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Oscilloscopes

Analyze waveforms of electronic signals by producing a trace on a display screen of corrosponding oscillations of voltage and current.

See Also: Scopes, Fiberscopes, Microscopes, Borescopes, Endoscopes, Stethoscopes, Stroboscopes, Synchroscopes, Telescopes, Vectorscopes, Analog Oscilloscopes, Digital Storage Oscilloscopes, Oscilloscope Probes, Waveform, Digitizers


Showing results: 1006 - 1020 of 1068 items found.

  • SWB-2815, 4x86, 0.3 A, No Row Access, Reed Relay Matrix Module for SwitchBlock

    781421-15 - NI

    4x86, 0.3 A, No Row Access, Reed Matrix Module for SwitchBlock - The SWB‑2815 is a reed relay matrix module for SwitchBlock systems. Designed for high power, it can operate as an individual relay card or expand in a single carrier or single PXI chassis. You can connect any input to any output, individually or in combination. You can use matrix switches to route signals from oscilloscopes, DMMs, arbitrary waveform generators, and power supplies to various test points on a unit under test (UUT). The primary benefit of matrix switches is simplified wiring—the overall test system can easily and dynamically change the internal connection path without any external manual intervention.

  • SWB-2815, 4x86, 0.3 A, Row Access, Reed Relay Matrix Module for SwitchBlock

    781420-15 - NI

    4x86, 0.3 A, Row Access, Reed Matrix Module for SwitchBlock - The SWB‑2815 is a reed relay matrix module for SwitchBlock systems. Designed for high power, it can operate as an individual relay card or expand in a single carrier or single PXI chassis. You can connect any input to any output, individually or in combination. You can use matrix switches to route signals from oscilloscopes, DMMs, arbitrary waveform generators, and power supplies to various test points on a unit under test (UUT). The primary benefit of matrix switches is simplified wiring—the overall test system can easily and dynamically change the internal connection path without any external manual intervention.

  • SWB-2810, 4x43, 1 A, Row Access, Reed Relay Matrix Module for SwitchBlock

    781420-10 - NI

    4x43, 1 A, Row Access, Reed Matrix Module for SwitchBlock - The SWB‑2810 is a reed relay matrix module for SwitchBlock systems. Designed for high power, it can operate as an individual relay card or expand in a single carrier or single PXI chassis. You can connect any input to any output, individually or in combination. You can use matrix switches to route signals from oscilloscopes, DMMs, arbitrary waveform generators, and power supplies to various test points on a unit under test (UUT). The primary benefit of matrix switches is simplified wiring—the overall test system can easily and dynamically change the internal connection path without any external manual intervention.

  • SWB-2833, 4x71, 2 A, Electromechanical Relay Matrix Module for SwitchBlock

    781421-33 - NI

    4x71, 2 A, Electromechanical Relay Matrix Module for SwitchBlock - The SWB‑2833 is an electromechanical relay matrix card for SwitchBlock systems. Designed for high power, it can operate as an individual relay card or expand in a single carrier or single PXI chassis. You can connect any input to any output, individually or in combination. You can use matrix switches to route signals from oscilloscopes, DMMs, arbitrary waveform generators, and power supplies to various test points on a unit under test (UUT). The primary benefit of matrix switches is simplified wiring—the overall test system can easily and dynamically change the internal connection path without any external manual intervention.

  • SWB-2833, 4x71, 2 A, Electromechanical Relay Matrix Module for SwitchBlock

    781420-33 - NI

    4x71, 2 A, Electromechanical Relay Matrix Module for SwitchBlock - The SWB‑2833 is an electromechanical relay matrix card for SwitchBlock systems. Designed for high power, it can operate as an individual relay card or expand in a single carrier or single PXI chassis. You can connect any input to any output, individually or in combination. You can use matrix switches to route signals from oscilloscopes, DMMs, arbitrary waveform generators, and power supplies to various test points on a unit under test (UUT). The primary benefit of matrix switches is simplified wiring—the overall test system can easily and dynamically change the internal connection path without any external manual intervention.

  • SWB-2811, 8x21, 1 A, Reed Relay Matrix Module for SwitchBlock

    781420-11 - NI

    8x21, 1 A, Reed Matrix Module for SwitchBlock - The SWB‑2811 is a reed relay matrix module for SwitchBlock systems. Designed for high power, it can operate as an individual relay card or expand in a single carrier or single PXI chassis. You can connect any input to any output, individually or in combination. You can use matrix switches to route signals from oscilloscopes, DMMs, arbitrary waveform generators, and power supplies to various test points on a unit under test (UUT). The primary benefit of matrix switches is simplified wiring—the overall test system can easily and dynamically change the internal connection path without any external manual intervention.

  • SWB-2811, 8x21, 1 A, Reed Relay Matrix Module for SwitchBlock

    781421-11 - NI

    8x21, 1 A, Reed Matrix Module for SwitchBlock - The SWB‑2811 is a reed relay matrix module for SwitchBlock systems. Designed for high power, it can operate as an individual relay card or expand in a single carrier or single PXI chassis. You can connect any input to any output, individually or in combination. You can use matrix switches to route signals from oscilloscopes, DMMs, arbitrary waveform generators, and power supplies to various test points on a unit under test (UUT). The primary benefit of matrix switches is simplified wiring—the overall test system can easily and dynamically change the internal connection path without any external manual intervention.

