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Highest resolution – 12 bits all the time More channels, flexibility – 8 analog and 16 digital channels Longest Memory – 5 Gpt records with simple navigation – no compromise View 16 channels on one display with OscilloSYNC™
500 MHz - 4 GHz bandwidths  Up to 40 GS/s sample rate  15.4” capacitive touch screen  MAUI with OneTouch  Powerful, Deep Toolbox  Exceptional Serial Data Tools  16 digital channels with 1.25 GS/s  Huge Applied Offset Range  Optional Application Packages
100 MHz, 200 MHz, 350 MHz, 500 MHz and 1 GHz bandwidths  Up to 4 GS/s sample rate  Long Memory – up to 20 Mpts  10.1” capacitive touch screen display  16 Digital Channel MSO option  MAUI - Most Advanced User Interface  Designed for Touch  Built for Simplicity  Made to Solve  Advanced Anomaly Detection  Fast Waveform Update  History Mode - Waveform Playback  WaveScan - Search and Find  Multi-Instrument Capabilities  Protocol Analysis - Serial Trigger and Decode  Waveform Generation - Built-in Function Generator 
Highest resolution – 12 bits all the time  More capability – integrates multiple instruments into one  Comprehensive probe support – supports over 30 probes in 9 categories  MAUI with OneTouch user interface for intuitive and efficient operation
With the ProBus interface, the ZD500, 1000, and 1500 becomes an integral part of the oscilloscope. All probe gain and offset controls are transparent to the user, making it easier to probe the circuit without concern for which gain setting to choose. When used with a LeCroy digital oscilloscope, no external power supply is required.
With the ProBus interface, the ZD500, 1000, and 1500 becomes an integral part of the oscilloscope. All probe gain and offset controls are transparent to the user, making it easier to probe the circuit without concern for which gain setting to choose. When used with a LeCroy digital oscilloscope, no external power supply is required.
With the ProBus interface, the ZD200 becomes an integral part of the oscilloscope. The probe sensitivity and offset are automatically optimized based on the oscilloscope gain settings, so control is transparent to the user. When used with a LeCroy digital oscilloscope, no external power supply is required.
With the ProBus interface, the ZD500, 1000, and 1500 becomes an integral part of the oscilloscope. All probe gain and offset controls are transparent to the user, making it easier to probe the circuit without concern for which gain setting to choose. When used with a LeCroy digital oscilloscope, no external power supply is required.
High signal fidelity to 4 GHz bandwidth  Low circuit loading – High input impedance and low capacitance  4 GHz, 2.5 GHz, 1.5 GHz and 1 GHz models  1 MΩ input resistance  0.6 pF (4 GHz) and 0.9 pF input capacitance  ± 8 V input dynamic range, ± 12 V offset range  Wide variety of tips and grounds  Easy to use, integrated with oscilloscope
Configurable and SWaP-C optimized with maximum storage capacity, processing power, and intelligence, our ruggedized, TAA-compliant BAM servers are the perfect solutions to accelerate and sustain ever-evolving applications Leading Performance CPUs - Supports dual Intel® 3rd Gen Xeon® SP CPUs with hardware-based encryption for enhanced compute and networking. High-end GPUs and FPGAs - Supports multiple double-wide, high-end Intel® and NVIDIA® GPUs and FPGAs to accelerate AI/ML/DL workloads at the edge. Fast NVMe SSDs - Supports up to 8 high-speed NVMe or 9 SAS/SATA SSDs to increase read/write speeds (FIPS 140-2/3 available).
Secure, compact, scalable fixed, front-removable, or rear-removable blade servers made right here in the USA that maximize performance and adaptability for evolving applications Size - Up to four server blades within a single rugged enclosure help efficiently utilize rack space. Weight - Compact system design reduces overall weight of rack server infrastructure. Power - Shared resources optimize hardware usage and limit power requirements. Cost - Modularity and increased footprint lower hardware and maintenance costs.
Highly scalable with unprecedented data transfer rates, the Hardware Isolation Platform is a dual-segment solution that combines cutting-edge security and adaptive capabilities to ensure guaranteed spacial isolation of critical data and optimize diverse workloads. Cross Domain Solution - Control comms and data transfer between domains of different classification levels with an FPGA hardware firewall. Data Isolation - Remote areas of memory create a data buffer between CPUs or virtual machines, securely storing frequently accessed data. Mixed Criticality - Integrate workloads with different criticalities on a single platform while prioritizing higher criticality tasks over lower ones.