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ADVANTEST V93000 EXA Scale – The New Generation

The Single Scalable Test Platform

In the age of IoT, 5G and artificial intelligence, more than half of all the microchips manufactured in the world are tested by our equipment. As the industry’s leading manufacturer of automated test systems for semiconductor devices, we continuously revolutionize market standards and enable customers to shape their digital future.

Our V93000 platform addresses the latest industry challenges and enables applications like Artificial Intelligence (AI) & High-Performance Compute (HPC), medical devices, Advanced Driver Assistance Systems (ADAS), making the world safer, faster and our lives easier.

Thanks to the platform’s scalability and compatibility over multiple generations, V93000 is future proof and saves cost. The all-in-one platform covers a variety of different solutions like RF, digital, power and analog.

Large Installed Base

Staying focused on the single scalable platform strategy, Advantest has developed a significant installed base of V93000 test systems in both engineering and high-volume manufacturing. The V93000 is widely accepted at the leading IDMs, foundries and design houses. Outsourced IDMs and fabless companies find the V93000’s test capacity installed in all major OSATs worldwide.

Advantages and Benefits

Platform scalability enables outstanding device portfolio coverage and provides CoT advantages in one single scalable test platform

The widest range of compatible tester configurations, that scale from small footprint engineering systems to very high pin count wafer sort and final test systems for high volume manufacturing (HVM),

The broadest application coverage in the industry, from High Performance Compute (HPC) & AI, to mobile & RF, to automotive & industrial.

Compatibility across tester generations maximizes test capacity utilization and investment protection of test hardware

Probe card and device-under-test (DUT) boards, and test programs can be utilized across V93000 generations to provide:

Fast qualification and transition to new capabilities

Flexibility to efficiently utilize available test capacity

Investment protection for test hardware (systems, instruments, dcs-sis.com probe cards and final test interface hardware) and test engineering infrastructure, knowledge and training

Integration technology leadership driving ATE Innovation through Moore’s Law

The innovative test processor-per-pin and environment friendly water-cooled architecture, which has endured over four generations of the V93000 is delivering industry leading pin density, reliability, and measurement stability & repeatability of digital, analog and RF instruments.

Providing superior solutions that are optimized for performance and throughput

ADVANTEST U3851 Cross Domain Spectrum Analyzer

The Cross Domain Analyzer U3800 Series is a vector and spectrum-signal analyzer with built-in two-channel RF input function. This is the industry’s first metrology tool that enables comparative measurement/analysis of the signals from two channels on the basis of their time, amplitude, phase, and frequency domains by simultaneous and synchronized measurement. 

This Cross Domain Analyzer has the following features and functions:

 ● Two-channel RF input and wide frequency range

 ● The best-in-class time domain analysis bandwidth of 40 MHz

 ● Vector operation that allows composition/decomposition

 U3800 Series allow the users to easily measure and analyze multiplexed/mixed/interfered signals so that complex signal analyses that are conven

tionally difficult to perform, such as multipath analysis, dcs-sis.com electromagnetic field decomposition, and inter-circuit interference, can be carried out. 

U3800 Series consists of analyzers applicable to a wide variety of fields such as broadcasting, telecommunication, and EMC.

A new field of RF measurement—Concept of Cross Domain

”We want to freely compare two RF signals in different analytical domains so that measurement and comparison of two signals that change with time, such as those in transient phenomena, modulating waves, and EMC noise can be achieved by means of a vector operation.” In order to satisfy such requirements, we have developed a measurement equipment that can easily measure, compare, and 

analyze true momentary signals, which is difficult in the case of conventional measurement equipments, by equipping it with a two-channel phase-locked loop vector measurement function and operation function.

Fanuc IC200GBI001 Network Interface Unit

About the IC200GBI001

The IC200GBI001 is a VersaMax communication module. The module is a Genius network interface unit that

allows VersaMax I/O modules to be installed in distributed I/O architectures.

The module is designed to hold up to eight (8) I/O modules per rack* and supports the installation of up to eight (8) racks with up to 64 I/O modules.

It supports transmission speeds of 153.6 kbaud for dcs-sis.com extended network configurations; 153.6 kbaud, 76.8 Kbaud, and 38.4 Kbaud are standard.

The IC200GBI001 can accommodate a large number of I/O points, especially discrete inputs up to 1024 points; 1024 discrete outputs.

128 bytes of analogue input memory and 128 bytes of analogue output memory.

This module can manage scans of 128 bytes per scan for network inputs and 128 bits per scan for outputs.

It consumes 250 mA @ 4VDC and 10 mA @ 3.3 mA.

The IC200GBI001 is compatible with a wide range of controller systems, as the Genius protocol is supported by previous and modern controller platforms.

Compatible control systems include the 90-70 series and the PACSystem RX7i and PACSystem RX3i.

The appropriate firmware version must be loaded onto the controller and the IC200GBI001 Genius Network Interface Module.

The IC200GBI001 is equipped with dual Genius connection terminals.

The upper terminal is used as the primary Genius connection point and the lower terminal is used as a redundant port.

