ADR435BRMZ-R7
AI

### ADR435BRMZ-R7 Technical Overview
The **ADR435BRMZ-R7** is a high-precision, low-noise XFET® (eXtra implanted junction FET) voltage reference. It is widely used in applications requiring high stability and low power consumption.
---
### 1. Key Technical Specifications
| Parameter | Specification |
| :--- | :--- |
| **Output Voltage** | 5.0 V |
| **Initial Accuracy** | ±2 mV (0.04%) |
| **Temperature Coefficient** | 3 ppm/°C (Max) |
| **Operating Supply Voltage** | 7.0 V to 18 V |
| **Output Current Capability** | +30 mA (Source) / -20 mA (Sink) |
| **Quiescent Current** | 800 µA (Max) |
| **Package Type** | MSOP-8 (Surface Mount) |
| **Operating Temperature** | -40°C to +125°C |
---
### 2. Core Functional Features
* **XFET Technology:** Unlike standard Zener or Bandgap references, the XFET architecture provides lower noise, better long-term stability, and lower thermal hysteresis.
* **Low Noise:** It features very low peak-to-peak noise (typically 8 µV p-p at 0.1 Hz to 10 Hz), making it ideal for high-resolution Data Converters (ADCs/DACs).
* **High Output Drive:** The device can source up to 30 mA, often eliminating the need for an external buffer amplifier when driving heavy loads.
* **Trim Terminal:** Includes a specific pin (Pin 5) that allows for fine-tuning the output voltage without affecting the temperature coefficient.
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### 3. Pin Configuration (MSOP-8)
| Pin Number | Mnemonic | Description |
| :--- | :--- | :--- |
| 1 | TP | Test Point (Do not connect) |
| 2 | VIN | Input Voltage Supply |
| 3 | TP | Test Point (Do not connect) |
| 4 | GND | Ground |
| 5 | TRIM | Output Voltage Trim |
| 6 | VOUT | Reference Voltage Output |
| 7 | COMP | Compensation (Optional) |
| 8 | NC | No Internal Connection |
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### 4. Common Applications
* **Precision Data Acquisition:** Providing a stable reference for 16-bit to 24-bit ADCs.
* **Medical Instrumentation:** High-stability requirements for monitoring equipment.
* **Industrial Process Control:** Reliable voltage standards for sensors and actuators.
* **Optical Control Circuits:** Precise biasing for laser diodes and optical sensors.
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### 5. Implementation Example
To utilize the ADR435 in a basic circuit, a 0.1 µF capacitor is typically placed on the input, and a 1 µF to 10 µF capacitor is placed on the output for stability and noise reduction.
```c
// Design Note:
// Ensure Vin is at least 2V higher than Vout (Vin >= 7V)
// for the ADR435 to maintain regulation.
```
- ⤷
What is the difference between XFET and Bandgap voltage references?
- ⤷ How does the TRIM pin affect the temperature coefficient of the ADR435?
- ⤷ What are the recommended layout practices to minimize noise for this component?