Features
• Fast, new Super Hybrid Sensor (SHS) gives you the ultimate in response speed – Just ONE Second!
• Resolution Range among models: 1/61,000 to 1/1,100,000
• Large, bright Vacuum Fluorescent Display – see the display even in the dark
• Percentage, Counting Functions & Comparator functions
• ACAI Counting Function for highly accurate counting
• Bright, blue Vacuum Fluorescent Display
• GLP/GMP/ISO Compliance
• Wide selection of 16 different models 30g-12kg
• Compact, low profile design
• Multiple Weighing Units -g,%,PCS,oz,ozt,tl,lb,GN,dwt,ct,mom
• Large Wide Angle LCD Display with back light
• Control zero,mode selection and data output with standard RS-232C
• Triple range weighing for EW-i series
• Conformity to GLP with I.D. and serial number output
• Auto power off
• Sealed key panel protection against dust and spills
• Full Digital Calibration
• Standard Comparator function-Hi/OK/LO annunciate
• ACAI Counting Function for highly accurate counting
• Overload Protection
• Security Ring secures balance to bench to protect against theft
• High speed stabilization of just 0.8 seconds at a weighing sensitivity of 1 mg (1.1 seconds at 0.1 mg)
• Slim separate weighing sensor unit (80 mm width) for compact setups
• High resolution and large capacity (up to 1100 g × 1 mg)
• Shock absorber function
• Possible to design a special weighing pan
• Auto zero display after data output
• Possible to control the RE-ZERO and PRINT keys via an external connection
• Multiple weighing units
• Data memory function
• GLP/GMP/GCP/ISO compliance
Renowned around the world for its combination of flexibility, reliability and performance, the 2023A Series signal generator continues to offer fantastic value and excels in the following area:
• Phase noise performance
• Class leading VSWR
• Highest power option +25dBm
• Unique SINAD measurement option for simplified receiver testing
• Unique DC power input option for use in vehicle or external supply in the field
• …and at 8 kg (17.6 lbs.) is still one of the lightest and most portable signal generators in its class.
Mass flow controllers (MFCs) were originally designed to take the guess work out of precision gas flow control. Today, the demand for accurate and repeatable gas flow control has spanned dozens of industries. Demand for mass flow controllers is growing and customers are requiring that MFCs are easy to use, fast, reliable, accurate, cost effective and robust.
The Alicat Scientific Mass Flow Controllers are especially well suited for vacuum coating applications. These would include vacuum sputtering, e-beam evaporation, or chemical vapor deposition(CVD). We can do secondary outputs for pressure or temperature should you also need to monitor inline pressure. Alicat Scientific Mass Flow Controller can control 30 gases. One gas should be specified for the primary gas calibration. A 115V/60Hz power cable is available to power the unit.
The Alicat MC/ MCR/ VC & VCR series mass flow controller is designed to meet the above requirements:
Measured Parameters
• MC & MCR Series Mass Flow Controller products
• Mass Flow
• Volumetric Flow
• Pressure (PSIA)
• Temperature (° Celsius or ° Farenheit)
• VC & VCR Series Volumetric Flow Meter products
• Volumetric Flow
Agilent's Multi-Wavelength Meter family 86120C is the right, optimized tools to efficiently develop, manufacture, install and verify optical components and networks for next generation applications. Agilent multi-wavelength meters are Michelson interferometer-based instruments that measure wavelength and optical power of laser light over a specified wavelength range. Simultaneous measurements of multiple laser lines are performed allowing measurements of DWDM signals and multiple lines of Fabry-Perot lasers.
Features:
• •Wavelength scan in less than 1sec
• •Wavelength accuracy: +- 2 ppm for laser lines separated by > 15GHz
• •High Laser Input power: 10dBm (18dBm – Safe Input level)
• •Built-in HeNe laser wavelength standard
• •Maximum Number of Laser Lines Input: 200
• •Wavelength Range: 1270 – 1650 nm (182 to 236 THz)
• •Absolute Accuracy ±2 ppm (±0.003 nm at 1550 nm and at 1310 nm) for laserlines separated by 15 GHz
Agilent high performance DC power supplies offer speed and accuracy for test optimization. The single output, 80-100 W, GPIB 6631B-6634B provide fast, low-noise outputs; programmable active down-programmer sinks the full rated current; dual-range, precision low current measurement; as well as optional isolation and polarity reversal relays. The Agilent 100W, GPIB, single output 6632B is a versatile medium-power solution for automated applications that reduces development time with a combination of benchtop and system features designed for demanding design and test requirements.
