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Showing 40 out of 2952 products

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₹3,067  
The Omron Operation Key For Use With D4GS-N Series, D4GS-NK2 is a key component of this safety mechanism.
The safety door switch typically consists of a switch unit installed on the door or access point and a control unit connected to the machinery. The Operation Key is a physical key that is used to engage or disengage the safety switch. When the key is inserted and turned, it allows the switch to close, signaling that the door is securely closed and the equipment can operate safely. Without the key in place, the switch remains open, preventing the machinery from functioning.
This key-based system serves as a physical barrier to ensure that only authorized personnel with the correct key can enable the equipment. It adds an extra layer of security, as it requires a deliberate action to insert and turn the key, reducing the risk of accidental or unauthorized access to the machinery.
In emergency situations or during maintenance, the Operation Key can be easily removed, instantly interrupting the power supply to the machinery and ensuring a safe shutdown. This feature is crucial for compliance with safety standards and regulations governing industrial machinery.
Overall, the Operation Key for a safety door switch is a simple yet effective means of enhancing workplace safety by controlling access to hazardous machinery and preventing unintended operation, contributing to the protection of personnel and the integrity of industrial processes.
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₹3,657  
The Omron Operation Key For Use With D4SL-N Series, D4SL-NK5 is a key component of this safety mechanism.
The safety door switch typically consists of a switch unit installed on the door or access point and a control unit connected to the machinery. The Operation Key is a physical key that is used to engage or disengage the safety switch. When the key is inserted and turned, it allows the switch to close, signaling that the door is securely closed and the equipment can operate safely. Without the key in place, the switch remains open, preventing the machinery from functioning.
This key-based system serves as a physical barrier to ensure that only authorized personnel with the correct key can enable the equipment. It adds an extra layer of security, as it requires a deliberate action to insert and turn the key, reducing the risk of accidental or unauthorized access to the machinery.
In emergency situations or during maintenance, the Operation Key can be easily removed, instantly interrupting the power supply to the machinery and ensuring a safe shutdown. This feature is crucial for compliance with safety standards and regulations governing industrial machinery.
Overall, the Operation Key for a safety door switch is a simple yet effective means of enhancing workplace safety by controlling access to hazardous machinery and preventing unintended operation, contributing to the protection of personnel and the integrity of industrial processes.
₹2,831  
The Omron Operation Key For Use With D4SL-N Series, D4SL-NK3 is a key component of this safety mechanism.
The safety door switch typically consists of a switch unit installed on the door or access point and a control unit connected to the machinery. The Operation Key is a physical key that is used to engage or disengage the safety switch. When the key is inserted and turned, it allows the switch to close, signaling that the door is securely closed and the equipment can operate safely. Without the key in place, the switch remains open, preventing the machinery from functioning.
This key-based system serves as a physical barrier to ensure that only authorized personnel with the correct key can enable the equipment. It adds an extra layer of security, as it requires a deliberate action to insert and turn the key, reducing the risk of accidental or unauthorized access to the machinery.
In emergency situations or during maintenance, the Operation Key can be easily removed, instantly interrupting the power supply to the machinery and ensuring a safe shutdown. This feature is crucial for compliance with safety standards and regulations governing industrial machinery.
Overall, the Operation Key for a safety door switch is a simple yet effective means of enhancing workplace safety by controlling access to hazardous machinery and preventing unintended operation, contributing to the protection of personnel and the integrity of industrial processes.
₹1,297  
The Omron Operation Key For Use With D4SL-N Series, D4SL-NK1S is a key component of this safety mechanism.
The safety door switch typically consists of a switch unit installed on the door or access point and a control unit connected to the machinery. The Operation Key is a physical key that is used to engage or disengage the safety switch. When the key is inserted and turned, it allows the switch to close, signaling that the door is securely closed and the equipment can operate safely. Without the key in place, the switch remains open, preventing the machinery from functioning.
This key-based system serves as a physical barrier to ensure that only authorized personnel with the correct key can enable the equipment. It adds an extra layer of security, as it requires a deliberate action to insert and turn the key, reducing the risk of accidental or unauthorized access to the machinery.
In emergency situations or during maintenance, the Operation Key can be easily removed, instantly interrupting the power supply to the machinery and ensuring a safe shutdown. This feature is crucial for compliance with safety standards and regulations governing industrial machinery.
Overall, the Operation Key for a safety door switch is a simple yet effective means of enhancing workplace safety by controlling access to hazardous machinery and preventing unintended operation, contributing to the protection of personnel and the integrity of industrial processes.
₹860  
The Omron Operation Key For Use With D4SL-N Series, D4SL-NK1 is a key component of this safety mechanism.
The safety door switch typically consists of a switch unit installed on the door or access point and a control unit connected to the machinery. The Operation Key is a physical key that is used to engage or disengage the safety switch. When the key is inserted and turned, it allows the switch to close, signaling that the door is securely closed and the equipment can operate safely. Without the key in place, the switch remains open, preventing the machinery from functioning.
This key-based system serves as a physical barrier to ensure that only authorized personnel with the correct key can enable the equipment. It adds an extra layer of security, as it requires a deliberate action to insert and turn the key, reducing the risk of accidental or unauthorized access to the machinery.
In emergency situations or during maintenance, the Operation Key can be easily removed, instantly interrupting the power supply to the machinery and ensuring a safe shutdown. This feature is crucial for compliance with safety standards and regulations governing industrial machinery.
Overall, the Operation Key for a safety door switch is a simple yet effective means of enhancing workplace safety by controlling access to hazardous machinery and preventing unintended operation, contributing to the protection of personnel and the integrity of industrial processes.
₹966  
The Omron Operation Key For Use With D4JL Series, D4JL-K2 is a key component of this safety mechanism.
The safety door switch typically consists of a switch unit installed on the door or access point and a control unit connected to the machinery. The Operation Key is a physical key that is used to engage or disengage the safety switch. When the key is inserted and turned, it allows the switch to close, signaling that the door is securely closed and the equipment can operate safely. Without the key in place, the switch remains open, preventing the machinery from functioning.
This key-based system serves as a physical barrier to ensure that only authorized personnel with the correct key can enable the equipment. It adds an extra layer of security, as it requires a deliberate action to insert and turn the key, reducing the risk of accidental or unauthorized access to the machinery.
