SMU4000 AIM-TTI | Alldatasheet

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±200V & ±20V models Source Measure Units Measurably better value aimtti.com 4-quadrant Source, Sink & Measure Powerflex technology ±200V/±20V, ±3A ,25W 6½ digit, 0.1µV & 100fA resolution Fast measurement speeds up to 200µs (5k/s)

The SMU4000 Series provides class leading performance at a new and affordable price point for a four quadrant SMU. Combining touch screen technology with an intuitive graphical user interface provides a clear and natural flow through the test and measurement process. Integrating a fast and agile, high power four quadrant Voltage/ Current source and advanced precise Voltage/ Current meters in a compact half rack 2U casing, capable of precisely supplying positive and negative voltages, sourcing or sinking power, while simultaneously measuring both current and voltage for I-V characterising. With high current and power combined with fast measurements and low glitch auto ranging speed, it is the ideal solution for industrial development as well as educational environments, identifying the SMU as the all-in-one solution for simplifying test applications such as battery charging/discharging, I-V characterising, semiconductor testing and much more. Powerflex technology Fast measurement speeds up to 200µs (5k/s) Internal memory, up to 100k measurements, up to 100k steps 4-quadrant Source, Sink & Measure 0.1µV & 100fA, 6½ digit resolution Continuous or pulsed high speed outputs with Linear/ Log or arbitrary list sweeps Compact size (A4 footprint)* ‘SMU Link’ allows two SMUs to be linked together and controlled simultaneously CLASS LEADING PERFORMANCE * Bumpers removed.**GPIB Optional SMU4001 SMU4201 Maximum Voltage ±21V ±210V Voltage ranges 20mV to 20V 20mV to 200V

f Powerflex technology achieves full instrument output power across 85% of voltage range. f 0.015% basic accuracy with 6½ digit resolution f High speed, low glitch auto ranging capability f Sense terminals for 4 Wire operation and guard capabilities. ULTIMATE USER EXPERIENCE f User friendly front panel GUI with on screen numeric or graphical results f Internally calculated resistance and power measurements. f User settable bipolar compliance limits f Variable slew rate control f High voltage safety interlock, user interface password protected, rear panel interlock control. f Quiet operation f Context sensitive help button ADVANCED FEATURES f Advanced sweep engine f Advanced math features for data handling f Tolerance band result sorting f Advanced load modes: Current, power and resistance- with integral voltage dropout setting SIMPLIFY TEST SETUPS f Advanced sequencing mode f SCPI compliant digital remote interfaces f ‘SMU-Link’ Link two SMU’s together to perform simultaneously via a handshake triggering system. f Advanced global triggering available via external DIO and remote commands KEY FEATURES UNIQUE POWERFLEX DESIGN The Aim-TTi PowerFlex system provides a semi constant power characteristic so that the current capability rises as the voltage falls. The SMU achieves full instrument output power across the majority of the voltage range, unlike conventional SMUs where the maximum power can only be achieved at the top of each voltage range. AIM-TTi Powerflex Conventional SMU CLASS LEADING PERFORMANCE f Powerflex technology achieves full instrument output power across the majority of the voltage range. f 0.015% basic accuracy with 6½ digit resolution. f High speed, low glitch auto ranging capability. f Sense terminals for 4 wire operation and guard capabilities. ULTIMATE USER EXPERIENCE f User friendly front panel GUI with on screen numeric or graphical results. f Internally calculated resistance and power measurements. f User settable bipolar compliance limits. f Variable slew rate control. f High voltage safety interlock, user interface password protected, rear panel interlock control. f Quiet operation. f Context sensitive help button. ADVANCED FEATURES f Advanced sweep engine. f Advanced math features for data handling. f Tolerance band result sorting. f Advanced load modes [LC, LR & LP] with integral voltage dropout setting. SIMPLIFY TEST SETUPS f Advanced sequencing mode. f SCPI compliant digital remote interfaces. f ‘SMU-Link’ Link two SMUs together to perform simultaneously via a handshake triggering system. f Advanced global triggering available via external DIO and remote commands. KEY

