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| 製品名: | ねじ込み式端子台 | ハードウェア: | アレン・レンチ |
|---|---|---|---|
| 描画形式: | 3D/CAD/DWG//STEP/PDF | 使用法: | 鋼のフラットブレーキットに溶接 |
| 製造工程: | 鋳造 / 鍛造 / CNC 加工 / スタンピング | 標準か非標準か: | 標準 |
| 標準: | ISO9001 | 重量許容差: | <> |
A Screw In Terminal Block is an electrical connector used to secure and join two or more wires together using screw clamping mechanism. It consists of a conductive metal part (usually copper or brass) housed inside an insulating plastic body. The wire is inserted into the terminal and fastened by tightening a screw, which applies pressure to hold the wire securely against the conductive bar, ensuring a reliable electrical connection.
Screw in terminal blocks are widely used in industrial control systems, power distribution, building wiring, and various electrical equipment due to their simple structure, high reliability, and ease of installation.
| Component | Material | Description |
|---|---|---|
| Conductor / Metal Part | Copper / Brass / Copper Alloy | High electrical conductivity, good mechanical strength |
| Screw | Brass / Steel | Provides clamping force, often plated for corrosion resistance |
| Housing / Insulator | PA66 (Polyamide 66) / PC / Ceramic | Flame retardant, high temperature resistance, electrical insulation |
| Solder Tab (if applicable) | Tin Plated Copper | For PCB mounting applications |
| Treatment | Material Applied | Purpose |
|---|---|---|
| Tin Plating | Tin | Improves solderability, prevents oxidation, reduces contact resistance |
| Nickel Plating | Nickel | Enhances corrosion resistance, suitable for high temperature environments |
| Silver Plating | Silver | Maximum conductivity, used for high frequency or high current applications |
| Zinc Plating | Zinc | Common for steel screws to prevent rust |
| Parameter | Common Range | Description |
|---|---|---|
| Rated Voltage | 300V - 1000V | Maximum operating voltage |
| Rated Current | 5A - 400A | Maximum current carrying capacity |
| Wire Gauge | 30 AWG - 1000 MCM | Range of wire sizes accepted |
| Pitch / Spacing | 3.5mm - 20mm | Distance between centers of adjacent terminals |
| Number of Positions | 1 - 24+ | Number of connection points in a single block |
| Operating Temperature | -40°C to +120°C | Temperature range for safe operation |
| Flammability Rating | UL94 V-0 / V-2 | Flame retardance standard |
| Dielectric Strength | 1500V - 4000V | Withstand voltage capability |
| Industry | Specific Applications |
|---|---|
| Industrial Automation | Control panels, PLC systems, motor control centers, sensors |
| Power Distribution | Switchgear, distribution boards, power supplies, transformers |
| Building Wiring | Lighting circuits, HVAC systems, junction boxes |
| Renewable Energy | Solar inverters, wind turbine controllers, battery storage systems |
| Transportation | Railway signaling, automotive electronics, marine equipment |
| HVAC | Air handling units, chiller controls, thermostat wiring |
| Instrumentation | Measuring devices, data acquisition systems, test equipment |
| Consumer Electronics | Power adapters, home appliances, audio equipment |
Scenario:
A manufacturing plant requires a reliable and safe method to connect power supply and control wiring for multiple 3-phase motors used in conveyor systems. The motors range from 2kW to 15kW, operating at 480V AC.
Solution:
Screw in terminal blocks are installed in each motor control center compartment to terminate incoming power cables, motor leads, and control wiring from PLCs and sensors.
Why Screw In Terminal Blocks are the Best Choice:
| Requirement | How Screw In Terminal Block Meets It |
|---|---|
| High Current Capacity | 32A to 60A rated blocks handle motor loads safely |
| Secure Connection | Screw clamping prevents loosening from vibration |
| Easy Maintenance | Wires can be easily disconnected and reconnected for motor replacement |
| Clear Identification | Marking accessories allow labeling of each circuit (U/V/W phases) |
| Safety | Finger-safe design with fully insulated housing protects technicians |
| Flexibility | Modular design allows adding or removing terminals as needed |
Result:
The motor control center operates reliably with minimal connection failures. Maintenance technicians can quickly troubleshoot and replace motors without special tools, reducing downtime by 30% compared to previous direct-wire methods.
Screw In Terminal Blocks remain the industry standard for electrical connections due to their proven reliability, wide availability, and ease of use. Whether in heavy industrial applications or simple home wiring, they provide a secure and long-lasting connection that electricians and engineers trust worldwide.
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