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SMD,10.67x10.16mm Arrays, Signal Transformers RoHS
Mfr. Part #
IHCL4040DZER4R7M5A
Package
SMD,10.67x10.16mm
Model Number
IHCL4040DZER4R7M5A
Product Overview
The IHCL-4040DZ-5A is a low-profile, high-current coupled inductor from Vishay Dale, designed for high-temperature applications up to 155 C. It features shielded construction, a frequency range up to 5.0 MHz, and offers the lowest DCR/H in its package size. This inductor handles high transient current spikes without saturation and provides ultra-low buzz noise due to its composite construction. With coupling greater than 90%, it is optimized for SEPIC converters. The product is AEC-Q200 qualified and patent pending.
Product Attributes
Brand: Vishay Dale
Certifications: AEC-Q200 qualified
Material categorization: Refer to www.vishay.com/doc?99912
Technical Specifications
Configuration
L0 Inductance (H)
Inductance Tolerance
DCR Nom. 25 C (m)
DCR Max. 25 C (m)
Heat Rating Current DC Typ. (A)
Saturation Current DC Typ. (A)
L1-2
4.7
20 % at 100 kHz, 0.25 V, 0 A
30.5
33
6.1
7.2
L3-4
4.7
20 % at 100 kHz, 0.25 V, 0 A
30.5
33
6.1
9.2
L1-4 (L2-3 shorted)
19
20 % at 100 kHz, 0.25 V, 0 A
61
65
4
3
L1-3 (L2-4 shorted)
0.6
20 % at 100 kHz, 0.25 V, 0 A
61
65
4
See note (3)
LCommon Mode (1-3 and 2-4 shorted)
4.7
20 % at 100 kHz, 0.25 V, 0 A
15.25
16.2
10
8
LDifferential Mode (1-4 and 2-3 shorted)
0.0
20 % at 100 kHz, 0.25 V, 0 A
15.25
16.2
10
See note (3)
Notes
All test data is referenced to 25 C ambient.
Operating temperature range: -55 C to +155 C.
The part temperature (ambient + temp. rise) should not exceed 155 C under worst-case operating conditions.
Rated operating voltage (across inductor) = 50 V.
For SEPIC operation, please limit VIN and VOUT to 25 V max.
Note (1): DC current (A) that will cause an approximate T of 40 C.
Note (2): DC current (A) that will cause L0 to drop approximately 20 %.
Note (3): In this configuration, current flowing in opposite directions through coils cancels and the 0.6 H inductance is very stable with varying current. Observe the heat rating current to avoid excessive temperature rise in this configuration.