MHO+53FCG-R
AI

The **MHO+53FCG-R** is a specific part number typically associated with a **high-precision crystal oscillator**. These components are essential in electronic circuits for generating stable clock signals.
Below is a detailed breakdown of the technical aspects and specifications of this part.
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## 1. Component Overview
The MHO series generally refers to **Clock Oscillators** designed for surface-mount technology (SMT). They are commonly used in telecommunications, computing, and industrial control systems.
### General Specifications Table
| Feature | Typical Specification |
| :--- | :--- |
| **Package Type** | SMD (Surface Mount Device) |
| **Package Size** | 5.0 x 3.2 mm (Standard 5032 size) |
| **Supply Voltage** | 3.3V (Commonly indicated by the "53" series code) |
| **Output Type** | CMOS / HCMOS |
| **Frequency Stability** | ±25ppm to ±100ppm (depending on suffix) |
| **Operating Temp** | -40°C to +85°C (Industrial Grade) |
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## 2. Part Number Breakdown (Nomenclature)
Electronic manufacturers use specific codes to define the attributes of the component. Here is a typical interpretation of the **MHO+53FCG-R** string:
* **MHO+**: The manufacturer's series prefix (often indicating a metal-housed or high-reliability oscillator).
* **53**: Indicates the supply voltage and package dimensions (e.g., 5.0x3.2mm at 3.3V).
* **F**: Frequency stability code (often denotes ±25ppm or ±50ppm).
* **C**: Temperature range indicator (C usually stands for Commercial or Industrial).
* **G**: Output symmetry/Enable-Disable function (Tristate function).
* **-R**: RoHS Compliant (Lead-free).
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## 3. Pin Configuration
Standard 5032 oscillators like the MHO+53FCG-R utilize a 4-pin layout:
| Pin Number | Function | Description |
| :--- | :--- | :--- |
| **1** | E/D or NC | Enable/Disable (Tristate) or No Connection |
| **2** | GND | Ground / Case Ground |
| **3** | Output | The generated clock signal (Square Wave) |
| **4** | VDD | Power Supply Input (+3.3V) |
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## 4. Key Applications
* **Microprocessors:** Providing the base clock for CPUs and MCUs.
* **Networking:** Timing for Ethernet, Wi-Fi, and Bluetooth modules.
* **Embedded Systems:** Used in IoT devices requiring a small footprint and low power consumption.
* **FPGA Logic:** High-speed signal processing synchronization.
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- ⤷What is the exact frequency value for the MHO+53FCG-R variant?
- ⤷ Can this oscillator be used in automotive environments?
- ⤷ What is the difference between HCMOS and LVPECL output types?