RS PRO, 27 Shielded Wire-wound SMD Inductor 220 μH ±20% Wire-Wound 1.16A Idc

RS noliktavas nr.: 741-9000Ražotājs: RS PRO
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Tehniskie dokumenti

Specifikācija

Brand

RS Pro

Inductance

220 μH

Maximum dc Current

1.16A

Package/Case

27

Length

12.5mm

Depth

12.5mm

Height

6mm

Dimensions

12.5 x 12.5 x 6mm

Shielded

Yes

Tolerance

±20%

Maximum DC Resistance

390mΩ

Inductor Construction

Wire-Wound

Maximum Operating Temperature

+125°C

Minimum Operating Temperature

-40°C

Produkta apraksts

RS Pro Magnetically Shielded Wire Wound Inductors 1uH - 1000uH

This is a range of high quality shielded power inductors from our trusted RS Pro brand. These wire wound surface mount inductors have high current up to 5.5 A and high inductance up to 1000 μH.

Noliktavas stāvoklis patreiz nav pieejams

Lūdzu pārbaudiet vēlreiz vēlāk

Noliktavas stāvoklis patreiz nav pieejams

€ 0,717

Katrs (Iepakojuma ir 5) (bez PVN)

€ 0,868

Katrs (Iepakojuma ir 5) (Ieskaitot PVN)

RS PRO, 27 Shielded Wire-wound SMD Inductor 220 μH ±20% Wire-Wound 1.16A Idc
Izvēlēties iepakojuma veidu

€ 0,717

Katrs (Iepakojuma ir 5) (bez PVN)

€ 0,868

Katrs (Iepakojuma ir 5) (Ieskaitot PVN)

RS PRO, 27 Shielded Wire-wound SMD Inductor 220 μH ±20% Wire-Wound 1.16A Idc
Noliktavas stāvoklis patreiz nav pieejams
Izvēlēties iepakojuma veidu

Pirkt iepakojumos

DaudzumsVienības cenaPer Maiss
5 - 45€ 0,717€ 3,58
50+€ 0,666€ 3,33

Tehniskie dokumenti

Specifikācija

Brand

RS Pro

Inductance

220 μH

Maximum dc Current

1.16A

Package/Case

27

Length

12.5mm

Depth

12.5mm

Height

6mm

Dimensions

12.5 x 12.5 x 6mm

Shielded

Yes

Tolerance

±20%

Maximum DC Resistance

390mΩ

Inductor Construction

Wire-Wound

Maximum Operating Temperature

+125°C

Minimum Operating Temperature

-40°C

Produkta apraksts

RS Pro Magnetically Shielded Wire Wound Inductors 1uH - 1000uH

This is a range of high quality shielded power inductors from our trusted RS Pro brand. These wire wound surface mount inductors have high current up to 5.5 A and high inductance up to 1000 μH.