  • SWB-2810, 4x43, 1 A, No Row Access, Reed Relay Matrix Module for SwitchBlock

    781421-10 - NI

    4x43, 1 A, No Row Access, Reed Matrix Module for SwitchBlock - The SWB‑2810 is a reed relay matrix module for SwitchBlock systems. Designed for high power, it can operate as an individual relay card or expand in a single carrier or single PXI chassis. You can connect any input to any output, individually or in combination. You can use matrix switches to route signals from oscilloscopes, DMMs, arbitrary waveform generators, and power supplies to various test points on a unit under test (UUT). The primary benefit of matrix switches is simplified wiring—the overall test system can easily and dynamically change the internal connection path without any external manual intervention.

  • SWB-2813, 4x21, 1 A, 2-Wire Reed Matrix Module for SwitchBlock

    781420-13 - NI

    4x21, 1 A, 2-Wire Reed Matrix Module for SwitchBlock - The SWB‑2813 is a reed relay matrix module for SwitchBlock systems. Designed for high power, it can operate as an individual relay card or expand in a single carrier or single PXI chassis. You can connect any input to any output, individually or in combination. You can use matrix switches to route signals from oscilloscopes, DMMs, arbitrary waveform generators, and power supplies to various test points on a unit under test (UUT). The primary benefit of matrix switches is simplified wiring—the overall test system can easily and dynamically change the internal connection path without any external manual intervention.

  • Logic Analyzer

    GoLogicXL-36 - NCI Logic Analyzers

    Logic analyzers and oscilloscopes offering fast sample rates and large memory depths are required to debug and test modern electronics. The GoLogicXL captures a very large window of bus activity using sample depths up to 1 billion samples. 4 GHz sampling rates expose the finest details in your signals. 1 GHz Transitional sampling provides the optimum method to capture fast data bursts separated by seconds, minutes, or even hours of bus inactivity. The GoLogicXL State analysis can also synchronize with single-data-rate 300 MHz SDR clocks, and double-date-rate 250 MHz DDR clocks (500 MHz effective).

  • Logic Analyzer

    GoLogicXL-72 - NCI Logic Analyzers

    Logic analyzers and oscilloscopes offering fast sample rates and large memory depths are required to debug and test modern electronics. The GoLogicXL captures a very large window of bus activity using sample depths up to 1 billion samples. 4 GHz sampling rates expose the finest details in your signals. 1 GHz Transitional sampling provides the optimum method to capture fast data bursts separated by seconds, minutes, or even hours of bus inactivity. The GoLogicXL State analysis can also synchronize with single-data-rate 300 MHz SDR clocks, and double-date-rate 250 MHz DDR clocks (500 MHz effective).

  • Scanner Probe

    RFS set - Langer EMV-Technik GmbH

    The RFS set consits of three passive near field probes designed for the use in a measurement scanner during the development of E-field and magnetic field. They are designed for frequency ranges of 30 MHz to 3 GHz. The probe heads of the RFS set allow for close measurements needed to correctly localize interference sources on an electronic assembly. They document the whole image of the device under test`s near field. The scanner probes have a sheath current attenuation and are electrically shielded. They are connected to a spectrum analyzer or an oscilloscope with a 50 Ω input. They do not have an internal terminating resistance. The measuring signal can be increased with PA 203 or PA 303 preamplifier. On request RFS, LFS and XFS scanner probes can be produced.

  • Near Field Probes 30 MHz up to 3 GHz

    RF1 set - Langer EMV-Technik GmbH

    The RF1 near field probe set consists of 4 passive near field probes for making measurements in the development phase of E-field and magnetic field in the ranges of 30 MHz to 3 GHz on electronic assemblies. The probe heads of the RF1 set allow for measurements close to the electronic assemblies, e.g. on single IC pins, conducting paths, components and their connectors in order to localize interference sources. Field orientation and field distribution on an electronic assembly can be detected through a trained special use of the near field probe. The near field probes are small and handy. They have a sheath current attenuation and are electrically shielded. They can be connected to a spectrum analyzer or an oscilloscope with a 50 Ω input. They do not have an internal terminating resistance.

  • Micro probes 1 MHz up to 6 GHz

    MFA 01 set - Langer EMV-Technik GmbH

    The micro probes are used to measure magnetic fields and they have a high resolution. They measure magnetic fields up to 6 GHz, e.g. at signal conductors (150µm), SMD components (0603-0201) or IC pins. The MFA micro probes are guided by hand. An amplifier stage is integrated into the probe head. The amplifier stage (9V, 100mA) is powered via the Bias tee BT 706. It has an impedance of 50 Ohm. The micro probes are connected via the Bias tee BT 706 to a spectrum analyzer or an oscilloscope. Langer EMV-Technik GmbH includes correction lines in the delivery. With the help of the correction lines the probe output voltage is converted either into the respective magnetic field or to the current which is running through the conductor.

  • Micro probes 1 MHz up to 1 GHz

    MFA 02 set - Langer EMV-Technik GmbH

    The two in the set included micro probes are used to measure low-frequency magnetic fields up to 1 GHz, e.g. at signal conductors (150µm), SMD componets (0603-0201) or IC pins. The MFA micro probes are guided by hand. An amplifier stage is integrated into the probe head. The amplifier stage (9V, 100mA) is powered via the BT 706 Bias tee. It has an impedance of 50 Ohm. The micro probes are connected via the Bias tee to a spectrum analyzer or an oscilloscope. The MFA 02 set delivery of Langer EMV-Technik GmbH includes correction lines. With the help of the correction lines the probe output voltage is converted either into the respective magnetic field or to the current which is running through the conductor.

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