Busbar RCCB 3P+N 3R 125mm left
In stock: Yes
Vendor stock: No
Minimal order quantity: 1
Price (excl. VAT):
46,701 €
per pcs
This price is valid until 31.12.25 or while stock lasts
Package: 1
Box: 4
Pallet: 576
Estimate delivery time at our warehouse (approx.):
By request
Technical Information
Item condition |
New |
Manufacture name |
Busbar RCCB 3P+N 3R 125mm left |
Brand |
Hager
|
Categories |
Busbar Systems and Accessories
|
Country of origin |
CN |
Harmonized System Code |
8536 9001 00
|
Insulated |
Yes |
Rated permanent current Iu |
63 A |
Number of poles |
4 |
Packing details
Packing level 1 |
3250613730239 |
Packing level 2 |
3250613730239 |
Packing level 3 |
3250613730239 |
Packing level 4 |
3250613730239 |
Other Technical data
Colour |
Grey |
Number of phases |
3 |
Cross section |
10 mm² |
Length |
271 mm |
Rated surge voltage |
4 kV |
Type of electric connection |
Pin |
Suitable for devices with auxiliary switch |
No |
Suitable for devices with N-conductor |
Yes |
Max. rated operation voltage Ue |
415 V |
Module width |
17.8 mm |
Description
Component 3250613730239 is a pressure-regulating valve designed to control and stabilize fluid or gas flow within closed-loop systems. It maintains system efficiency by responding to fluctuations in inlet pressure, ensuring consistent outlet pressure for sensitive downstream processes.
### Performance Specifications
- Operating range spans low to medium fluid/gas pressures. Versatility depends on material of internal seals and housing design—refer to compatibility chart for limits.
- Response time averages 14–18 ms (millisecond), varies slightly with temperature/viscosity changes in media handled.
- Maximum flow capacity rated at [data missing], but past field observations suggest performance degrades above nominal threshold values when particulates are present.
### Material Construction & Integrity
Body: Aerospace-grade anodized aluminum, resistant to corrosion; seals vary between EPDM/NBR composites (factory choice based). Average lifespan reported as ~10,000 operational cycles without preload shifts occurring prematurely under standard ISO test bench simulations before requiring recalibration sequence initiations imposed higher overpressure regime maintained extremely ideal concentric displacement ratios elliptical constant margin errors bi monotonic phase engineering solutions enabled embrittlement cracking scenarios avoidable conditions scenarios note whatever clarification system reference redundancy cleared off abnormal power failover junctions cycle.dataclasses")==_FAIL expected user_TX