Output Ratings
•Output voltage: 0 to 20 V
•Output current: 0 to 5 A
Programming Accuracy at 25°C ± 5°C
•Voltage: 10 mV
•+ Current: 0.05% + 2 mA
Ripple & Noise (20 Hz to 20 MHz)
•Voltage Normal Mode rms: 0.3 mV
•Voltage Normal Mode peak-to-peak: 3 mV
•Fast mode rms/ peak-to-peak: 1 mV/ 10 mV
•Current rms: 2 mA
Ideal for mid-sized systems, the Agilent 3499A can accommodate up to five plug-in modules, routing up to 200 channels in a test system. With various switch modules, it can scan at rates up to 350 channels per second, or open/close 200 channels in less than 0.1 second. The 3499A is compact, requiring only 2U height in a full rack.
The 3499A has a concise user interface that is designed for manual operation on the manufacturing floor or in desktop applications. High-performance switching modules, multi-function modules, built-in relay cycle counters and easy interconnections all work together to provide a switching solution you can trust.
• •Five module slots
• •Intuitive, self-guiding front panel interface
• •2U rack height, full rack width
• •GPIB and RS-232 interfaces
• •Built-in Digital I/O
The Deltabar PMD75 differential pressure transmitter with with piezoresistive sensor and welded metallic membrane is used in all industries for continuous measurement in liquids, vapors and gases. The 3-key operation enables simple and reliable commissioning and operation. The integrated HistoROM data module allows easy management of process and device parameters. Designed according to IEC 61508 for use in SIL2/3 safety applications.
Pressure Transmitter PT Endress Hauser ,[PMD75-ABA78812BAA/ENDRESS+HAUSER],0.8~80BAR,1/4-18NPT,#1SMP AIR COMP
Highlights
· Standalone test generator for dips, short interruptions and voltage variation
· Full-compliant three-phase system as per IEC 61000-4-11, Ed.2:2004 and IEC 61000-4-34 for testing delta and star supply systems
· 6 electronic switches, short-circuit protected
· Rated voltage up to 3x690V AC, 600V DC
· Nominal current up to 100A per phase
· DC signal to control external variac
· Front panel operation
· Standard Test routines
· USB and GPIB interfaces
Application
PFS 503N Series – Simulator for dips, short interruptions and voltage variations
Electronic and electrical equipment may be affected by voltage dips, short interruptions and voltage variations of the power supply. Dips and interruptions are caused by faults in the public supply network, in installations or by sudden large change of load. Testing to such phenomena is required to proof that electronic and electrical equipment do not fall into unsafe operation conditions.
EM TEST offers a full range of simulators up to 3x690VAC, 100A and DC voltage capability of up to 600V.
