CCVGA7C5G-R16-R
AI

Based on the part number **CCVGA7C5G-R16-R**, this component is a high-performance **Oscillator**, specifically a **VCXO (Voltage Controlled Crystal Oscillator)** manufactured by **Crystek Corporation**.
Below is a detailed breakdown of its electronic characteristics and specifications.
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### 1. Component Overview
The CCVGA7C5G-R16-R is part of the **CVHD-950** series (or similar low-phase-noise families). It is designed for applications requiring extremely low jitter and precise frequency control via an external tuning voltage.
### 2. Technical Specifications
| Parameter | Specification / Value |
| :--- | :--- |
| **Component Type** | VCXO (Voltage Controlled Crystal Oscillator) |
| **Frequency** | 16.000 MHz (indicated by "16") |
| **Output Type** | CMOS |
| **Supply Voltage (Vcc)** | 3.3V or 5.0V (Standard series dependent) |
| **Operating Temperature** | -40°C to +85°C (Industrial Grade) |
| **Package Size** | 5x7 mm (SMD Ceramic) |
| **Frequency Stability** | ±25ppm to ±50ppm (Typical) |
| **Pullability (APR)** | ±20ppm to ±50ppm min |
| **RoHS Status** | Compliant (indicated by "-R") |
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### 3. Pin Configuration (Typical 5x7 VCXO)
Most oscillators in this footprint follow a standard 6-pad layout:
1. **Pin 1 (Control Voltage):** Used to adjust the output frequency.
2. **Pin 2 (Enable/Disable):** Logic high enables output; logic low sets to high impedance.
3. **Pin 3 (Ground):** Circuit ground.
4. **Pin 4 (Output):** CMOS square wave signal.
5. **Pin 5 (NC):** No internal connection.
6. **Pin 6 (Vcc):** Supply voltage input.
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### 4. Key Electronic Features
* **Ultra-Low Phase Noise:** Designed specifically to minimize "jitter," making it ideal for high-speed data clocks.
* **Voltage Control:** Unlike fixed oscillators, the frequency can be slightly "pulled" or adjusted using an analog voltage on Pin 1. This is critical for Phase-Locked Loops (PLLs).
* **CMOS Output:** Provides a rail-to-rail square wave output capable of driving standard digital logic gates.
### 5. Common Applications
* **Networking:** Synchronous Ethernet, SONET/SDH.
* **Audio/Video:** High-end DACs (Digital-to-Analog Converters) where timing precision affects sound quality.
* **RF Systems:** Local oscillators for radio frequency synthesis.
* **Data Acquisition:** Precise clocking for high-speed ADCs.
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- ⤷
What is the exact voltage range for the Control Voltage pin on this model?
- ⤷ How does 'pullability' affect the circuit design compared to a standard XO?
- ⤷ Are there recommended decoupling capacitor values for the Vcc pin of this oscillator?