High Current Inductors for Servers/Datacenters – PG/PGL Series
Pulse Electronics', a YAGEO Company, high current inductors provide lower core loss using the latest high-frequency materials
 Pulse Electronics, a YAGEO Company expands its portfolio of high current, low DCR inductors used in single-phase PoL and multi-phase buck converters to power processors, memory modules, FPGAs, and ASICS in servers, datacenters, networking systems, and graphics cards. The four families provide lower core loss using high-frequency materials, reduced DCR, and higher current ratings in different footprints. These multi-phase buck topologies distribute the current among multiple parallel paths with staggered turn-off and turn-on. By operating each phase in a staggered fashion, the ripple currents in each phase tend to cancel at the output, and the overall ripple current seen at the load is much smaller than the ripple on each phase. This approach allows smaller inductances (typically on the order of 50 nH to 300 nH), allowing design engineers a trade-off between how quickly the converter responds to a change in the load current (transient response) versus the stability of the control loop. By adjusting the number of phases used in the converter, the user has the flexibility to optimize the circuit for their specific application.
Pulse Electronics, a YAGEO Company expands its portfolio of high current, low DCR inductors used in single-phase PoL and multi-phase buck converters to power processors, memory modules, FPGAs, and ASICS in servers, datacenters, networking systems, and graphics cards. The four families provide lower core loss using high-frequency materials, reduced DCR, and higher current ratings in different footprints. These multi-phase buck topologies distribute the current among multiple parallel paths with staggered turn-off and turn-on. By operating each phase in a staggered fashion, the ripple currents in each phase tend to cancel at the output, and the overall ripple current seen at the load is much smaller than the ripple on each phase. This approach allows smaller inductances (typically on the order of 50 nH to 300 nH), allowing design engineers a trade-off between how quickly the converter responds to a change in the load current (transient response) versus the stability of the control loop. By adjusting the number of phases used in the converter, the user has the flexibility to optimize the circuit for their specific application.
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High Current Inductors for Servers/Datacenters – PG/PGL Series
| Image | Manufacturer Part Number | Description | Available Quantity | Price | View Details | |
|---|---|---|---|---|---|---|
|  |  | PG2289.101HLT | INDUCTOR PWR BEAD 100NH 16A | 2708 - Immediate | $0.72 | View Details | 
|  |  | PG2292.700HLT | INDUCTOR PWR BEAD 70NH 60A | 1122 - Immediate | $0.72 | View Details | 
|  |  | PG2292.500HLT | INDUCTOR PWR BEAD 50NH 84A | 4795 - Immediate | $0.72 | View Details | 
|  |  | PGL6076.321AHLT | INDUCTOR PWR BEAD 320NH 37A | 0 - Immediate | $1.38 | View Details | 
|  |  | PGL6076.131AHLT | INDUCTOR PWR BEAD 130NH 95A | 0 - Immediate | $1.38 | View Details | 
|  |  | PGL6076.900AHLT | INDUCTOR PWR BEAD 90NH 137A | 0 - Immediate | $1.38 | View Details | 
|  |  | PGL6189.500HLT | INDUCTOR PWR BEAD 50NH 148A | 0 - Immediate | $1.01 | View Details | 
 
                 
                 
                 
 
 
 
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