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Honeywell 91MCE Series MICRO SWITCH Miniature Compact Limit Switches Features

Warranty/Remedy

Honeywell warrants products manufactured by it to be free from defects

in material and workmanship for the applicable warranty period.

Honeywell’s standard product warranty applies unless otherwise agreed to in writing by Honeywell;

For specific warranty details, refer to your order confirmation or consult your local sales office.

If the warranted product is returned to Honeywell during the warranty period,

Honeywell will, at its sole discretion, repair or replace, free of charge, the product that Honeywell deems

to be defective.

The foregoing is Buyer’s exclusive remedy and is in lieu of all other warranties, express or implied,

including the following warranties

merchantability and fitness for a particular purpose. In no event shall Honeywell be liable for

consequential, special or indirect damages.

Honeywell may provide application assistance in person, through our materials and through Honeywell

websites.

and Honeywell websites for application assistance, but it is the sole responsibility

of the buyer to determine the suitability of the product for the application.

Specifications are subject to change without notice.

As of this writing, the information we have provided is believed to be accurate and reliable.

However, Honeywell assumes no responsibility for its use.

Honeywell 91MCE Series MICRO SWITCH

ORTFOLIO

The 91MCE series is part of the 14CE, 914CE, NGC, SZLVL-S, SSCE and SL1 series of miniature limit

switches.

Honeywell also offers a range of MICRO SWITCH heavy duty limit switches and general purpose limit

switches.

Features

– Direct-acting contacts designed to open NC contacts when touched

– Sealing class IP67; NEMA 1. 4. 12. 13 for outdoor applications

– CE, UKCA, cULus, CCC approvals meet most global certification requirements

– Nine actuator styles provide design flexibility

– Slow-action and fast-action circuit options

– Reserved cable and M12 connector options

– Mechanical life expectancy: 5 million operations

– Side exit (standard) and bottom exit connection options

Side outlet (standard) and bottom outlet connection options

– Mechanical equipment

– Material handling

– Aerial lift trucks

– Forklift trucks

– Off-road and outdoor equipment

MOOG The G123-814 emits emissions well below the levels required for CE marking testing

Electromagnetic compatibility

The G123-814 emits emissions well below the levels required for CE marking testing.

However, the cable connecting the valve coil should be shielded to ensure that no interfering radiation is

emitted.

Connect both ends of the shielded cable to chassis earth. Use terminals 10 and 14 on G123-814.

Immunity to external interference radiation depends on careful wiring techniques.

The recognised method is to use shielded cables for all connections, the

The accepted method is to use shielded cable for all connections and to radially terminate

the cable shield with a suitable grounded cable gland where it enters the industrial steel enclosure.

If this is not possible, chassis ground screw terminals are available on the G123-814.

The length of bare wire should be minimised. Connect the shield at each end of the cable to chassis

ground.

Allow sufficient length of cable

so that the wires remain connected when the circuit card is removed from the housing. 

This allows the circuitry to be checked while the circuit card is still connected and operational.

For cables connected to the outside of the housing as well as for

cables connected to the adjacent DIN rail unit, an additional 100 mm is sufficient.

The cable to the valve coil carries 1 Amp and should be sized accordingly.

Cables with a conductor size of 0.2 mm2 are normally rated at 1 Amp and are suitable for cable lengths

up to 5 metres.

MOOG Dual PWM Amplifier G123-814 Wiring

Cooling

Vents at the top and bottom of the G123-814 chassis provide cooling for internal electronic equipment. 

These vents should be kept clear.

It is important to ensure that the equipment below does not generate

hot exhaust gases that could heat the G123-814.

Wiring

It is recommended that crimped “guide lace sleeves” be used as screw terminals. 

Allow sufficient length of cable

so that the wires remain connected when the circuit card is removed from the housing. 

This allows the circuitry to be checked while the circuit card is still connected and operational.

For cables connected to the outside of the housing as well as for

cables connected to the adjacent DIN rail unit, an additional 100 mm is sufficient.

