MHO+46TAD-R
AI

The **MHO+46TAD-R** is a specific series classification for a **Crystal Oscillator**, typically manufactured by companies like MtronPTI. These components are used to provide a precise clock signal for digital circuits.
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### 1. Component Overview
The MHO series generally refers to **TCXO (Temperature Compensated Crystal Oscillators)** or high-stability clock oscillators housed in a metal DIP (Dual In-line Package).
| Feature | Specification (Typical) |
| :--- | :--- |
| **Package Type** | 14-pin DIP (Metal Can) |
| **Output Type** | CMOS / TTL Compatible |
| **Supply Voltage** | Usually 5.0V or 3.3V |
| **Stability** | High precision over temperature ranges |
| **Mounting** | Through-hole |
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### 2. Breakdown of the Part Number
While specific manufacturer datasheets vary slightly, the alphanumeric code usually breaks down as follows:
* **MHO:** Series identifier (Metal Hollow/High-reliability Oscillator).
* **+:** Often indicates RoHS compliance (lead-free).
* **4:** Typically represents the supply voltage (e.g., 4 = 5.0V).
* **6:** Often represents the temperature stability/range code.
* **TAD:** Technical parameters related to duty cycle and output load.
* **R:** Packaging suffix (e.g., Tape & Reel or specific Revision).
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### 3. Pin Configuration (Internal Layout)
Most MHO 14-pin DIP oscillators only utilize 4 physical pins located at the corners of the 14-pin footprint:
| Pin Number | Function | Description |
| :--- | :--- | :--- |
| **1** | NC or Tri-state | No connection or Output Enable/Disable |
| **7** | GND | Circuit Ground / Case Ground |
| **8** | Output | The generated frequency (Square Wave) |
| **14** | Vcc | Positive Power Supply |
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### 4. Typical Applications
These oscillators are used in environments where frequency stability is critical:
* **Telecommunications:** Base stations and networking hardware.
* **Test Equipment:** Oscilloscopes and frequency counters.
* **Industrial Control:** Synchronizing complex logic in PLCs.
* **Legacy Computing:** Timing for older microprocessor architectures.
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### 5. Implementation Example
To use this part in a circuit, you would connect it as follows:
```c
// Schematic Logic
[Vcc 5V] ----> Pin 14
[GND] ----> Pin 7
[Pin 8] ----> Digital Clock Input (MCU/FPGA)
[0.1uF Capacitor] placed between Pin 14 and Pin 7 for noise decoupling.
```
- ⤷
What is the specific frequency of the MHO+46TAD-R model?
- ⤷ Can this oscillator be replaced by a standard 4-pin SMD oscillator?
- ⤷ How does temperature compensation improve frequency stability?