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VSAB1040
Characteristic:

Magnetic shielded structure: excellent resistance to electro magnetic interference(EMI).

A composite structure, ultra low buzz noise.

Low loss, high efficiency, wide application frequency.

Lightweight design, save space, suitable for high density SMT.

Die-casting by low loss alloy powder,low impedance, small parasitic capacitance.

Operating temperature : -55℃ ~ +155℃(Including coil’s temperature rise).

PDF download Sample application
Size
Detailed parameters
Free samples Model Inductance
(μH)
Tolerance Irms(A) Isat(A) DCR
Typical
(mΩ)
Length
(mm)
Width
(mm)
Height
(mm)
Mouting Shield Core materials AEC Grade Inventory PDF
Apply VSAB1040-R47M 0.47 ±20% 26.00 20.00 1.65 10.85 10.00 3.80 SMD Y Alloy powder 0 N
Apply VSAB1040-R82M 0.82 ±20% 24.00 18.00 2.20 10.85 10.00 3.80 SMD Y Alloy powder 0 N
Apply VSAB1040-1R0M 1.00 ±20% 20.00 16.00 2.70 10.85 10.00 3.80 SMD Y Alloy powder 0 N
Apply VSAB1040-1R5M 1.50 ±20% 16.00 14.00 4.20 10.85 10.00 3.80 SMD Y Alloy powder 0 N
Apply VSAB1040-2R2M 2.20 ±20% 13.00 11.50 7.80 10.85 10.00 3.80 SMD Y Alloy powder 0 N
Apply VSAB1040-3R3M 3.30 ±20% 10.00 10.50 9.90 10.85 10.00 3.80 SMD Y Alloy powder 0 N
Apply VSAB1040-4R7M 4.70 ±20% 8.50 9.50 13.50 10.85 10.00 3.80 SMD Y Alloy powder 0 N
Apply VSAB1040-6R8M 6.80 ±20% 8.00 7.50 19.00 10.85 10.00 3.80 SMD Y Alloy powder 0 N
Apply VSAB1040-8R2M 8.20 ±20% 7.00 6.50 25.00 10.85 10.00 3.80 SMD Y Alloy powder 0 N
Apply VSAB1040-100M 10.00 ±20% 6.80 6.00 28.00 10.85 10.00 3.80 SMD Y Alloy powder 0 N
Apply VSAB1040-150M 15.00 ±20% 5.40 5.00 42.00 10.85 10.00 3.80 SMD Y Alloy powder 0 N
Apply VSAB1040-220M 22.00 ±20% 4.30 4.10 59.00 10.85 10.00 3.80 SMD Y Alloy powder 0 N
Apply VSAB1040-330M 33.00 ±20% 3.50 3.20 87.00 10.85 10.00 3.80 SMD Y Alloy powder 0 N
Apply VSAB1040-470M 47.00 ±20% 2.80 2.80 140.00 10.85 10.00 3.80 SMD Y Alloy powder 0 N
Apply VSAB1040-560M 56.00 ±20% 2.40 2.40 170.00 10.85 10.00 3.80 SMD Y Alloy powder 0 N
Apply VSAB1040-680M 68.00 ±20% 2.00 2.00 215.00 10.85 10.00 3.80 SMD Y Alloy powder 0 N