*NH1C gG 40A/500V korr. Fuse link
- ETI Code:
- 004113216
- Fuse type:
- NH
- Size:
- NH1C
- Rated current:
- 40 A
- Time-Current Characteristic:
- gG
- Indicator:
- Combination fuse status indicator
- Rated AC voltage:
- 500 V
- Rated DC voltage:
- 250 V
- Breaking capacity AC:
- 120 kA
- Power dissipation:
- 4.1 W
- Operating joule integral (A2s):
- 14,500
- Prearcing joule integral (A2s):
- 2,900
- Standards:
- IEC 60269-1, IEC 60269-2
- Application:
- For cable protection
22 Logistics
Product
- EAN code for a single product
- 3838400033925
- Net weight of the product
- 225 g
- Net width
- 29.5 mm
- Net height
- 134.9 mm
- Net depth
- 61.75 mm
- Stock unit of measure
- pcs
Basic Packaging
- Basic packaging quantity
- 3 pcs
- EAN code for a basic packaging
- 3838895314233
- Basic packaging weight
- 1.95 kg
- Basic Packaging Dimensions Height
- 60 mm
- Basic Packaging Dimensions Width
- 90 mm
- Basic Packaging Dimensions Depth
- 135 mm
- Basic packaging volume
- 0.729 dm³
Transport Packaging
- Transport packaging quantity
- 45 pcs
- EAN code for a transport packaging
- 3838895314240
- Transport packaging weight
- 11 kg
- Transport Packaging Dimensions Height
- 250 mm
- Transport Packaging Dimensions Width
- 235 mm
- Transport Packaging Dimensions Depth
- 295 mm
- Transport packaging volume
- 17.331 dm³
- Pallet quantity
- 2,340 pcs
- Customs tariff
- 85361050
6 ETIM
- Rated switching capacity AC
- 120 kA
- Voltage type
- AC
- Rated voltage AC
- 500 V
- Type of fuse status indicator
- Combination fuse status indicator
- Rated current
- 40 A
- Utilization category
- gG (cable protection/equipment protection)
0 Software & drivers
26 Tags
Related News & Updates
Rated short-circuit breaking capacity
Rated short-circuit breaking capacity represents the highest value of short-circuit current that a circuit breaker or fuse is capable of interrupting. Each protective device is designed for a specific rated power and therefore for a specific rated (load) current. Short-circuit currents can permanently damage protective devices due to excessive heat and the energy released. In electrical power engineering, we use various types of electrical equipment (protective devices) with different technical specifications that also describe short-circuit capacity. Let us look at some examples.