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MI1206K900R-00 Specifications

Detailed technical information and Application Scenarios

Product Details

PartNumberManufactorQuantityAvailability
MI1206K900R-00STEWARD2998Yes

MI1206K900R-00** is a fixed inductor manufactured by **STEWARD**.

The MI1206K900R-00 is a fixed inductor manufactured by STEWARD. Below are its specifications, descriptions, and features:

Specifications:

  • Inductance: 90 µH
  • Tolerance: ±10%
  • Current Rating: Varies based on application (refer to datasheet)
  • DC Resistance (DCR): Typically low (exact value depends on model)
  • Operating Temperature Range: -40°C to +125°C
  • Package/Size: 1206 (3216 metric)
  • Mounting Type: Surface Mount (SMD)
  • Shielding: Unshielded

Descriptions:

  • Designed for high-frequency filtering and power applications.
  • Suitable for DC-DC converters, power supplies, and RF circuits.
  • Compact SMD package for space-constrained PCB designs.

Features:

  • High inductance in a small form factor.
  • Robust construction for reliable performance.
  • RoHS compliant.

For exact current ratings and detailed electrical characteristics, consult the official STEWARD datasheet.

# MI1206K900R-00: Technical Analysis and Implementation Considerations

## Practical Application Scenarios

The MI1206K900R-00 is a surface-mount thick-film resistor from STEWARD, designed for high-reliability applications. With a resistance value of 900 mΩ and a 1206 package size, this component is widely used in power distribution, current sensing, and voltage division circuits.

1. Power Supply Circuits:

The resistor’s low resistance (900 mΩ) and 1W power rating make it suitable for current-limiting applications in switch-mode power supplies (SMPS) and DC-DC converters. It ensures stable operation by minimizing voltage drops while handling moderate power dissipation.

2. Current Sensing:

In battery management systems (BMS) and motor control circuits, the MI1206K900R-00 serves as a shunt resistor for precise current measurement. Its tight tolerance (±1%) and low temperature coefficient (±100 ppm/°C) enhance accuracy in high-precision environments.

3. Voltage Division Networks:

When used in conjunction with higher-value resistors, this component forms part of voltage dividers in analog signal conditioning circuits, particularly in sensor interfaces where stability is critical.

## Common Design-Phase Pitfalls and Avoidance Strategies

1. Thermal Management Issues:

Despite its 1W rating, improper PCB layout can lead to localized heating, degrading performance.

*Mitigation*: Ensure adequate copper pour or heatsinking, and adhere to recommended pad geometries to improve thermal dissipation.

2. Incorrect Tolerance Assumptions:

Designers may overlook the ±1% tolerance, leading to unexpected deviations in current sensing applications.

*Mitigation*: Verify tolerance requirements early in the design phase and consider calibration if higher precision is needed.

3. Mechanical Stress Concerns:

The 1206 package is susceptible to cracking under excessive board flexure or vibration.

*Mitigation*: Avoid placement near high-stress areas (e.g., board edges) and use conformal coating in harsh environments.

4. Soldering Defects:

Uneven heating during reflow can cause tombstoning or poor joint formation.

*Mitigation*: Follow STEWARD’s reflow profile recommendations and ensure symmetric pad design.

## Key Technical Considerations for Implementation

1. Power Derating:

Operate the resistor below its rated power (1W) at elevated temperatures. Refer to the derating curve in the datasheet for ambient temperatures above 70°C.

2. Parasitic Inductance:

The 1206 package exhibits minimal parasitic inductance (~2 nH), but high-frequency applications (e.g., >10 MHz) may require additional analysis to avoid impedance mismatches.

3. Material Compatibility:

The thick-film construction is compatible with standard FR4 substrates, but aggressive cleaning agents may damage the resistive element. Use mild cleaning processes post-assembly.

By addressing these factors, engineers can optimize the performance and reliability of the MI1206K900R-00 in their designs.

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