Rating : IPX7
Voltage Range : 5V–60V DC
MOQ : TBD
Certification : RoHS,REACH
Application : Public E-Bikes / Shared Fleets / High-Demand OEM Mobility Platforms
Price : Negotiable
Torque Resistance : ≥300N·m
Speed Sensing : 3 Magnets Per Ring
Model Number : ABSS3708
Place of Origin : GUANGZHOU,CHINA
Brake Diameter : 110 mm
Delivery Time : <20days
Model : ABSS3708
Payment Terms : T/T,PayPal,L/C,D/A,D/P,Western Union,MoneyGram
Brand Name : ELEVANDI
Supply Ability : Ten thousand sets per month
Packaging Details : 1pcs/carton
Communication Interface : UART / RS485 / CAN / I2C
Mounting Position : Rear Hub Left Side / Rear Motor Left Side
The ABSS3708 High-Resistance E-Bike Rear Drum Brake Lock is intended for public mobility and shared fleet projects that require a defined structural-resistance direction at the rear wheel. Its role is not limited to a product label: OEM teams can review the locking structure, braking function, sensing input and available validation media against the vehicle's actual operating profile.
The product combines mechanical expansion braking with controller-managed wheel immobilization. A model-specific Hall layout provides movement input for the electronic protection strategy, while a separate mechanical condition adds a physical boundary for lock engagement. These layers support the locking workflow without claiming to regulate brake pressure.
For public e-bike projects, the product should be assessed through evidence rather than broad heavy-duty language. Assembly, braking, lock-resistance, environmental and final-inspection media can support engineering review. Vehicle load, wheel diameter, route conditions, braking duty and thermal behavior remain complete-vehicle inputs; they cannot be inferred from the brake direction or lock-resistance value alone.

As with drum brakes on bikes, brake shoes act against the internal drum surface to create friction. This mechanical braking function remains separate from electronic immobilization. For locking, the approved controller sends commands through the selected interface and uses movement input within the configured protection strategy. The mechanical condition adds another engagement boundary, while OTA support can be implemented within the approved platform architecture.
| Parameter | Specification |
|---|---|
| Product Name | Heavy Duty Anti-Lock Rear Drum Brake Lock |
| Model | ABSS3708 |
| Product Category | Bike Rear Drum Brake |
| Voltage | 5V–60V DC |
| Communication | UART / RS485 / CAN / I2C |
| Power Source | Controller / IoT / Battery |
| Electronic Protection Speed | Customizable |
| Speed Sensing Solution | 3 Magnets / Ring |
| Torque Resistance | ≥300N·m |
| Mechanical Safety Locking Speed | 30RPM, Related To Wheel Diameter |
| Spoke Hole | Not Included In Hub |
| Product O.L.D. | Not Included In Hub |
| Axle Hole Size | 10 mm / 12 mm, Subject To Actual Drawing |
| Hub Axle | Not Included |
| Main Axle Load Strength | None |
| Brake Diameter | 110 mm |
| Braking Performance | ISO 4210-2015 |
| Operating Temperature | -30℃–65℃ |
| Waterproof Rating | IPX7 Lock Core |
| High Temperature Storage | 85℃ ± 2℃, 48h |
| Low Temperature Storage | -40℃ ± 2℃, 48h |
| High Temperature And Humidity | 65℃, 95%RH, 48h |
| Salt Spray Test | 72h Neutral |
| Mounting Position | Rear Hub Left Side / Motor Left Side |

ABSS3708 is intended for public e-bikes, shared fleets and higher-demand OEM mobility projects. It is best evaluated where operators can define vehicle load, wheel size, route conditions, braking frequency, exposure and inspection requirements before sampling and complete-vehicle testing. For shared mobility operators, ABSS3708 provides stronger rear-wheel anti-theft protection, speed-aware locking logic and outdoor-ready waterproof performance. For OEM vehicle brands, it offers a heavy-duty rear drum brake lock option that can be matched to different controllers, IoT systems and vehicle frame structures.
Provide the rear hub or rear motor drawing, wheel diameter, axle-hole requirement, vehicle weight and load, operating route, braking duty, controller architecture, selected interface and lock workflow. Confirm actuation, installation clearance, connector, cable routing, BOM, environmental review and complete-vehicle braking and locking validation.
Q: What defines ABSS3708 within the ABSS series?
A: It is the 110 mm, 3-magnet model with confirmed >=300 N.m lock-structure resistance. These values identify the product direction; they do not establish braking torque, motor torque, vehicle load or a security grade.
Q: Does high resistance mean stronger braking?
A: No. The resistance value applies to the locking structure. Expansion-brake performance and complete-vehicle braking behavior are separate validation fields.
Q: Is ABSS3708 approved for every cargo or high-power e-bike?
A: No universal compatibility is claimed. Vehicle load, wheel diameter, route conditions, braking duty, thermal behavior and rear-wheel structure must be reviewed for each project.
Q: How do drum brakes on bikes create braking force?
A: Brake shoes press against the internal drum surface to create friction. ABSS3708 adds vehicle-controlled wheel locking to the approved rear-wheel assembly but does not turn the brake into pressure-modulating ABS.
Q: Can the product be mounted beside a rear motor?
A: Yes. Rear motor left-side and rear hub left-side directions are supported, subject to the approved drawing, axle-hole requirement, clearance and routing review.
Q: Which evidence is available for project validation?
A: Model-matched assembly, braking, lock-resistance, lock-core waterproof, neutral salt-spray and final-inspection media are available for OEM review.
Q: What should be checked for demanding operating profiles?
A: Review vehicle load, wheel size, route and gradient, braking frequency, environmental exposure, controller logic, installation structure and the complete-vehicle test plan.
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ELEVANDI ABSS3708 High-Resistance E-Bike Drum Brake Lock Images |