Antennas

Biconicals Antennas

Com-Power biconical antennas are ideal for vertical and horizontal normalized site attenuation (NSA) measurements, as well as for emissions and immunity testing to a wide range of FCC, CISPR, EN and other standards.

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Log Periodic Antennas

Log periodics make excellent EMC broadband test antennas for verifying compliance with worldwide regulatory requirements. Lightweight and compact, but rugged enough for use in any environment, Com-Power products reliably deliver a smooth response curve for increased accuracy.

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Horn Antennas

Use Com-Power horn antennas for emissions measurements and immunity testing. We offer both passive and active horn antennas and accessories for EMI testing. All of our horn antennas feature high gain and sensitivity, and our active configurations have a built-in preamp that you can connect directly to a spectrum analyzer.

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Combilog Antennas

The Com-Power AC-220 CombiLog Antenna is optimized for emission and immunity testing. Combining biconical and log technologies, it can reduce testing time by as much as 30%.

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Dipole Antennas

Considered a reference antenna for EMI testing, we designed the AD-100 tuned dipole antenna set to American National Standard C63.4 specifications. Use it to calibrate other antennas or for EMI test site calibrations.

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Active Loop Antennas

We engineered Com-Power AL-130R Active Loop Antennas for emissions testing for the range of 9 kHz to 30 MHz. With its remote access, you can monitor and control the antenna from as far as 30 mtrs.

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Passive Loop Antennas

Com-Power manufactures three loop antennas specifically for MIL-STD-461, RE101, radiated emissions, magnetic field; and RS101, radiated susceptibility, magnetic field.

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Active Monopole Antennas

Com-Power Active Monopole (or rod) Antenna is designed exclusively for use as an EMI test antenna, typically in a shielded or screened room. Ideal for determining compliance with MIL-STD-461 or DO-160 standards, it features a frequency range of 9 kHz - 60 MHz.

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Van Veen Triple Loop Antenna

The ALT-930-2M is a Triple large loop antenna system (LAS) used for magnetic field induced-current measurement in X, Y & Z planes from 9 kHz to 30 MHz as specified in CISPR 15 (EN55015) & CISPR 16-1-4.

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Portable Antenna Kits

ANK-310

For FCC & CISPR: Com-Power's ANK-310 antenna kit covers the frequency range of 30 MHz to 1 GHz. The kit includes a collapsible biconical antenna [30 MHz to 300 MHz], and a compact log periodic antenna [300 MHz to 1 GHz.

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ANK-910M

DO-160 & MIL-STD: Com-Power's ANK-910M antenna kit covers the frequency of 9 kHz to 1 GHz, Like the ANK-310 kit, this kit also includes the a collapsible biconical and compact log periodic antennas, in addition to a 1.04-meter rod [monopole] antenna for frequencies below 30 MHz.

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ANK-910L

With LOOP ANTENNA: Com-Power's ANK-910L antenna kit, like the ANK-910M kit, covers the frequency range of 9 kHz to 1 GHz. This kit includes an active loop antenna for frequencies below 30 MHz, instead of the monopole antenna.

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ANK-318

25 MHz to 18 GHz: Com-Power's ANK-318 antenna kit covers the frequency range of 30 MHz to 18 GHz. It has a collapsible biconical and a compact log periodic antenna (for frequencies below 1 GHz, and also includes a AH-118 double ridge waveguide horn antenna for frequencies above 1 GHz.

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ANK-140

1 GHz to 40 GHz: Com-Power's ANK-140 antenna kit covers the frequency range of 1 GHz to 40 GHz. It includes an AH-118 double ridge guide antenna for frequencies up to 18 GHz, and an AH-840 double ridge waveguide antenna for frequencies above 18 GHz.

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Absorbing Clamps

CLA-050

The Absorbing clamp CLA-050 is designed with a 10 mm cable aperture for disturbance power measurements as required per CISPR 13 [EN 55013], CISPR 14 [EN 55014] and CISPR 32 [EN 55032].

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CLA-150

The Absorbing clamp CLA-150 is designed with a 32 mm cable aperture for disturbance power measurements as required per CISPR 13 [EN 55013], CISPR 14 [EN 55014] and CISPR 32 [EN 55032].

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Comb Generators

CGO-501

Com-Power's CGO-501 Comb Generator is a broadband signal source for quick, [pre-test] EMI radiated emissions test site verifications. Its output spans the frequency range of 1 MHz to 1 GHz in 1 MHz steps. The circular shape of its enclosure provides the foundation for a uniform (omnidirectional) radiation pattern.