FEATURES

SMU4001 & SMU4201 SMU4201

GRAPHIC USER INTERFACE (GUI) The modular based architecture allows all operational settings to be accessed from one central ‘mode’ menu. For each mode, all settings are visible and directly editable on one screen - showing the whole test setup without the need to navigate through sub- menus, as seen with other SMUs. Single press auto fit graph automatically scales the primary measurement data to best fit onto the display, allowing quick and efficient analysis of measured data. MULTIPLE INSTRUMENTS IN ONE There are many source, load and measure operational modes to choose from, each one allows advanced user settable configurations to be created based around the specifics for that mode. 8 EasySet pre-sets are also included to allow instant use of the SMU in the simplest form, including: Power Supply, Current Source, Load, Voltmeter, Ammeter, Ohmmeter, Insulation resistance meter and Leakage current meter . These setups form a convenient base, from which settings can be edited using the manual setup mode configuration. f ADVANCED SWEEP ENGINE As well as a high precision DC and pulsed source and measure capabilities, the SMU4000 Series has a built-in sweep setting that supports standard sweep parameters; such as: Constant and pulsed sweep operation, double sweep functions and linear & logarithmic modes that are fully functional from the front panel with a simple setup process involving only a few steps, providing full graphical results on screen. Arbitrary list sweeps of up to 100K points can be directly uploaded to the instrument via the flash drive. ADVANCED ON SCREEN GRAPHICAL RESULTS A graphical representation of the buffered measurement results can be viewed and explored on screen using the advanced graph menu. Voltage or Current data can be viewed as voltammograms for producing I-V curves and YT graphs to analyse a primary measurement against time, in a linear formats. The flexible graphing feature provides manual scaling alongside auto-range, as well as an option to compare live data against a saved trace and adjustable X and/or Y axis markers to pin-point a specific point in the measured data on the graph. ULTIMATE USER EXPERIENCE Custom Pulse Linear sweep Pulsed linear sweep Logarithmic sweep Dual sweep CONVENTIONAL SMU’S AIM-TTI SMU COMPACT- SMALLEST BENCH TOP SMU ON THE MARKET f DATA HANDLING Advanced math features, including: Deviation, % Deviation, % Ratio and mx + b, alongside measured tolerance band sorting, can be applied to live data readings. f MEASUREMENT STATISTICS Real time calculated information for the primary and secondary measurements, including minimum/maximum samples, average, span and standard deviation are available to view at any time.

Provides direct assistance with menus, settings and parameters; reducing the need to interrupt the working process by viewing the Instruction manual. CONVENIENT TEST FUNCTION Performs a quick internal self-calibration and measurement zero, allowing for confidence in the following measurement results. USER SETTABLE LIMITS AND PROTECTION Various methods of protection are provided to protect the test setup from damage by unexpected occurrences. f LIMITS A dual polarity limit (also known as compliance) can be set to ensure that the instrument cannot source or sink a voltage or current beyond the set value, preventing potential damage to a device under test. If a limit is reached, the SMU will continue to function in a limited state and will recover if the source level is reduced or the load changes accordingly. Alongside this, OVP , OCP and OPP protection trips are also available; shutting the output off if a limit is reached. f HIGH REACTANCE MODE When attempting to source into a highly reactive load which may be capacitive or inductive there may be visible overshoot, ringing or even in some cases instability. High Reactance mode helps to compensate for and reduce the risk of these issues. f PROTECTION Source voltages higher than 42V can be password protected* as a safety precaution to prevent any unwanted high voltages being set, A high voltage interlock is also available via the DIO pins*. Passwords can be added to a range of settings, which can be particularly useful to prevent any unwanted changes being made during longer tests or in education environments. SENSE TERMINALS Sense terminals are provided for 4 Wire operation and guard capabilities. 4 Wire measurements are important when it is essential to measure the voltage delivered to a load, independent of any voltage drops in the connecting supply wires or contacts. The guard capabilities can be utilised for very low current and high impedance applications where potential unwanted leakage, stray capacitance or magnetic coupling may be a problem. Besides the obvious cost and bench space savings, the SMU provides many advantages over selecting a traditional power supply, load, DMM and true arb generator, including: STABILITY- The SMU has the ability to keep the output stable during unexpected load changes due to precisely measuring its own voltage and current and feeding this back to the source. SPEED- Interconnection of all of the individual elements in a single unit increases the timing accuracy and speed of communications between the source and measurement circuitry. ACCURACY- Measurement error is considerably reduced when compared to individual instruments in one setup, close integration of the source and measurement elements achieves a far more reliable performance and far superior synchronisation. WHY CHOOSE AN SMU? An SMU is effectively multiple instruments in one, but with many added benefits over selecting individual instruments to create a test setup. *SMU4201 only

