Description
The Siemens 6DL1134-6TH00-0PH1 supports high-precision analog signal acquisition with HART communication across 16 input channels. Designed for use in the SIMATIC ET 200SP HA distributed I/O system, this module ensures reliable data collection and diagnostics in demanding industrial automation environments, offering 16-bit resolution and ±0.1% accuracy.
Technical Specifications
|
Condition
|
New/Never Used Surplus
|
| Brand |
Siemens |
|
Category
|
|
|
Part Number
|
6DL1134-6TH00-0PH1
|
| Subcatecory |
|
| Series |
SIMATIC ET 200SP HA |
| Function |
Analog Input Module with HART support |
| Input Channels |
16 (2-wire HART) |
| Resolution |
16-bit |
| Accuracy |
|
| Channel Diagnostics |
Yes |
| Terminal Block Compatibility |
H1 / M1 |
| Net Weight (kg) |
0,300 Kg |
| Packaging Dimension |
3,50 x 15,00 x 13,00 |
| Package size unit of measure |
CM |
Information About 6DL1134-6TH00-0PH1
The 6DL1134-6TH00-0PH1 is an analog input module for the SIMATIC ET 200SP HA I/O system, featuring 16 analog input channels with 2-wire HART support. It is compatible with terminal blocks H1 and M1 and follows color code CC01. Built-in channel diagnostics provide continuous monitoring of signal integrity and sensor health, making the module suitable for critical process applications.
Key Features:
-
16 Analog HART Inputs: Supports 2-wire analog input with integrated HART protocol for enhanced communication and diagnostics.
-
High Accuracy and Resolution: 16-bit resolution with ±0.1% accuracy ensures precise signal processing in automation systems.
-
Channel Diagnostics: Continuously monitors signal quality and detects faults or abnormalities in connected field devices.
-
Terminal Block Compatibility: Suitable for use with terminal blocks H1 and M1, simplifying integration into existing ET 200SP HA setups.
-
Color Code CC01: Clearly coded for easy identification and correct installation within the I/O system.
The 6DL1134-6TH00-0PH1 is built to support efficient signal monitoring, system reliability, and seamless integration into HART-enabled control environments.