Welcome to the official website of CNIACS Automation Technology Co., Ltd!

Meggitt The vibration signal fed into the P702B Transduce

The vibration signal fed into the P702B Transducer input connector passes through a low pass filter

(optional) and to the first gain stage which amplifies the signal by X1 or X10 according to the gain switch

setting. The signal is split and one path is routed to an integrating amplifier to become an output signal

proportional to velocity (mV/in/sec). It then rejoins the non-integrated signal at the ACCeleration/VELocity

selector switch. When the switch is in the ACCeleration position, the signal goes directly to the second

stage gain amplifier which can introduce an additional X1 or X10 gain. By using different combinations of

first and second stage gains, the output can be set for gains of X1. X10 or X100.

The fault monitoring circuit is built around a dual comparator which senses the DC voltage supplied to the

transducer’s internal amplifier. The comparator circuit is of the window type and when the transducer’s

bias output voltage exceeds the normal range, 6-16 VDC, depending on the transducer type, it illuminates

the FAULT indicator. Abnormal voltages which can be caused by extended signal overloads within the

transducer’s internal charge amplifier may trip the circuit. Normally, small transients will not cause the

fault indicator to light as it has a rather long time constant to prevent low frequency, high amplitude

signals from causing the indicator to illuminate erroneously.

The P702B can be supplied by the factory with an optional 6 dB per octave roll-off RC low-pass filter

incorporated into the amplifier.

Meggitt P702B/P702BF-1 Theory of operation

Operation

Theory of operation

The P702B power unit/amplifier consists of the major circuits and components shown in Figure 2 in the

appendix. Panel functions are shown in Figure 1. The power module provides + 27 VDC through an

internal 2.4 mA (other values between 2.0 and 10 mA can be furnished on request) constant current

diode to the transducer, as well as the DC excitation for the selectable gain amplifier, the fault indicator

circuit, and the integrating circuit.

The power is normally supplied from the three internal 9 volt batteries. When the optional LA704 Line

Adaptor is used, the internal batteries are automatically disconnected when the adaptor’s output cable is

plugged into the power jack on the rear of the P702B unit. See Figure 3 in the appendix for correct

jumper placement.

The vibration signal fed into the P702B Transducer input connector passes through a low pass filter

(optional) and to the first gain stage which amplifies the signal by X1 or X10 according to the gain switch

setting. The signal is split and one path is routed to an integrating amplifier to become an output signal

proportional to velocity (mV/in/sec). It then rejoins the non-integrated signal at the ACCeleration/VELocity

selector switch. When the switch is in the ACCeleration position, the signal goes directly to the second

stage gain amplifier which can introduce an additional X1 or X10 gain. By using different combinations of

first and second stage gains, the output can be set for gains of X1. X10 or X100.

Meggitt P702B power unit/amplifier

Introduction

The P702B power unit/amplifier is a portable power source with integral signal conditioning for use with

internally amplified accelerometers. Signal conditioning includes amplification, integration and fault

indication.

Description

The P702B power unit/amplifier is a portable unit specifically designed to furnish 2.4 mA constant DC

current (+27 VDC) necessary to operate the internal charge amplifiers of Meggitt Sensing Systems and

similar piezoelectric transducers (accelerometers and velocity sensors.) In addition the P702B provides

signal conditioning, includes features such as selectable gain levels of 1. 10. 100. extremely low-noise,

integration to yield velocity output, battery condition indication, and visible overload or open/shorted cable

indication. This gives the test engineer broad capabilities for the accurate measurement and recording of

vibration signals over a wide range of test situations. Also virtually any high impedance charge-type

accelerometer can be operated with the P702B with the addition optional charge converter accessory,

CC701. The P702B also has built-in ESD protection to guard against damage of the internal electronics.

All switches and controls are on the front panel. Transducer input and output BNC connectors are

located on the rear panel, as is a connector for the optional line adapter/charger, See Figure 1 in the

appendix.

The P702BF-1 is identical to P702B, except that the frequency response of the P702BF-1 is specified as

–3 dB from 0.5 Hz to 20 kHz (versus 0.5 Hz to 50 kHz for the P702B) in acceleration mode. Other than

the high end frequency response, the P702BF-1 is identical to the P702B in terms of operation,

maintenance and troubleshooting.

