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Description
31312-XL FAGTechnische Basisdaten Hersteller: FAG Synonym: 0167112110000 ueres Breitenma: 33,500 mm Gewicht: 1940 Gramm Grenzdrehzahl: 6. 600 1 min Herstellungsland: sterreich Innendurchmesser: 60 mm Zolltarifnummer: 8482 2000 Erweiterte technische Daten A ueres Breitenmae: mm 130,00 ueres Breitenmae: mm 33,50 Einzelgewicht in (kg): 1. 94 Innenmae: mm 60,00 Abstand Druckkegelspitze: 41 mm Betriebstemperatur max.: 120 C Betriebstemperatur min.: 30 C C 0r 169. 000
Technische Basisdaten
| Hersteller: FAG |
| Synonym: 0167112110000 |
| Äußeres Breitenmaß: 33,500 mm |
| Gewicht: 1940 Gramm |
| Grenzdrehzahl: 6.600 1/min |
| Herstellungsland: Österreich |
| Innendurchmesser: 60 mm |
| Zolltarifnummer: 8482 2000 |
Erweiterte technische Daten
| A |
| Äußeres Breitenmaße: mm 130,00 |
| Äußeres Breitenmaße: mm 33,50 |
| Einzelgewicht in (kg): 1.94 |
| Innenmaße: mm 60,00 |
| Abstand Druckkegelspitze: 41 mm |
| Betriebstemperatur max.: 120 °C |
| Betriebstemperatur min.: -30 °C |
| C 0r 169.000 N Statische Tragzahl, radial |
| C a min 5 mm Minimaler axialer Freiraum |
| C b min 11,5 mm Minimaler axialer Freiraum |
| C r 173.000 N Dynamische Tragzahl, radial |
| C ur 26.000 N Ermüdungsgrenzbelastung, radial |
| Dynamische Tragzahl, radial: 173.000 N |
| Dynamischer Axiallastfaktor: 0,73 |
| Ermüdungsgrenzbelastung, radial: 26.000 N |
| Grenzwert für Fa/Fr für die Anwendbarkeit der versch. Werte der Faktoren X und Y: 0,83 |
| Maximaler Durchmesser der Wellenschulter: 73 mm |
| Maximaler Hohlkehlradius an der Welle: 3 mm |
| Minimaler Durchmesser der Wellenschulter: 72 mm |
| Minimaler axialer Freiraum: 11,5 mm |
| Minimaler axialer Freiraum: 5 mm |
| Statische Tragzahl, radial: 169.000 N |
| Statischer Axiallastfaktor: 0,4 |
| T max 120 °C Betriebstemperatur max. |
| T min -30 °C Betriebstemperatur min. |
| T7FB060 Vergleichsbezeichnung nach ISO 10317 und ISO 355 |
| Thermische Bezugsdrehzahl: 3.800 1/min |
| Vergleichsbezeichnung nach ISO 10317 und ISO 355: T7FB060 |
| Y 0 0,4 Statischer Axiallastfaktor |
| Y 0,73 Dynamischer Axiallastfaktor |
| a 41 mm Abstand Druckkegelspitze |
| d =a max 73 mm Maximaler Durchmesser der Wellenschulter |
| d =b min 72 mm Minimaler Durchmesser der Wellenschulter |
| e 0,83 Grenzwert für Fa/Fr für die Anwendbarkeit der versch. Werte der Faktoren X und Y |
| n G 6.600 1/min Grenzdrehzahl |
| n ϑr 3.800 1/min Thermische Bezugsdrehzahl |
| r a max 3 mm Maximaler Hohlkehlradius an der Welle |
| ≈m 1,937 kg Einzelgewicht |
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4.5 ★★★★★
Based on 1220 reviews
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Product Reviews
★★★★★ 5
Look great
These are absolutely fantastic inline fuses for your amplifier or battery hookup. I got the two pack of 200 because I am running a 4,000 watt amp that requires two separate positives as well as two separate negatives. They are the perfect size and easy to change the fuse. The top comes off easily. It comes with the tools you need to put the wires in or take them off. All in all, I feel like I got a fantastic value with these and I would definitely buy these again.
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Reviewed in the United States on January 8, 2026
★★★★★ 5
Perfect product for what I needed
This was exactly what I needed as I was doing an upgrade from four gauge to 0/1 gauge wire and adding a second battery so I needed two fuses and this worked perfect
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Reviewed in the United States on January 13, 2026
★★★★★ 5
Real durable well worth the money
Great purchase not cheap at all well made real heavy and durable
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Reviewed in the United States on January 2, 2026
★★★★★ 4
0 gauge fuse holder
Great product. Recieved fast.
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Reviewed in the United States on April 25, 2026
★★★★★ 5
Have these connected to OFC 0 gauge wire running nearly 10K watts they handle it perfect!
It’s been months since I bought these and I run one coming off my main battery and then another on my auxiliary battery. I’ve got a huge alternator and running nearly 10K on my set up before I even started to think about what Speakers size or anything like that I made sure that the power and wiring is gonna be top notch. I see almost no voltage drops have not had a problem with these whatsoever.
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Reviewed in the United States on March 8, 2026