In emergency situations or during maintenance, the Operation Key can be easily removed, instantly interrupting the power supply to the machinery and ensuring a safe shutdown. This feature is crucial for compliance with safety standards and regulations governing industrial machinery.
Overall, the Operation Key for a safety door switch is a simple yet effective means of enhancing workplace safety by controlling access to hazardous machinery and preventing unintended operation, contributing to the protection of personnel and the integrity of industrial processes.
₹1,037  
The Omron Operation Key For Use With D4JL Series, D4JL-K1 is a key component of this safety mechanism.
The safety door switch typically consists of a switch unit installed on the door or access point and a control unit connected to the machinery. The Operation Key is a physical key that is used to engage or disengage the safety switch. When the key is inserted and turned, it allows the switch to close, signaling that the door is securely closed and the equipment can operate safely. Without the key in place, the switch remains open, preventing the machinery from functioning.
This key-based system serves as a physical barrier to ensure that only authorized personnel with the correct key can enable the equipment. It adds an extra layer of security, as it requires a deliberate action to insert and turn the key, reducing the risk of accidental or unauthorized access to the machinery.
In emergency situations or during maintenance, the Operation Key can be easily removed, instantly interrupting the power supply to the machinery and ensuring a safe shutdown. This feature is crucial for compliance with safety standards and regulations governing industrial machinery.
Overall, the Operation Key for a safety door switch is a simple yet effective means of enhancing workplace safety by controlling access to hazardous machinery and preventing unintended operation, contributing to the protection of personnel and the integrity of industrial processes.
₹2,477  
The Omron Operation Key For Use With D4NS Series, D4DS-K5 is a key component of this safety mechanism.
The safety door switch typically consists of a switch unit installed on the door or access point and a control unit connected to the machinery. The Operation Key is a physical key that is used to engage or disengage the safety switch. When the key is inserted and turned, it allows the switch to close, signaling that the door is securely closed and the equipment can operate safely. Without the key in place, the switch remains open, preventing the machinery from functioning.
This key-based system serves as a physical barrier to ensure that only authorized personnel with the correct key can enable the equipment. It adds an extra layer of security, as it requires a deliberate action to insert and turn the key, reducing the risk of accidental or unauthorized access to the machinery.
In emergency situations or during maintenance, the Operation Key can be easily removed, instantly interrupting the power supply to the machinery and ensuring a safe shutdown. This feature is crucial for compliance with safety standards and regulations governing industrial machinery.
Overall, the Operation Key for a safety door switch is a simple yet effective means of enhancing workplace safety by controlling access to hazardous machinery and preventing unintended operation, contributing to the protection of personnel and the integrity of industrial processes.
₹1,887  
The Omron Operation Key For Use With D4NS Series, D4DS-K3 is a key component of this safety mechanism.
The safety door switch typically consists of a switch unit installed on the door or access point and a control unit connected to the machinery. The Operation Key is a physical key that is used to engage or disengage the safety switch. When the key is inserted and turned, it allows the switch to close, signaling that the door is securely closed and the equipment can operate safely. Without the key in place, the switch remains open, preventing the machinery from functioning.
This key-based system serves as a physical barrier to ensure that only authorized personnel with the correct key can enable the equipment. It adds an extra layer of security, as it requires a deliberate action to insert and turn the key, reducing the risk of accidental or unauthorized access to the machinery.
In emergency situations or during maintenance, the Operation Key can be easily removed, instantly interrupting the power supply to the machinery and ensuring a safe shutdown. This feature is crucial for compliance with safety standards and regulations governing industrial machinery.
Overall, the Operation Key for a safety door switch is a simple yet effective means of enhancing workplace safety by controlling access to hazardous machinery and preventing unintended operation, contributing to the protection of personnel and the integrity of industrial processes.
₹483  
The Omron Operation Key For Use With D4NS Series, D4DS-K2 is a key component of this safety mechanism.
The safety door switch typically consists of a switch unit installed on the door or access point and a control unit connected to the machinery. The Operation Key is a physical key that is used to engage or disengage the safety switch. When the key is inserted and turned, it allows the switch to close, signaling that the door is securely closed and the equipment can operate safely. Without the key in place, the switch remains open, preventing the machinery from functioning.
This key-based system serves as a physical barrier to ensure that only authorized personnel with the correct key can enable the equipment. It adds an extra layer of security, as it requires a deliberate action to insert and turn the key, reducing the risk of accidental or unauthorized access to the machinery.
In emergency situations or during maintenance, the Operation Key can be easily removed, instantly interrupting the power supply to the machinery and ensuring a safe shutdown. This feature is crucial for compliance with safety standards and regulations governing industrial machinery.
Overall, the Operation Key for a safety door switch is a simple yet effective means of enhancing workplace safety by controlling access to hazardous machinery and preventing unintended operation, contributing to the protection of personnel and the integrity of industrial processes.
₹483  
The Omron Operation Key For Use With D4NS Series, D4DS-K1 is a key component of this safety mechanism.
The safety door switch typically consists of a switch unit installed on the door or access point and a control unit connected to the machinery. The Operation Key is a physical key that is used to engage or disengage the safety switch. When the key is inserted and turned, it allows the switch to close, signaling that the door is securely closed and the equipment can operate safely. Without the key in place, the switch remains open, preventing the machinery from functioning.
This key-based system serves as a physical barrier to ensure that only authorized personnel with the correct key can enable the equipment. It adds an extra layer of security, as it requires a deliberate action to insert and turn the key, reducing the risk of accidental or unauthorized access to the machinery.
In emergency situations or during maintenance, the Operation Key can be easily removed, instantly interrupting the power supply to the machinery and ensuring a safe shutdown. This feature is crucial for compliance with safety standards and regulations governing industrial machinery.
Overall, the Operation Key for a safety door switch is a simple yet effective means of enhancing workplace safety by controlling access to hazardous machinery and preventing unintended operation, contributing to the protection of personnel and the integrity of industrial processes.
₹2,005  
The Omron Operation Key For Use With D4BS Series, D4BS-K2 is a key component of this safety mechanism.
