MHO+66TAD-R
AI

The **MHO+66TAD-R** is a specific series of high-precision crystal oscillators, typically manufactured by companies like **MtronPTI**. This component is a "Clock Oscillator" used to provide a stable frequency reference for digital circuits.
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## 1. Technical Specifications
The part number follows a specific nomenclature that defines its electrical and physical characteristics.
| Feature | Specification |
| :--- | :--- |
| **Component Type** | XO (Crystal Oscillator) |
| **Package Style** | 14-pin DIP (Full Size) / 4-pin active |
| **Logic Type** | HCMOS / TTL Compatible |
| **Input Voltage** | Typically 5.0V (Standard for MHO series) |
| **Stability** | Usually ±100ppm, ±50ppm, or ±25ppm (depending on suffix) |
| **Operating Temp** | -40°C to +85°C (Industrial Grade) |
| **Output Type** | Tri-state (Enable/Disable function) |
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## 2. Pin Configuration
Although it uses a 14-pin DIP footprint, only four pins are typically functional:
| Pin Number | Function | Description |
| :--- | :--- | :--- |
| **1** | N/C or Tri-state | High = Enable; Low/Open = High Impedance |
| **7** | GND | Circuit Ground |
| **8** | Output | Frequency Output signal |
| **14** | Vcc | Positive Supply Voltage (5.0V) |
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## 3. Breakdown of the Part Number
* **MHO:** Identifies the series (Metal, Hermetically Sealed, 5.0V).
* **+:** Denotes RoHS compliance (Lead-free).
* **66:** Refers to the specific frequency or stability grade (check datasheet for exact mapping).
* **T:** Denotes "Tri-state" capability on Pin 1.
* **A:** Operating temperature range (usually 0°C to 70°C or -40°C to 85°C).
* **D:** Package style (DIP).
* **R:** Tape and Reel or specific RoHS revision.
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## 4. Key Applications
* **Networking Equipment:** Used in routers and switches for clocking data packets.
* **Industrial Controllers:** Providing timing for PLCs and embedded systems.
* **Legacy Hardware:** Because it uses a DIP package, it is often found in older industrial computers or test equipment.
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- ⤷
What is the exact output frequency of the MHO+66TAD-R version you are using?
- ⤷ How does a Tri-state pin function in a crystal oscillator circuit?
- ⤷ Can this component be replaced by a surface-mount (SMD) equivalent?