MHO+11FCG-R
AI

The **MHO+11FCG-R** is a specific part number typically associated with **MHO+ series crystal oscillators** manufactured by suppliers like **MtronPTI**. These components are essential in digital circuits for providing a stable clock signal.
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### 1. Component Overview
The MHO+ series consists of **High-Reliability HCMOS/TTL Compatible Crystal Oscillators**. These are "Clock Oscillators" that integrate a quartz crystal and the necessary oscillation circuitry into a single package.
### 2. Technical Specifications
Below are the typical technical parameters for this series:
| Parameter | Specification |
| :--- | :--- |
| **Output Type** | HCMOS / TTL Compatible |
| **Package Style** | 14-pin DIP (often 4 pins connected) |
| **Frequency Stability** | Usually ±25ppm to ±100ppm |
| **Supply Voltage (Vcc)** | Typically 5.0V (Standard for MHO series) |
| **Operating Temperature** | -40°C to +85°C (Industrial Grade) |
| **RoHS Status** | "R" suffix 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 DIP, usually only 4 pins are functional:
| Pin Number | Function | Description |
| :--- | :--- | :--- |
| **1** | NC or Tri-state | No connection or Output Enable/Disable |
| **7** | GND | Circuit Ground |
| **8** | Output | The generated square wave (Clock Signal) |
| **14** | Vcc | Positive Power Supply (+5V) |
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### 4. Key Features
* **Hermetically Sealed:** The metal "can" package is resistance-welded to protect the crystal from environmental moisture and atmospheric changes.
* **Low Jitter:** Designed for timing-sensitive applications in telecommunications and computing.
* **Through-Hole Mounting:** The DIP (Dual In-line Package) format makes it ideal for robust industrial PCBs or breadboarding.
### 5. Common Applications
* Microprocessor and DSP clocks.
* Network equipment (Routers, Switches).
* Industrial control systems.
* Embedded systems requiring a 5V logic level.
- ⤷
What is the specific output frequency for the MHO+11FCG-R version?
- ⤷ Are there surface-mount (SMD) equivalents for this through-hole oscillator?
- ⤷ How does the 'Tri-state' function on Pin 1 operate in this circuit?