The safety door switch typically consists of a switch unit installed on the door or access point and a control unit connected to the machinery. The Operation Key is a physical key that is used to engage or disengage the safety switch. When the key is inserted and turned, it allows the switch to close, signaling that the door is securely closed and the equipment can operate safely. Without the key in place, the switch remains open, preventing the machinery from functioning.
This key-based system serves as a physical barrier to ensure that only authorized personnel with the correct key can enable the equipment. It adds an extra layer of security, as it requires a deliberate action to insert and turn the key, reducing the risk of accidental or unauthorized access to the machinery.
In emergency situations or during maintenance, the Operation Key can be easily removed, instantly interrupting the power supply to the machinery and ensuring a safe shutdown. This feature is crucial for compliance with safety standards and regulations governing industrial machinery.
Overall, the Operation Key for a safety door switch is a simple yet effective means of enhancing workplace safety by controlling access to hazardous machinery and preventing unintended operation, contributing to the protection of personnel and the integrity of industrial processes.
₹1,014  
The Omron Operation Key For Use With D4BS Series, D4BS-K1 is a key component of this safety mechanism.
The safety door switch typically consists of a switch unit installed on the door or access point and a control unit connected to the machinery. The Operation Key is a physical key that is used to engage or disengage the safety switch. When the key is inserted and turned, it allows the switch to close, signaling that the door is securely closed and the equipment can operate safely. Without the key in place, the switch remains open, preventing the machinery from functioning.
This key-based system serves as a physical barrier to ensure that only authorized personnel with the correct key can enable the equipment. It adds an extra layer of security, as it requires a deliberate action to insert and turn the key, reducing the risk of accidental or unauthorized access to the machinery.
In emergency situations or during maintenance, the Operation Key can be easily removed, instantly interrupting the power supply to the machinery and ensuring a safe shutdown. This feature is crucial for compliance with safety standards and regulations governing industrial machinery.
Overall, the Operation Key for a safety door switch is a simple yet effective means of enhancing workplace safety by controlling access to hazardous machinery and preventing unintended operation, contributing to the protection of personnel and the integrity of industrial processes.
₹1,887  
The Omron Operation Key For Use With D4BL Series, D4BL-K1 is a key component of this safety mechanism.
The safety door switch typically consists of a switch unit installed on the door or access point and a control unit connected to the machinery. The Operation Key is a physical key that is used to engage or disengage the safety switch. When the key is inserted and turned, it allows the switch to close, signaling that the door is securely closed and the equipment can operate safely. Without the key in place, the switch remains open, preventing the machinery from functioning.
This key-based system serves as a physical barrier to ensure that only authorized personnel with the correct key can enable the equipment. It adds an extra layer of security, as it requires a deliberate action to insert and turn the key, reducing the risk of accidental or unauthorized access to the machinery.
In emergency situations or during maintenance, the Operation Key can be easily removed, instantly interrupting the power supply to the machinery and ensuring a safe shutdown. This feature is crucial for compliance with safety standards and regulations governing industrial machinery.
Overall, the Operation Key for a safety door switch is a simple yet effective means of enhancing workplace safety by controlling access to hazardous machinery and preventing unintended operation, contributing to the protection of personnel and the integrity of industrial processes.
₹1,887   ₹2,502
You save ₹615!
24.57% OFF
A Bch TCE Series Punched Section, Depth-1200 mm, TCE-PSW-1200 refers to a part of a material, such as a metal sheet or panel, that has been perforated or punched with holes, slots, or other shapes. Punched sections are commonly used in various industries, including manufacturing, construction, electronics, and automotive, for a variety of purposes. The process of creating punched sections involves using specialized machinery, such as a punch press or CNC machine, to cut holes or shapes into the material. This can serve several purposes: Ventilation and Airflow: Punched sections can be used to promote ventilation and airflow in enclosed spaces, such as enclosures, cabinets, or panels. This is particularly important in applications where temperature regulation or heat dissipation is necessary. Cable Management: Punched sections can provide pathways for cables and wires to pass through, helping with cable management and organization. These sections can reduce clutter and prevent tangling. Mounting and Assembly: Punched holes can be used for attaching components, mounting hardware, or fasteners. This is common in assembly processes where parts need to be securely connected. Visual Inspection: Punched sections can allow for visual inspection of internal components or readings on devices. This is often seen in control panels and equipment enclosures. Aesthetic Design: Punched patterns or decorative shapes can be used to enhance the visual appeal of products or structures. Filtering and Screening: Punched sections can act as filters or screens to allow airflow while preventing the entry of dust, debris, or unwanted particles. Light and Sound Control: Punched sections can be strategically placed to control the passage of light and sound, offering privacy or specific lighting effects. Materials commonly used for punched sections include metals like steel, aluminum, and stainless steel. The pattern, size, and shape of the punched sections can be customized to meet specific functional and aesthetic requirements. In the context of industrial processes, punched sections are often integrated into various components and structures. They play a role in enhancing functionality, performance, and the overall design of products and systems.
₹1,651   ₹2,201
You save ₹550!
24.98% OFF
A Bch TCE Series Punched Section, Depth-1000 mm, TCE-PSW-1000 refers to a part of a material, such as a metal sheet or panel, that has been perforated or punched with holes, slots, or other shapes. Punched sections are commonly used in various industries, including manufacturing, construction, electronics, and automotive, for a variety of purposes. The process of creating punched sections involves using specialized machinery, such as a punch press or CNC machine, to cut holes or shapes into the material. This can serve several purposes: Ventilation and Airflow: Punched sections can be used to promote ventilation and airflow in enclosed spaces, such as enclosures, cabinets, or panels. This is particularly important in applications where temperature regulation or heat dissipation is necessary. Cable Management: Punched sections can provide pathways for cables and wires to pass through, helping with cable management and organization. These sections can reduce clutter and prevent tangling. Mounting and Assembly: Punched holes can be used for attaching components, mounting hardware, or fasteners. This is common in assembly processes where parts need to be securely connected. Visual Inspection: Punched sections can allow for visual inspection of internal components or readings on devices. This is often seen in control panels and equipment enclosures. Aesthetic Design: Punched patterns or decorative shapes can be used to enhance the visual appeal of products or structures. Filtering and Screening: Punched sections can act as filters or screens to allow airflow while preventing the entry of dust, debris, or unwanted particles. Light and Sound Control: Punched sections can be strategically placed to control the passage of light and sound, offering privacy or specific lighting effects. Materials commonly used for punched sections include metals like steel, aluminum, and stainless steel. The pattern, size, and shape of the punched sections can be customized to meet specific functional and aesthetic requirements. In the context of industrial processes, punched sections are often integrated into various components and structures. They play a role in enhancing functionality, performance, and the overall design of products and systems.
