GE IS220PTURH1A PTUR Turbine Specific Primary Trip Module – Vogi international

Vogi international

GE IS220PTURH1A PTUR Turbine Specific Primary Trip Module

Brand GE
Module Number IS220PTURH1A
Unit Price $500
Country Of Origin Switzerland
Weight 0.3KG
Certificate C/O from the Chamber of Commerce
C/Q from the Manufacturer
Warranty 12 Months
Inventory Qty 3

GE IS220PTURH1A PTUR is a turbine-specific main trip protection module in the General Electric (GE) Speedtronic Mark VIe series, designed for the primary protection system of gas/steam turbines.

GE IS220PTURH1A Key parameters

Parameter

Specification

Notes

Power Supply

27.4–28.6 V dc

Nominal 28V dc 

Operating Temperature

0°C to 65°C

No cooling fan required 

Dimensions (L×W×H)

100 mm × 50 mm × 30 mm

Compact modular design

Weight

150 g

Lightweight

Processor

Freescale 8349 @ 667 MHz

QNX OS 

Ethernet Ports

Dual 10/100 Mbps

Supports redundancy 

Speed Inputs

4 passive magnetic channels

Detects down to 2 RPM 

Trip Signal Range

16–140 V dc (TRPA inputs)

For voltage detection 

E-stop Input Voltage

18–140 V dc

Emergency stop control 

Contact Output

24 V dc / 7 A dc

TRPA terminal board

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Beneficiary: Vogi International Trading Co., Limited
Account No.: 395714900
Bank Code: 006 Branch Code: 391
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Payment Term:T/T

GE IS220PTURH1A Key Features

High-precision protection control:

GE IS220PTURH1A PTUR detects speeds as low as 2 RPM through four passive magnetic speed inputs, accurately determines turbine shutdown status (zero speed detection), and generates an overspeed trip signal. Its circuit sensitivity is significantly better than general-purpose I/O modules.

Redundancy and automatic fault tolerance:

Dual Ethernet interfaces support redundant network architectures, combined with automatic reconfiguration functions (ToolboxST must be enabled), which can download firmware and parameters from the controller in real time to ensure seamless switching in the event of a fault.

Industrial-grade durable design:

The module adopts a fanless heat dissipation structure and operates stably in a wide temperature range of ‑40°C to 85°C (rated 0–65°C), meets NFPA Class 1 explosion-proof standards, and is suitable for harsh environments such as oil and gas.

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