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CGO-505

The CGO-505 comb generator is similar to CGO-501 except the output is in 5 MHz steps. There are two reasons why you may go to higher step size: (1) the output is usable to at least 1 GHz and (2) the energy density is lower in a given frequency bandwidth, which reduces the likelihood of saturation of the receiver.

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CGO-515

The CGO-515 comb generator is used as a reference source on EMI-EMC test sites. It is similar to the CG-515 except it has circular base so as to give a uniform radiated reference signal in all directions. EMC test labs use it on a daily basis for quick verification of their test equipment prior to start collecting their radiated emissions test data.

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CGO-520

In this series of comb generators used as radiated signal reference sources in most EMC test sites, CGO-520 increases the usable radiated signal to 4.5 GHz providing output in 20 MHz steps. The circular base acting as a ground plane gives uniform omnidirectional radiated output pattern. This is the highest frequency comb generator with removable antenna.

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CGO-5100B

Com-Power's CGO-5100B Comb Generator is the most economical radiated reference signal source for EMI-EMC test sites as RF comb generator as well as microwave comb generator. Its 100 MHz step size and built in antenna makes it a reliable source in the frequency range of 100 MHz to 18 GHz.

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CGO-51000

The Comb Generator Model CGO-51000 is a broadband microwave reference signal source to quickly verify an EMI – EMC radiated emissions test site such as an OATS (open area test site) or an anechoic chamber. Such test greatly improves the reliability of the setup prior to beginning the test. Its output is usable over the frequency span of 1 GHz to 40 GHz. The output is visible in frequency domain in 500 MHz steps. The base of the reference source is circular to provide an omnidirectional pattern uniform over 360 degrees.

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CGC-255E

he comb generator Model CGC-255E is a broadband signal source for a quick, pre-test conducted emissions test setup verification of any EMI-EMC test laboratory with LISN (Line Impedance Stabilization Network). Its RF output spans the frequency range of 50 kHz to 400 MHz. The step size can be selectable by the user as 50 kHz or 250 kHz steps.

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CGC-510E

Model CGC-510E Conducted Comb Generator is a broadband RF reference signal source for EMI-EMC conducted emissions test site verifications. It is designed to plug in directly into an LISN and output a reference signal in the frequency range of 100 kHz to 400 MHz with comb spacing of 100 kHz or 500 kHz. The user is provided with a switch to select the desired spacing.

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CG-515

The CG-515 comb generator is used for EMI EMC testing as a reference source for a fast test site verification. It allows user to select 1 or 5 MHz steps. It is our original square version that is specified in many Industry test standards and therefore has retained its original square base.

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Current Probes

Immunity Current Probes

Com-Power's Current Injection Probes are used for RF conducted immunity testing per IEC 61000-4-6, CISPR 16-1-2, RTCA DO-160 and MIL-STD 461. Current injection Probes are to be...

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Emissions Current Probes

Com-Power's Current Emissions Probes are used for measuring conducted noise for compliance to standards such as MIL-STD-461, DO-160, CISPR, etc. This current probe is recommended for measurements in the frequency range of 10 kHz to 400 MHz.

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Emission System

EMC Pre-Compliance Test System

Perform Radiated & Conducted EMI pre-compliance testing at your facility up to 1 GHz. Com-Power PC-114 EMI emissions test system is a ideal solution performing pre-compliance EMC testing from 9 kHz - 1 GHz. It has essential equipment needed for radiated and conducted EMI emissions measurements. The system includes a spectrum analyzer, antennas, near field probes, a preamplifier, LISN and a non conductive antenna tripod. Pre-compliance testing in EMC is a commonly used term not easy to define. In general, it implies testing done prior to formal testing for legal compliance. Formal legal compliance is performed at a facility designed and equipped with test instrumentation that is fully compliant with the applicable EMC standards. Such facility and instrumentation is capital intensive and can be expensive even to rent and not easily available. Compliance testing is performed per exacting requirements of the Standards and other reference documents adhering to the test methods and last detail. In addition, the test facility may require to be accredited by an accreditation body such as NVLAP, A2LA. Often it is desirable to know prior to compliance testing at such facility, whether a product is close to compliance and also how close. Pre-compliance testing is specially useful for specifications such as FCC, Part 15, EN 55022 or EN 55011 (CISPR 22 or CISPR11). Pre-compliance testing usually means using the full compliance methods but making a few educated compromises in use of site or equipment to reduce costs and testing time. Here are some benefits of pre-compliance testing.

