The LabMaster 10 Zi incorporates LeCroy’s technology leading 8HP SiGe 36 GHz chipset to provide twice the bandwidth density of competitive oscilloscopes – 4 oscilloscope channels, all at silicon-based 36 GHz bandwidth (the highest available) and 80 GS/s. LeCroy’s patented Digital Bandwidth Interleave (DBI) technology combines two 36 GHz channels to achieve an industry-leading 65 GHz and 160 GS/s on two channels.
The Ultimate in High Bandwidth Performance:
- Up to 65 GHz (April 2012)
- Up to 80 Channels @ 36 GHz
- Up to 160 GS/s
- Up to 1024 Mpts/Ch
LabMaster 10 Zi modular oscilloscope systems completely re-define oscilloscope performance and capabilities:
- Multi-channel operation at the highest bandwidths
- Bandwidth and channel upgrade flexibility
- ChannelSync for precise synchronization of all acquisition modules
- Server-class CPU (33.6 GHz effective clock rate, up to 192 GB RAM)
- Ultra-low jitter noise floor (100 fs rms) and ultra-high time base stability
- 30 GHz edge trigger bandwidth
- 5.2 ps (20-80%) rise time
- 14.1 Gb/s hardware serial trigger supporting (28 Gb/s in development)
LabMaster 10Zi provides more of everything, and its modular design provides the simplest upgrade path in bandwidth and channel count. ChannelSync ensures precise synchronization of all channels in all acquisition modules using a single-distributed 10 GHz clock and a single trigger circuit. The result is the highest timebase accuracy and an ultra-low 200 fs jitter between all channels, identical to that provided with a single, standard oscilloscope package.
Upgrade flexibility is designed in—start with a minimum configuration and add channels over time by simply adding additional acquisition modules, upgrade bandwidth on existing modules, or mix and match bandwidths in one system. A server-class CPU packs additional processing power for the immense amounts of data made possible by LabMaster 10 Zi.
LabMaster enables the leading-edge technologies that provide enhanced high speed data transfer and communication—such as 28 – 32 Gb/s SERDES, multi-lane serial data (40/100 GbE, PCIe Gen3), and optical coherent modulation communications. It is also ideal for defense and aerospace applications where high channel count and high bandwidth are both required.
10Zi Vertical System specifications:
- Analog Bandwidth @ 50 O (-3 dB) (1.85mm Inputs) (= 10 mV/div)
- 50 GHz LabMaster: 50 GHz
- 60 GHz LabMaster: 60 GHz
- 65 GHz LabMaster: 65 GHz
- Analog Bandwidth @ 50 O (-3 dB) (2.92mm Inputs) (= 10 mV/div)
- 25 GHz LabMaster: 25 GHz
- 30 GHz LabMaster: 30 GHz
- 36 GHz LabMaster: 36 GHz
- 50 GHz LabMaster: 36 GHz
- 60 GHz LabMaster: 36 GHz
- 65 GHz LabMaster: 36 GHz
- Rise Time (10–90%, 50 O) (test limit, flatness mode)
- 25 GHz LabMaster: 16.0 ps
- 30 GHz LabMaster: 13.3 ps
- 36 GHz LabMaster: 12.0 ps
- 50 GHz LabMaster: 8.4 ps
- 60 GHz LabMaster: 7.5 ps
- 65 GHz LabMaster: 6.9 ps
- Rise Time (20–80%, 50 O) (flatness mode)
- 25 GHz LabMaster: 12.0 ps
- 30 GHz LabMaster: 10.0 ps
- 36 GHz LabMaster: 9.0 ps
- 50 GHz LabMaster: 6.3 ps
- 60 GHz LabMaster: 5.6 ps
- 65 GHz LabMaster: 5.2 ps
- Input Channels