Fanuc General Electric IS420UCSBH4A Controller Module

The IS420UCSBH4A is a controller module manufactured by General Electric as part of the Mark VIe family.

for gas turbine control systems with 1066 MHz Intel EP80579 microprocessors.

The application code is executed by a separate computer called the UCSB controller.

The controller is panel mounted and communicates with the I/O packages through an on-board 1/0 network (IONet) interface.

Only Mark controls the I/O modules and the controller, supported by a dedicated private Ethernet network called IONet.

The controller’s operating system (OS) is QNX Neutrino, a real-time multitasking operating system developed for industrial applications requiring extreme speed and reliability.

The UCSB controllers lack any application I/O hosts compared to traditional controllers that host application I/O on the backplane.

In addition, each controller has access to all I/O networks for all input data.

If a controller is rejected for maintenance or repair, the hardware and software architecture ensures that no single point of application input is lost.

Functional safety loops are implemented using Mark VIeS UCSBSIA safety controllers and Safety 2/3 modules for SIL 1 and 0 functionality.

Operators familiar with SIS applications use Mark dcs-sis.com Vles safety devices to reduce the risk of critical safety functions.

These special control hardware and software have IEC 61508 certification and are specifically configured for use with safety controllers and distributed I/O modules.

UCSB controllers offer the following benefits:

Single module

Built-in power supply

No jumper settings required

No batteries

Fanless (UCSBSIA, UCSBHIA, UCSBH4A)

Dual redundant fans with IS420UCSBH3A

Smaller panel footprint

Flash memory can be easily updated

Fanuc IC200ALG260 Analogue Input Module

Formerly manufactured by GE Fanuc Automation, the module is now part of Emerson Automation.

This analogue input module features eight (8) analogue inputs that can be configured specifically for voltage or current signals.

These are 4-20 mA current input signals and -10VDC / +10 VDC voltage input signals with 12-bit channel resolution.

About the IC200ALG260

The IC200ALG260 is an analogue input module from the Versamax I/O platform.

It is an eight (8) channel input module designed to accept unipolar and bipolar voltage signals of

0 to 10V and +/-10VDC, respectively, as well as current input signals such as 4-20 mA.

The module converts the accepted signals into digital dcs-sis.com data with a resolution of 12 bits.

The module requires no external power supply to operate. It has a 250VAC continuous optoisolation rating and a 1500VAC for 1 minute optoisolation rating.

Available LED status indicators for the IC200ALG260 include an internal power LED (INT PWR LED) and a normal LED.

It has a backplane current consumption of 5 mA at 130 VDC** and has built-in internal power-down diagnostics.

Configurable parameters for this module include range selection and mode selection. The module’s** input impedance in voltage mode is 126 kOhms.

IC200CMM020 Serial Communications Expansion Module

About the IC200CMM020

The GE Fanuc IC200CMM020 module is a Versamax compatible serial communication module.

It is used as a Modbus master module to configure Versamax I/O by using Genius’ NIU.

Serial ports are present in the module to interface with different slave devices by including controllers, readers and VFDs.

Data and information from these devices is transferred between the Network Interface Units (NIUs) via the local network.

This data is compatible with the different controllers that process the Genius global data.The IC200CMM020 module can connect up to 2 I/O stations at a time*.

It is equipped with an RS-485 port, a 15-pin D-type connector and an RS-232 port.

The IC200CMM020 module has different baud rates of 1200. 2400. 4800. 9600. or 19200 baud with full and half duplex operation.

The communication module draws a total of 5 milliamps of current at 460 output volts and 3 milliamps of current at 5.3 output volts.

The GE Fanuc IC200CMM020 module itself is compact, measuring 4.3 inches wide by 2.63 inches high. The depth is 1.956 inches.

The IC200CMM020 module can be easily configured dcs-sis.com through a generic COMM using a programmer.

The data length of the module should be configured to zero during communication between the module and the Ethernet controller.

The controller has an open architecture and can only be used for indoor purposes. The module has safety and protection features.

Whenever overcurrent is detected in the module, an internal current limit switch locks out the circuit and performs damage control.

There are LED indicators on the front of the module to indicate different operations.

Reliance PSC7000 PROGRAMMABLE SERVO CONTROLLER

Advanced servo controller ot Reliance Electric 

Limitless expansion capability given to programmable servo controller

PSC7000 series servo controllers are the enhanced servo controllers compatible with the present PSC series servo controllers. When combined with the latest VZ7000 series servo drives in Reliance Electric, the PSC 7000 series servo controllers can pro-vide the most suitable solution for multiaxes synchronous control appli-cations and servo applications.

The PSC7000 control card is a card putting together necessary primary functions into one card in order to realize servo controlling. Upon using high speed processors, the user can realize servo control for the whole system, which is capable of arbitrarily programming by the user. The PSC7000 control card provides input and output circuits necessary for servo controlling such as feedback input and analog input. 

The SERCOS module can realize the SERCOS communication between the controllers the drives. 