The cable to the valve coil carries 1 Amp and should be sized accordingly.

Cables with a conductor size of 0.2 mm2 are normally rated at 1 Amp and are suitable for cable lengths

up to 5 metres.

MOOG Dual PWM Amplifier G123-814 Applying this amplifier

Applying this amplifier

Apply this amplifier to other valves with the same specifications to obtain the same performance as

Hydrolux valves.

The G12-814 is not suitable for conventional open-loop proportional valve applications.

A zero flow condition is highly unlikely as the deadband compensation circuit cancels out spool overlap.

Zero flow conditions are unlikely with zero coil current as the deadband compensation circuit cancels out

spool overlap.

Mounting

Installation consists of mounting a horizontal DIN rail to the vertical rear surface of an industrial steel

enclosure.

The rail release clips on the G123-814 should face downward to allow front panel and terminal

markings to be clearly readable and to allow cooling airflow to the internal electronics.

An important consideration for module placement is electromagnetic interference (EMI) from other

equipment in the enclosure.

For example, VFs and AC servo drives generate high levels of EMI.

be sure to check other equipment for EMC compliance before placing it near the G123-814.

Cooling

Vents at the top and bottom of the G123-814 chassis provide cooling for internal electronic equipment. 

These vents should be kept clear.

It is important to ensure that the equipment below does not generate

hot exhaust gases that could heat the G123-814.

Emerson The AMS 6500 Machinery Health Monitor

The AMS 6500 Machinery Health Monitor is an integral part of PlantWeb® and AMS software.

PlantWeb provides integrated machine health operation in conjunction with

the Ovation® and DeltaV™ process control systems.

AMS software provides maintenance personnel with advanced predictive and

performance diagnostic tools to accurately determine machine failures at an early stage.

Features

• Dual-channel, 3U-sized, 1-slot plug-in module cuts cabinet space requirements in half compared to

traditional four-channel 6U cards

• API 670-compliant hot-swappable modules

• Password-protected user configuration

• Self-test features include monitoring hardware, power inputs, hardware temperature, sensors and cables

• Hardware temperature, sensors and cables

• Pre- and post-buffered and proportional outputs, 0/4-20 mA outputs, 0 – 10 V outputs

• For use with Inductive Displacement Sensor 9350

A6410 Dimensions:

PCB/EURO card format to

DIN 41494. 100 x 160 mm (3.937 x 6.300 in)

Width: 30.0 mm (1.181 in) (6 TE)

Height: 128.4 mm (5.055 in) (3 HE)

Length: 160.0 mm (6.300 in)

Net weight: approx. 320 g (0.705 lb)

Gross weight: approx. 450 g (0.992 lb)

Including standard packaging

Package volume: approx. 2.5 cubic metres (0.08 cubic feet)

Space

Space Required 1 slot

14 modules per 19″ rack

Emerson A6630 Temperature Monitor Machine Monitoring System

Sensor power supply

Each channel is equipped with an integrated sensor power supply.

Thermocouples:

Bias voltage for isolating thermocouples

RTD: Constant current supply: 250μA …. . 1mA

Voltage: 4V

Power supply

Redundant power supply via two power inputs (decoupling diodes).

At least one power input is required for module power supply.

Supply voltage: 24 (18…. .31.2) VDC according to IEC 654-2; class DC4

Power consumption: max. 8 W

Control inputs

All channels have two logic binary inputs for the following two functions:

Reset of the maximum measured temperature

Reset latching relay

Limit blocking

The control inputs are designed for 24V logic (active low input)

Low level: 0…. .3V; high level: 13…. .48V

Input resistance: ≥30 kΩ

Current output

Nominal range:

0/4… .20 mA or 20… .4/0 mA

Open and short circuit protection

Permissible load ≤ 500 Ω

Resolution 16 bit

Optocoupler outputs

Six collector/emitter outputs

Uce = 48 VDC

Ice = 100 mA

Parker C3S063V2F12I31T11M00 Main Application Scenarios

The following are some of the main application scenarios for Compax3S servo drives:

Industrial automation: In automated production lines, Compax3S servo drives can accurately

control the movement of robotic arms, conveyors and other equipment to achieve efficient automated

production.