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Conducted Immunity Testing Systems

CIS-25

The CIS series test systems are configured to perform conducted immunity testing according to IEC 61000-4-6. The system includes one ACS-230-25W power amplifier, coupling/decoupling network (CDN), directional coupler, 150Ω to 50Ω adapters, power attenuators, cables and [optional] CSAT software. The ACS-230-25W features 25 watts of nominal output power and 44 dB of gain to easily achieve test levels of 1 Vrms, 3 Vrms or 10 Vrms into a CDN. Highly efficient and reliable, the ACS-230-25W weighs just 25 lbs. and fits conveniently into a 19" 2U rack space.

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CIS-50

This test system is similar to Model CIS-25, except with to the increased capability to achieve higher test levels. The included ACS power amplifier, model ACS-230-50W, has a 50-watt output power rating, and 47 dB gain. Also included in this system are a coupling/decoupling network (CDN), a directional coupler, 150Ω to 50Ω Adapters, power attenuators, cables and [optional] CSAT software.

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CIS-100

This system includes one ACS-250-100W power amplifier, coupling/decoupling network (CDN), directional coupler, 150Ω to 50Ω adapters, power attenuators, cables and [optional] CSAT software. The CIS-100 is our most powerful RF conducted immunity test system and features at its core the Com-Power ACS-250-100W power amplifier. With a full 50 dB of gain and 100 watts rated output power, the ACS-250-100W is the ideal power amplifier for EMC immunity testing.

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LISNs

LI-125C

(LISN) provides the necessary measurement platform for performing power line conducted emissions compliance testing as required by most worldwide standards for commercial products. The LI-125A is compliant with both CISPR 16-1-2 and ANSI C63.4. The LISN provides defined stable impedance and isolates the EUT from power source influences, thereby providing accurate and repeatable results. The LI-125A includes one pair of, separately housed, single-conductor networks, to be installed in series with each current-carrying conductor in a single- phase, dual-phase or DC power system. A second LI-125A pair can be used to accommodate 3-phase power systems (Wye or Delta configurations). The LI-125A is equipped with Superior Electric SUPERCON® shrouded sockets at the mains (power input) and EUT (power output) ports. The matching color-coded plugs for connection to the mains and EUT wiring are included. This LISN uses air-core inductors to prevent saturation and permeability variation. The mounting plate of the LI-125A is left unpainted in order to facilitate connection to earth ground in its installation, which is essential due to high leakage current.

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LI-150C

(LISN) provides the necessary measurement platform for performing power line conducted emissions compliance testing as required by most worldwide standards for commercial products. The LI-150C is compliant with both CISPR 16-1-2 and ANSI C63.4. The LISN provides defined stable impedance and isolates the EUT from power source influences, thereby providing accurate and repeatable results. The LI-150C includes one pair of, separately housed, single-conductor networks, to be installed in series with each current-carrying conductor in a single- phase, dual-phase or DC power system. A second LI-150C pair can be used to accommodate 3-phase power systems (Wye or Delta configurations). The LI-150C is equipped with Superior Electric SUPERCON® shrouded sockets at the mains (power input) and EUT (power output) ports. The matching color-coded plugs for connection to the mains and EUT wiring are included. This LISN uses air-core inductors to prevent saturation and permeability variation. The mounting plate of the LI-150C is left unpainted in order to facilitate connection to earth ground in its installation, which is essential due to high leakage current.

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LI-1100

(LISN) provides the necessary measurement platform for performing power line conducted emissions compliance testing as required by most worldwide standards for commercial products. The LI-1100 is compliant with both CISPR 16-1-2 and ANSI C63.4. The LISN provides defined stable impedance and isolates the EUT from power source influences, thereby providing accurate and repeatable results. The LI-1100 includes one pair of, separately housed, single-conductor networks, to be installed in series with each current-carrying conductor in a single- phase, dual-phase or DC power system. A second LI-1100 pair can be used to accommodate 3-phase power systems (Wye or Delta configurations). The LI-1100 is equipped with Superior Electric SUPERCON® shrouded sockets at the mains (power input) and EUT (power output) ports. The matching color-coded plugs for connection to the mains and EUT wiring are included. This LISN uses air-core inductors to prevent saturation and permeability variation. The mounting plate of the LI-1100 is left unpainted in order to facilitate connection to earth ground in its installation, which is essential due to high leakage current. Use of a Transient Limiter for impedance matching, reduction of out-of-band emissions and transient protection for your measurement instrument is highly recommended and available from Com- Power. All Com-Power LISNs are individually calibrated in compliance with the relevant requirements of CISPR 16-1-2 and ANSI C63.4. Impedance, Phase, Isolation, and Insertion Loss data is supplied with each unit, along with the calibration certificate.

