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UNI-T UPO6000LP Series: High-Resolution Rack-Mount Oscilloscopes for Precision System Testing

August 29, 2026 – The UNI-T UPO6000LP series brings 12-bit high-definition oscilloscope performance to automated test equipment, production test systems, power-integrity validation, and other space-constrained measurement environments. Covering 350 MHz, 500 MHz, and 1 GHz bandwidths, the series offers both four- and eight-channel configurations, up to 5 GSa/s real-time sampling, and up to 500 Mpts of memory. Designed in a rack-mount format with headless operation, remote control, and external display connectivity, the UPO6000LP provides the measurement capabilities of a high-performance bench oscilloscope in a system-ready form factor. 

High-Resolution Performance in a Rack-Mount Platform

The UPO6000LP series is designed for engineers who need high vertical resolution and high channel density without sacrificing the convenience of rack-based deployment. Every model features a native 12-bit vertical resolution, providing 4,096 amplitude levels and 16 times the vertical detail of a conventional 8-bit oscilloscope.

This additional resolution is especially valuable when analyzing low-level signal variations such as switching ripple, power-rail disturbances, transient response, and other subtle waveform characteristics. Combined with bandwidths up to 1 GHz and a 5 GSa/s sampling rate, the series provides a balanced platform for precision waveform analysis. 

Six Configurations for Different Test Requirements

The UPO6000LP family consists of six models, allowing engineers to select between four- and eight-channel configurations at three bandwidth levels:

  • UPO6034LP — 350 MHz, 4 channels
  • UPO6038LP — 350 MHz, 8 channels
  • UPO6054LP — 500 MHz, 4 channels
  • UPO6058LP — 500 MHz, 8 channels
  • UPO6104LP — 1 GHz, 4 channels
  • UPO6108LP — 1 GHz, 8 channels

All six models provide 12-bit vertical resolution and 5 GSa/s sampling. The current product collection lists up to 500 Mpts of memory across the series, with four-channel models also offering an optional built-in signal-generator configuration. 

Key Features of the UPO6000LP Series:

✅ 12-Bit High-Definition Resolution
Capture 16 times the vertical detail of an 8-bit oscilloscope for improved visibility of low-amplitude signal variations.

✅ 350 MHz to 1 GHz Bandwidth
Choose the bandwidth required for power-integrity, embedded, industrial, and high-speed electronic applications. 

✅ Up to 5 GSa/s Real-Time Sampling
Accurately capture fast transitions, switching events, and waveform details across all models.

✅ Up to 500 Mpts Memory Depth
Record long waveform sequences while maintaining high sampling rates for detailed post-capture analysis.

✅ 4- and 8-Channel Configurations
Monitor multiple rails, buses, control signals, and system nodes simultaneously without requiring multiple oscilloscopes.

✅ Ultra Phosphor Display Technology
Reveal waveform density and intermittent behavior through advanced waveform visualization.

✅ Headless Rack-Mount Operation
Designed for permanent installations, ATE racks, production systems, and distributed test environments where local front-panel operation is not required. 

✅ LAN, USB, SCPI, VGA, and HDMI Connectivity
Integrate the oscilloscope into automated test systems while supporting external monitors and remote operation. 

12-Bit Resolution for Precision Waveform Analysis

One of the defining advantages of the UPO6000LP is its native 12-bit vertical resolution. Where conventional 8-bit oscilloscopes divide the vertical axis into 256 levels, a 12-bit ADC provides 4,096 levels.

This increased resolution allows engineers to see smaller variations within a waveform, making it particularly useful for power-integrity and low-level signal measurements. Ripple, noise, transient behavior, crossover details, and other subtle characteristics can be more clearly distinguished during analysis. 

For power-converter validation, this resolution can be especially useful when a relatively large switching waveform contains smaller ripple or transient components that need to be characterized accurately.