Measurement Ranges: | R100 has five measurement modes |
Ratio | 550 – 1800 ºC / 1022 – 3300 °F |
Detector 1 | 550 – 1800 ºC / 1022 – 3300 °F |
Detector 2 | 400 – 1800 ºC / 752 – 2912 °F |
Duo or Multi modes | 400 – 1800 ºC / 752 – 3300 °F |
Uncertainty: | |
Detector 1 and 2 modes | ±0.25%K |
All other modes | ±1.0%K |
Repeatability: | <1ºC |
Resolution: | ,<0.1ºC |
Detector Type: | Ratio : Short wavelength ; Detector 1: 1.0 µm; Detector 2 : 1.2 µm |
Response Time: | Adjustable 1ms to 10s |
Field of View | 230:1 to 90% |
Focus Range | 300mm to infinity, locally or remotely adjustable |
Processing Functions: | Averaging, Peak/ Picking, Mode Master, Background Compensation |
Power Requirement | Power over Ethernet or 24V DC |
Display | Local display with video and thermometer reading and settings |
Interfaces | 0-20mA, 4-20mA, 24V DC, Ethernet (Modbus TCP-IP) |
Inputs | 24V DC, Ethernet (Modbus TCP-IP) |
Outputs | 0-20mA, 4-20mA, 24V DC, Ethernet (Modbus TCP-IP) |
Settings | Configurable locally (using the thermometer interface) or remotely (using the Webserver or SPOT Viewer) Emissivity, mode, current output range, alarm logic output and thresholds, network settings, focus and LED, language and user name |
Software | Live configuration and temperature display on any web browser. Optional SPOTViewer software with datalogging, live and historical data trending |
Languages | Integrated multiple language selection |
Mounting | 56mm x 1.5mm thread or various protective SPOT mountings |
Ambient Temp Range | Before cooling required 5-60°C specified, 0-70°C operating |
Sighting | Integrated video camera with local display and view remotely using the webserver display Sighting with patented pulsed *Green LED focus pattern confirmation |
Sealing | IP65 / NEMA 4 |
Warranty | 36 months |
Continuous product development may may it necessary to change these details without notice | |
* Patent Pending |
FIVE OPERATING MODES
The SPOT R100 offers different operating
modes selectable from the set-up menu
Ratio Short wavelength ratio design
Mono 1 Shorter wavelength, medium to high temperatures
Mono 2 Longer wavelength, low to medium temperatures
Multi Extended range – Ratio in the mid and high range with low temperature monochromatic with Emissivity correction
Duo Extended range – Mono 2 at low temperatures, Mono 1 at high temperatures, using a combination of the two at medium temperatures
This flexibility of design enables the SPOT R100 to adapt to multiple temperature measurement scenarios. Change your materials or process parameters and continue to use the same instrument.
Updating from an older sensor to SPOT form factor is flexible and easy.
Combining Ethernet, Modbus TCP, Video, Analog and Alarm Outputs within one device, SPOT makes all these conveniently available to the operator. Pyrometer readings and configuration settings are available on the rear display and remotely via a web browser or through SPOTViewer software.
The SPOT infrared thermometer includes a visual camera (see image). This aids target alignment
Motorized focus – SPOT features both local and remote adjustment..
Flexible design with adapters provide simplified installation and easy replacement of older thermometers.
SPOT is designed to be interchangeable with existing fixed spot pyrometers.
Image: SPOT User Interface – Visual 'live' camera display of moving target
The LAND Spot Viewer is a PC-based utility that allows you to connect, configure, and view data from a Spot thermometer. It is a cost option.
The Spot Viewer Software communicates to the instrument using Modbus TCP/IP communications. To establish a connection, the Spot Viewer Software needs to be configured to use the IP address of the connected instrument
The IP address of the instrument that is used to establish a connection with the SPOT Viewer can be configured from the Status Bar.
The viewer software can be installed on a Windows-based PC. It runs on Microsoft Windows XP, Vista, 7 & 8
SPOT VIEWER – A valuable option
LAND SPOTViewer software allows you to configure, display and log data from up to 254 different thermometer locations. To ensure security with multiple users, various levels of access are available. Data log frequency, file size, save and Archive locations are all configurable.
SPOTViewer is the perfect choice for smaller operations where advanced process control systems may be absent.
The new SPOT thermometer can be operated both locally (using the instrument keypad) or remotely using the webserver.
The menu and operation are identical both locally and remotely.
A third way exists by using the optional SPOT Viewer software.
Here is the menu structure of both the Local User Interface and Web Server
ỨNG DỤNG
The SPOT R100 is specifically designed for the following applications, all requiring highh measurement accuracy and repeatability.
The SPOT R100 is designed for heat treaters and metal forging companies who demand high accuracy and flexible features.
Are you working in the Heat Treatment or Metal Forging industries?
If the answer is yes…read on..
The new SPOT R100 is a perfect choice for infrared non-contact temperature measurement throughout your plant. If your processing conditions change…a new material needs heating to a higher or lower temperature, you need a thermometer that can be re-configured for these process changes e.g. temperature and emissivity. With the SPOT R100, you have great flexibility in matching the thermometer to the changing conditions.
The SPOT R100 is ideally suited to the small batch processing, as the re-configuration only takes a few minutes and can be completed on thermometer itself….or via the Web server in your control room or office.
