| Resistance | 0.001Ω |
| Power Rating | 9W |
| Payment Terms | T/T |
| Delivery Time | 5-8 work days |
| Temperature Coefficient | ±75 ppm/°C |
| Tolerance | ±1% |
| Package Size | 5930 (15.0mm x 7.6mm) |
| Part Number | ESR59F9WR001K02G |
| Material | Karma Alloy (Ni-Cr-Al-Si) |
| Brand Name | Ellon |
| Model Number | ESR59F9WR001K02G |
| Place of Origin | Made in China |
View Detail Information
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Product Specification
| Resistance | 0.001Ω | Power Rating | 9W |
| Payment Terms | T/T | Delivery Time | 5-8 work days |
| Temperature Coefficient | ±75 ppm/°C | Tolerance | ±1% |
| Package Size | 5930 (15.0mm x 7.6mm) | Part Number | ESR59F9WR001K02G |
| Material | Karma Alloy (Ni-Cr-Al-Si) | Brand Name | Ellon |
| Model Number | ESR59F9WR001K02G | Place of Origin | Made in China |
| High Light | 1% 5930 Chip Resistor ,9W 5930 Chip Resistor ,Precision 5930 Chip Resistor | ||
In the high-stakes world of power electronics, precision current measurement is the linchpin of system performance, safety, and efficiency. As power densities increase and designs shrink, the humble current sense resistor has had to evolve into a sophisticated component. Enter the 5930 0.001Ω (1m Ohm) 9W 1% ESR59F9WR001K02G, a metal shunt chip resistor that represents a significant convergence of materials science and metrology.
This component, identified by the manufacturer part number ESR59F9WR001K02G from YiNeng (or equivalent Bourns CSS2H-5930 series), is specifically engineered for ultra-high current detection . With a massive 9W power dissipation packed into the expansive 5930 footprint, this is not a standard commodity resistor. It is a precision instrument designed to convert hundreds of amperes into a measurable, low-level voltage drop without introducing thermal drift or signal noise.
This article provides a comprehensive analysis of the 5930 0.001Ω (1m Ohm) 9W 1% specification, its unique Karma alloy construction, environmental compliance, and the engineering rationale behind its design. For professionals optimizing motor drives, battery management systems (BMS), or power supplies, understanding the nuances of this 5930 0.001Ω (1m Ohm) 9W 1% device is crucial for achieving high-accuracy, low-drift designs.
| Parameter | Specification |
|---|---|
| Part Number | ESR59F9WR001K02G |
| Resistance Value | 0.001Ω (1mΩ) |
| Tolerance | ±1% |
| Power Rating | 9W |
| Package Size | 5930 (15mm * 7.7mm) |
| Temperature Coefficient (TCR) | ±750 ppm/°C |
| Resistance Material | Manganese Copper (Karma) alloy |
| Operating Temperature | -55°C to +170°C |
The part number ESR59F9WR001K02G breaks down into a specific set of physical and electrical characteristics that define its operational envelope. The most striking feature is the resistance value of 0.001Ω (1 Milliohm). This ultra-low resistance is the primary mechanism for minimizing power loss (I²R losses) while allowing the device to handle extreme currents.
The 5930 package is significantly larger than common sizes like 2512. This larger footprint is not a design flaw but a necessity. To achieve a 5930 0.001Ω (0.001m Ohm) 9W 1% rating, the resistor needs substantial metal mass and surface area to dissipate the 9W of heat generated by the current flow. For example, at a current of 95A, the device will dissipate roughly 9W.
The "secret sauce" of the 5930 0.001Ω (1m Ohm) 9W 1% resistor lies in its material composition: Karma Alloy. Unlike standard thick film resistors that use ruthenium oxide paste or simple copper-manganese-tin (Cu-Mn-Sn) foils, Karma alloy offers a distinct performance profile.
Karma is a trademarked name for a Nickel-Chromium based alloy with added Aluminum and Silicon (Ni-Cr-Al-Si). According to material science research and datasheets, this alloy is chosen specifically for strain gauges and precision resistors because of its near-ideal elastic properties and electrical stability . For a shunt resistor, this translates into several key advantages:
The specification of 9W in a surface mount package is aggressive. To put this in perspective, a standard 1206 chip resistor is usually rated for 0.25W. The 5930 0.001Ω (1m Ohm) 9W 1% resistor handles 36 times that power. It does so through several design features:
Because the resistance is 0.001Ω, the current required to hit 9W is substantial (I = sqrt(P/R) = sqrt(9/0.001) = 94.8 Amps). Therefore, the 5930 0.001Ω (1m Ohm) 9W 1% is specifically designed for high-current buses where fractional millivolt drops are amplified for monitoring.
Temperature Coefficient of Resistance (TCR) is often more critical than initial tolerance in high-power applications. A resistor with a 1% tolerance might drift 2% or 3% due to self-heating if the TCR is high.
The 5930 0.001Ω (1m Ohm) 9W 1% is rated at ±75 ppm/°C (or better in specialized variants) . This means for every degree Celsius rise, the resistance changes by only 0.00075%. Over a 100°C rise, the total drift is only 0.075%. This low drift ensures that the 1% tolerance holds true even under full load conditions, allowing designers to use smaller sense voltages and less expensive amplification stages.
Modern electronic manufacturing is governed by strict environmental regulations. The ESR59F9WR001K02G is explicitly designed to meet these standards, ensuring trouble-free entry into global markets.
Standard wirewound resistors are excellent for high power but behave like inductors at high frequencies, impeding rapid changes in current (di/dt). In switching power supplies operating at 100kHz to 2MHz, this inductance corrupts the current sense signal.
The 5930 0.001Ω (1m Ohm) 9W 1% is a "shunt" with a straight-through current path. This design results in extremely low inductance, typically below 5nH to 10nH . This allows for accurate current measurement of fast-switching SiC (Silicon Carbide) and GaN (Gallium Nitride) transistors.
The prompt specifies strong "anti-surge" capabilities. In practical terms, the 5930 0.001Ω (1m Ohm) 9W 1% 's massive solid metal construction makes it highly robust against inrush currents. While a thin film resistor might explode under a 150A surge, the thick Karma element of the 5930 can often handle pulses of 300A+ for short microseconds, acting as a sacrificial fuse only under extreme fault conditions. This robustness is vital for motor startup and capacitor charging circuits.
Given its unique properties—specifically the 5930 0.001Ω (1m Ohm) 9W 1% combination—this component is found in high-end industrial and automotive applications:
When evaluating the 5930 0.001Ω (1m Ohm) 9W 1% against alternatives, consider the following:
To fully utilize the 5930 0.001Ω (1m Ohm) 9W 1% , engineers must adhere to specific layout guidelines:
The 5930 0.001Ω (1m Ohm) 9W 1% ESR59F9WR001K02G is more than just a resistor; it is a critical enabler of modern power electronics. By combining a high-power 9W rating with the ultra-low drift and stability of Karma alloy, it solves the thermal and accuracy challenges inherent in measuring currents approaching 100 Amperes.
Its compliance with RoHS and REACH standards ensures global regulatory acceptance, while its low inductance and high surge tolerance make it suitable for the harshest automotive and industrial environments. For engineers designing next-generation BMS, power supplies, or motor drives, the 5930 0.001Ω (1m Ohm) 9W 1% represents a mature, reliable, and high-performance solution for current sensing. As the industry moves toward higher efficiency and greater electrification, the demand for such precision metal shunt resistors will only continue to grow.
Company Details
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Distributor/Wholesaler,Manufacturer,Agent,Trading Company
Year Established:
2012
Employee Number:
100~120
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