High Channel Density for Multi-Rail Systems

The eight-channel configurations are a major advantage of the UPO6000LP platform. The UPO6038LP, UPO6058LP, and UPO6108LP allow engineers to monitor eight signals simultaneously in a single rack-mount instrument. 

This channel density is particularly useful for multi-rail power systems, where engineers may need to observe several supply outputs, switching nodes, gate-drive signals, feedback loops, and control signals at the same time.

In EV and battery test stations, eight channels can also be used to monitor multiple cell or subsystem signals, BMS communication activity, and inverter waveforms without having to dedicate separate oscilloscopes to different measurement points. 

5 GSa/s Sampling for Fast Transients

Every UPO6000LP model provides a maximum real-time sampling rate of 5 GSa/s. This gives the series the acquisition speed necessary for capturing fast transitions and transient events across its 350 MHz to 1 GHz bandwidth range. 

The combination of high sampling speed and 12-bit resolution allows engineers to examine both the overall waveform and smaller details contained within it. This makes the UPO6000LP suitable for switching-converter validation, embedded-system debugging, power-rail characterization, and general-purpose high-speed signal analysis.

Deep Memory for Extended Waveform Capture

With memory configurations reaching 500 Mpts, the UPO6000LP can capture extended signal records while maintaining high sampling rates. 

Deep memory is particularly useful when an event of interest occurs after a long period of normal operation. Engineers can capture startup sequences, power-converter behavior, intermittent faults, communication activity, and long-duration system events without having to reduce the sampling rate simply to increase the acquisition window.

This combination of sampling speed and memory depth provides additional flexibility when troubleshooting complex systems where the cause of an anomaly may occur well before the visible symptom.

Rack-Ready Design for Automated Test

The UPO6000LP is built specifically for system integration. The series uses a rack-mount chassis designed to fit into standard 19-inch instrumentation environments, while headless operation eliminates the need for a traditional front-panel workflow.

This design is particularly useful in ATE systems, manufacturing test stations, continuous-monitoring installations, and distributed test systems. Rather than occupying valuable bench space, the oscilloscope can remain permanently installed in a rack and be operated remotely.

External VGA and HDMI outputs also allow users to connect a monitor when local waveform visualization is required.

Remote Control and Automated Measurement

The UPO6000LP is designed around remote operation, providing LAN, USB, and SCPI interfaces for integration into automated measurement systems. Web-based control further supports remote instrument access without requiring the oscilloscope to be physically located at the engineer’s workstation.

SCPI scripting allows engineers to automate configuration, acquisition, measurement, and data-collection tasks. This makes the series well suited to production environments where repeatable test sequences need to be executed across multiple units under test.

For long-running validation and monitoring applications, remote operation can also simplify data collection and reduce the need for engineers to remain physically next to the test equipment. 

Comprehensive Protocol Analysis

The UPO6000LP platform supports optional decoding for commonly used serial communication protocols, including UART, I²C, SPI, CAN, CAN-FD, LIN, and FlexRay. 

Protocol decoding allows engineers to correlate electrical waveforms with the digital information being transmitted. This can be especially valuable in automotive, embedded, industrial-control, and battery-management applications where a communication problem may be directly related to an analog signal or power-rail disturbance.

By combining waveform capture and protocol analysis in the same instrument, engineers can investigate both the physical and logical aspects of a system without moving between separate test platforms.

Optional Signal Generation

The four-channel UPO6034LP, UPO6054LP, and UPO6104LP configurations provide an optional built-in signal generator. 

This option can be useful when a test requires both signal generation and waveform acquisition in a single rack-mounted instrument. Engineers can generate a controlled stimulus while observing the response of the device under test, simplifying certain characterization and automated-testing setups.

For applications where a dedicated external waveform generator is already available, the base oscilloscope configuration can instead be used as a dedicated acquisition platform.

Optimized for Power Integrity and Multi-Rail Testing

The UPO6000LP’s 12-bit resolution and eight-channel configurations make the series particularly well suited to power-integrity applications. Engineers can simultaneously observe multiple supply rails and switching signals to identify relationships between voltage disturbances, load changes, switching activity, and control behavior.

