Shanghai Ventnor trading co., Ltd
                                                                                                           
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12 Years
Since 2014
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CAN Bus Communication Industrial Pcba Rigid Aerial Lift Accessories

Price Negotiable
Price: $200-300
MOQ: 1
Delivery Time: 5-8 working days
Brand: Ventnor
Product Description
CAN-Bus Communication Board Rigid PCB Assembly
Technical Background and Signal Integrity
The PCBA Circuit Board Assembly represents a ruggedized, embedded electronic control platform designed specifically to maintain computational stability within severe electro-hydraulic machinery networks. Built upon high-density interconnected substrates, this assembly houses high-speed industrial microcontrollers alongside isolated gate drivers and robust transient voltage suppression arrays. The circuit layout utilizes strict spatial separation between heavy-current power traces and fine analog sensing pathways, reinforced by dedicated internal grounding planes. This structural design isolates the logic core from electromagnetic feedback caused by high-amp motor contactors, preserving true signal continuity and preventing communication timeout errors during continuous machine operation.
Technical Specifications
Parameter Specification Technical Data Value
Substrate Grade Classification High-Tg TG180 FR4 / Metal-Clad Core Base
Copper Foil Density Standard 2 oz / 3 oz Heavy Inner & Outer Layers
Surface Finish Metallic Grade OSP (Organic Solderability Preservatives) / ENIG
Bus Protocol Integration Native Differential CAN-Bus 2.0B Hardware Loop
Minimum Conductor Spacing 0.125 mm Precise Track Separation
Dielectric Breakdown Barrier Certified ≥ 1500V AC Insulation Rating
Environmental Protection Layer Polyurethane Resin Conformal Coating
Production Solder Type SAC305 Lead-Free High-Reliability Alloy
Industrial Applications and Fleet Deployment
This advanced PCBA platform operates as the primary electronic brain across specialized high-capacity equipment lines and automated materials tracking infrastructures. It mounts directly inside:
  • Boom Lift Electronic Stations: Manages multi-axis proportional boom coordinates and anti-crush safety envelope processing systems.
  • Proportional Manifold Modules: Directs precise pulse-width modulation output loops to flow-control hydraulic solenoid valves.
  • Heavy Electric Lift Drive Nodes: Integrates with dual-channel AC motor speed controllers and active battery management systems.
Technical Advantages and Structural Architecture
  • TG180 High-Temperature Substrate: Prevents delamination, structural trace cracking, and board warping when operating continuously inside unventilated steel enclosure boxes exposed to direct sunlight.
  • Automated 3D Solder Paste Inspection: Every manufacturing cycle utilizes active optical laser profiling to eliminate micro-voiding and unstable component wetting before reflow heating.
  • Hydrophobic Polyurethane Encapsulation: The finished board assembly is completely sealed with an automated spray system to isolate delicate pin matrices from corrosive battery outgassing, high moisture, and iron dust.
Product FAQ
How does the heavy copper layout of this PCBA protect logic components from localized heat damage?
Standard industrial boards use thin 1 oz copper, which can rapidly overheat when channeling high currents to hydraulic valve coils. This assembly utilizes thick 3 oz copper cladding across power layers. This added mass acts as a built-in heat sink, lowering electrical resistance and spreading thermal loads evenly across the substrate, keeping critical logic processors running within stable temperature limits without bulky external cooling plates.
What component placement techniques prevent electrical failures on machines experiencing continuous engine vibration?
Heavy components such as terminal headers, electrolytic capacitors, and inductor coils are mounted using a dual-fixation strategy. They are mechanically secured using through-hole solder pins combined with structural, high-peel-strength epoxy anchoring. This mechanical layout keeps component solder joints free from stress, preventing trace lifting or connection cracking during high-vibration engine operations.
How does this assembly handle sudden power surges from battery charging systems on site?
The power input stage of the board incorporates high-capacity transient voltage suppression diodes alongside heavy-duty decoupling capacitors. This filtering array acts as an electronic surge absorber, clamping sudden high-voltage spikes down to safe logic levels in under a nanosecond, protecting the internal memory chips and processing cores from corruption when the machine connects to high-output field chargers.

 

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Company Shanghai Ventnor trading co., Ltd
Location Room 323, Building T3, No 1220, YuQiao Road, Shanghai
Contact Person Jackie

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