1 daripada 1

Omron D4BL-2CRA Guard Lock Safety-Door Switch

Omron D4BL-2CRA Guard Lock Safety-Door Switch

Hanya 7 item tinggal dalam stok
  • Pengilang: Omron

  • No. Produk: D4BL-2CRA

  • Negara asal:Jepun

  • Jenis Produk: Guard Lock Safety Switches

  • Pembayaran: T/T, Western Union

  • Berat: 800g

  • Pelabuhan penghantaran: Xiamen

  • Jaminan: 12 bulan

Kuantiti
Lihat butiran penuh

Description

Securing heavy-duty industrial access gates and hazardous machinery enclosures, the Omron D4BL-2CRA is an industrial-grade safety interlock switch engineered with a robust mechanical lock and 24 VDC solenoid release mechanism. Built to comply with rigorous international safety standards, this device features a dual-conduit configuration and multiple contact outputs to guarantee dependable door monitoring and system-wide safety integration.

This switch functions as a Type 2 interlock device under EN ISO 14119, utilizing a low-level coded actuator key design. To prevent accidental entrapment or lockouts during power failures, an auxiliary release key is integrated directly into the rugged housing, enabling manual release by authorized maintenance personnel. Its robust mechanical build achieves an IP67 rating, ensuring reliable operation in harsh environments contaminated with dust, debris, and low-pressure water sprays.

Features

  • Fail-Safe Mechanical Lock: Employs a physical mechanical locking principle that secures the actuator key upon insertion, requiring 24 VDC solenoid energization to release.
  • Multi-Contact Output: Outfitted with 1NC/1NO door open/closed detection contacts alongside a dedicated 1NC lock monitor switch contact, both executing via slow-action mechanics.
  • Flexible Head Orientation: Adjustable head mechanism allows up to four distinct mounting directions, optimizing alignment options during system deployment.
  • Auxiliary Override: Integrated auxiliary release key enables manual unlocking for maintenance procedures or emergency overrides.
  • G1/2 Conduit Ports: Dual-conduit entry structure simplifies wiring layouts and separating power lines from control signals.

Applications

  • Automotive Assembly Lines: Secures robotic cell enclosures where entry must be prohibited until automated cycles completely cease.
  • Machining Centers: Installed on safety gates of high-speed CNC milling, turning, and grinding machinery to prevent access during spindle deceleration.
  • Packaging & Palletizing Zones: Prevents operators from entering dangerous moving conveyor paths and automated strapping zones.
  • Heavy Industrial Mixers: Ensures material loading doors remain locked until mixing paddles are verified to be at a complete standstill.

Technical Specifications

Parameter Specification Value
Manufacturer Omron
Model Designation D4BL-2CRA
Interlock Type Type 2 (EN ISO 14119)
Locking Principle Mechanical Lock / Solenoid Release
Solenoid Rated Voltage 24 VDC
Coding Level Low Level coded (EN ISO 14119)
Conduit Outlets G1/2 (2-conduit design)
Built-in Contacts Configuration 1NC/1NO (door monitoring) + 1NC (lock monitoring), slow-action
Electrical Durability 500,000 operations minimum (10 A resistive load at 250 VAC)
Mechanical Durability 1,000,000 operations minimum
Operating Speed Range 0.05 to 0.5 m/s
Maximum Operating Frequency 30 operations per minute
Ingress Protection Rating IP67 (EN60947-5-1)
Device Weight 0.8 kg
Shipping Weight 2.0 kg

Empirical Engineering Insights

Alternative Models & Compatibility

The D4BL-2CRA is a mechanical-lock/solenoid-release variant, meaning it relies on spring force to lock the gate and 24 VDC power to release it. In applications where immediate egress during a power failure is a safety requirement, mechanical-lock models are highly preferred because they stay physically locked unless overridden by the mechanical override key. This contrasts with solenoid-lock models (such as the D4BL-2GRA) which unlock immediately upon power loss, a behavior that may be dangerous in processes with long run-down times.

Application Pitfalls & Engineering Notes

During system integration, ensure that the solenoid coil is not continuously energized for prolonged periods exceeding the design parameters, as continuous excitation will cause thermal stress. Use PLC logic to pulse the release coil only when the machine has reached zero-speed verification, and drop the energization signal once the gate open status is confirmed.

Commissioning & Wiring Tips

Physical actuator misalignment is the primary cause of premature switch failure. When mounting, ensure that the mechanical gate has physical door stops installed. The safety switch must never be used as a mechanical stop; crashing forces will warp the key entry head, leading to failure of the lock monitoring contacts. Conduit connections should be sealed with proper cable glands to maintain the IP67 integrity.

