Samsung Electro-Mechanics, CIH10T, 0603 (1608M) Multilayer Surface Mount Inductor with a Ceramic Core, 33 nH ±5%

RS Stock No.: 172-8741Brand: Samsung Electro-MechanicsManufacturers Part No.: CIH10T33NJNC
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Technical documents

Specifications

Inductance

33 nH

Maximum dc Current

500mA

Package/Case

0603 (1608M)

Length

1.6mm

Depth

0.8mm

Height

0.8mm

Dimensions

1.6 x 0.8 x 0.8mm

Tolerance

±5%

Maximum DC Resistance

550mΩ

Series

CIH10T

Core Material

Ceramic

Maximum Self Resonant Frequency

1.2GHz

Inductor Construction

Multilayer

Maximum Operating Temperature

+125°C

Minimum Operating Temperature

-55°C

Minimum Quality Factor

12

Country of Origin

Korea, Republic Of

Product details

Samsung 0603 CIH10T Series Multilayer High Frequency Inductors

Specific resistivity is very low
Good property of Q and high Superconducting radio frequency
Can be used at ranges above 100MHz
Applications include Mobile communication systems, noise suppression at high frequency and Impedance matching

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P.O.A.

Samsung Electro-Mechanics, CIH10T, 0603 (1608M) Multilayer Surface Mount Inductor with a Ceramic Core, 33 nH ±5%

P.O.A.

Samsung Electro-Mechanics, CIH10T, 0603 (1608M) Multilayer Surface Mount Inductor with a Ceramic Core, 33 nH ±5%
Stock information temporarily unavailable.

Technical documents

Specifications

Inductance

33 nH

Maximum dc Current

500mA

Package/Case

0603 (1608M)

Length

1.6mm

Depth

0.8mm

Height

0.8mm

Dimensions

1.6 x 0.8 x 0.8mm

Tolerance

±5%

Maximum DC Resistance

550mΩ

Series

CIH10T

Core Material

Ceramic

Maximum Self Resonant Frequency

1.2GHz

Inductor Construction

Multilayer

Maximum Operating Temperature

+125°C

Minimum Operating Temperature

-55°C

Minimum Quality Factor

12

Country of Origin

Korea, Republic Of

Product details

Samsung 0603 CIH10T Series Multilayer High Frequency Inductors

Specific resistivity is very low
Good property of Q and high Superconducting radio frequency
Can be used at ranges above 100MHz
Applications include Mobile communication systems, noise suppression at high frequency and Impedance matching