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Voltage Variable Attenuators
Analog Devices voltage variable attenuators (VVAs) ensure accurate control for a wide range of applications. Our absorptive VVAs are ideal for designs where an analog dc control signal controls RF signals levels over a 30 dB amplitude range, while our monolithic VVAs feature low insertion loss, high IP3, and wide dynamic range, as well as a balanced topology that delivers excellent return loss.
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Bench-top Insertion & Return Loss Test Station
STC-IRL3201
Shanghai Stone Communication tech Co., Ltd
STC-IRL3201 is a high performance loss test station that is designed specially for Optical Passive Components production Test and Lab Test. It combines three different working modes as a return loss meter, optical power and loss meter and a stable laser source in one test station.
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Optical Loss Test Set (OLTS)
MaxTester 940/945
First tablet-inspired, multifunction optical loss test set (OLTS) delivering insertion loss, optical return loss and fiber length measurements at two wavelengths in five seconds via fully automated bidirectional FasTesT™ analysis. With its step-by-step reference wizard and intelligent fault diagnosis, the MAX-940/945 provides expert guidance throughout the test process to ensure immediate efficiency by first-time users while removing risk of errors or negative loss—a common source of issues when testing low loss fibers.
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DC Block, 700 kHz to 67 GHz
N9398G
The Keysight N9398G DC block offers a new level of DC blocking with performance specified from 700 kHz to 67 GHz. This DC block features a broad frequency range, excellent return loss, very low insertion loss and excellent temperature stability.
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Microwave Testing
40A
The GGB Industries, Inc., MODEL 40A microwave probe sets new standards in microwave probing performance. Using low loss coaxial techniques, the Model 40A achieves an insertion loss of less than 0.8 db and a return loss of greater than 18 db through 40 GHz.
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N-Male to F-Male Test Cable
C75NMFM
The C75NMFM is a high performance 75 Ohm test cable that is ideal for performing lab grade measurements 75 Ohm environments. It supports high accuracy testing with low insertion and excellent return loss up to 3GHz as well as outstanding mechanical durability.
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Fiber Optic Loopback MPO
Anfkom International Co.,Limited
Low insertion loss, high return lossMT based Multi-fiber Connector up to 12 fibersHigh credibility and stabilityGood in repeatability and exchangeabilityStandard: Telcordia GR-1435-CORE compliant
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Flexible Cable Set, 2.4 Mm To 3.5 Mm
85134F
The Keysight 85134F is a 62.9 cm (24.75 in) long1 flexible cable set composed of a 2.4 mm female2 to PSC-3.5 mm female connector and a 2.4 mm female2 to 3.5 mm male connector. Cable frequency range is dc to 26.5 GHz with a return loss greater than or equal to 16 dB. Insertion loss is 0.31 * sqrt (f) + 0.2, where f is frequency in GHz, for the test port connector and 1.8 dB at maximum frequency for the device connector. Phase stability of semi-rigid/flexible cables is specified with a 90 degree bend using a 4 to 3 inch radius. Stability1 of the Keysight 85134F is less than 0.12 dB and phase is 0.13*f+ 0.5°, where f is frequency in GHz.
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WR-8 Waveguide Straight
WAG-08-SXX
Precision mmw F-Band, WR-08, Straight waveguides are built with high precision and then gold plated for high corrosion resistance. They have very low loss and great VSWR. Manufactured to rigid specifications, these transmission line components provide minimum detrimental effects on the overall system VSWR.XX = length in inchesFeatures of WR-08, Waveguide Straights• 90 GHz to 140 GHz• Low Insertion Loss, typical for length• Low Return Loss, typical for length• UG-387 flangeView more WR-8 Waveguide Straight
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Microwave Testing
500B
The Model 500B Picoprobe sets new® standards in microwave probing performance. Benefiting from coaxial techniques, which have inherent low loss and low dispersion characteristics, the Model 500B Picoprobe achieves an insertion loss of less than 4.0 db and a return loss of greater than 15 db over its frequency range (see accompanying data).
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Flexible Cable, 2.4 Mm To 3.5 Mm
85134H
The Keysight 85134H is a 62.9 cm (24.75 in) long1 flexible cable with a 2.4 mm female2 to 3.5 mm male connector. Cable frequency range is dc to 26.5 GHz with a return loss greater than or equal to 16 dB. Insertion loss is 0.31 * sqrt (f) + 0.2 (where f is frequency is GHz) for the test port connector and 1.8 dB at maximum frequency for the device connector. Phase stability of semi-rigid/flexible cables is characterized with a 90 degree bend using a 2.5 inch radius. Stability1 of the Keysight 85134H is less than 0.12 dB and phase is less than 0.13o * f + 0.5o, (where f is frequency in GHz).