  • LabView and LabWindows are trademarks of National Instruments Keysight VEE is a trademark of Keysight Technologies. Windows is a trademark of Microsoft. ** GPIB optional DATA STORAGE A convenient front mounted flash drive port allows configurations, results and screen shots to be directly extracted from the instrument for further analysis. The direct upload of complex test configurations enables simplification of the of the most advanced test scenarios. Measurement data can be automatically recorded to the flash drive on completion of a test run – thus allowing for virtually unlimited measurement data storage. ADVANCED SEQUENCING MODE Sequence mode is an advanced sequencing feature for creating and performing complex test routines. Stored test configuration setups can be imported into up to 25 individual steps inside one test routine, allowing complete synchronisation of the instrument via advanced triggering capabilities and features. Synchronisation of two instruments or additional test equipment can be achieved through the use of the DIO port under the control of the sequence mode engine. SIMPLIFY TEST SETUPS SCPI COMPATIBLE The SMU can be integrated into existing systems using the universal SCPI command set. An extensive library of commands can be used to simplify setups and automate systems, increasing productivity and reducing costs. LABVIEW & IVI DRIVER An IVI-COM/IVI-C driver for Windows is included. This provides support for common high-level applications such as LabView*, LabWindows*, and Keysight VEE*. ACCESSORIES This instrument can be rack mounted, a suitable 2U 19” rack kit is available from the manufacturers or their overseas agents. Contact TTi for test fixture requirements. TRIGGER DELAY DIO OUT RUN STORED TEST SETUP CONDITION CONDITION CONDITION ACTION REPEAT NEXT STEP LEVEL: Monitor for a set level (V, A, W or Ω) including: <= or => than a set level, within two set levels or outside of two set levels. TIMEOUT: Run for a specified period of time (ms/s). EXTERNAL INPUT TRIGGER: Monitor for external triggers via remote command or DIO. Up to three conditions can be applied, the same condition can be used mulitple times. CONDITION OPTIONS JUMP TO STEP: Jump to a pre- defined step or next step in the sequence. DIO OUTPUT LEVEL: Set DIO output pin as Logic High (5V) or Logic Low (0V) STOP: Stop the sequence. Any action can be added to a condition, the same action can be used multiple times. ACTION FOR A MET CONDITION Wait for an external trigger via remote command or DIO EXTERNAL INPUT TRIGGER Set DIO output pin as Logic High (5V) or Logic Low (0V) DIO OUTPUT Repeat the step a defined number of times REPEAT ACTION ACTION EXAMPLE OF A SINGLE STEP INSIDE A SEQUENCED TEST ROUTINE