₹1,415   ₹1,888
You save ₹473!
25.05% OFF
A Bch TCE Series Punched Section, Depth-800 mm, TCE-PSW-800 refers to a part of a material, such as a metal sheet or panel, that has been perforated or punched with holes, slots, or other shapes. Punched sections are commonly used in various industries, including manufacturing, construction, electronics, and automotive, for a variety of purposes. The process of creating punched sections involves using specialized machinery, such as a punch press or CNC machine, to cut holes or shapes into the material. This can serve several purposes: Ventilation and Airflow: Punched sections can be used to promote ventilation and airflow in enclosed spaces, such as enclosures, cabinets, or panels. This is particularly important in applications where temperature regulation or heat dissipation is necessary. Cable Management: Punched sections can provide pathways for cables and wires to pass through, helping with cable management and organization. These sections can reduce clutter and prevent tangling. Mounting and Assembly: Punched holes can be used for attaching components, mounting hardware, or fasteners. This is common in assembly processes where parts need to be securely connected. Visual Inspection: Punched sections can allow for visual inspection of internal components or readings on devices. This is often seen in control panels and equipment enclosures. Aesthetic Design: Punched patterns or decorative shapes can be used to enhance the visual appeal of products or structures. Filtering and Screening: Punched sections can act as filters or screens to allow airflow while preventing the entry of dust, debris, or unwanted particles. Light and Sound Control: Punched sections can be strategically placed to control the passage of light and sound, offering privacy or specific lighting effects. Materials commonly used for punched sections include metals like steel, aluminum, and stainless steel. The pattern, size, and shape of the punched sections can be customized to meet specific functional and aesthetic requirements. In the context of industrial processes, punched sections are often integrated into various components and structures. They play a role in enhancing functionality, performance, and the overall design of products and systems.
₹1,143   ₹1,569
You save ₹426!
27.17% OFF
A Bch TCE Series Punched Section, Depth-600 mm, TCE-PSW-600 refers to a part of a material, such as a metal sheet or panel, that has been perforated or punched with holes, slots, or other shapes. Punched sections are commonly used in various industries, including manufacturing, construction, electronics, and automotive, for a variety of purposes. The process of creating punched sections involves using specialized machinery, such as a punch press or CNC machine, to cut holes or shapes into the material. This can serve several purposes: Ventilation and Airflow: Punched sections can be used to promote ventilation and airflow in enclosed spaces, such as enclosures, cabinets, or panels. This is particularly important in applications where temperature regulation or heat dissipation is necessary. Cable Management: Punched sections can provide pathways for cables and wires to pass through, helping with cable management and organization. These sections can reduce clutter and prevent tangling. Mounting and Assembly: Punched holes can be used for attaching components, mounting hardware, or fasteners. This is common in assembly processes where parts need to be securely connected. Visual Inspection: Punched sections can allow for visual inspection of internal components or readings on devices. This is often seen in control panels and equipment enclosures. Aesthetic Design: Punched patterns or decorative shapes can be used to enhance the visual appeal of products or structures. Filtering and Screening: Punched sections can act as filters or screens to allow airflow while preventing the entry of dust, debris, or unwanted particles. Light and Sound Control: Punched sections can be strategically placed to control the passage of light and sound, offering privacy or specific lighting effects. Materials commonly used for punched sections include metals like steel, aluminum, and stainless steel. The pattern, size, and shape of the punched sections can be customized to meet specific functional and aesthetic requirements. In the context of industrial processes, punched sections are often integrated into various components and structures. They play a role in enhancing functionality, performance, and the overall design of products and systems.
₹1,415   ₹1,888
You save ₹473!
25.05% OFF
A Bch TCE Series Punched Section, Depth-800 mm, TCE-PSD-800 refers to a part of a material, such as a metal sheet or panel, that has been perforated or punched with holes, slots, or other shapes. Punched sections are commonly used in various industries, including manufacturing, construction, electronics, and automotive, for a variety of purposes. The process of creating punched sections involves using specialized machinery, such as a punch press or CNC machine, to cut holes or shapes into the material. This can serve several purposes: Ventilation and Airflow: Punched sections can be used to promote ventilation and airflow in enclosed spaces, such as enclosures, cabinets, or panels. This is particularly important in applications where temperature regulation or heat dissipation is necessary. Cable Management: Punched sections can provide pathways for cables and wires to pass through, helping with cable management and organization. These sections can reduce clutter and prevent tangling. Mounting and Assembly: Punched holes can be used for attaching components, mounting hardware, or fasteners. This is common in assembly processes where parts need to be securely connected. Visual Inspection: Punched sections can allow for visual inspection of internal components or readings on devices. This is often seen in control panels and equipment enclosures. Aesthetic Design: Punched patterns or decorative shapes can be used to enhance the visual appeal of products or structures. Filtering and Screening: Punched sections can act as filters or screens to allow airflow while preventing the entry of dust, debris, or unwanted particles. Light and Sound Control: Punched sections can be strategically placed to control the passage of light and sound, offering privacy or specific lighting effects. Materials commonly used for punched sections include metals like steel, aluminum, and stainless steel. The pattern, size, and shape of the punched sections can be customized to meet specific functional and aesthetic requirements. In the context of industrial processes, punched sections are often integrated into various components and structures. They play a role in enhancing functionality, performance, and the overall design of products and systems.
₹1,037   ₹1,416
You save ₹379!