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LIN-120C

The LIN-120A Line Impedance Stabilization Network (LISN) provides the necessary measurement platform for performing power line conducted emissions compliance testing as required by most worldwide standards for commercial products. The LIN-120A is compliant with both CISPR 16-1-2 and ANSI C63.4. The LISN provides defined stable impedance and isolates the EUT from power source influences, thereby providing accurate and repeatable results. The LIN-120A includes one pair of single-conductor networks, housed together, to be installed in series with each current-carrying conductor in a single-phase, dual-phase or DC power system. A second LIN-120A pair can be used to accommodate 3-phase power systems (Wye or Delta configurations).

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LI-215A

It provides the necessary measurement platform for performing power line conducted emissions compliance testing as required by most worldwide standards for commercial products. The LI-215A is compliant with both CISPR 16-1-2 and ANSI C63.4. The LISN provides defined stable impedance and isolates the EUT from power source influences, thereby providing accurate and repeatable results. The LI-215A includes one pair of single-conductor networks, housed together, to be installed in series with each current-carrying conductor in a single- phase, dual-phase or DC power system. A second LI-215A pair can be used to accommodate 3-phase power systems (Wye or Delta configurations). The LI-215A is equipped with IEC connector at the mains (power input) and NEMA 5-15R at EUT (power output) ports. This LISN uses air-core inductors to prevent saturation and permeability variation. The mounting plate of the LI-215A is left unpainted in order to facilitate connection to earth ground in its installation, which is essential due to high leakage current. Use of a Transient Limiter for impedance matching, reduction of out-of-band emissions and transient protection for your measurement instrument is highly recommended and available from Com- Power. All Com-Power LISNs are individually calibrated in compliance with the relevant requirements of CISPR 16-1-2 and ANSI C63.4. Impedance, Phase, Isolation, and Insertion Loss data is supplied with each unit, along with the calibration certificate.

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LI-220C

The LI-220A Line Impedance Stabilization Network (LISN) provides the necessary measurement platform for performing power line conducted emissions compliance testing as required by most worldwide standards for commercial products. The LI-220A is compliant with both CISPR 16-1-2 and ANSI C63.4. The LISN provides defined stable impedance and isolates the EUT from power source influences, thereby providing accurate and repeatable results. The LI-220A includes one pair of single-conductor networks, housed together, to be installed in series with each current-carrying conductor in a single- phase, dual-phase or DC power system. A second LI-220A pair can be used to accommodate 3-phase power systems (Wye or Delta configurations). This LISN uses air-core inductors to prevent saturation and permeability variation. The mounting plate of the LI-220A is left unpainted in order to facilitate connection to earth ground in its installation, which is essential due to high leakage current. Use of a Transient Limiter for impedance matching, reduction of out-of-band emissions and transient protection for your measurement instrument is highly recommended and available from Com- Power. All Com-Power LISNs are individually calibrated in compliance with the relevant requirements of CISPR 16-1-2 and ANSI C63.4. Impedance, Phase, Isolation, and Insertion Loss data is supplied with each unit, along with the calibration certificate.

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LI-325C

provides the necessary measurement platform for performing power line conducted emissions compliance testing as required by most worldwide standards for commercial products. The LI-325 is compliant with both RTCA DO-160 and MIL-STD 461. The LISN provides defined stable impedance and isolates the EUT from power source influences, thereby providing accurate and repeatable results. The LI-325 includes one pair of, separately housed, single-conductor networks, to be installed in series with each current-carrying conductor in a single- phase, dual-phase or DC power system. A second LI-325 pair can be used to accommodate 3-phase power systems (Wye or Delta configurations). The LI-325 is equipped with Superior Electric SUPERCON® shrouded sockets at the mains (power input) and EUT (power output) ports. The matching color-coded plugs for connection to the mains and EUT wiring are included. This LISN uses air-core inductors to prevent saturation and permeability variation. The mounting plate of the LI-325 is left unpainted in order to facilitate connection to earth ground in its installation, which is essential due to high leakage current. All Com-Power LISNs are individually calibrated in compliance with the relevant requirements of RTCA DO-160 and MIL-STD 461. Impedance and Insertion Loss data is supplied with each unit, along with the calibration certificate.

