Bourns, CM45, 1812 (4532M) Wire-wound SMD Inductor with a Ferrite Core, 1 μH ±10% Wire-Wound 450mA Idc Q:50

Technical Document
Specifications
Brand
BournsInductance
1 μH
Maximum dc Current
450mA
Package/Case
1812 (4532M)
Length
4.5mm
Depth
3.2mm
Height
3.2mm
Dimensions
4.5 x 3.2 x 3.2mm
Tolerance
±10%
Maximum DC Resistance
500mΩ
Series
CM45
Core Material
Ferrite
Maximum Self Resonant Frequency
100MHz
Minimum Quality Factor
50
Inductor Construction
Wire-Wound
Maximum Operating Temperature
+100°C
Minimum Operating Temperature
-40°C
Product details
Bourns 1812 CM45 Series Wire Wound Inductors
Bourns Surface mount inductors have accurate dimensions for automatic surface mounting. These SMT inductors have high resistance to heat and humidity, also good resistance to mechanical shock and pressure. The inductors have a wide inductance range (1.0Nh to 1000Μh).
SMT 1812 Inductors (Chokes)
€ 2.01
€ 0.201 Each (In a Pack of 10) (Exc. VAT)
Standard
10
€ 2.01
€ 0.201 Each (In a Pack of 10) (Exc. VAT)
Stock information temporarily unavailable.
Standard
10
Stock information temporarily unavailable.
| Quantity | Unit price | Per Pack |
|---|---|---|
| 10 - 40 | € 0.201 | € 2.01 |
| 50 - 90 | € 0.17 | € 1.70 |
| 100 - 490 | € 0.151 | € 1.51 |
| 500 - 1990 | € 0.131 | € 1.31 |
| 2000+ | € 0.119 | € 1.19 |
Technical Document
Specifications
Brand
BournsInductance
1 μH
Maximum dc Current
450mA
Package/Case
1812 (4532M)
Length
4.5mm
Depth
3.2mm
Height
3.2mm
Dimensions
4.5 x 3.2 x 3.2mm
Tolerance
±10%
Maximum DC Resistance
500mΩ
Series
CM45
Core Material
Ferrite
Maximum Self Resonant Frequency
100MHz
Minimum Quality Factor
50
Inductor Construction
Wire-Wound
Maximum Operating Temperature
+100°C
Minimum Operating Temperature
-40°C
Product details
Bourns 1812 CM45 Series Wire Wound Inductors
Bourns Surface mount inductors have accurate dimensions for automatic surface mounting. These SMT inductors have high resistance to heat and humidity, also good resistance to mechanical shock and pressure. The inductors have a wide inductance range (1.0Nh to 1000Μh).

