ABB NFZ Contactor Relay, 690 V Coil, 8-Pole, 6 A, 4NO/4NC
- RS Stock No.:
- 237-4870
- Mfr. Part No.:
- 1SBH136001R2344
- Brand:
- ABB
Subtotal (1 unit)*
£114.90
(exc. VAT)
£137.88
(inc. VAT)
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- Shipping from 10 November 2025
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Units | Per unit |
---|---|
1 + | £114.90 |
*price indicative
- RS Stock No.:
- 237-4870
- Mfr. Part No.:
- 1SBH136001R2344
- Brand:
- ABB
Specifications
Technical Reference
Legislation and Compliance
Product Details
Find similar products by selecting one or more attributes.
Select all | Attribute | Value |
---|---|---|
Brand | ABB | |
Coil Voltage | 690 V | |
Number of Poles | 8 | |
Contact Current Rating | 6 A | |
Series | NFZ | |
Normal State Configuration | 4NO/4NC | |
Auxiliary Contact Configuration | 4NO + 4NC | |
Number Of Auxiliary Contacts | 8 | |
Terminal Type | Screw | |
Length | 110.5mm | |
Width | 45mm | |
Depth | 110.5mm | |
Mounting Style | DIN Rail | |
Minimum Operating Temperature | -40°C | |
Control Voltage | 250 V dc | |
Pole and Throw Configuration | 8P | |
Maximum Operating Temperature | +70°C | |
Select all | ||
---|---|---|
Brand ABB | ||
Coil Voltage 690 V | ||
Number of Poles 8 | ||
Contact Current Rating 6 A | ||
Series NFZ | ||
Normal State Configuration 4NO/4NC | ||
Auxiliary Contact Configuration 4NO + 4NC | ||
Number Of Auxiliary Contacts 8 | ||
Terminal Type Screw | ||
Length 110.5mm | ||
Width 45mm | ||
Depth 110.5mm | ||
Mounting Style DIN Rail | ||
Minimum Operating Temperature -40°C | ||
Control Voltage 250 V dc | ||
Pole and Throw Configuration 8P | ||
Maximum Operating Temperature +70°C | ||
- COO (Country of Origin):
- FR
ABB NFZ Series Contactor Relay, 250V Coil Voltage, 6A Contact Current Rating - 1SBH136001R2344
This contactor relay is designed for efficient switching of auxiliary and control circuits. It features a durable construction with dimensions of 110.5mm length, 45mm width, and 110.5mm depth, providing reliable performance in various industrial applications. This model operates with a coil voltage of 690V and is equipped with 8 poles, including a combination of normally open and normally closed contacts for versatile operation.
Features & Benefits
• Utilises an electronic coil interface for wide control voltage compatibility
• Directly controlled by PLC outputs of 24V DC with minimal energy consumption
• Built-in surge protection eliminates the need for additional suppressors
• High temperature resilience with a maximum operating temperature of +70°C
• Mechanically linked auxiliary contacts ensure compliance with IEC standards
• Designed for robust performance in demanding environments
• Directly controlled by PLC outputs of 24V DC with minimal energy consumption
• Built-in surge protection eliminates the need for additional suppressors
• High temperature resilience with a maximum operating temperature of +70°C
• Mechanically linked auxiliary contacts ensure compliance with IEC standards
• Designed for robust performance in demanding environments
Applications
• Used for switching control circuits in industrial automation
• Ideal for requiring reliable high voltage control
• Suitable for electronic and electrical system integrations
• Employed with DIN rail mounting systems for compact assemblies
• Ideal for requiring reliable high voltage control
• Suitable for electronic and electrical system integrations
• Employed with DIN rail mounting systems for compact assemblies
What operational advantages does this relay offer in terms of voltage variations?
This relay can manage significant variations in control voltage, allowing it to operate effectively across different regions with varying electrical standards. Its design ensures that a single coil can accommodate various control voltages without requiring replacements.
How does the design influence its compatibility with automation systems?
The compact size and DIN rail mounting capability facilitate easy integration into existing automation setups, ensuring it occupies minimal space while maintaining accessibility for adjustments and maintenance.
What maintenance considerations should be kept in mind for optimal performance?
Regular inspections should focus on the integrity of the terminal connections and the functionality of the mechanical linkages in auxiliary contacts to ensure consistent performance and adherence to safety standards. Regular testing under operational conditions is also advisable.