ICP-N38

Effective Inventory2,192

Voltage regulator

  • Manufacturer Part # : ICP-N38

  • Package/Case: TO92

  • Brand: ROHM Semiconductor

  • Product Categories : Voltage Regulators - Linear, Low Drop Out (LDO) Regulators

Quality Assurance

Quality Assurance

All parts procured from our supply chain network undergo a rigorous incoming inspection process. This meticulous inspection ensures that the parts received by our customers are authentic and meet the required standards. Additionally, we maintain detailed records of these inspections to ensure transparency and traceability throughout the supply chain.

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Certification

We have successfully obtained various certification standards and have established our own professional testing laboratory. This ensures that every product we supply to our customers meets the highest quality standards. We adhere to strict testing protocols to maintain the consistency and accuracy of our products. To ensure that our products are original and genuine, we also collaborate with reputable third-party testing facilities to conduct rigorous quality testing. Our commitment to quality extends to meeting industry, legal, regulatory, and ISO 9001:2015 requirements.

Shipping & Payment

Shipping & Payment

About Shipping

We generally ship orders within a few business days through reliable shipping carriers such as FedEx, SF, UPS, or DHL. We also have support for other shipping methods. If you would like to inquire about specific shipping details or costs, please don't hesitate to reach out to us.

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About Payment

We accept various payment methods, including VISA, MasterCard, UnionPay, Western Union, PayPal, and other channels.

If you have a specific payment method in mind or would like to inquire about rates and other details, please feel free to contact us.

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Service & Packaging

Service & Packaging

About After Sales Service

All Parts Extended Quality Guarantee

Initiate the application within 90 days from the shipment date.

Confirm the return or exchange with our staff.

Maintain the goods in their original condition as received.

Lastly, please note that the eligibility for return or exchange of goods is subject to an assessment of the actual condition of the returned items. We will evaluate the received goods before finalizing the return or exchange process. If you have any inquiries or require further assistance regarding returns or exchanges, please don't hesitate to contact us at [email protected]

About packaging

Regarding packaging, our products are carefully packed in anti-static bags to provide ESD anti-static protection. The outer packaging is durable with secure closure. We support various packaging methods such as Tape and Reel, Cut Tape, Tube, or Tray.

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ICP-N38 DataSheet

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Current price plan is under preparation. Please contact our customer service team for the latest pricing information. Thank you for your understanding and support!

Interested Parts

Rapid Quote

Please submit RFQ for ICP-N38 or email to us: Email: [email protected], we will contact you in 12 hours.

ICP-N38 Details

The ICP-N38 is a high-performance thermal compound from a leading manufacturer, designed to improve the heat transfer between electronic components and heat sinks. This thermal compound offers excellent thermal conductivity and adhesion properties, ensuring efficient heat dissipation in various electronic applications.

Key Features

  • High Thermal Conductivity: Provides efficient heat transfer for improved thermal performance.
  • Enhanced Adhesion: Ensures reliable attachment between components and heat sinks.
  • Non-Curing Formula: Allows for easy rework and maintenance of electronic systems.
  • Wide Operating Temperature Range: Suitable for use in diverse environmental conditions.
  • Multiple Applications: Ideal for CPUs, GPUs, LED lights, and other electronic devices requiring effective thermal management.

Application

  • CPU Cooling: Essential for maintaining optimal operating temperatures in computer systems.
  • LED Thermal Management: Ensures efficient heat dissipation in LED lighting applications.
  • Electronic Devices: Used in various electronic devices for thermal performance enhancement.

Where to Use

The ICP-N38 is recommended for electronic systems where effective heat dissipation is crucial. It is particularly useful in CPU and GPU cooling setups, LED applications, and any electronic device requiring improved thermal management.

How to Use

Apply a thin and uniform layer of the ICP-N38 thermal compound between the heat-generating component and the heat sink. Ensure complete coverage for optimal heat transfer efficiency. Avoid over-application to prevent thermal insulation. For detailed application instructions, refer to the product datasheet.

Equivalents

  • Arctic Silver 5: A comparable thermal compound known for its high thermal conductivity and performance.
  • Noctua NT-H1: An alternative thermal paste offering excellent heat transfer characteristics.

Complementary

The ICP-N38 can be effectively complemented by high-quality heat sinks and cooling fans to further enhance thermal management in electronic systems. Ensure compatibility and proper installation for optimal heat dissipation.

Frequently Asked Questions

Q: How often should I replace the thermal compound on my CPU?

A: It is recommended to replace the thermal compound every few years to maintain optimal heat transfer efficiency. Regular monitoring of temperatures is advised to determine the need for reapplication.

Q: Can the ICP-N38 be used for overclocking purposes?

A: Yes, the ICP-N38 can help improve thermal performance during overclocking by enhancing heat dissipation capabilities. However, ensure proper system cooling to prevent overheating.

Specifications

The followings are basic parameters of the part selected concerning the characteristics of the part and categories it belongs to.

Package Bulk Product Status Obsolete

FAQs

What is ICP-N38?

ICP-N38 is a high-performance thermal interface material (TIM) designed for use in electronic devices to improve heat transfer and thermal management. It is ideal for applications requiring efficient heat dissipation and thermal conductivity, such as computer processors, power electronics, and LED lighting systems.

How Does ICP-N38 Work?

ICP-N38 works by filling the microscopic gaps and irregularities between the mating surfaces of the heat source (e.g., CPU or power device) and the heat sink. This ensures intimate contact and maximizes the transfer of heat from the source to the sink, thereby reducing thermal resistance and improving overall thermal performance.

How Many Pins/Components does ICP-N38 Have and What are Their Functions?

ICP-N38 does not have pins or components in the traditional sense, as it is a thermal interface material in the form of a thermal pad or thermal grease. Its primary function is to facilitate heat transfer between the heat source and the heat sink without the need for additional electronic components.

What are the Pros and Cons of ICP-N38?

Pros:

  • High Thermal Conductivity: Offers efficient heat transfer capabilities, improving thermal management.
  • Easy Application: Can be easily applied to mating surfaces, requiring minimal effort for installation.
  • Non-Electrical: Does not conduct electricity, reducing the risk of short circuits or electrical interference.
  • Reliable Performance: Provides stable thermal characteristics over a wide temperature range.

Cons:

  • Thermal Resistance Variability: The effectiveness of thermal interface materials can depend on application-specific factors such as pressure, surface roughness, and material compatibility.
  • Storage and Handling: Requires proper storage and handling to prevent contamination and maintain performance.
  • Application Specific: Selection of the appropriate thermal interface material depends on the specific requirements and operating conditions of the application.

Are There Any Equivalents/Alternatives to ICP-N38 for Recommendation?

Alternatives to ICP-N38 include thermal interface materials such as Arctic Silver 5, Noctua NT-H1, and Thermal Grizzly Kryonaut, which offer similar thermal performance and application flexibility.

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