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PCIe Passive Switch
MAX4889B
High-Speed PCI Express Passive Switches Enable Gen II Switching with Low Insertion Loss and Superior Return Loss
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LISN & Voltage Probes
All commercial LISNs include an artificial hand connection and a transient limiter. This adds a 30dB insertion loss. A 30dB pre-amplifier is included which can be connected in the RF output feed to return the insertion loss to 0dB. The Voltage Probe requirement is covered by our PLIP (Power LIne Interference Probe). This fully meets the requirements of CISPR16, but has additional features:*Fully galvanic isolation between input and output (>1kV), for the safety of operator and analyser!*Shrouded safety clips for attachment to the line to be measured.*Filtered frequency response matched to Band A and B.*Current limiting on the output.*Visual indication of high voltage input.
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Flexible Cable, 3.5 Mm (Test Port) To 3.5 Mm
85131H
The Keysight 85131H is a 62.2 cm (24.5 in) long1 flexible cable with a 3.5 mm female2 to 3.5 mm male connector. Cable frequency range is dc to 26.5 GHz with a return loss greater than or equal to 16 dB. Insertion loss is 0.25 * sqrt (f) + 0.2 dB (where f is frequency is GHz) for the test port connector, and 1.5 dB at maximum frequency for the device connector. Phase stability of semi-rigid/flexible cables is characterized with a 90 degree bend using a 3 inch radius. Stability1 of the Keysight 85131H is less than 0.12 dB and phase is 0.13o * f + 0.5o, (where f is frequency in GHz).
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Optical Return Loss Meter
ORL
•Four functions in one•Power meter and light source•Return loss meter and insertion loss meter•3 wavelength detection(1310/1490/1550nm)•Rugged, shock and water-proof for field use•Compact size, lightweight and cost-effective•Quick and easy to operate
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Semi-Rigid Cable, 3.5 Mm (Test Port) To 3.5 Mm
85131G
The Keysight 85131G is a 53 cm (21 in) long1 semi-rigid cable with a 3.5 mm female2 to 3.5 mm male connector. Cable frequency range is dc to 26.5 GHz with a return loss of 16 dB or better. Insertion loss is 0.3 * sqrt (f) + 0.2 dB (where f is frequency is GHz) for the test port connector, and 1.8 dB at maximum frequency for the device connector. Phase stability of semi-rigid/flexible cables is characterized with a 90 degree bend using a 4 inch radius. Stability1 of the Keysight 85131G is 0.06 dB and phase is 0.16o * f + 0.5o (where f is frequency in GHz).
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Insertion Loss & Return Loss Test Station
Anfkom International Co.,Limited
High sensitivity, large dynamic rangeDual channelsFor lab&manufacturing optic testing
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Bench-top 12 Cores Or 24 Chanels MPO/MTP Insertion Loss & Return Loss Tester
Anfkom International Co.,Limited
This test station do the auto-testing on 12 core(24 core) for insertion loss and return loss, highly efficient multi-core fiber insertion and return loss measurement and make high precision on the measurement result with OTDR mandrel free technical adopting.
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DC Block, 700 kHz to 26.5 GHz
N9399C
The Keysight N9399C DC block offers a new level of DC blocking with performance specified from 700 kHz to 26.5 GHz. This DC block features a broad frequency range, excellent return loss, very low insertion loss and excellent temperature stability.
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Semi-Rigid Cable, 3.5 Mm (Test Port) To 3.5 Mm
85131C
The Keysight 85131C is an 81 cm (32 in) long1 semi-rigid cable with a 3.5 mm female2-to-PSC-3.5 mm female connector. Cable frequency range is DC to 26.5 GHz with a return loss of 17 dB or better. Insertion loss is 0.43 * sqrt(f) + 0.3, where f is frequency in gigahertz, for the test port connector and 2.5 dB at maximum frequency for the device connector. Phase stability of the semi-rigid / flexible cables is specified with a 90-degree bend using a 4 to 3-inch radius. Stability1 of the 85131C is less than 0.06 dB, and phase is 0.16 * f + 0.5, where f is frequency in gigahertz.
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Test Services
D-Coax offers RF/Microwave test services for your researchprojects, as well as, production quantities tests. We have available resources and expertise in the high frequency interconnects testing that will benefit your research and products. We will work with you to make your requested tests the most accurate and reliable and we'll complete them in a timely fashion. The following parameters can be characterized or tested to specifications with our test services: Time Domain: Impedance, Impedance profile, rise time, propagation delay, skew and more. Frequency Domain: S21 - Insertion loss, S11- Return loss, S12 - Reverse Insertion loss (port 2 insertion loss), S22 - Reverse Return loss (port 2 return loss) and more.