NEED 2 CHANNELS? ‘SMU LINK’ is an accessory that can be used to connect two SMUs together to perform simultaneously via a handshake triggering system, effectively creating a fully functioning 2 channel SMU, useful for testing three leaded components such as small signal BJT’s, FET’s and more. f Full instrument control of multiple SMU's. f Build complex sequences with full access to configuration settings. f Arbitrary waveform creation with built in preset options. f Linear and logarithmic, X/Y , Y/T graphing functions. f Advanced zooming and panning functions. f Split view option for steps and repeats on sequenced data. f Full access to remote commands with documentation for each command. TEST BRIDGE SMU - PC SOFTWARE Test Bridge SMU is free downloadable software that provides full programmable control of multiple SMU's alongside additional enhanced features. The graphical interface allows advanced setups, lists and sequences to be created and directly applied to the SMU. Quick and efficient data download means results can be saved and exported for further analysis as a .CSV file then further viewed in a tablular or graphical format from within the Test Bridge SMU software. The advanced graphing feature provides an array of options to view the results in multiple formats such as: Assign result sets to graphs with customised axis definitions, compare different sets of results on a single graph, split by step and repeat for sequenced data, alongside viewing in a linear or logarithmic format. Available to download from www.aimtti.com/support FREE

Settling Time and Accuracy specifications are valid after a minimum of 60 minutes warm-up followed by self-calibration execution and measurement zero. Ambient temperature change of less than ± 3°C after self-calibration and measurement zero. Calibration Period: 1 Year, Temperature: 23°C ± 5°C, Measurement Period: ≥10 PLC KEY SPECIFICATIONS OF SMU4000 SERIES SMU4001 SMU4201 Maximum Voltage ±21V ±210V Voltage ranges 20mV to 20V 20mV to 200V OPERATING MODES Source Voltage (SV), Source Current (SC), Load Current (LC), Load Resistance (LR), Load Power (LP), Measure Voltage (MV), Measure Current (MC), Measure Resistance (MR), Measure High Resistance (MHR), Sequence. VOLTAGE MEASUREMENTS (ALL MODES EXCEPT MC) Range Resolution Accuracy (%reading + offset) 20mV 10nV ±0.06%rdg ± 50µV 200mV 100nV ±0.015%rdg ± 50µV 2V 1uV ±0.015%rdg ± 50µV 20V 10uV ±0.02%rdg ± 5mV 200V¹ 100uV ±0.02%rdg ± 5mV 1) 200V range only available on SMU4201 CURRENT MEASUREMENTS (ALL MODES EXCEPT MV) Range Resolution Accuracy (%reading + offset) 200nA² 100fA ±0.04%rdg ± 300pA 2uA 1pA ±0.03%rdg ± 300pA 20uA 10pA ±0.02%rdg ± 2nA 200uA 100pA ±0.02%rdg ± 2nA 2mA 1nA ±0.02%rdg ± 200nA 20mA 10nA ±0.02%rdg ± 2µA 200mA 100nA ±0.02%rdg ± 20µA 1A 1uA ±0.07%rdg ± 100µA 3A³ 1uA ±0.2%rdg ± 300µA 2)Typical Accuracy 3)Only available by Manual range selection when in modes that utilize the current source MEASUREMENT SUPPLEMENTARY CHARACTERISTICS Measurement Period User settable 200µs to 20s (10µs resolution), or 0.01 to 100PLC (0.001PLC resolution). If set to integer PLC: synchronized to actual mains supply period Accuracy: ± (50µs + 0.01%). Typically, <±0.5µs delay between measured Voltage and Current signal measurements. Temperature coefficient (5⁰ – 18⁰C and 28⁰ – 40⁰C) ± (0.15 x accuracy spec) / ⁰C Burden Voltage Measurement >10GΩ ±80pA Current Measurement 4-wire sense: <±100µV 2-wire sense (front terminals): <0.1Ω 2-wire sense (rear terminals): <0.05Ω External Guard offset Voltage <±100µV from SENSE or MAIN HI terminal. 4-wire Sense Capability Up to ±2V between respective MAIN and SENSE Terminals.

