Electrical Limit Switch - High-Quality Supplier

We are your trusted partner for dependable Electrical Limit Switch solutions. As a High-Quality supplier, we know uptime equals profitability, so our switches feature precise actuation, rugged housings, and long service life. The Electrical Limit Switches we offer provide repeatable safety interlocks, easy installation, and compatibility with common control systems. We design them for demanding environments—moisture, dust, vibration, and wide temperature ranges—so you can deploy them across conveyors, presses, and automation lines with confidence. We back our products with quick lead times, competitive pricing, and real engineering support, not generic pitches. Our QA team tests every lot and provides clear documentation for compliance and traceability. If you’re seeking a steady supply of High-Quality Electrical Limit Switches, we’re ready to partner with you for reliable performance, scalable service, and lasting value.

Hot Selling Product

Electrical Limit Switch Ahead of the Curve Guarantees Peak Performance

In automated production, the reliability of position sensing drives line efficiency. An electrical limit switch that stays ahead of the curve couples rugged housing with precise, repeatable signaling and long life in harsh conditions. Enhanced sealing, vibration tolerance, and robust contact technology guard against dust, moisture, and misalignment, reducing false trips and downtime. When performance matters, these switches keep machines running at peak throughput and maintain consistent quality across shifts. From a global procurement perspective, choosing switches with universal certifications, standardized footprints, and reliable spare parts reduces regional risk. Fast availability, clear diagnostics, and configurable options lower maintenance costs, while traceability and predictable lead times improve planning. A forward-looking supplier supports multiple regions with local service networks, helping installations meet safety standards and deliver steady returns across complex, multi-site operations.

{ Electrical Limit Switch Ahead of the Curve Guarantees Peak Performance}

Parameter Unit Model A-100 Model A-110 Model B-200 Model B-210
Actuator Type - Roller lever Click plunger Magnetic actuator Lever actuator
Contact Configuration Form C (SPDT) Form C (SPDT) Form A (SPST-NO) Form B (SPST-NC) Form C
Nominal Voltage V 240 120 240 480
Rated Current A 5 3 2 6
Electrical Rating - 240 VAC, 5 A 120 VAC, 3 A 240 VAC, 2 A 480 VAC, 6 A
Dielectric Strength VAC 1000 1000 1500 1500
Mechanical Life cycles 3,000,000 2,000,000 5,000,000 6,000,000
Electrical Life cycles 100,000 80,000 200,000 250,000
Travel mm 5 3 4 6
Actuation Force N 3.5 2.0 4.5 6.0
IP Rating - IP67 IP65 IP67 IP68
Operating Temperature C -25 to 85 -20 to 70 -30 to 85 -40 to 85
Mounting Style - Through-hole Panel mount Through-hole Through-hole
Certifications - CE, UL CE CE, UL UL, CE

Related Products

Electrical Limit Switch Factory-Direct Excellence Custom Solutions,

Data Dimension: Production Throughput by Equipment Type

Explanation: This bar chart presents production throughput by equipment type, illustrating a specific data dimension that is central to manufacturing performance analysis. The five categories—CNC Lathe, CMM Router, Laser Cutter, Press Brake, and Welding Station—represent key stations in a typical fabrication workflow. Each bar corresponds to the output volume produced by that station over a defined period, measured in units per shift or per day. The height of each bar conveys the relative throughput, enabling quick visual comparison across equipment. From the sample data, the CMM Router leads in throughput, while the Laser Cutter shows the lowest output. This hints at different utilization levels, maintenance needs, or capacity constraints that could influence the overall cycle time of the process. The spacing and uniform bar widths help emphasize relative performance while maintaining legibility. Because the data uses a single dimension (throughput) across distinct equipment types, it is straightforward to identify potential bottlenecks where capacity expansion or process optimization might yield the largest overall gains. However, raw throughput alone does not capture all performance aspects. Normalizing by available run hours, shift length, or batch size would allow fairer comparisons if shifts or lines vary. Additional metrics such as downtime, changeover time, defect rate, or energy consumption could be layered on to provide a more complete picture of efficiency and cost. The chart also supports scenario planning: if a particular station is consistently underperforming, targeted interventions—tooling upgrades, preventive maintenance, or operator training—could be prioritized. Conversely, high-performing stations might be studied for best practices that can be transferred to other equipment or scaled with automation. In practice, this visualization serves as a decision-support tool. When complemented by time-series data, production plans, and capacity forecasts, it helps operations teams balance workloads, allocate resources, and drive improvements toward more predictable delivery and higher overall throughput across the manufacturing network.

Top Selling Products