26.77% OFF
A Bch TCE Series Punched Section, Depth-600 mm, TCE-PSD-600 refers to a part of a material, such as a metal sheet or panel, that has been perforated or punched with holes, slots, or other shapes. Punched sections are commonly used in various industries, including manufacturing, construction, electronics, and automotive, for a variety of purposes. The process of creating punched sections involves using specialized machinery, such as a punch press or CNC machine, to cut holes or shapes into the material. This can serve several purposes: Ventilation and Airflow: Punched sections can be used to promote ventilation and airflow in enclosed spaces, such as enclosures, cabinets, or panels. This is particularly important in applications where temperature regulation or heat dissipation is necessary. Cable Management: Punched sections can provide pathways for cables and wires to pass through, helping with cable management and organization. These sections can reduce clutter and prevent tangling. Mounting and Assembly: Punched holes can be used for attaching components, mounting hardware, or fasteners. This is common in assembly processes where parts need to be securely connected. Visual Inspection: Punched sections can allow for visual inspection of internal components or readings on devices. This is often seen in control panels and equipment enclosures. Aesthetic Design: Punched patterns or decorative shapes can be used to enhance the visual appeal of products or structures. Filtering and Screening: Punched sections can act as filters or screens to allow airflow while preventing the entry of dust, debris, or unwanted particles. Light and Sound Control: Punched sections can be strategically placed to control the passage of light and sound, offering privacy or specific lighting effects. Materials commonly used for punched sections include metals like steel, aluminum, and stainless steel. The pattern, size, and shape of the punched sections can be customized to meet specific functional and aesthetic requirements. In the context of industrial processes, punched sections are often integrated into various components and structures. They play a role in enhancing functionality, performance, and the overall design of products and systems.
₹813   ₹1,109
You save ₹296!
26.7% OFF
A Bch TCE Series Punched Section, Depth-500 mm, TCE-PSD-500 refers to a part of a material, such as a metal sheet or panel, that has been perforated or punched with holes, slots, or other shapes. Punched sections are commonly used in various industries, including manufacturing, construction, electronics, and automotive, for a variety of purposes. The process of creating punched sections involves using specialized machinery, such as a punch press or CNC machine, to cut holes or shapes into the material. This can serve several purposes: Ventilation and Airflow: Punched sections can be used to promote ventilation and airflow in enclosed spaces, such as enclosures, cabinets, or panels. This is particularly important in applications where temperature regulation or heat dissipation is necessary. Cable Management: Punched sections can provide pathways for cables and wires to pass through, helping with cable management and organization. These sections can reduce clutter and prevent tangling. Mounting and Assembly: Punched holes can be used for attaching components, mounting hardware, or fasteners. This is common in assembly processes where parts need to be securely connected. Visual Inspection: Punched sections can allow for visual inspection of internal components or readings on devices. This is often seen in control panels and equipment enclosures. Aesthetic Design: Punched patterns or decorative shapes can be used to enhance the visual appeal of products or structures. Filtering and Screening: Punched sections can act as filters or screens to allow airflow while preventing the entry of dust, debris, or unwanted particles. Light and Sound Control: Punched sections can be strategically placed to control the passage of light and sound, offering privacy or specific lighting effects. Materials commonly used for punched sections include metals like steel, aluminum, and stainless steel. The pattern, size, and shape of the punched sections can be customized to meet specific functional and aesthetic requirements. In the context of industrial processes, punched sections are often integrated into various components and structures. They play a role in enhancing functionality, performance, and the overall design of products and systems.
₹577   ₹785
You save ₹208!
26.47% OFF
A Bch TCE Series Punched Section, Depth-400 mm, TCE-PSD-400 refers to a part of a material, such as a metal sheet or panel, that has been perforated or punched with holes, slots, or other shapes. Punched sections are commonly used in various industries, including manufacturing, construction, electronics, and automotive, for a variety of purposes. The process of creating punched sections involves using specialized machinery, such as a punch press or CNC machine, to cut holes or shapes into the material. This can serve several purposes: Ventilation and Airflow: Punched sections can be used to promote ventilation and airflow in enclosed spaces, such as enclosures, cabinets, or panels. This is particularly important in applications where temperature regulation or heat dissipation is necessary. Cable Management: Punched sections can provide pathways for cables and wires to pass through, helping with cable management and organization. These sections can reduce clutter and prevent tangling. Mounting and Assembly: Punched holes can be used for attaching components, mounting hardware, or fasteners. This is common in assembly processes where parts need to be securely connected. Visual Inspection: Punched sections can allow for visual inspection of internal components or readings on devices. This is often seen in control panels and equipment enclosures. Aesthetic Design: Punched patterns or decorative shapes can be used to enhance the visual appeal of products or structures. Filtering and Screening: Punched sections can act as filters or screens to allow airflow while preventing the entry of dust, debris, or unwanted particles. Light and Sound Control: Punched sections can be strategically placed to control the passage of light and sound, offering privacy or specific lighting effects. Materials commonly used for punched sections include metals like steel, aluminum, and stainless steel. The pattern, size, and shape of the punched sections can be customized to meet specific functional and aesthetic requirements. In the context of industrial processes, punched sections are often integrated into various components and structures. They play a role in enhancing functionality, performance, and the overall design of products and systems.
₹483   ₹655
You save ₹172!
26.25% OFF
A Bch TCE Series Cable Clamp Rail, Width-1200 mm, TCE-LAMP-RAIL-1200  is a component used in various industries, especially in electronics, industrial automation, and telecommunications. Its primary purpose is to manage and organise cables within a given space, such as a control panel, enclosure, rack, or wiring duct. Key features and functions of a cable clamp rail include Cable Management: Cable clamp rails are designed to hold and secure cables, wires, and conduits neatly and organised. They prevent lines from tangling, disorganising, or interfering with other components. Accessibility: By arranging cables along a cable clamp rail, technicians and engineers can easily access and identify specific lines for maintenance, repairs, or modifications. Reduced Interference: Neatly routed cables prevent signal interference, noise, and electromagnetic interference (EMI) that can occur when lines are not adequately separated. Safety: Proper cable management reduces the risk of accidents caused by tripping over loose or tangled cables. It also prevents damage to cables due to improper bending or stretching. Airflow and Cooling: Well-organized lines improve airflow within enclosures or racks, promoting efficient cooling and avoiding equipment overheating. Professional Appearance: Cable clamp rails contribute to a clean and professional appearance of installations, such as control panels or racks. Flexibility: Cable clamp rails often have multiple attachment points for clamps or cable ties, allowing cable routing and adjustments to be flexible. Maintenance: Proper cable organisation simplifies troubleshooting and maintenance tasks by providing clear visibility of cable connections and routes. Cable clamp rails come in various forms, including metal or plastic strips with built-in mounting holes or clips. They can be attached to walls, back panels, enclosures, racks, or other surfaces using screws, adhesives, or other fasteners. Depending on the design, they may support different cable management accessories, such as cable ties, clips, or clamps. Cable clamp rails are an effective way to create a structured and efficient cable management solution when designing or organising a system involving cables. Choosing the appropriate type and size of cable clamp rail is essential based on the installation's specific requirements and the number of lines to be managed.