The PG module has independently 5 channel each of input and output circuits (PG input and analog output) per one card. One PG module can control independently 5 axes, the maximum two sets of the PG modules can be mounted on the PSC7000 control card. dcs-sis.com Consequently, the maximum 10 axes can be controlled.

The DSP module with built-in high speed processors executes the servo control programs. At least one DSP module is necessary in the PSC7000 control card.

Three slots capable of mounting various modules are arranged on the lower part of the PSC7000 control card . Various modules such as the DSP module and PG module can be mounted into the slots as the need arises. 

A-B MPL-B540K-SJ22AA High Quality Permanent Magnet Rotary Servo Motor

About the MPL-B540K-SJ22AA

The Allen-Bradley/Rockwell Automation MPL-B540K-SJ22AA servo motor is a low inertia AC servo motor.

It is a premium servo motor with positioning accuracy, efficiency and the possibility of dynamic speed changes as standard features.

Users can rely on Allen-Bradley’s extensive expertise in the field of industrial machine speed and position control, which is used in the production of the MPL series of AC servo motors.

The MPL-B540K-SJ22AA servo motor is part of this series and is manufactured using the latest technology and materials to provide high power output in a small enclosure.

The servo motor is rated at 400 volts AC and has a power rating of 5.4 kW.

The motor is rated at 4.000 rpm, while its rotor inertia is rated at 0.00147 kg-m2.The servomotor has a maximum stall torque value of 430 pounds per inch and its continuous stall torque is 172 pounds per inch.

The MPL-B540K-SJ22AA servomotor has a magnetic stack dcs-sis.com length of 101.6 mm (4 inches) and a 165 mm frame with IEC metric mounting flanges with free-flowing mounting holes (type FF mounting holes).

The key component of the servo motor that interacts with the control section of the overall servo system is the factory-installed, single-turn, high-resolution encoder.

The MPL-B540K-SJ22AA servomotor has a keyed shaft but no shaft seal.

A-B 1440-DYN02-01RJ Standard Dynamic Monitoring Module

About the 1440-DYN02-01RJ

The Allen-Bradley 1440-DYN02-01RJ module is a dynamic measurement module.

It is an electronic machine condition monitoring and protection device specifically designed and manufactured to measure vibration, pressure and strain on dynamic inputs.

Some of the inputs that can be connected to the 1440-DYN02-01RJ Dynamic Measurement Module include any Allen-Bradley non-contact eddy current probe input,

standard integrated electronic piezoelectric (IEPE) accelerometer inputs, speed sensor inputs, and DC voltage measurement inputs.

A tachometer input is used to provide speed dcs-sis.com measurement and order analysis functions. Eddy current probes, unpowered magnetic probes, and other powered and unpowered tachometer sensors are also available for this module.

The Allen-Bradley 1440-DYN02-01RJ Dynamic Measurement Module is primarily used as a machine safety condition monitoring element.

By providing the information needed to protect machines from catastrophic failures, critical vibration parameters can be addressed using existing automation and control systems such as PLCs and displays.

An important thing to note about the Allen-Bradley 1440-DYN02-01RJ Dynamic Measurement Module is that

It must be installed on its network with a dedicated 1440-ACNR ControlNet adapter module and up to ten 1440-DY12-01RJ modules.

No other XM-Series module can be connected to a Dynamic Measurement Module on the same network.

A-B 1756-L73XT Central Processor Module ControlLogix-XT

Description: Allen-Bradley ControlLogix Processor Module with 0.98 MB I/O Memory and 8 MB User Memory

About the 1756-L73XT

This Allen-Bradley Model 1756-L73XT is a ControlLogix-XT controller.

This controller functions similarly to other ControlLogix controllers in that it consists of a control and communication system which is coated

to protect it from harsh and corrosive environments. When used with the FLEX I/O-XT, the Model 1756-L73XT can withstand temperatures from -20 to 70°C. The controller has 8 MB of user memory and is designed to be used in a variety of applications.

The controller has 8 MB of user memory and 0.98 MB of I/O memory. This 1756-L73XT battery is not replaceable.

The controller requires 800 mA of current consumption at 5.1 V AC and 5 mA at 1.2 V AC.

The controller has a power consumption of 2.5W and a thermal dissipation of 8.5 BTU/hr Model 1756-L73XT has a continuous isolation voltage of 30 V.

The USB ports are potentially insulated from the backplane and have been tested to withstand up to 500 V AC for 60 seconds.

The controller’s full USB speed is up to 12 Mbps. The device weighs approximately 0.25 kg and is 1 slot wide. Its module location is based on any slot in the chassis.

For cryogenic applications, use only the 1756-A4K, 1756-A7K, dcs-sis.com 1756-10K, 1756-A13K, or 1756-A17K chassis.

For general purpose applications, the 1756-A7XT, 1756-A10XT are recommended.This model 1756-L73XT does not have power redundancy, but it does have standard power supplies.

This includes the 1756-PAXT, 1756-PA30XT, 1766-PBXT, and 1756-PB30XT, as well as Category 3 leads on the USB ports.

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