Panasonic, ETQP3M, 0530 Wire-wound SMD Inductor with a Metal Composite Core, 10 μH ±20% 3.7A Idc
- RS Stock No.:
- 122-1731
- Mfr. Part No.:
- ETQP3M100KVN
- Brand:
- Panasonic
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- RS Stock No.:
- 122-1731
- Mfr. Part No.:
- ETQP3M100KVN
- Brand:
- Panasonic
Specifications
Technical Reference
Legislation and Compliance
Product Details
Find similar products by selecting one or more attributes.
Select all | Attribute | Value |
---|---|---|
Brand | Panasonic | |
Inductance | 10 μH | |
Maximum DC Current | 3.7A | |
Package/Case | 0530 | |
Length | 6.4mm | |
Depth | 6mm | |
Height | 3mm | |
Dimensions | 6.4 x 6 x 3mm | |
Tolerance | ±20% | |
Maximum DC Resistance | 67mΩ | |
Series | ETQP3M | |
Core Material | Metal Composite | |
Minimum Operating Temperature | -55°C | |
Maximum Operating Temperature | +155°C | |
Select all | ||
---|---|---|
Brand Panasonic | ||
Inductance 10 μH | ||
Maximum DC Current 3.7A | ||
Package/Case 0530 | ||
Length 6.4mm | ||
Depth 6mm | ||
Height 3mm | ||
Dimensions 6.4 x 6 x 3mm | ||
Tolerance ±20% | ||
Maximum DC Resistance 67mΩ | ||
Series ETQP3M | ||
Core Material Metal Composite | ||
Minimum Operating Temperature -55°C | ||
Maximum Operating Temperature +155°C | ||
- COO (Country of Origin):
- JP
Panasonic ETQP3M Series Surface Mount Inductor, 10μH Inductance, 3.7A Maximum DC Current - ETQP3M100KVN
This surface mount inductor is a high-quality component designed for use in various electronic applications. Featuring an inductance of 10 μH, it is well-suited for circuits requiring effective current regulation. The compact dimensions of 6.4 x 6 x 3mm ensure it integrates seamlessly into space-constrained designs while maintaining optimal performance across a range of operating conditions.
Features & Benefits
• Designed with a metal composite core for improved efficiency
• 3.7A maximum DC current capability supports high-power applications
• Shielded construction reduces electromagnetic interference for reliable performance
• Tolerance of ±20 % ensures flexibility in applications requiring variability
• Operates effectively between -55 °C and +155 °C for versatile environments
• Wire-wound configuration provides reliable stability over time
• 3.7A maximum DC current capability supports high-power applications
• Shielded construction reduces electromagnetic interference for reliable performance
• Tolerance of ±20 % ensures flexibility in applications requiring variability
• Operates effectively between -55 °C and +155 °C for versatile environments
• Wire-wound configuration provides reliable stability over time
Applications
• Used in automotive electronics adhering to AEC-Q200 standards
• Suitable for power management systems requiring compact inductors
• Employed in power supplies to ensure stable voltage levels
• Integrates well into telecommunications equipment for signal integrity
• Suitable for power management systems requiring compact inductors
• Employed in power supplies to ensure stable voltage levels
• Integrates well into telecommunications equipment for signal integrity
What makes this suitable for automotive applications?
Its compliance with AEC-Q200 standards guarantees reliability in automotive environments, making it ideal for demanding conditions.
How does the shielding affect performance in electronic circuits?
The shielded design minimises interference, ensuring that signal integrity is maintained, which is crucial for precise electronic functions.
What are the benefits of the metal composite core?
A metal composite core enhances energy efficiency and reduces core losses, allowing for better performance in high-frequency applications.
What is the significance of the ±20 % tolerance?
This tolerance provides flexibility in circuit design, accommodating variations in inductance without compromising overall circuit performance.
How does the temperature range impact usability?
Operating within a range of -55 °C to +155 °C ensures robustness and reliability, allowing it to function in various environmental conditions without failure.
Panasonic Non Standard SMT Inductors (Chokes)
Related links
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