Electrical agendo connectors

AOOD rotating electrical connectors (also called mercury slip rings) use a unique design principle unlike the sliding, brush contact slip rings, the connection is made through a pool of liquid metal molecularly bonded to the contact, which provides a low-resistance and stable connection. Per gyrationis fluidi maintains electrica nexu inter contactus sine aliqua gerunt. Just quia non gerunt contactus, potest providere superior perficientur quam electrica labi anulos in aliquo speciali applications, ut requirere ad millia amps princeps current translationem welding aut exigere maxime cursu.
Features
■ prope nulla electrica strepitu
■ ipsum humilis contactu resistentia (<1Mω)
■ Nemo sustentationem et altum reliability
■ una polus current can usque ad 7500a
■ speeds usque ad 3600rpm
■ per tulit type libitum
■ idoneam ad altum velocitatem vel low strepitu Applications
Typical applications
■ Welding machinis
■ Clendes machinis
■ textile machinis
■ iactabantur gages
■ sanitary linteum machinis
Exemplar | Conductor Poles | Current Amps | Voltage AC / DC V | Max. Freq. Mhz | Max. Rpm | Operating temp. Max / Min ℃ | Rotating torque (GM-cm) | Nulla resistitur |
A1M | I | 10 | CC | MMMDC | LX / -30 | 35 | ||
A1mt | I | 10 | CC | MMMDC | LX / -30 | 35 | ||
A1m2 | I | 20 | CC | MM | LX / -30 | 50 | ||
A1m5 | I | 50 | CC | MDCCC | LX / -30 | 70 | ||
A1hh | I | CCL | CC | MCC | LX / -30 | CCL | ||
A1h25s | I | CCL | CC | MCC | LX / -30 | CCL | ||
A1h25ps | I | CCL | CC | MCC | LX / -30 | CCL | ||
A1h35s | I | CCCL | CC | DCCC | LX / -30 | CCC | ||
A1h50ps | I | D | CC | CCC | LX / -30 | DCC | ||
A1h65s | I | DCL | CC | CC | LX / -30 | M | ||
A1h65ps | I | DCL | CC | CC | LX / -30 | M | ||
A1h90ps | I | CM | CC | CC | LX / -30 | MC | ||
A1h150ps | I | MD | CC | C | LX / -30 | MM | ||
A1h300ps | I | MMM MMM | CC | 60 | LX / -30 | MMM MMM | ||
A1h500ps | I | (V) | CC | 50 | LX / -30 | (IV) | ||
A1h750ps | I | (VII) D | CC | 50 | LX / -30 | (VI) | ||
A2s | 2 | 4 | CCL | CC | MM | LX / -30 | 75 | > 25mω |
A3s | 3 | 4 | CCL | CC | MDCCC | LX / -30 | C | > 25mω |
A3s, W | 3 | 4 | CCL | CC | MDCCC | LX / -30 | C | > 25mω |
A4s-W | 4 | 4 | CCL | CC | MCC | LX / -30 | CL | > 25mω |
A2h | 2 | 30 | CCL | CC | MDCCC | LX / -30 | CC | > 25mω |
A3m | 3 | 30/4 | CCL | CC | MDCCC | LX / -30 | CC | > 25mω |
A3m-w | 3 | 4 | CCL | CC | MDCCC | LX / -30 | CC | > 25mω |
A3h | 3 | 30 | CCL | CC | MCC | LX / -30 | CD | > 25mω |
A4h | 4 | 30/4 | CCL | CC | MCC | LX / -30 | CD | > 25mω |
A6h | 6 | 30/4 | CCL | C | CCC | LX / -30 | DCC | > 25mω |
A8h | 8 | 30/4 | CCL | C | CC | LX / -30 | M | > 25mω |
A1030 | 10 | 30/4 | CCL | C | C | LX / -30 | MD | > 25mω |
A1230 | 12 | 30/4 | CCL | C | 60 | LX / -30 | MM | > 25mω |
A1430 | 14 | 30/4 | CCL | C | 60 | LX / -30 | MM | > 25mω |
A2h6 | 2 | 60 | CCL | CC | DC | LX / -30 | CD | > 25mω |
21005W | 7 | 100/4 | CCL | C | C | LX / -30 | MD | > 25mω |
A2hv | 2 | 30 | D | C | CD | LX / -30 | CD | > 25mω |
A3hv | 3 | 30 | D | C | CCC | LX / -30 | DCC | > 25mω |
A4hv | 4 | 30 | D | C | CC | LX / -30 | M | > 25mω |
A5hv | 5 | 30 | D | C | C | LX / -30 | MD | > 25mω |
A6hv | 6 | 30 | D | C | 60 | LX / -30 | MM | > 25mω |
A7hv | 7 | 30 | D | C | 60 | LX / -30 | MM | > 25mω |