Installation Guidelines

CRITICAL WARNING

Disconnect and isolate all control circuit power before attempting installation, adjustment, or physical wiring of this device. Verify that the machinery has completely stopped and that no kinetic or thermal energy remains stored in the cell before working on the safety barrier.

1

Adjust the head orientation by loosening the head assembly screws, rotating the head to your desired target axis (right-side mounting is active by default), and securing the screws tightly to preserve the IP67 seal.

2

Mount the switch housing securely to the stationary frame of the safety guard using M5 screws, ensuring the surface is flat to prevent structural torque on the switch body.

3

Align and mount the companion actuator key to the moving door or gate, verifying that the key enters smoothly into the center of the slot without catching or applying side-load pressure.

4

Complete all electrical connections via the G1/2 conduit ports, wiring the 1NC lock monitoring and 1NC/1NO door safety contacts into your safety relay or safety PLC input module.

Loading product navigation…

What is the difference between mechanical-lock and solenoid-lock variants for this model?

This model features a mechanical lock with solenoid release. The switch is locked by mechanical spring force immediately when the actuator key is fully inserted. To unlock the guard, the 24 VDC solenoid must be energized. This ensures the guard remains locked even if system power is cut.

How do you manually open the gate if there is a power failure?

An auxiliary release key is integrated directly into the housing of the switch. This manual key can be turned to unlock the gate during maintenance or power loss scenarios.

Does this unit include built-in LED indicators?

No, this specific model is configured without an LED indicator. Status monitoring must be managed via the auxiliary door and lock monitoring contacts connected to your control system.

What size conduit entries are provided on this safety switch?

The switch features two conduit entry ports threaded for G1/2 fittings, allowing for split runs of solenoid control cables and sensor signal wiring.

Penghantaran Ekspres Global

  • Penghantaran Standard: 4-6 Hari Bekerja melalui DHL, FedEx, dan UPS.
  • Penghantaran Ekspres: Penghantaran pada hari yang sama untuk pesanan dalam stok yang dibuat sebelum 2:00 PM (GMT+8).
  • Liputan Seluruh Dunia: Berkhidmat di lebih 150 negara, termasuk penghantaran pantas ke Arab Saudi dan UAE.

Pemulangan & Jaminan

  • Jaminan 30 Hari: Pemulangan diterima untuk produk dalam stok dalam pembungkusan asal yang disegel kilang.
  • Jaminan 12 Bulan: Setiap komponen industri disokong oleh jaminan teknikal profesional kami.

Pesanan diproses dan dihantar Isnin-Jumaat (tidak termasuk cuti umum).


Untuk kelayakan penuh, yuran penyimpanan semula, dan butiran pemulangan antarabangsa, sila lihat rasmi kami Polisi Pemulangan & Pengembalian Wang .

TECHNICAL SPECIFICATIONS

Country of origin
Jepun

Produk yang Baru Dilihat

Pengetahuan teknikal

Aktuator Elektrik Direka untuk Menggantikan Cecair: Tutorial Praktikal

This article explains how integrated electric actuators, such as SMC’s e-Actuator series, are transforming industrial motion control by replacing traditional pneumatic and hydraulic systems. It...

Operasi Matematik Menggunakan OpenPLC untuk Aplikasi Automasi Industri

Artikel ini menerangkan bagaimana sistem PLC melaksanakan operasi matematik teras seperti penambahan, penolakan, pendaraban, pembahagian, modulo, dan perpangkatan dalam automasi industri. Ia...

Logik Boolean Lanjutan dengan Pengaturcaraan FBD PLC: Aplikasi Industri Praktikal Melebihi Logik Asas

Artikel ini menerangkan beberapa fungsi logik Boolean lanjutan yang digunakan dalam pengaturcaraan PLC selain operasi asas AND, OR, dan NOT. Ia merangkumi bagaimana alat seperti jadual kebenaran,...

Logik Boolean dalam Pengaturcaraan PLC: Memahami Pintu Logik FBD

Logik Boolean adalah asas bagi setiap program PLC. Dari kawalan mesin yang mudah hingga sistem automasi industri yang kompleks, pintu logik menentukan bagaimana pengawal bertindak balas terhadap...

Panduan Mendalam tentang Firewall Industri dan Segmentasi Rangkaian OT

Firewall industri memainkan peranan penting dalam keselamatan siber OT, melindungi rangkaian PLC, DCS, dan SCADA melalui segmentasi, kawalan masuk/keluar, dan integrasi IDS/IPS yang selaras dengan...

Panduan untuk Pengapit Robotik: Dari Pengendalian Halus hingga Automasi Tugas Berat

Pengapit robotik moden sedang berkembang melebihi rahang mekanikal tradisional. Daripada sistem pelekat yang diinspirasikan oleh cicak dan pengapit lembut gred makanan hingga alat gudang yang...