Meggitt VibroSmart DMS Simplicity and ease of use

Simplicity and ease of use

The VibroSmart DMS has been designed to be simple to install and use, with special care

taken for the handling and maintenance aspects of the system:

• A VibroSmart DMS can be installed in a short amount of time by a qualified electrician.

• Installation of a VibroSmart DMS, individual modules and the connection of signals is

performed using standard tools.

• VibroSmart DMS modules are “hot-swappable” and can be installed or replaced in

seconds.

• All VibroSmart devices are DIN rail mountable.

• Different configurations (network topologies) are supported: linear and redundant

HSR ring.

Meggitt VibroSmart is a cost-effective family of devices

Applications

VibroSmart is a cost-effective family of devices that offers unique combinations of

functionality, versatility and safety assurance. Different VibroSmart modules, terminal bases,

devices and communications adaptors can be combined to build any machinery monitoring

system. In this way, a monitoring system can be built to meet the exact needs of an

application resulting in a more cost-effective and reliable solution.

In practice, a VibroSmart DMS consists of one or more VibroSmart modules connected

together in one or more measurement blocks in order to provide a machinery monitoring

system. The actual functionality provided by a VibroSmart DMS depends on how the DMS is

configured, which is done using the VibroSight® software.

ypically, a VibroSmart DMS can be configured and operated as a machinery protection

system (MPS), a condition monitoring system (CMS) or a combined MPS/CMS:

• An MPS can be implemented using a VibroSmart DMS configured without a VibroSight

Server and database, that is, a simple “stand-alone” DMS.

• A CMS must be implemented using a VibroSmart DMS configured with a VibroSight

Server and database in order to allow the permanent storage of data for viewing at a later

time.

VibroSmart DMSs are intended primarily for vibration monitoring of critical assets such as gas

or steam turbines, motors, compressors, generators, feed pumps, fans or other rotating and

reciprocating equipment in the power generation, petro-chemical and petroleum industries.

The modular and scalable nature of VibroSmart DMS means it can also be used to provide a

versatile and cost-effective monitoring system for balance of plant equipment.

Meggitt VibroSmart® Distributed Monitoring System (DMS)

What is VibroSmart DMS?

The VibroSmart® DMS (distributed monitoring system) is a system of modular and scalable

products designed for condition monitoring and machinery protection applications for power

generation turbines, oil and gas applications and auxiliary balance-of-plant equipment.

VibroSmart DMS modules can be mounted directly on machinery, eliminating the need for

costly cabling, because VibroSmart is designed and certified to work in extremes, such as

harsh industrial environments characterised by potentially explosive atmospheres (ATEX

Zone 2), high temperatures (70°C) and high mechanical stress. VibroSmart complements the

VM600 series of rack-based solutions from Meggitt Sensing Systems’ Vibro-Meter ® product

line and is compatible with the same VibroSight ® software.

A VibroSmart DMS is a network of small and economical devices providing different

monitoring system functions (for example, measurement or communications) that are

connected together in one or more measurement blocks in order to provide the functionality

normally offered by rack-based machinery monitoring systems.

In general, a VibroSmart DMS can contain up to 8 measurement blocks and each

measurement block can contain up to 16 VibroSmart modules. For example, this allows a

VibroSmart DMS using VSV300 vibration monitoring modules (two dynamic input channels

and one auxiliary input channel) to be built that provides a monitoring system with between

1 and 384 input channels (256 dynamic and 128 auxiliary/tachometer).

The actual functionality provided by a VibroSmart DMS depends on how the constituent

measurement blocks and VibroSmart DMS modules are configured, which is done using the

VibroSight® software.

Meggitt Flow shutoff valve C327935

Meggitt’s 1½ inch poppet style gas flow shutoff valve is designed for use on

industrial gas turbine engines. This product is very similar to the 2 inch,

C327845. Flow Shutoff Valve, except with a 1½ inch flow body.