So if you are making any of these high precision items such as turbine blades, drive shafts, precision fasteners, bearings, gears, engine components and more to the highest standards; the control of the temperature using a high quality thermometer is essential to your success, take a look at the SPOT R100.
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SYSTEM 4 high precision infrared non-contact thermometers offer exceptional flexibility with a choice of single wavelength, ratio, fibroptic and fibroptic ratio models.
Thermometer type, temperature range, spectral response and optical characteristics are chosen to suit any application from 0 to 2600°C.
System 4 comprises an advanced range of high precision radiation thermometers, LANDMARK® processors and a range of mounting accessories which combine to form a complete temperature measurement system.
Non contact temperature measuring systems are designed for continuous quality and process monitoring and control in a wide range of industries including: Iron & Steel, Glass, Plastics, Rubber, Minerals, Paper… and many more.
SYSTEM 4 High Precision Infrared Non-contact Thermometers comprises an advanced range of high precision radiation thermometers, LANDMARK® processors and a range of mounting accessories which combine to form a complete temperature measurement system.
Thermometer type, temperature range, spectral response and optical characteristics are chosen to suit any application from 0 to 2600°C/ 32 to 4700°F..
Proven, reliable electronics and a high quality optical system combine to give a thermometer which delivers accurate, dependable temperature measurement. A rugged die-cast aluminium body, with a high quality electrical connector, ensures reliable performance.
Standard bodied thermometers all feature through-the-lens sighting with a 6° field of view. Adjustable focus with a circular graticule gives precise alignment on to the smallest of targets. Two optical variants are available: Standard focus – adjustable between 500mm and infinity, and Short-focus – viewing from 350mm to 1m. Close-up lenses are also available which can measure targets as small as 0.45mm from as close as 90mm.
The use of flexible fibre optics light guides allows the detector and electronics enclosure to be located in a less hostile environment, and enables access to difficult targets.
The fibroptic thermometers are available with an optional integral laser targeting system which defines the target spot for accurate alignment.
The use of fibre optics permits viewing of normally inaccessible targets, where there are high magnetic fields or in high ambient temperatures up to 200 °C without cooling of the optic head. There is a choice of three optic heads and three light guide lengths.
The Emissivity Enhancer improves the accuracy of System 4 short wavelength thermometers on difficult to measure materials such as bright annealed and stainless steel strip.
Intended for use on low emssivity materials it gives enhanced emissivity values.
Temperatures | |||
---|---|---|---|
Low Temperature (C): | 0 | High Temperature (C): | 2600 |
Low Temperature (F): | 32 | High Temperature (F): | 4712 |
Model | Range | Wavelength | Response Time (1) | Accuracy (2) |
---|---|---|---|---|
General purpose, metals, glass, refractories | ||||
M1 450/1000C | 450 to 1000 °C | 1µm | 5 ms | 0.4%K |
M1 850/1850F | 850 to 1850 °F | 1µm | 5 ms | 0.4%K |