- 25 GHz LabMaster, 30 GHz LabMaster, 36 GHz LabMaster: Up to 80, depending on configuration selected
- 50 GHz LabMaster, 60 GHz LabMaster, 65 GHz LabMaster: Up to 40 (at 50, 60, or 65 GHz), Up to 80 (36 GHz), depending on configuration selected
- Input Impedance: 50 O ±2%
- Input Coupling: 50 O: DC, GND
- Maximum Input Voltage
- 25 GHz LabMaster, 30 GHz LabMaster, 36 GHz LabMaster: 2.92 mm Inputs: ±2 Vmax at =100mV/div, 5.5Vrms at >100mV/div
- 50 GHz LabMaster, 60 GHz LabMaster, 65 GHz LabMaster: 2.92 mm Inputs: ±2 Vmax at =100mV/div, 5.5Vrms at >100mV/div; 1.85 mm Inputs: ±2 Vmax at =80mV/div
- Vertical Resolution: 8 bits; up to 11 bits with enhanced resolution (ERES)
10Zi Horizontal System specifications:
- Timebase: Internal timebase with 10 GHz clock frequency common to all input channels. Single, distributed 10 GHz clock for all channels ensures precise synchronization with timing accuracy between all channels identical to that provided within a single, conventional oscilloscope package
- Time/Division Range
- 25 GHz LabMaster, 30 GHz LabMaster, 36 GHz LabMaster: For = 36 GHz Mode: 10 ps/div–64 s/div (Real-Time Mode: 10 ps/div - 64 s/div; RIS mode: 10 ps/div - 10 ns/div, user selectable at = 10ns/div)
- 50 GHz LabMaster, 60 GHz LabMaster, 65 GHz LabMaster: For > 36 GHz Mode: Real-Time Mode, 10 ps/div - 640 µs/div, depending on memory length; For = 36 GHz Mode: 10 ps/div–64 s/div (Real-Time Mode: 10 ps/div - 64 s/div; RIS mode: 10 ps/div - 10 ns/div, user selectable at = 10ns/div)
- Jitter Noise Floor (TIE, typical)
- 25 GHz LabMaster: For Any Acquisition Length: 120 fsrms
- 30 GHz LabMaster: For Any Acquisition Length: 115 fsrms
- 36 GHz LabMaster: For Any Acqusition Length: 110 fsrms
- 50 GHz LabMaster: For Any Acqusition Length: 100 fsrms
- 60 GHz LabMaster: For Any Acqusition Length: 100 fsrms
- 65 GHz LabMaster: For Any Acqusition Length: 100 fsrms
10Zi Acquisition System specifications:
- Single-Shot Sample Rate/Ch
- 25 GHz LabMaster, 30 GHz LabMaster, 36 GHz LabMaster: 80 GS/s on each channel
- 50 GHz LabMaster, 60 GHz LabMaster, 65 GHz LabMaster: 160 GS/s on each channel in > 36 GHz Mode, 80 GS/s on each channel in = 36 GHz Mode
- Standard Memory (4 Ch / 2 Ch / 1Ch) (Number of Segments)
- 25 GHz LabMaster, 30 GHz LabMaster, 36 GHz LabMaster: 20 M / 20 M / 20M (2000)
- 50 GHz LabMaster, 60 GHz LabMaster, 65 GHz LabMaster: 40 M / 40 M / 40M (In = 36 GHz Modes, reference memory specification for 36 GHz LabMaster) (1000)
- Memory Options up to 1024M on 4 Ch / 2Ch / 1 Ch (15000 Segments)
10Zi Triggering System specifications:
- Trigger Modes: Normal, Auto, Single, Stop
- Trigger Capability: Edge, Window, State or Edge Qualified, Qualified First, Dropout, Pattern, Glitch, Width, Interval, Timeout, Runt, Slew Rate, Measurement, Cascade (Sequence), 14.1 Gb/s Serial (optional)
- Sources: Any input channel, Aux, Aux/10, Line, or Fast Edge. Slope and level unique to each source (except line trigger)
- High Speed Serial Protocol Triggering
- Data Rates: (Optional, for signals connected to 10-xxZi-A Acquisition Module Channel 4 input) up to 14.1 Gb/s
- Capability: 80 bits NRZ, 8b/10b or 64b/66b symbolic, or PCI Express Generation 3.0 link layer protocol capability