ATS-18B-41-C2-R0
AI

The **ATS-18B-41-C2-R0** is a high-performance electronic thermal management component. Specifically, it is a **heat sink** designed by *Advanced Thermal Solutions (ATS)*, part of their push-pin series for PCB-level cooling.
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### 1. Technical Specifications
Below are the primary electronic and physical specifications for this part:
| Feature | Specification |
| :--- | :--- |
| **Component Type** | Heat Sink (Passive) |
| **Material** | Aluminum (Blue Anodized) |
| **Attachment Method** | Push-Pin (Plastic) with Spring |
| **Dimensions** | 40mm x 40mm x 20mm |
| **Thermal Resistance** | 10.03°C/W (Unducted @ 200 LFM) |
| **Fin Style** | Straight Fin |
| **Interface Material** | T766 (Phase Change Material) |
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### 2. Breakdown of the Part Number
The part number follows a specific nomenclature used by Advanced Thermal Solutions:
* **ATS:** Manufacturer (Advanced Thermal Solutions).
* **18B:** Indicates the specific product series (Push-pin heat sink).
* **41:** Refers to the physical dimensions (approx. 40mm width/length).
* **20:** Refers to the height (20mm).
* **C2:** Denotes the material and finish (typically aluminum with a blue anodized finish).
* **R0:** Revision/Packaging code.
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### 3. Key Electronic Functions
While the heat sink itself does not carry an electrical charge, its role in an electronic circuit is critical:
1. **Thermal Dissipation:** It is designed to sit atop high-heat components such as CPUs, GPUs, FPGAs, or Power MOSFETs to dissipate heat into the surrounding air.
2. **Spring-Loaded Attachment:** The push-pin mechanism provides **consistent pressure**. In electronics, uniform pressure on the Die (the chip) is essential to prevent cracking while ensuring maximum contact with the thermal interface material.
3. **EMI Considerations:** The aluminum body can occasionally act as an EMI shield or, conversely, an antenna if not properly grounded or positioned relative to high-frequency components.
4. **Pre-applied TIM:** The "T766" phase-change material ensures low thermal impedance between the chip and the metal, improving the efficiency of heat transfer away from sensitive electronic junctions.
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### 4. Typical Applications
* **Network Switches/Routers:** Cooling high-speed processing chips.
* **Industrial PCs:** Cooling embedded processors in tight enclosures.
* **Power Supplies:** Managing heat for voltage regulators.
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What are the different types of push-pin materials available for this heat sink?
- ⤷ How do I calculate the thermal resistance needed for my specific chip?
- ⤷ What is the difference between blue anodized and black anodized heat sinks in terms of performance?