RESISTANCE MEASUREMENTS (ALL MODES EXCEPT MV AND MC) Resistance is internally calculated from measured Voltage and Current. Resistance errors (in Ohms) may be calculated from respective voltage and current measurement results and specified errors as follows – (Current*Voltage error + Voltage*Current error)/Current2) Where Voltage is the Voltage reading in Volts (without polarity). Voltage error is the specified Voltage measurement error in Volts. Current is the Current reading in Amps (without polarity). Current error is the specified Current measurement error in Amps. POWER MEASUREMENTS (ALL MODES EXCEPT M V AND MC) Power is internally calculated from measured Voltage and Current. Power errors (in Watts) may be calculated from respective voltage and current measurement results and specified errors as follows – (Current*Voltage error + Voltage*Current error + Voltage error*Current error) Where Voltage is the Voltage reading in Volts (without polarity). Voltage error is the respective specified Voltage error in Volts. Current is the Current reading in Amps (without polarity). Current error is the respective specified Current error in Amps. VOLTAGE SOURCE (SV AND MHR MODES) Accuracy Same as voltage measurement accuracy. Source Limit ⁴ SMU4001 ±21V SMU4201 ±210V Maximum Slew Rate SMU4001 User settable 21V/s to 0.12V/µs SMU4201 User settable 210V/s to 1.2V/µs Settling Time (typical) To reach within 0.5% of change, open load, max slew rate, manual ranges, High Reactance disabled. 300µs Maximum current limit slew applied equivalent to: 1uV/us per 1nA current limit setting. SMU4201 only : Add 280ms if changing from (>+21V to <-21V) or (<-21V to >+21V) (polarity reversal) Output Impedance (typical) <10µΩ (4-wire, steady state) Overshoot (typical) <0.5% + 1mV (resistive load) High Reactance Load Stability Disabled 0 to 0.2µF Enabled >0.2uF to 200µF typical (inductive loading is also accommodated) 4) Limits include 105% overrange CURRENT SOURCE (SC AND MR MODES) Accuracy Same as current measurement accuracy. Source Limit ±3.15A Maximum Slew Rate User settable 3A/s to 36mA/µs Settling Time (typical) To reach within 0.5% + 1nA of change, shorted load, max slew rate, manual ranges, High Reactance disabled. 200nA, 2uA, 20uA, 200uA ranges 2.5ms 2mA range 600µs 20mA, 200mA, 1A, 3A ranges 200µs SMU4201 Only Add 280ms if changing from (>+21V to <-21V) or (<-21V to >+21V) (polarity reversal). Overshoot (typical) <0.5% + 10nA (shorted load) CURRENT LOAD (LC, LR AND LP MODES) Accuracy LC mode Same as current measurement accuracy. LR mode Same as resistance measurement accuracy. LP mode Same as power measurement accuracy. Load Limit LC mode 3.15A LR mode 100mΩ to 250MΩ LP mode 26.25W Maximum Slew Rate LC, LR modes User settable 3A/s to 36mA/µs LP mode User settable 25W/s to 0.25W/µs