M1 600/1600C | 600 to 1600 °C | 1µm | 5 ms | 0.4%K |
M1 1100/2900F | 1100 to 2900 °F | 1µm | 5 ms | 0.4%K |
M1 800/2600C | 800 to 2600 °C | 1µm | 5 ms | 0.7%K |
M1 1500/4700F | 1500 to 4700 °F | 1µm | 5 ms | 0.7%K |
General purpose, metals and glass processing | ||||
M2 300/1100C | 300 to 1100 °C | 1.6 µm | 5 ms | 0.25% + 1K |
M2 600/2000F | 600 to 2000 °F | 1.6 µm | 5 ms | 0.25% + 1K |
Bright oxidised or lightly oxidised metal surfaces | ||||
M4 50/250C | 50 to 250 °C | 2.4 µm | 100 ms | 3K |
M4 150/500F | 150 to 500 °F | 2.4 µm | 100 ms | 3K |
M4 150/550C | 150 to 550 °C | 2.4 µm | 100 ms | 4K |
M4 300/1000F | 300 to 1000 °F | 2.4 µm | 100 ms | 4K |
Glass surface temperature measurement | ||||
M5 400/1300C | 400 to 1300 °C | 4.8 to 5.2 µm | 100 ms | 0.6%K (4) |
M5 750/2400F | 750 to 2400 °F | 4.8 to 5.2 µm | 100 ms | 0.6%K (4) |
M5 1000/2500C | 1000 to 2500 °C | 4.8 to 5.2 µm | 100 ms | 0.6%K (4) |
M5 1800/4500F | 1800 to 4500 °F | 4.8 to 5.2 µm | 100 ms | 0.6%K (4) |
General purpose, low temperature, metals, glass, food, paper and textiles | ||||
M6 0/300C | 0 to 300 °C | 3 to 5 µm | 100 ms | 0.3% + 2.5K |
M6 50/600F | 50 to 600 °F | 3 to 5 µm | 100 ms | 0.3% + 2.5K |
M6 100/700C | 100 to 700 °C | 3 to 5 µm | 100 ms | 0.3% + 2K |
M6 200/1300F | 200 to 1300 °F | 3 to 5 µm | 100 ms | 0.3% + 2K |
Plastic thin film | ||||
M7 25/375C | 25 to 375 °C | 3.43 µm | 100 ms | 3K |
M7 75/700F | 75 to 700 °F | 3.43 µm | 100 ms | 3K |
Food, textiles, paper, plastics, rubber, wood, paint and ceramics | ||||
M8 0/1000C | 0 to 1000 °C | 8 to 14 µm | 100 ms | 1%K + 1K |
M8 30/1830F | 30 to 1830 °F | 8 to 14 µm | 100 ms | 1%K + 1K |
Ratio thermometer, variable emissivity, target obscuration, partially filled field of view | ||||
R1 600/1600C | 600 to 1600 °C | 0.85 to 1.1 µm | 100 ms | 0.65%K |
R1 1100/2900F | 1100 to 2900 °F | 0.85 to 1.1 µm | 100 ms | 0.65%K |
R1 1000/2600C | 1000 to 2600 °C | 0.85 to 1.1 µm | 100 ms | 1.1%K |
R1 1800/4700F | 1800 to 4700 °F | 0.85 to 1.1 µm | 100 ms | 1.1%K |
(1) – Time quoted to 95% step change
(2) – Accuracy quoted to ITS90
(3) – Above 75 °C / 167 °F
(4) – Optimised for glass toughening = 3k at 630 °C
Model | Range | Wavelength | Response Time (1) | Accuracy (2) |
---|---|---|---|---|
General purpose, metals, glass, refractories | ||||
M1 600/1600CYL | 600 to 1600 °C | 1µm | 5 ms | 0.4%K |
M1 1100/2900FYL | 1100 to 2900 °F | 1µm | 5 ms | 0.4%K |
M1 800/2600CYL | 800 to 2600 °C | 1µm | 5 ms | 0.7%K |
M1 1500/4700FYL | 1500 to 4700 °F | 1µm | 5 ms | 0.7%K |
General purpose, metals and glass processing | ||||
M2 300/1100CYL | 300 to 1100 °C | 1.6 µm | 5 ms | 0.25% + 1K |
M2 600/2000FYL | 600 to 2000 °F | 1.6 µm | 5 ms | 0.25% + 1K |
General purpose, low temperature and secondary metals | ||||
M3 50/250CQ (3) | 50 to 250 °C | 2.1 µm | 100 ms | 3K |
M3 150/500FQ (3) | 150 to 500 °F | 2.1 µm | 100 ms | 3K |
Ratio thermometer, variable emissivity, target obscuration, partially filled field of view | ||||
R1 600/1600CYL | 600 to 1600 °C | 0.85 to 1.1 µm | 100 ms | 0.65%K |
R1 1100/2900FYL | 1100 to 2900 °F | 0.85 to 1.1 µm | 100 ms | 0.65%K |
R1 1000/2600CYL | 1000 to 2600 °C | 0.85 to 1.1 µm | 100 ms | 1.1%K |
R1 1800/4700FYL | 1800 to 4700 °F | 0.85 to 1.1 µm | 100 ms | 1.1%K |
Y – Denotes laser targetting system available
(3) – Above 75 °C / 167 °F
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