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Microwave Testing
325B
The Model 325B Picoprobe sets new® standards in microwave probing performance. Benefiting from coaxial techniques, which have inherent low loss and low dispersion characteristics, the Model 325B Picoprobe achieves an insertion loss of less than 3.0 db and a return loss of greater than 15 db over its frequency range (see accompanying data).
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Handheld Return Loss Tester
JW3308
Shanghai Joinwit Optoelectronic Tech,co.,Ltd
JW3308 handheld return loss tester is used to measure the return loss in the field fiber optic linking, in order to adjust the quality of the optic fiber end-face, and to make sure the fiber optic communication is in good condition. This 3308 handheld return loss tester can realize measurement of Return Loss, Insertion Loss, Output power, and also can be used as the laser source. Moreover, it has the data storage function of 500 measurement items.
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TDR Cable Analyzer
CT100B
The CT100B is special for two reasons: (1) It is the industry''s only high-resolution portable TDR providing step TDR impedance waveforms with resolution sufficient to show connector detail (~1 cm), and (2) it is the industry''s first portable TDR capable of making frequency domain S-parameter measurements including return loss (S11) and cable loss / insertion loss (S21). "High resolution TDR is extremely useful for detecting and localizing cable faults and characterizing cable and connector performance, but historically, portable TDRs have been unable to display OSL-calibrated S-parameter measurements," said Brandt Mohr, MOHR chief technologist. "The CT100B includes that capability, making it a very versatile instrument. If you can only carry one cable tester out into the field with you, it should be the CT100B."
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Microwave Testing
120
The MODEL 120 PICOPROBE® sets new standards in microwave probing performance. Benefiting from coaxial techniques, which have inherent low loss and low dispersion characteristics, the Model 120 Picoprobe®, achieves an insertion loss of less than 1.75 db (typical) and a return loss of greater than 15 db (max.) over its frequency range.
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PIN Solid State Switch, 100 MHz to 18 GHz, SPDT
P9402C
The Keysight P9402C PIN solid state switch maximizes your operating frequency range from 100 MHz to 18 GHz. Providing superior performance in terms of isolation, insertion loss and return loss, the P9402C is particularly suitable for high-speed RF and microwave switching applications such as switch matrixes in instrumentation, communications and radar. These switches provide ultra-fast switching speed to increase throughput in manufacturing.
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Microwave Testing
50A
The GGB Industries, Inc., MODEL 50A probe sets new standards in microwave probing performance. Using low loss coaxial techniques, the Model 50A achieves an insertion loss of less than 1.0 db and a return loss of greater than 18 db through 50 GHz.
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IL/RL Testing Platform
JW18001
Shanghai Joinwit Optoelectronic Tech,co.,Ltd
To meet the test requirements of MPO devices, we adopt the JW18001 optical device testing platform,JW1608 No-mandrel IL/RL tester module, JW1606 multi-channel optical switch module and form an integrated solution for MPO testing. The application of No-mandrel technique solves the problem that the multi-core optical device can not be winded and needs fiber matching cream, thereby the testing efficiency of the insertion loss and return loss of the multi-core / ribbon fiber has been greatly improved. At the same time, MPO applications can configure a variety of testing mode, test reports, threshold setting function, so multi-core optical device testing is no longer complicated.
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Insertion Loss Test Set
OptiConcepts FiberWarrior Pro™ Insertion Loss Test Set is used for the following functions: continuity check, fiber loss, return loss, and connector loss for OEM, lab, and production use as well as transport, metro, access, and FTTx/PON networks. The FiberWarrior Insertion Loss Test Set performs single-mode and multimode loss measurement functions, including single component and multi-fiber testing.
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Fixed Laser Source Module
Keysight offers a broad choice of fixed laser sources, which are available as single-wavelength and dual-wavelength modules as part of the Keysight Lightwave Solution Platform. The Keysight 8165xA Fabry-Perot laser sources can be used in conjunction with optical power meter modules for insertion loss, optical return loss and PDL measurement of broadband components and fiber. The Keysight 81663A Distributed Feedback Laser Sources are best suited for amplifier test and WDM system test applications. Keysight covers PON and common WDM wavelengths with its 81663A Distributed Feedback (DFB) laser source modules. The precise tunability around ITU-grid center wavelength gives you the flexibility to match test setups to the latest requirements of the DWDM-system. The fine-tuning allows to shift the center wavelength from one DWDM transmission channel to the adjacent channel in dense WDM systems. The built-in isolator ensures highest laser stability, even when reflections are present in the optical path.