Allicdata Part #: | 490-3946-ND |
Manufacturer Part#: |
NTPAJ6R0LDKB0 |
Price: | $ 0.00 |
Product Category: | Circuit Protection |
Manufacturer: | Murata Electronics North America |
Short Description: | ICL 6 OHM 15% 3.4A 18MM |
More Detail: | Inrush Current Limiter 6 Ohms ±15% 3.4A 0.709" (18... |
DataSheet: | NTPAJ6R0LDKB0 Datasheet/PDF |
Quantity: | 1000 |
Lead Free Status / RoHS Status: | Lead free / RoHS Compliant |
Moisture Sensitivity Level (MSL): | 1 (Unlimited) |
1 +: | 0.00000 |
Specifications
Series: | NTPAJ |
Packaging: | Bulk |
Lead Free Status / RoHS Status: | -- |
Part Status: | Active |
Moisture Sensitivity Level (MSL): | -- |
R @ 25°C: | 6 Ohms |
Tolerance: | ±15% |
Current - Steady State Max: | 3.4A |
Diameter: | 0.709" (18mm) |
Lead Spacing: | 0.394" (10.00mm) |
Approvals: | -- |
Description
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Inrush current limiters (ICLs) are devices that are designed to prevent circuit overloads, particularly during large load power up and inrush surges. The NTPAJ6R0LDKB0 is a specific type of ICL that is widely used in applications requiring a high inrush-current limit. This article will outline the application field and working principle of the NTPAJ6R0LDKB0.
The NTPAJ6R0LDKB0 is an NTC (Negative Temperature Coefficient) thermistor-based ICL. It is designed for control of inrush current in DC power supplies, DC/DC converters, motors, solenoid valves, flash units, and other applications that require protection against inrush current surges. The thermistor material used in this device is a ceramic composed of ruthenium dioxide dispersed in a high-silicon ferrite matrix, which is accurate, reproducible, and repeatable, and is not affected by vibration.
In normal operation, the resistance of the NTPAJ6R0LDKB0 thermistor is relatively high. During a power-up surge, the thermistor has a very low resistance, limiting the surge of current. As the thermistor heats up, its resistance increases, effectively limiting the surge current during power up. The NTPAJ6R0LDKB0 has a very fast response time, typically in the range of microseconds or nanoseconds, depending on the temperature coefficient.
The NTPAJ6R0LDKB0 ICL offers several advantages over other ICLs, including a lower nominal operating temperature, higher surge currents, longer life cycles, and a higher degree of accuracy than traditional thermistors. As such, it is well suited for high-performance and high-voltage applications. Additionally, the NTPAJ6R0LDKB0 is typically used in applications requiring more precise current limiting, as its thermistor can be finely tuned to function within very specific parameters. Generally, an application requiring a more precise current control would utilize a series of thermistors, but the NTPAJ6R0LDKB0 can streamline the process.
The NTPAJ6R0LDKB0 also offers a number of design advantages over other ICLs. Its size and shape is small and it fits into many tight spaces, making it ideal for applications with limited space. Additionally, its construction is solid-state, allowing for immediate use without any additional adjustments. The NTPAJ6R0LDKB0 can be easily inspected and serviced, and it is designed to be durable and resistant to wear.
With a broad application field and strong performance capabilities, the NTPAJ6R0LDKB0 is quickly gaining popularity as an inrush current limiter. Its thermistor-based design provides for fast and precise current control, while its small size and solid-state construction mean that it can be installed quickly and serviced without difficulty. Together, these features make the NTPAJ6R0LDKB0 a great choice for a variety of applications requiring an ICL.
The specific data is subject to PDF, and the above content is for reference
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