The Toko America Inc. 1269AS-H-1R0M is a fixed inductor tailored for diverse electronic applications. Its defining inductance value, compact dimensions, and distinct performance attributes render it apt for tasks like filtering, energy storage, and impedance matching across varied circuit designs.
Applications
- DC-DC converters
- Power supplies for electronic devices
- Radio frequency (RF) circuits
- Filtering applications, including low-pass, high-pass, and band-pass filters
- Oscillator circuits
- Electromagnetic Interference (EMI) suppression
Features
- Fixed inductance value of 1.0µH
- High current handling capability
- Low DC resistance (DCR) for minimal power loss
- Shielded construction to reduce EMI
- Compact and space-saving design
- Surface mount technology (SMT) compatible for automated assembly
- Robust and reliable performance in various operating conditions
Benefits
- Efficient energy storage in DC-DC converters, improving efficiency
- Effective filtering of unwanted noise and signals in electronic circuits
- Stable and dependable performance across a range of conditions
- Minimized EMI, leading to improved system performance and reliability
- Simplified integration into automated assembly processes
- Optimized for high-frequency applications, enhancing performance
- Enhanced durability and long-term operational reliability
Additional Details
The 1269AS-H-1R0M inductor typically exhibits a tolerance of ±20% on its specified inductance value. Its shielded architecture effectively mitigates electromagnetic interference, rendering it suitable for sensitive electronic systems. Designed to endure reflow soldering processes, it ensures secure and dependable PCB mounting. With space-saving dimensions, it is ideal for compact designs. The datasheet offers comprehensive specifications, including saturation current, self-resonant frequency, and quality factor (Q), crucial for precise circuit design. Proper component selection and circuit design are paramount to ensuring optimal performance and reliability in intended applications.