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LI-350

can handle upto 50 Amps AC (35 Amps DC) current and provides the necessary measurement platform for performing power line conducted emissions compliance testing as required by DO-160 & MIL-STD 461F. The concept and advantages of the LISN is to: a) connect in series with, and impose a defined impedance on, the lines under test; thereby providing a distinct advantage over current or voltage probe measurements, where the impedance of the lines is largely uncontrolled; b) provide a coaxial RF measurement port for connection to the measurement equipment, to which the disturbance voltages present at the EUT port are coupled for measurement; and, c) isolate the AE (ancilliary equipment) port from the EUT and RF ports, which: 1) minimizes the influence of the AE-connected equipment/cabling on the impedance (and voltage division factor) of the network; and, 2) reduces the amplitude of any ambient signals, as well as spurious disturbance voltages generated by the AE-connected equipment, thereby minimizing their potential impact on the measurement results. Two pairs of LI-350 can be used to accommodate 3-phase power systems (Wye or Delta configurations).

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LI-3100

Line Impedance Stabilization Network (LISN) Model: LI-3100 can handle upto 100 Amps AC (70 Amps DC) current and provides the necessary measurement platform for performing power line conducted emissions compliance testing as required by DO-160 & MIL-STD 461F and CISPR 25 and CISPR 16 from 10 kHz to 400 MHz. The concept and advantages of the LISN is to: a) connect in series with, and impose a defined impedance on, the lines under test; thereby providing a distinct advantage over current or voltage probe measurements, where the impedance of the lines is largely uncontrolled; b) provide a coaxial RF measurement port for connection to the measurement equipment, to which the disturbance voltages present at the EUT port are coupled for measurement; and, c) isolate the AE (ancilliary equipment) port from the EUT and RF ports, which: 1) minimizes the influence of the AE-connected equipment/cabling on the impedance (and voltage division factor) of the network; and, 2) reduces the amplitude of any ambient signals, as well as spurious disturbance voltages generated by the AE-connected equipment, thereby minimizing their potential impact on the measurement results. Two pairs of LI-3100 can be used to accommodate 3-phase power systems (Wye or Delta configurations).

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LI-400C

provides the necessary measurement platform for performing power line conducted emissions compliance testing as required by most worldwide standards for commercial products. The LI-400 is compliant with MIL-STD 461. The LISN provides defined stable impedance and isolates the EUT from power source influences, thereby providing accurate and repeatable results. The LI-400 includes one pair of, separately housed, single-conductor networks, to be installed in series with each current-carrying conductor in a single- phase, dual-phase or DC power system. A second LI-400 pair can be used to accommodate 3-phase power systems (Wye or Delta configurations). The LI-400 is equipped with Superior Electric SUPERCON® shrouded sockets at the mains (power input) and EUT (power output) ports. The matching color-coded plugs for connection to the mains and EUT wiring are included. This LISN uses air-core inductors to prevent saturation and permeability variation. The mounting plate of the LI-400 is left unpainted in order to facilitate connection to earth ground in its installation, which is essential due to high leakage current. Use of a Transient Limiter for impedance matching, reduction of out-of-band emissions and transient protection for your measurement instrument is highly recommended and available from Com- Power. All Com-Power LISNs are individually calibrated in compliance with the relevant requirements of MIL-STD 461. Impedance and Insertion Loss data is supplied with each unit, along with the calibration certificate.

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LI-4100

can handle upto 100 Amps AC (70Amps DC) current and provides the necessary measurement platform for performing power line conducted emissions compliance testing as required by MIL-STD 461F. The concept and advantages of the LISN is to: a) connect in series with, and impose a defined impedance on, the lines under test; thereby providing a distinct advantage over current or voltage probe measurements, where the impedance of the lines is largely uncontrolled; b) provide a coaxial RF measurement port for connection to the measurement equipment, to which the disturbance voltages present at the EUT port are coupled for measurement; and, c) isolate the AE (ancilliary equipment) port from the EUT and RF ports, which: 1) minimizes the influence of the AE-connected equipment/cabling on the impedance (and voltage division factor) of the network; and, 2) reduces the amplitude of any ambient signals, as well as spurious disturbance voltages generated by the AE-connected equipment, thereby minimizing their potential impact on the measurement results. Two pairs of LI-4100 can be used to accommodate 3-phase power systems (Wye or Delta configurations).