Key features

· Fail-safe closedde-energized)

· Closed positionindicating switch

· 100 msec fail-safeclosing time

· 200 msec opening time

· High temperature poppet seal

· Used on both DLE andSAC turbine engines

· Explosion proof design,CSA/UL certified for NECclass 1. division 1.

groupsC and D, temp code T4.CE zone 1. EExd lIB,CE-ATEX and PED

certified

· All stainless steelvalveand body materials forNACE compliance

· No maintenance requiredunder normal conditions

Meggitt C327935 Specifications

Specifications

Function: Fail-safe fuel gas flow shutoff for gas turbine engines

Physical size: 9.95″ flange to flange, 15.19″ high

Weight: 85 pounds maximum

Flange type: 1.5″ ANSI B16.5 CL 600 raised face flanges

Line pressure: 0 to 1000 psig

Fluid temperature: –20 to 350°F

Performance:

Flow: 0 to 3.0 pounds/sec natural gas

Leakage: ANSI class V

Operating time: 100 msec fail-safe closed (de-energized); 200 msec to fully open

Ambient temperature: –65 to 150°F

Electrical:

Solenoid: Continuous duty, 24 VDC nominal (20 to 28 VDC), 2 amperes maximum

Closed position indicating switch: 28 VDC, 2.5 amperes, 3-wire, SPDT

Meggitt C173455 Servo motor controller

90 to 140 vdc, metering valve position control

Meggitt’s 90 to 140 VDC motor controller is  in use on a variety of industrial

gas turbine engines. With millions of field operating hours, this design

continues to prove the high reliability of Meggitt EMA technology.

Specifications

Function:Positioning controller for precision gas fuel metering valves used on

aero-derivative and frame turbine engines.

Type:  Digital pulse-width modulated servo-amplifier

Physical size:   9.625” wide, 8.5” high, 13.55 deep

Weight:  25 pounds

Input voltage: 90 to 140 VDC

Input current: 7.5 amperes maximum

Output current:   0.3 ampere (continuous), 7.0 amperes (peak)

Digital input/output: 0 to 5 VDC

Electrical connections:   Terminal strip, AWG 14 to 22

Communications:

C173455 – serial port interface RS-485; C173455-2 – analog

interface 4-20 ma

Ambient temperature:    0 to 70ºC (32 to 158ºF)

Remote installation:

Up to 60 meters (200 feet) wire run length from the fuel metering valve.

The controller consists of a servo amplifier, an I/O signal noise filter, and

a capacitor, which are packaged in a compact three level unit with readily

accessible interface terminations on its top plate. The servo amplifier is

mounted on a cold plate on the lower level, and the resistor/capacitor

network, inlet EMI noise filter and outlet common mode choke filter are

on the middle level.

Meggitt C327845 Flow shutoff valve

Two-inch flange, 24 vdc, solenoid pilot actuated (SPA)

Meggitt’s two-inch poppet style gas flow shutoff valve is in use on a variety

of industrial gas turbines with millions of field operating hours. This product

continues to prove the high reliability of Meggitt design technology.

Key features

• Fail-safe closedlde-energized)

•  Closed positionindicating switch

•  100 msec fail-safeclosing time

• 200 msec opening time

• High temperaturepoppet seal

• For use on both DLE andSAC turbine engines

• Explosion proof design,CSA/UL certified for NECclass 1. division

1. groupsC and D,temp code T4.CE zone 1. EExd lIB.CE-ATEX and PED certified

• All stainless steel valveand yoke materials forNACE compliance

• No maintenance requiredunder normal conditions

Specifications

Function:  Fail-safe fuel gas flow shutoff for gas turbine engines

Physical size: 9.00″ flange to flange, 15.19″ high

Weight: 80 pounds maximum

Flange type:  2″ ANSI B16.5 CL 600 raised face flanges

Line pressure:  0 to 1000 psig

Fluid temperature:  32 to 350°F

Ambient temperature:  –65 to 150°F

Performance

Flow:   0 to 3.5 pounds/sec natural gas, Cv = 55

Leakage:   ANSI class V

Operating time:   100 msec fail-safe closed (de-energized);

200 msec to fully open

Pressure drop

(full open): 11 psid maximum at 80°F and 3.5 pounds/second flow

Electrical

Solenoid:   Continuous duty, 24 VDC nominal (20 to 28 VDC),

2 amperes maximum

Closed position  indicating switch: 28 VDC, 2.5 amperes, 3-wire, SPDT

Search for products

Back to Top
Product has been added to your cart