Azbil Smart Valve Positioner AVP100-H-3X-XX
Product Specifications
| Attribute |
Value |
| Type |
Valve Positioner |
| Product No |
AVP100-H |
| Product Type |
Smart Valve Positioner 100 Series |
| AVP100 |
Analog Signal (4 To 20 MA DC) Without Travel Transmission |
| Air Pipes |
1/4 NPT |
| Conduit Connection |
1/2 NPT |
Product Description
Azbil Smart Valve Positioner AVP100-H-3X-XX
Product Introduction
The Azbil Smart Valve Positioner AVP100-H-3X-XX is a high-performance industrial device designed for precise control of pneumatic valves. With a maximum supply air pressure of 700 kPa and a 4-20 mA input signal, it ensures reliable operation in diverse process control applications.
The positioner features an auto-setup function for fully automatic actuator configuration and valve zero/span adjustment, enabling quick on-site commissioning via internal buttons. Its single-model versatility allows configuration for split-range inputs, various flow characteristics, and single/double-acting actuators, eliminating the need for part replacements.
Product Features
-
Auto-Setup Functionality:
Fully automatic configuration program to define actuator parameters and adjust valve zero/span. Initiated via internal buttons for rapid on-site adjustments, reducing commissioning time.
-
Single-Model Versatility:
Configurable for multiple specifications without part replacements. Adaptable to split-range input ranges (customizable per application).
-
Flexible Flow Characteristics:
Selectable flow curves: Linear, Equal Percentage (EQ%), Quick Opening, or user-defined custom characteristics.
-
Actuator Compatibility:
Supports single-acting and double-acting actuators (reversing relay optional for double-acting setups).
-
Precision Control:
4-20 mA input signal for seamless integration with industrial control systems. High supply air pressure (700 kPa max.) for reliable valve actuation.
-
User-Friendly Operation:
Intuitive internal button interface for on-the-fly adjustments.
-
Industrial Robustness:
Engineered for durability in demanding process control environments.