MHO+22FAD-R
AI

The **MHO+22FAD-R** is a specific type of **Crystal Oscillator** (often categorized under Frequency Control products). It is a precision electronic component used to generate a stable clock signal for digital circuits.
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### 1. Key Technical Specifications
Below are the typical technical parameters associated with this specific part series:
| Parameter | Specification |
| :--- | :--- |
| **Component Type** | Crystal Oscillator (XO) |
| **Package Style** | 14-pin DIP (Full Size) / 4-pins used |
| **Output Type** | HCMOS / TTL |
| **Voltage Supply** | Typically 5.0V (Standard for MHO series) |
| **Operating Temp** | -40°C to +85°C (Industrial Grade) |
| **Frequency Stability** | ±100 ppm (Standard for 'A' suffix) |
---
### 2. Part Number Breakdown
While manufacturer coding can vary slightly (often produced by MtronPTI), the alphanumeric string generally breaks down as follows:
* **MHO:** Identifies the series (Metal Thru-Hole Oscillator).
* **+:** Often indicates RoHS compliance (Lead-free).
* **2:** Represents the supply voltage (e.g., 2 = 5.0V).
* **2:** Represents the temperature range and stability.
* **FAD:** These characters usually denote the output symmetry (Duty Cycle) and specific frequency calibration.
* **-R:** Indicates "RoHS Compliant."
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### 3. Pin Configuration (14-Pin DIP Package)
Even though the casing is the size of a 14-pin integrated circuit, only 4 pins are usually present:
| Pin Number | Function | Description |
| :--- | :--- | :--- |
| **1** | NC / Tri-state | No connection or Output Enable/Disable |
| **7** | GND | Circuit Ground |
| **8** | Output | The generated clock signal (Square wave) |
| **14** | Vcc | Positive Power Supply (+5V) |
---
### 4. Applications
The MHO+22FAD-R is commonly found in legacy and industrial hardware where timing stability is critical:
* **Microprocessor Clocks:** Providing the heartbeat for CPUs.
* **Networking Equipment:** Synchronizing data transmission in switches or routers.
* **Industrial Controllers:** Used in PLCs (Programmable Logic Controllers) where through-hole mounting is preferred for durability.
* **Test & Measurement:** Oscilloscopes and signal generators.
### 5. Circuit Integration Example
To use this part, you generally place a 0.01µF to 0.1µF bypass capacitor between Vcc and GND to filter noise.
```c
// Concept: Standard Oscillator Connection
[Vcc (+5V)] ----+---- [Pin 14]
|
[0.1uF Cap]
|
[GND] ----------+---- [Pin 7]
[Pin 8] ------------> [Clock Input of MCU/IC]
```
- ⤷
What is the specific frequency of the MHO+22FAD-R variant you are looking at?
- ⤷ How does an HCMOS output differ from a clipped sine wave output?
- ⤷ What are the common alternatives if this through-hole part is discontinued?