The UPO6058LP and UPO6108LP are especially well suited to switching-power-supply validation, where eight channels can cover multi-rail systems while the 12-bit architecture provides increased visibility into ripple and transient behavior.

For EV and battery test stations, the UPO6038LP provides eight channels of 12-bit measurement capability for applications such as cell balancing, BMS communication, and inverter waveform validation. 

Compact System Integration Without Sacrificing Performance

The UPO6000LP is designed to provide the acquisition and analysis capabilities expected from a modern bench oscilloscope while using a rack-oriented form factor. This allows organizations to deploy measurement equipment directly alongside power supplies, electronic loads, data-acquisition systems, and other automated test hardware.

The headless architecture is particularly advantageous for permanent installations because the oscilloscope can be controlled through a network rather than requiring physical access to the instrument’s front panel.

Choosing the Right UPO6000LP Model

Selecting the right UPO6000LP configuration primarily depends on the required bandwidth and number of simultaneous measurement points.

The UPO6034LP is a practical choice for 350 MHz applications requiring four channels, while the UPO6038LP adds four additional channels for multi-rail monitoring and higher-density measurement.

The UPO6054LP and UPO6058LP increase bandwidth to 500 MHz, with the eight-channel UPO6058LP particularly suited to switching-converter and multi-rail validation.

At the top of the family, the UPO6104LP and UPO6108LP provide 1 GHz bandwidth. The eight-channel UPO6108LP is the flagship configuration for applications where both high bandwidth and maximum channel density are important. 

Unlike the UPO7000L series, the UPO6000LP bandwidth is fixed at purchase, so engineers should select the appropriate bandwidth configuration based on their expected requirements.

Ideal Applications

The UPO6000LP series is designed for a broad range of professional system-level testing applications.

For automated test equipment, its rack-mount form factor, remote operation, SCPI support, and high channel density make it suitable for permanent fixture-based test systems. In production testing, engineers can automate repetitive waveform measurements and monitor multiple test points without occupying additional bench space.

For power-electronics development, 12-bit resolution provides detailed visibility into ripple, transient response, switching behavior, and power-integrity issues. The eight-channel configurations are particularly useful for multi-rail power supplies and complex converter topologies.

In EV and battery systems, the UPO6000LP can monitor multiple signals simultaneously for BMS, inverter, cell-balancing, and power-system validation. For embedded and automotive electronics, optional protocol decoding enables engineers to correlate communication traffic with analog waveform behavior.

The series is also well suited to continuous monitoring, distributed test systems, manufacturing QA, laboratory automation, and high-density data acquisition where a rack-mounted oscilloscope provides advantages over a conventional bench instrument.

Availability and Support

The UPO6000LP Series 12-Bit Rack-Mount Oscilloscopes is available through authorized UNI-T distributors. The series includes six configurations spanning 350 MHz, 500 MHz, and 1 GHz bandwidths with four- and eight-channel options. The current UNI-T US product collection lists the UPO6000LP models as backordered and recommends contacting UNI-T for lead-time information. 

All UPO6000LP models are backed by UNI-T’s 3+2 Year Warranty, providing three years of standard coverage plus two additional years included with the product.

For detailed specifications, pricing information, configuration recommendations, or lead-time information, visit the UPO6000LP product collection or contact your local UNI-T representative.

About UNI-T

UNI-T is a leading manufacturer of precision test and measurement equipment, providing innovative solutions for electronic design, manufacturing, service, and educational applications. With over 20 years of experience in the test and measurement industry, UNI-T continues to develop instruments that help engineers and technicians work more efficiently and effectively. The company maintains research and development centers in Asia, Europe, and North America, ensuring cutting-edge technology and responsive customer support worldwide.

Media Contact:

UNI-T Marketing Department
Email: marketing@uni-trendus.com
Tel: +1-888-668-8648 (North America)
www.uni-trendus.com

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