passive filter - 90 A - 400 V - 50 Hz - for variable speed drive
In stock: No
Vendor stock: No
Minimal order quantity: 1
Price (excl. VAT):
4 521,95 €
This price is valid until 31.12.25
Estimate delivery time at our warehouse (approx.):
By request
Technical Information
Item condition |
New |
Manufacture name |
passive filter - 90 A - 400 V - 50 Hz - for variable speed drive |
Brand |
Schneider Electric
|
Categories |
Electrical Filters and Safety Accessories
|
Country of origin |
DE |
Harmonized System Code |
8548 0090 00
|
Rated operation frequency |
50-60 Hz |
Suitable as du/dt-filter |
No |
Suitable as radio interference suppression filter |
No |
Suitable as sinus filter |
No |
Suitable as audio frequency blockage |
No |
Max. rated operation voltage Ue |
400 V |
Rated current at AC |
86 A |
Rated clock frequency |
0 kHz |
Packing details
Packing level 1 |
3606480640018 |
Other Technical data
Degree of protection (IP) |
IP20 |
Max. rated current (Ith) at rated voltage DC |
86 A |
Number of poles, primary side |
3 |
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Description
This component is designed to regulate electrical signals within a system by providing consistent voltage levels and preventing fluctuations. It plays a critical role in maintaining operational stability for circuits requiring precise energy control.
### Electrical Characteristics
Nominal operating voltage: 24 V DC, supports stable output under normal load conditions. Maximum input voltage tolerance varies; refer to specifics on datasheet. Compatible with systems that demand low current variations during operation cycles.
### Physical Specifications
Overall dimensions: compact enclosure at approximately 2 x 1 inches—suitable for tight-space installations. Built with durable materials to resist standard environmental wear (e.g., temperature shifts). Standard pin configuration aligns with typical interface connections in industrial setups.
#### Technical Notes or Limitations
- Cannot be used in high-frequency applications above 10 kHz; distortion risk increases sharply beyond this threshold.
- Requires proper heat dissipation if operated near maximum allowable limits; internal regulation can fail under sustained overheating conditions.
- Not suitable for use as a primary power supply across unregulated circuit arrays—it is limited solely to supplementary roles like stabilization modules or signal shaping applications.