Its high performance and fast response time make the production process more accurate and reliable.

Mechanical equipment: Compax3S servo drive is suitable for a variety of mechanical equipment,

such as CNC machine tools, machining centres and robots.

It can provide precise position and speed control to meet the needs of 

mechanical equipment for high precision and high efficiency.

Packaging and Printing: In the packaging and printing industry,

Compax3S servo drive can control the movement of packaging machinery and printing

equipment to achieve precise packaging and printing operations.

Its high reliability and stability ensure the continuity and efficiency of the production process.

Rehabilitation medical: Compax3S servo drive is also widely used in the field of rehabilitation medical.

It can be used for the drive and control of rehabilitation equipment,

helping patients to carry out rehabilitation training and improve the rehabilitation effect.

Energy and transport: In the energy and transport field, Compax3S servo drives can be applied to wind

power generation,

solar tracking system and control of electric vehicles and other equipment.

It can provide stable and reliable power output to meet the demand for

high efficiency and environmental protection in the energy and transport fields.

Material Handling and Converting: Compax3S servo drive also plays 

an important role in material handling and converting process.

It can control conveyor belts, sorting machinery and other equipment to

achieve accurate material conveying and conversion and improve production efficiency.

Parker C3S063V2F12I31T11M00 Compax3S Single Axis Servo Drive

This enables the drive to meet the needs of different applications and realise complex and varied control

logic.

High performance and response speed: Compax3S servo drive has high performance

and fast response speed, able to quickly switch between active and passive training.

and dynamically adjusts in real time during training.

This allows it to excel in applications that require precise control and fast response times.

High safety and reliability: Compax3S servo drive is compatible with a

variety of safety standards, such as “safe stop”, providing users with security.

At the same time, it also has outstanding protection features,

such as leakage current protection, to ensure the stable operation of equipment.

In addition, the drive complies with a number of international standards to ensure its quality and

reliability.

Easy to install and maintain: The installation of Compax3S servo drives is simplified

thanks to the fact that all the interfaces are located on the front panel.

This saves space in the control cabinet and optimises the use of available space.

In addition, its structural design and modularity reduce the difficulty and effort of maintenance.

Wide range of applications: The Compax3S servo drive is suitable for a wide range of applications

such as rehabilitation equipment, material forming, material handling, printing and material conversion.

Its power and flexibility enable it to meet the needs of complex and changing applications.

Compax3S servo drives are used in a wide range of fields and scenarios due to their excellent

performance and flexibility.

Parker C3S063V2F12I31T11M00 Compax3S Single Axis Servo Drive

This reduces inventory requirements and simplifies the ordering process,

making it easier for users to select and use the right servo drive for their needs.

In summary, the Parker C3S063V2F12I31T11M00 Compax3S servo drive

features a modular design, compatibility with multiple safety standards,

compliance with a number of international standards, compact structure,

and wide applicability, and other features and advantages.

These characteristics make it have a wide range of applications in industrial automation, 

machinery manufacturing and other fields.

The Compax3S servo drive is a powerful and flexible device with a number of significant

features and advantages that enable it to perform well in a variety of applications.

The following are the main features and advantages of the Compax3S servo drive:

Compact structural design: Compax3S servo drives feature a compact structural design

that significantly reduces the size of the device and system, thus saving valuable space.

This design not only optimises the performance of the device,

but also makes installation and maintenance easier and more convenient.

Multiple interfaces and communication protocols: Compax3S servo drives provide a variety of interfaces

and communication protocols.

Such as digital input/output, RS232/RS485. Profibus, CANopen, DeviceNet, Ethernet Powerlink and so on.

This makes it possible to seamlessly connect to a wide range of devices and systems for efficient data

transfer and communication.

Built-in programming function: The Compax3S servo drive has a built-in programming function

that allows users to make personalised control settings according to actual needs.

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