Technical Document
Specifications
Brand
TDKInductance
2.2 μH
Maximum dc Current
8.4A
Package/Case
6530
Length
7.1mm
Depth
6.5mm
Height
3mm
Dimensions
7.1 x 6.5 x 3mm
Shielded
Yes
Tolerance
±20%
Maximum DC Resistance
19mΩ
Series
SPM
Core Material
Metallic Magnetic
Maximum Operating Temperature
+125°C
Minimum Operating Temperature
-40°C
Inductor Construction
Wire-Wound
Product details
SPM6530 Series Magnetically Shielded Wire Wound Inductors
SPM6530 Series magnetic shield type wound inductor for power circuits use a metallic magnetic material
SPM6530 series structure has an integrated moulded coil, so hum noise is lower than with core adhesive coils
They have a low-profile with maximum heights of 1.2mm and 3.0mm allowing for different usages
Possible to achieve large current, low Rdc, and compactness
Low inductance variance in high-temperature environments with good DC superimposition characteristics"
TDK Non Standard SMT Inductors (Chokes)
€ 4.46
€ 0.892 Each (In a Pack of 5) (ex VAT)
Standard
5
€ 4.46
€ 0.892 Each (In a Pack of 5) (ex VAT)
Standard
5
Stock information temporarily unavailable.
Please check again later.
quantity | Unit price | Per Pack |
---|---|---|
5 - 45 | € 0.892 | € 4.46 |
50 - 95 | € 0.669 | € 3.34 |
100 - 245 | € 0.58 | € 2.90 |
250 - 495 | € 0.535 | € 2.68 |
500+ | € 0.49 | € 2.45 |
Technical Document
Specifications
Brand
TDKInductance
2.2 μH
Maximum dc Current
8.4A
Package/Case
6530
Length
7.1mm
Depth
6.5mm
Height
3mm
Dimensions
7.1 x 6.5 x 3mm
Shielded
Yes
Tolerance
±20%
Maximum DC Resistance
19mΩ
Series
SPM
Core Material
Metallic Magnetic
Maximum Operating Temperature
+125°C
Minimum Operating Temperature
-40°C
Inductor Construction
Wire-Wound
Product details
SPM6530 Series Magnetically Shielded Wire Wound Inductors
SPM6530 Series magnetic shield type wound inductor for power circuits use a metallic magnetic material
SPM6530 series structure has an integrated moulded coil, so hum noise is lower than with core adhesive coils
They have a low-profile with maximum heights of 1.2mm and 3.0mm allowing for different usages
Possible to achieve large current, low Rdc, and compactness
Low inductance variance in high-temperature environments with good DC superimposition characteristics"