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LI-550C

(LISN) provides the necessary measurement platform for performing power line conducted emissions compliance testing as required by most worldwide standards for commercial products. The LI-550A is compliant with both CISPR 25 and CISPR 16-1-2 . The LISN provides defined stable impedance and isolates the EUT from power source influences, thereby providing accurate and repeatable results. The LI-550A includes one pair of, separately housed, single-conductor networks, to be installed in series with each current-carrying conductor in a single- phase, dual-phase or DC power system. A second LI-550A pair can be used to accommodate 3-phase power systems (Wye or Delta configurations). The LI-550A is equipped with Superior Electric SUPERCON® shrouded sockets at the mains (power input) and EUT (power output) ports. The matching color-coded plugs for connection to the mains and EUT wiring are included. This LISN uses air-core inductors to prevent saturation and permeability variation. The mounting plate of the LI-550A is left unpainted in order to facilitate connection to earth ground in its installation, which is essential due to high leakage current.

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3 Phase LISN - High Current

150 kHz to 30 MHz, CISPR 16-1-2 / ANSI C63.4, 50 µH / 16 Amps to 100 Amps

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3 Phase LISN - High Current

9 kHz to 30 MHz, CISPR 16-1-2 / ANSI C63.4, 250 & 50 µH / 16 Amps to 100 Amps

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Magnetic Field Generator

Magnetic Field Generator for Immunity Testing per IEC 61000-4-8

The Com-Power APF-5060 magnetic field generator is specifically geared towards generating magnetic fields for immunity testing. The APF-5060 with its corresponding loop antennas provide a standalone solution for magnetic field immunity testing as per IEC/EN 61000-4-8 and all the derived product standards. Two shrouded banana sockets provide a convenient and safe means to connect the loop antenna. In addition to full, front panel operability, the APF-5060 can also be remotely controlled by a PC software via fiber optic interface cable. The required field is generated by APF-5060 by controlling the current based on the coil factor of loop connected to it. The software comes with pre-defined coil factors for all Com-Power loops and in addition the software allows the user to define coil factor thereby providing the versatility of generating the required field by using any loop antenna with a known coil factor.

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Near Field Probes

Near Field Probe Se

The PS-400 is a Near Field Probe set consisting of E-Field tip probe, an E-Field broadband probe, an H-field probe and a custom storage case. Performance and ease of use were designed into this product. The unique design allows easy access for tight or hard to reach places while reducing the effect of hand position or cable placement.

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Near Field Probe Set with Contact Tip

The PS-500 is a Near Field Probe set consist of four probes and a custom storage case. The fine tip and the contact tip probe are precision E-field probes that features the ability to singularly identify a problem trace or pin.

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Preamplifiers

PAL-010

Com-Power model PAL-010 Preamplifier is intended for improving measurement system sensitivity during EMC compliance testing with a frequency range of 100 Hz to 30 MHz.

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PAM-103

Com-Power model PAM-103 Preamplifier is intended for improving measurement system sensitivity during EMC compliance testing with a frequency range of 1 MHz to 1000 MHz.

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PAM-6000

Com-Power model PAM-6000 Preamplifier is intended for improving measurement system sensitivity during EMC compliance testing with a frequency range of 1 GHz to 6 GHz.

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PAM-118A

The PAM-118A is a broadband, high gain, battery operated Preamplifier operating over the frequency range of 500 MHz to 18 GHz. Its high gain and low noise figure make it an ideal choice for optimizing your Microwave frequency EMI measurement system.

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PAP-501

Com-Power model PAP-501 Preamplifier is intended for improving measurement system sensitivity of near field probes. It has a frequency range of 10 to 1000 MHz. It is compact in size and is powered by external DC adapter.

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PAM-840A

The PAM-840A is a wideband, high gain, bench top microwave preamplifier. The PAM-840A has a frequency range of 18 GHz to 40 GHz.

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Surge Generators

SGTEL-168

The SGTEL-168 is a versatile surge generator designed to simulate all the environmental surge transients as described in FCC TIA-968-B (formerly known as Part 68) and Industry Canada CS03 standard

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SGIEC-645

The SGIEC-645The SGIEC-645 is a state of the art, compliance level Surge Generator designed for IEC 61000-4-5 surge immunity testing. It is capable of generating both the 1.2/50, 8/20 µs combination wave, and also the 10/700, 5/320 µs combination (telecom) wave; each at test levels up to 4 kV.

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