SOURCE SUPPLEMENTARY CHARACTERISTICS Temperature coefficient (5⁰ – 18⁰C and 28⁰ – 40⁰C) ± (0.15 x accuracy spec) / °C Output power 25W four quadrant source or sink operation. Overrange 105% of source and measure range. Voltage Limits (compliance) Bipolar limit with single setting. Maximum includes 105% overrange, minimum is 10% of selected manual range, accuracy same as voltage measurement, 5 digit Resolution. SMU4001 User settable 2mV to 21V SMU4201 User settable 2mV to 210V Current Limits (compliance) Bipolar limit with single setting, user settable 20nA to 3.15A. Maximum includes 105% overrange, mini- mum is 10% of selected manual range, accuracy same as current measurement, 5 digit Resolution. Voltage Dropout (load modes) Accuracy same as voltage measurements ±1 digit, 5 digit Resolution, 5% Hysteresis (1mV minimum)Only available in load modes (LC, LP , LR) Voltage range forced to auto in load modes. SMU4001 User settable up to 21V SMU4201 User settable up to 210V Pulse Width User settable 200µs minimum with 10µs resolution. Wideband Noise (Voltage source) SMU4001 <2mV (RMS, 10Hz – 20MHz) typical into a resistive load. SMU4201 <21V: <2mV (RMS, 10Hz – 20MHz) 21V to 210V: <3.5mV (RMS, 10Hz – 20MHz) typical into a resistive load. Source Settling Time Delay User settable 100µs minimum with 10µs resolution. OUTPUT POWER, VOLTAGE AND CURRENT CAPABILITY PowerFlex PowerFlex technology enables the instrument to achieve full instrument output power across the majority of the voltage range. 3A current limit, limits power at PROTECTION Over Current Protection (OCP) Bipolar protection limit with single setting, user settable 10µA to 3.15A, accuracy same as current measurements ±1 digit or can be disabled. 5 digit Resolution, setting independent of current range. Over Voltage Protection (OVP) Bipolar protection limit with single setting, accuracy same as voltage measurements ±1 digit or can be disabled, 5 digit Resolution, setting independent of voltage range. SMU4001 User settable 10mV to 21V SMU4201 User settable 10mV to 210V Over Power Protection (OPP) Bipolar protection limit with single setting, user settable 1µW to 26.25W, accuracy same as power measurements ±3 digits or can be disabled, 5 digit Resolution. Over Temperature Protection (OTP) Internal Temperature safety trip. Not user settable, cannot be disabled. Trip Delay (typical) ≤200µs Trip Status Output is disabled, off condition is set to OPEN.

Contents (each entry) Index, Primary Measurement, Secondary Measurement, Date, Time (1 second resolution). .CSV file contents Index Active Mode Output state Measurement results (V and A) Calculated results (R and W) System Date System Time Measurement Timestamp Sequence Mode Step and Iteration Length Maximum of 100000 entries, FIFO style. DIGITAL INPUT/OUTPUT (DIO) Signals 5 user definable signal pins, HV interlock (SMU4201 only), Global Trigger In, Global Trigger out (self-resetting based on trigger input), Ground and +5V (fuse limited to 500mA). Voltage Reference Chassis ground referenced. Input Levels Logic zero: -0.25V to +1V (diode clamped to 0V) Logic one: +1.75V to +5.25V (diode clamped to +5V) Output Levels Logic zero: open-drain MOS, typically 0.2ohm, 100mA maximum sink. Logic one: nominally 4.7kohm pull-up to +5V Logic Active High / Low global port selection. REMOTE CONTROL INTERFACES LAN Ethernet 100/10 base-T hardware connection. LXI Conformance 1.5 LXI Device Specification 2016. USB Standard USB 2.0 hardware connection. Operates as a virtual COM port. GPIB (optional) Conforming with IEEE488.1 and IEEE488.2 Remote Command Processing Time Typically < 5ms between receiving the command terminator for an output change at the instrument and the output beginning to change. SYSTEM SPEEDS Measure to Memory Up to 5k/s sustained. ENVIRONMENTAL Operating Range +5°C to +40°C, 20% to 80% RH non-condensing. Operating Mains 220V-240V or 110V-120V AC ±10%, 50/60Hz, by internal selection; 150VA maximum demand. Installation Category II. Environmental Indoor use at altitudes up to 2000m, Pollution Degree 2. Storage Range -20°C to +60°C, 10% to 90% RH non-condensing. EMC EN61326-1 and EN61326-2-1, group 1, class A. Safety EN61010-1 and EN61010-2-030 (uncategorized measurements). MAIN and SENSE terminals rated for voltages up to 210V to ground and between terminals. Front panel CHASSIS terminal intended for ground reference purposes only. Security Kensington security slot incorporated. MECHANICAL Size (nominal) Bench Use: 250mm(W) x 97mm(H) x 295mm(D) Rack Mount: 213.5mm(W) (½ rack) x 86.5mm(H) (2U) x 269mm(D) Weight (nominal) 4.25kg