₹400   ₹537
You save ₹137!
25.5% OFF
A Bch TCE Series Cable Clamp Rail, Width-1000 mm, TCE-LAMP-RAIL-1000  is a component used in various industries, especially in electronics, industrial automation, and telecommunications. Its primary purpose is to manage and organise cables within a given space, such as a control panel, enclosure, rack, or wiring duct. Key features and functions of a cable clamp rail include Cable Management: Cable clamp rails are designed to hold and secure cables, wires, and conduits neatly and organised. They prevent lines from tangling, disorganising, or interfering with other components. Accessibility: By arranging cables along a cable clamp rail, technicians and engineers can easily access and identify specific lines for maintenance, repairs, or modifications. Reduced Interference: Neatly routed cables prevent signal interference, noise, and electromagnetic interference (EMI) that can occur when lines are not adequately separated. Safety: Proper cable management reduces the risk of accidents caused by tripping over loose or tangled cables. It also prevents damage to cables due to improper bending or stretching. Airflow and Cooling: Well-organized lines improve airflow within enclosures or racks, promoting efficient cooling and avoiding equipment overheating. Professional Appearance: Cable clamp rails contribute to a clean and professional appearance of installations, such as control panels or racks. Flexibility: Cable clamp rails often have multiple attachment points for clamps or cable ties, allowing cable routing and adjustments to be flexible. Maintenance: Proper cable organisation simplifies troubleshooting and maintenance tasks by providing clear visibility of cable connections and routes. Cable clamp rails come in various forms, including metal or plastic strips with built-in mounting holes or clips. They can be attached to walls, back panels, enclosures, racks, or other surfaces using screws, adhesives, or other fasteners. Depending on the design, they may support different cable management accessories, such as cable ties, clips, or clamps. Cable clamp rails are an effective way to create a structured and efficient cable management solution when designing or organising a system involving cables. Choosing the appropriate type and size of cable clamp rail is essential based on the installation's specific requirements and the number of lines to be managed.
₹317   ₹437
You save ₹120!
27.39% OFF
A Bch TCE Series Cable Clamp Rail, Width-800 mm, TCE-LAMP-RAIL-800  is a component used in various industries, especially in electronics, industrial automation, and telecommunications. Its primary purpose is to manage and organise cables within a given space, such as a control panel, enclosure, rack, or wiring duct. Key features and functions of a cable clamp rail include Cable Management: Cable clamp rails are designed to hold and secure cables, wires, and conduits neatly and organised. They prevent lines from tangling, disorganising, or interfering with other components. Accessibility: By arranging cables along a cable clamp rail, technicians and engineers can easily access and identify specific lines for maintenance, repairs, or modifications. Reduced Interference: Neatly routed cables prevent signal interference, noise, and electromagnetic interference (EMI) that can occur when lines are not adequately separated. Safety: Proper cable management reduces the risk of accidents caused by tripping over loose or tangled cables. It also prevents damage to cables due to improper bending or stretching. Airflow and Cooling: Well-organized lines improve airflow within enclosures or racks, promoting efficient cooling and avoiding equipment overheating. Professional Appearance: Cable clamp rails contribute to a clean and professional appearance of installations, such as control panels or racks. Flexibility: Cable clamp rails often have multiple attachment points for clamps or cable ties, allowing cable routing and adjustments to be flexible. Maintenance: Proper cable organisation simplifies troubleshooting and maintenance tasks by providing clear visibility of cable connections and routes. Cable clamp rails come in various forms, including metal or plastic strips with built-in mounting holes or clips. They can be attached to walls, back panels, enclosures, racks, or other surfaces using screws, adhesives, or other fasteners. Depending on the design, they may support different cable management accessories, such as cable ties, clips, or clamps. Cable clamp rails are an effective way to create a structured and efficient cable management solution when designing or organising a system involving cables. Choosing the appropriate type and size of cable clamp rail is essential based on the installation's specific requirements and the number of lines to be managed.
₹235   ₹319
You save ₹84!
26.24% OFF
A Bch TCE Series Cable Clamp Rail, Width-600 mm, TCE-LAMP-RAIL-600  is a component used in various industries, especially in electronics, industrial automation, and telecommunications. Its primary purpose is to manage and organise cables within a given space, such as a control panel, enclosure, rack, or wiring duct. Key features and functions of a cable clamp rail include Cable Management: Cable clamp rails are designed to hold and secure cables, wires, and conduits neatly and organised. They prevent lines from tangling, disorganising, or interfering with other components. Accessibility: By arranging cables along a cable clamp rail, technicians and engineers can easily access and identify specific lines for maintenance, repairs, or modifications. Reduced Interference: Neatly routed cables prevent signal interference, noise, and electromagnetic interference (EMI) that can occur when lines are not adequately separated. Safety: Proper cable management reduces the risk of accidents caused by tripping over loose or tangled cables. It also prevents damage to cables due to improper bending or stretching. Airflow and Cooling: Well-organized lines improve airflow within enclosures or racks, promoting efficient cooling and avoiding equipment overheating. Professional Appearance: Cable clamp rails contribute to a clean and professional appearance of installations, such as control panels or racks. Flexibility: Cable clamp rails often have multiple attachment points for clamps or cable ties, allowing cable routing and adjustments to be flexible. Maintenance: Proper cable organisation simplifies troubleshooting and maintenance tasks by providing clear visibility of cable connections and routes. Cable clamp rails come in various forms, including metal or plastic strips with built-in mounting holes or clips. They can be attached to walls, back panels, enclosures, racks, or other surfaces using screws, adhesives, or other fasteners. Depending on the design, they may support different cable management accessories, such as cable ties, clips, or clamps. Cable clamp rails are an effective way to create a structured and efficient cable management solution when designing or organising a system involving cables. Choosing the appropriate type and size of cable clamp rail is essential based on the installation's specific requirements and the number of lines to be managed.
