ATS-06A-159-C2-R0
AI

The **ATS-06A-159-C2-R0** is a high-performance electronic thermal management component, specifically an aluminum heatsink manufactured by **Advanced Thermal Solutions (ATS)**. It is part of the "push pin" series designed for securing the cooling solution directly to a Printed Circuit Board (PCB).
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### Technical Specifications
| Feature | Specification |
| :--- | :--- |
| **Manufacturer** | Advanced Thermal Solutions (ATS) |
| **Material** | Aluminum (Blue Anodized) |
| **Attachment Method** | Push-Pin (Plastic) |
| **Thermal Resistance** | 2.09°C/W (at 200 LFM) |
| **Dimensions (L x W x H)** | 45mm x 45mm x 10mm |
| **Fin Style** | Straight Fin |
| **Thermal Interface Material (TIM)** | T766 (Pre-applied) |
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### Key Electronic & Mechanical Components
#### 1. Heat Dissipator (Body)
The main body is made of **extruded aluminum**. Aluminum is chosen for its excellent thermal conductivity-to-weight ratio. The **Blue Anodized** finish is not just for aesthetics; it provides surface protection and slightly increases emissivity for better radiative cooling.
#### 2. Attachment Mechanism: Push-Pins
Unlike adhesive-based heatsinks, the `-R0` suffix indicates a mechanical attachment:
* **Pins:** Two plastic push-pins are used to anchor the heatsink.
* **Springs:** Compression springs ensure a consistent "downward force" (pressure) is applied to the electronic component (CPU, GPU, or FPGA), maximizing thermal contact.
#### 3. Thermal Interface Material (TIM)
The unit comes with **T766** pre-applied to the base.
* **Purpose:** In electronics, microscopic air gaps between the chip and the heatsink act as insulators. The TIM fills these gaps to ensure efficient heat transfer from the silicon die to the aluminum fins.
#### 4. Fin Configuration
This model utilizes a **Straight Fin** design. In electronic enclosures, this is optimal for "longitudinal" airflow, where a system fan blows air across the PCB in a single direction.
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### Applications in Electronics
* **Processors:** Cooling of FPGAs, ASICs, and small CPUs.
* **Power Electronics:** Dissipating heat from high-speed networking chips or power converters.
* **Embedded Systems:** Used in industrial PC builds where vibration resistance (provided by push-pins) is required over simple tape-on heatsinks.
- ⤷
How does the thermal resistance of this heatsink change at higher airflow speeds?
- ⤷ What is the specific PCB hole size required for the push-pins on the ATS-06A-159-C2-R0?
- ⤷ What is the difference between the C2 and C1 versions of this heatsink series?