PRECISION MEASUREMENT RANGE Measurably better value * GPIB OPTIONAL LD400/P CI, CR, CV, CP & CG MODES RS-232, USB, LAN, GPIB* 400W ELECTRONIC DC LOAD UPTO 80V OR 80A LDH400/P CI, CR, CP & CG MODES RS-232, USB, LAN, GPIB* 400W ELECTRONIC DC LOAD UP TO 500V OR 16A TF900 SERIES RECHARGEABLE BATTERIES USB DC TO 3GH z/6GHz RANGE FREQUENCY MEASUREMENT VARIOUS MODES PFM300 LONG BATTERY LIFE 3Hz TO 3GH z RANGE FREQUENCY MEASUREMENT HAND-HELD BS407 RECHARGEABLE BATTERY OPTION 0.1% BASIC ACCURACY COMPONENT MEASUREMENT 1µΩ to 20kΩ range 1908 AC LINE OR BATTERY POWER RS-232, USB, LAN, GPIB 5½ DIGIT RESOLUTION MULTIMETER 0.02% VDC ACCURACY I-PROBER 10mA TO 2A DYNAMIC RANGE NON-CONTACT TRACK PROBING POSITIONAL CURRENT PROBE DC TO 5MH z BANDWIDTH LCR400 BUILT-IN LIMITS COMPARATOR RS-232 0.1% BASIC ACCURACY COMPONENT MEASUREMENT BUILT-IN COMPONENT FIXTURE SMU4001 FAST MEASUREMENT SPEEDS USB, LAN & GPIB* POWERFLEX ± 20V, 3A, 25W SOURCE MEASURE UNIT 6½ DIGIT RESOLUTION SMU4201 FAST MEASUREMENT SPEEDS USB, LAN & GPIB* POWERFLEX ± 200V, 3A, 25W SOURCE MEASURE UNIT 6½ DIGIT RESOLUTION

Visit www.aimtti.com for full ranges and further information. MULTI-OUTPUT POWER SUPPLIES LINEAR POWER SUPPLIES MIXED-MODE POWER SUPPLIES POWERFLEX POWER SUPPLIES POWER SUPPLIES f 30w to 1200w Single and Multi channel PSUs for bench-top or remote control and system use. OTHER RANGES AVAILABLE ARBITRARY GENERATORS PULSE GENERATORS ANALOG FUNCTION GENERATORS DIGITAL FUNCTION GENERATORS WAVEFORM GENERATORS f Analog and Digital (DDS) function generators with frequency capability up to 240MHz. f Dedicated pulse generators with true pulse capability. f True variable-clock arbitrary generators with up to four channels. SIGNAL GENERATORS SPECTRUM ANALYSERS HARMONICS ANALYSERS RF & EMC TEST EQUIPMENT LOW-DISTORTION SOURCE f RF signal generators with frequency capability up to 6GHz. f Handheld RF spectrum analyzers with frequency up to 6GHz. f EMC analyzers for power Harmonics and Flicker .

Designed and built in Europe by: Thurlby Thandar Instruments Ltd. Glebe Road, Huntingdon, Cambridgeshire. PE29 7DR United Kingdom Tel: +44 (0)1480 412451 Fax: +44 (0)1480 450409 Email: sales@aimtti.com Web: www.aimtti.com 82100-1600 01 EXCELLENCE THROUGH EXPERIENCE Aim-TTi is the trading name of Thurlby Thandar Instruments Ltd. (TTi), one of Europe’s leading manufacturers of test and measurement instruments. The company has wide experience in the design and manufacture of advanced test instruments and power supplies built up over more than thirty years. The company is based in the United Kingdom, and all products are built at the main facility in Huntingdon, close to the famous university city of Cambridge. TRACEABLE QUALITY SYSTEMS TTi is an ISO9001 registered company operating fully traceable quality systems for all processes from design through to final calibration. ISO9001:2015 Certificate number FM 20695 WHERE TO BUY AIM-TTI PRODUCTS Aim-TTi products are widely available from a network of distributors and agents in more than sixty countries across the world. To find your local distributor, please visit our website which provides full contact details. www.aimtti.com DESIGNED IN THE UK M ANUFACTURED IN THE UK