₹1,297   ₹1,723
You save ₹426!
24.72% OFF
A Bch TCE Series Wiring Plan Pocket, Width-800 mm TCE-TPKT-800 attached to an electrical control panel, enclosure, or equipment. This pocket holds and displays necessary documentation related to the wiring and components within the forum. The documentation could include wiring diagrams, schematics, component lists, operating instructions, and other relevant information. The purpose of a wiring plan pocket is to keep essential documentation easily accessible to technicians, engineers, or maintenance personnel who may need to work on or troubleshoot the equipment. Having the documentation readily available in a designated pocket helps streamline maintenance and repair tasks, reduces downtime, and ensures that accurate information is available when needed. Key features and benefits of a wiring plan pocket include Easy Access: Placing the documentation in a bag on or near the control panel provides quick access for reference during maintenance, troubleshooting, or repairs. Organisation: Having a designated place for documentation helps organise the control panel area and prevents essential papers from getting lost or misplaced. Protection: The pocket provides a protective cover for the documentation, shielding it from environmental factors such as dust, moisture, and physical damage. Clear Communication: Technicians and engineers can easily see the wiring diagrams and other information without needing to search for external documentation. Standardisation: Incorporating a wiring plan pocket as part of the control panel design can be part of a standardised approach to documentation and maintenance practices. Training and Familiarity: New technicians or personnel unfamiliar with the system can quickly access relevant information to understand the equipment and its wiring configuration better. Wiring plan pockets can be made from transparent materials, making the documentation visible while still providing protection. They might feature adhesive backing, Velcro attachments, or other methods for secure attachment to the control panel or enclosure. Integrating a wiring plan pocket as part of the control panel design can contribute to the overall efficiency and effectiveness of maintenance and troubleshooting activities. It's a simple yet valuable addition to ensure critical information is always available for those working with the equipment.
₹966   ₹1,328
You save ₹362!
27.23% OFF
A Bch TCE Series Wiring Plan Pocket, Width-800 mm TCE-TPKT-600 attached to an electrical control panel, enclosure, or equipment. This pocket holds and displays necessary documentation related to the wiring and components within the forum. The documentation could include wiring diagrams, schematics, component lists, operating instructions, and other relevant information. The purpose of a wiring plan pocket is to keep essential documentation easily accessible to technicians, engineers, or maintenance personnel who may need to work on or troubleshoot the equipment. Having the documentation readily available in a designated pocket helps streamline maintenance and repair tasks, reduces downtime, and ensures that accurate information is available when needed. Key features and benefits of a wiring plan pocket include Easy Access: Placing the documentation in a bag on or near the control panel provides quick access for reference during maintenance, troubleshooting, or repairs. Organisation: Having a designated place for documentation helps organise the control panel area and prevents essential papers from getting lost or misplaced. Protection: The pocket provides a protective cover for the documentation, shielding it from environmental factors such as dust, moisture, and physical damage. Clear Communication: Technicians and engineers can easily see the wiring diagrams and other information without needing to search for external documentation. Standardisation: Incorporating a wiring plan pocket as part of the control panel design can be part of a standardised approach to documentation and maintenance practices. Training and Familiarity: New technicians or personnel unfamiliar with the system can quickly access relevant information to understand the equipment and its wiring configuration better. Wiring plan pockets can be made from transparent materials, making the documentation visible while still providing protection. They might feature adhesive backing, Velcro attachments, or other methods for secure attachment to the control panel or enclosure. Integrating a wiring plan pocket as part of the control panel design can contribute to the overall efficiency and effectiveness of maintenance and troubleshooting activities. It's a simple yet valuable addition to ensure critical information is always available for those working with the equipment.
₹813   ₹1,109
You save ₹296!
26.7% OFF
A Bch TCE Series Wiring Plan Pocket, Width-500 mm TCE-TPKT-500 attached to an electrical control panel, enclosure, or equipment. This pocket holds and displays necessary documentation related to the wiring and components within the forum. The documentation could include wiring diagrams, schematics, component lists, operating instructions, and other relevant information. The purpose of a wiring plan pocket is to keep essential documentation easily accessible to technicians, engineers, or maintenance personnel who may need to work on or troubleshoot the equipment. Having the documentation readily available in a designated pocket helps streamline maintenance and repair tasks, reduces downtime, and ensures that accurate information is available when needed. Key features and benefits of a wiring plan pocket include Easy Access: Placing the documentation in a bag on or near the control panel provides quick access for reference during maintenance, troubleshooting, or repairs. Organisation: Having a designated place for documentation helps organise the control panel area and prevents essential papers from getting lost or misplaced. Protection: The pocket provides a protective cover for the documentation, shielding it from environmental factors such as dust, moisture, and physical damage. Clear Communication: Technicians and engineers can easily see the wiring diagrams and other information without needing to search for external documentation. Standardisation: Incorporating a wiring plan pocket as part of the control panel design can be part of a standardised approach to documentation and maintenance practices. Training and Familiarity: New technicians or personnel unfamiliar with the system can quickly access relevant information to understand the equipment and its wiring configuration better. Wiring plan pockets can be made from transparent materials, making the documentation visible while still providing protection. They might feature adhesive backing, Velcro attachments, or other methods for secure attachment to the control panel or enclosure. Integrating a wiring plan pocket as part of the control panel design can contribute to the overall efficiency and effectiveness of maintenance and troubleshooting activities. It's a simple yet valuable addition to ensure critical information is always available for those working with the equipment.
₹2,005   ₹2,744
You save ₹739!
