HYPERLABS - Ultra-Broadband Terminations
HYPERLABS offers ultra-broadband 50 Ω load terminations from DC to 110 GHz.
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Ultra-Broadband Terminations |
HL9524 Broadband Terminations (DC to 40 GHz) The HL9524 is an ultra-broadband 50 Ω load termination designed to provide a matched dummy load on unused ports and prevent unwanted reflections. It is ideal for applications including 5G wireless, test and measurement, radar systems, and Mil/Aero. |
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HL9525 Broadband Terminations (DC to 50 GHz) The HL9525 is an ultra-broadband 50 Ω load termination designed to provide a matched dummy load on unused ports and prevent unwanted reflections. It is well suited for 5G wireless, test and measurement, radar systems, and Mil/Aero. |
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HL9527 Broadband Terminations (DC to 70 GHz) The HL9527 is an ultra-broadband 50 Ω load termination designed to provide a matched dummy load on unused ports and prevent unwanted reflections. It is ideal for 5G wireless, test and measurement, radar systems, and Mil/Aero. |
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HL9529 Broadband Terminations (DC to 110 GHz) The HL9529 is an ultra-broadband 50 Ω load termination designed to provide a matched dummy load on unused ports and prevent unwanted reflections. It is ideal for 5G wireless, test and measurement, radar systems, and Mil/Aero. |
More Product Information
For next-generation broadband and multicarrier communication system, such as 5G mobile and broadcast satellites
- Built-in 5G measurement software supports efficient development and production
- All-in-one 5G NR/V5G (sub-6 GHz/mmWave) coverage
- High EVM performance due to wide dynamic range (EVM: <1%)
- One-button dynamic-range optimization at EVM measurement
- Multicarrier batch (all-at-once) analysis
- Amplitude/phase/timing difference measurement for each carrier
- Maximum analysis bandwidth: 1 GHz
- Excellent amplitude and phase flatness performance
- Wide dynamic range measurement: >140 dB
- Long-term capture using large memory
- With PCIe/USB3.0 connector equipped
- Transfers captured data to external PC at faster speed than 1000BASE-T
The HL590x series is a wideband frequency divider with minimal additive phase noise. It supports division ratios of 2, 4, 8, depending on the model, from 100 MHz to 24 GHz.
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A wide frequency range eliminating the need for antenna changes
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30W maximum power input allows high filed strengths
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High efficiency due to a low VSWR and high gain
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Suitable for broadband digital modulation thanks to a good VSWR flatness
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Small, light-weight and flat antenna easy to use in narrow spaces
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Easy handling with a flexible arm
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A wide radiation pattern makes directivity of the fields no longer an issue
- First commercial high-performance cesium atomic clock using optical pumping — 100 times more atoms can be measured compared to magnetic clocks.
- Offers 10 times higher clock stability.
- Double the operational lifetime compared with traditional magnetic cesium clocks.
- Wide range of ultra-low noise frequency outputs (e.g. 5 MHz, 10 MHz, 100 MHz) — plus multiple 1PPS outputs, supporting high-precision timing distribution.
- Frequency accuracy ≤ ±5 × 10⁻¹³; reproducibility after power cycle ≤ ±1 × 10⁻¹³.
- Adjustable frequency offset: resolution ±1 × 10⁻¹⁵, range ±1 × 10⁻⁹.
- Rack-mount (3RU, 19″)
The Precision Omnidirectional Dipoles POD 16 and POD 618 are fully compliant to CISPR 16-1-4 for site validation above 1 GHz. The POD 16 and POD 618 are precision broadband dipole antennas with conically shaped radiation elements covered by an RF-transparent radome. This rugged construction enables an excellent dipole-like radiation pattern up to 18 GHz.
AI, cloud computing, and hyperscalers are accelerating the demand for ultra-high-speed, low-latency connectivity, taking us past Gigabit Ethernet and into the era of Terabit Ethernet.
Teledyne LeCroy’s Terabit Ethernet solutions are engineered to help you take full advantage of this new technology cycle. The Xena Ethernet Test Platform gives developers of semiconductor, NEMs, and hyperscalers the solutions they need to validate next-gen silicon, network devices, and interconnects with confidence.
From Layer 1 signal integrity and Layer 2 traffic generation and analysis, we have the solutions you need to simulate, stress, and certify real-world performance. Support for 224Gbps electrical lanes, advanced FEC, and PCS diagnostics ensure readiness for tomorrow’s networks. Compact, desktop-friendly hardware combined with intuitive software and powerful automation ensure seamless lab-to-production workflows.
Whether you’re path-finding 1.6T or optimizing 800G deployments, Xena can fast-track your innovation cycle. Test smarter, deploy faster and reap the rewards.
- Part of the MicroBrite™ family of high performance, compact machine vision lights.
- The edge-lit design provides the highest flux density of any backlight in our portfolio.
- Ultra-thin profile for installations with demanding space limitations.
- Available in 3 sizes with a multitude of available wavelengths.
- Base Model numbers include BT050050, BT200100, BT100100
- Enables coaxial measurements up to 10,000 V and 300 A pulsed (600 A in a parallel configuration) with a single touchdown
- Even distribution of high current with innovative multi-fingertip design
- Compatible with TESLA 200/300 mm power device characterization system
- Reduced measurement time by testing both high-voltage and high-current conditions with a single touchdown
- Accurate characterization of a wide range of pad sizes and test currents, with minimum pad damage and contact resistance
- Safe, reliable and repeatable high-current/voltage measurements over a wide temperature range (from -55°C to +300°C)
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Unique Air Coplanar tip design with choice of beryllium copper (BeCu) or tungsten tip material
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DC to 110 GHz models available in single and dual line versions
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Low insertion and return loss with ultra-low-loss ( -L ) versions
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Excellent crosstalk characteristics
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Wide operating temperature -65 ° C to + 200 ° C
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Wide range of pitches available, from 50 to 1250 µm
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Individually supported contacts
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Reduced contact (RC) probe tips for small pads
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BeCu tip provides rugged, repeatable contact on gold pads
HYPERLABS, Inc.
Founded in 1992, HYPERLABS is a leading designer and manufacturer of 145+ GHz Ultra-Broadband Baluns, DC Blocks, Pick-Off Tees, Bias Tees, and other high-performance components.
We also build TDR and Signal Integrity instruments used in the test and measurement industry. Our product line includes high-speed and electrostatic-protected instruments, all in low-power, portable form factors that can be controlled from any Windows PC.