26.92% OFF
In Bch TCE Series Mounting Plate Filler, Height-2200 mm, TCE-FP-2200 refers to a component used to cover or fill empty spaces on a mounting plate or back panel that is part of an enclosure or control panel. These fillers serve several purposes in designing and installing control systems: Aesthetics: Mounting plate fillers provide the control panel with a neat and professional appearance. They cover any gaps or unused spaces, creating a cleaner overall look. Dust and Debris Protection: By covering empty areas, fillers help prevent dust, debris, and contaminants from entering the control panel and potentially affecting sensitive components or connections. Safety: Fillers can enhance the safety of the control panel by preventing accidental contact with live members or wires located in unused spaces. Cooling and Airflow Management: In some cases, fillers can be used strategically to guide airflow within the control panel, aiding in temperature regulation and preventing hotspots. Flexibility in Panel Layout: A control panel is sometimes designed with extra spaces to allow for future expansion or additional components. Fillers can be used to cover these spaces until they are needed temporarily. Cable Management: Fillers can be positioned to help manage cables and prevent them from tangling or interfering with components. Mounting plate fillers can come in various sizes, materials, and designs to suit control panel layouts and enclosure types. They are typically made from durable materials and are compatible with the environment in which the control panel will be installed. When designing a control panel or enclosure, it's essential to consider the need for mounting plate fillers and other accessories to ensure a well-organized and efficient setup. These components contribute to the control system's functionality, safety, and appearance.
₹1,887   ₹2,502
You save ₹615!
24.57% OFF
In Bch TCE Series Mounting Plate Filler, Height-2000 mm, TCE-FP-2000 refers to a component used to cover or fill empty spaces on a mounting plate or back panel that is part of an enclosure or control panel. These fillers serve several purposes in designing and installing control systems: Aesthetics: Mounting plate fillers provide the control panel with a neat and professional appearance. They cover any gaps or unused spaces, creating a cleaner overall look. Dust and Debris Protection: By covering empty areas, fillers help prevent dust, debris, and contaminants from entering the control panel and potentially affecting sensitive components or connections. Safety: Fillers can enhance the safety of the control panel by preventing accidental contact with live members or wires located in unused spaces. Cooling and Airflow Management: In some cases, fillers can be used strategically to guide airflow within the control panel, aiding in temperature regulation and preventing hotspots. Flexibility in Panel Layout: A control panel is sometimes designed with extra spaces to allow for future expansion or additional components. Fillers can be used to cover these spaces until they are needed temporarily. Cable Management: Fillers can be positioned to help manage cables and prevent them from tangling or interfering with components. Mounting plate fillers can come in various sizes, materials, and designs to suit control panel layouts and enclosure types. They are typically made from durable materials and are compatible with the environment in which the control panel will be installed. When designing a control panel or enclosure, it's essential to consider the need for mounting plate fillers and other accessories to ensure a well-organized and efficient setup. These components contribute to the control system's functionality, safety, and appearance.
₹1,651   ₹2,272
You save ₹621!
27.32% OFF
In Bch TCE Series Mounting Plate Filler, Height-1800 mm, TCE-FP-1800 refers to a component used to cover or fill empty spaces on a mounting plate or back panel that is part of an enclosure or control panel. These fillers serve several purposes in designing and installing control systems: Aesthetics: Mounting plate fillers provide the control panel with a neat and professional appearance. They cover any gaps or unused spaces, creating a cleaner overall look. Dust and Debris Protection: By covering empty areas, fillers help prevent dust, debris, and contaminants from entering the control panel and potentially affecting sensitive components or connections. Safety: Fillers can enhance the safety of the control panel by preventing accidental contact with live members or wires located in unused spaces. Cooling and Airflow Management: In some cases, fillers can be used strategically to guide airflow within the control panel, aiding in temperature regulation and preventing hotspots. Flexibility in Panel Layout: A control panel is sometimes designed with extra spaces to allow for future expansion or additional components. Fillers can be used to cover these spaces until they are needed temporarily. Cable Management: Fillers can be positioned to help manage cables and prevent them from tangling or interfering with components. Mounting plate fillers can come in various sizes, materials, and designs to suit control panel layouts and enclosure types. They are typically made from durable materials and are compatible with the environment in which the control panel will be installed. When designing a control panel or enclosure, it's essential to consider the need for mounting plate fillers and other accessories to ensure a well-organized and efficient setup. These components contribute to the control system's functionality, safety, and appearance.
Pack of 2 piece
₹1,143   ₹1,569
You save ₹426!
27.17% OFF
Bch TCE Series Combination Angle, TCE-14281 used in industrial automation applications. These accessories are designed to improve controls' performance, installation, safety, and overall effectiveness in various industrial settings. Here are some common types of industrial automation switch accessories: Enclosures and Housings: Switch enclosures protect switches in rugged or harsh environments. They shield switches from dust, moisture, chemicals, and physical impact, ensuring reliability and longevity. Mounting Kits: Mounting kits include brackets, clips, or rails that facilitate the installation of switches onto control panels, enclosures, or machinery. They ensure secure attachment and proper positioning. Pushbutton Caps and Indicators: These accessories include caps for pushbuttons and indicators, allowing for customising switch appearance and functionality. They might consist of illuminated indicators or tactile feedback elements. Legend Plates and Labels: Legend plates and labels indicate the function or status of switches. They are often placed above or around the buttons and can be customised to display text or symbols. Cable Glands and Cord Grips: These accessories provide strain relief and secure cable entry for wiring connected to switches. They prevent cables from being pulled or stressed, enhancing the longevity of the connections. Emergency Stop Accessories: For emergency stop switches, accessories might include safety guards, covers, and lockouts that prevent accidental activation and ensure proper emergency shutdown. Selector Switch and Key Switch Accessories: Selector and critical switches can include additional key sets, key lockouts, and protective covers to control access and enhance safety. Contact Blocks: Additional contact blocks can be added to switches to increase the number of available contacts, allowing for more complex control configurations. Sealing Boots and Gaskets: Sealing boots and gaskets provide additional protection against environmental factors for switches in challenging conditions. Wireless Modules: Some modern industrial switches can be equipped with wireless communication modules, allowing them to be monitored and controlled remotely. Connector Kits: Connector kits provide the necessary connectors, terminals, and components for wiring switches into the control system. LED Modules and Beacons: LED modules and beacon accessories can be added to switches to provide visual indications of switch status or alerts. These are just a few examples of the wide range of accessories available for industrial automation switches. The specific accessories you might need depending on the type of switches you're using, the application requirements, and the environment in which they will be installed. When selecting switch accessories, it's essential to consider factors such as compatibility, durability, safety, and the specific needs of your automation system.
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This data was last updated on 24/09/2026