Lecroy HDO9404-MS FOR RENT
Realtime Oscilloscope,4+16 Ch 4GHz,10-bit,40 GS/s

Order #: HDO9404-MS-RENT2

Mfg #: HDO9404-MS-RENT2

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Lecroy HDO9404-MS FOR RENT

Realtime Oscilloscope,4+16 Ch 4GHz,10-bit,40 GS/s

Order #: HDO9404-MS-RENT2

Mfg #: HDO9404-MS-RENT2

Call for price
Call for price

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Product Highlights

  • 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

MAUI with OneTouch
MAUI - Most Advanced User Interface puts all the power and capabilities of the oscilloscope right at your fingertips. Designed for touch, built for simplicity, and made to solve. MAUI with OneTouch incorporates drag, drop and flick to provide unsurpassed efficiency in oscilloscope operation.

Powerful, Deep Toolbox

Our waveshape analysis tools and application packages provide unparalleled insight. The Periodic Table of Oscilloscope Tools. Combine our powerful, deep toolbox with up to 64 Mpts/ch of acquisition memory and the most powerful motherboard in its class - an Intel® CoreTM i5-6500 Quad (core), 3.2 GHz, with up to 16 GB of RAM.

Exceptional Serial Data Tools
Up to 29 standards supported - all with the industry's best serial decoder. Many are provided with high performance triggers, unique measure and graph tools for validation efficiency (including a software serial DAC), and eye diagrams and physical layer testing tools. Access the most complete set of serial data analysis tools (SDAIII) to form eye diagrams and decompose jitter into Tj, Rj, Dj and beyond.

Powerful Mixed Signal Capabilities
Teledyne LeCroy's WaveRunner 9000-MS mixed signal oscilloscope combines the high-performance analog channels of the WaveRunner 9000 with the flexibility of 16 digital inputs. In addition, the many triggering and decoding options turn the WaveRunner 9000-MS into an all-in-one analog, digital, serial debug machine.

Huge Applied Offset Range
A 16-bit offset DAC permits ±10 V offset at 20 mV/div, ±4 V at 5 mV/div, and an amazing ±1.6 V offset at the highest sensitivity (1 mV/div). Such large applied offsets make it easy to acquire and view small signal variations (e.g. ripple, noise, transient interference) on DC or sensor signals. They also provide extended offset ranges for many of Teledyne LeCroy's high voltage probes.

"M" Models for Maximum Sample Rate and Memory
An industry leading 40 GS/s sample rate allows for a detailed edge reconstruction even for signals with the fastest rise times. Long memory allows for maximum sample rate to be maintained in longer timebases. 64 Mpts of memory is ideal for debugging long term behavior on high speed serial data buses.

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Vertical System

DC Vertical Gain Accuracy (Gain Component of DC Accuracy) ±(1%) FS, offset at 0 V
 

Vertical - Analog Channels

Analog Bandwidth (Max) 4 GHz
Analog Bandwidth @ 50 Ω (-3 dB) (ProBus Input) 4 GHz
(≥ 5 mV/div)
Analog Bandwidth @ 1 MΩ (-3 dB) (ProBus Input) 500 MHz (typical)
Rise Time (10-90%, 50 Ω) 100 ps (typical)
Rise Time (20-80%, 50 Ω) 75 ps (typical)
Input Channels 4
Vertical Resolution 8 bits; up to 11 bits with enhanced resolution (ERES)
Effective Number of Bits (ENOB) 6.4
Vertical Noise Floor (1 mV/div) 165 uVms
Vertical Noise Floor (2 mV/div) 165 uVms
Vertical Noise Floor (5 mV/div) 393 uVrms
Vertical Noise Floor (10 mV/div) 476 uVrms
Vertical Noise Floor (20 mV/div) 771 uVrms
Vertical Noise Floor (50 mV/div) 1.48 mVrms
Vertical Noise Floor (100 mV/div) 2.74 mVrms
Vertical Noise Floor (200 mV/div) 7.38 mVrms
Vertical Noise Floor (500 mV/div) 14.01 mVrms
Vertical Noise Floor (1 V/div) 26.85 mVrms
Sensitivity 50 Ω: 1 mV-1 V/div, fully variable;
1 MΩ: 1 mV-10 V/div, fully variable
DC Vertical Gain Accuracy (Gain Component of DC Accuracy) ±(1%) F.S, offset at 0 V
Channel-Channel Isolation DC-2.5 GHz: 40 dB (>100:1),
2.5 GHz to rated BW: 31.6 dB (>30:1)
(For any two ProBus input channels, same v/div settings, typical)
Offset Range 50 Ω
BWL≤1 GHz
±1.6 V @ 1 mV - 4.95 mV/div
±4 V @ 5 mV - 9.9 mV/div
±8 V @ 10 mV - 19.8 mV/div
±10 V @ 20 mV - 1V/div
BWL>1GHz
±1.4V @ 5 mV - 100 mV/div
±10V @ 102 mV - 1 V/div

1 MΩ
±1.6 V @ 1 mV - 4.95 mV/div
±4 V @ 5 mV - 9.9 mV/div
±8 V @ 10 mV - 19.8 mV/div
±16 V @ 20 mV - 100 mV/div
±80 V @ 102 mV - 1.0 V/div
±160 V @ 1.02 V - 10 V/div
DC Vertical Offset Accuracy ±(1.5% of offset setting +1% of full scale + 1 mV) (test limit)
Maximum Input Voltage 50 Ω: 5V RMS ± 10V peak
1 MΩ: 400 V max. (DC + peak AC < 10 kHz)
Input Coupling 1 MΩ: AC, DC, GND; 50 Ω: DC, GND
Input Impedance 50 Ω+/-2% or 1 MΩ||17pF, 10 MΩ || 9.5 pF with supplied Probe
Bandwidth Limiters 20MHz, 200MHz, 1GHz
Rescaling Length: meters, inches, feet, yards, miles; Mass: grams, slugs; Temperature: celsius, fahrenheit, kelvin; Angle: radian, arcdegr, arcmin, arcsec, cycles, revolutions, turns; Velocity: m/s, in/s, ft/s, yd/s, miles/s; Acceleration: m/s2, in/s2, ft/s2, g0; Volume: liters, cubic meters, cubic inches, cubic feet, cubic yards; Force (Weight): newton, grain, ounce, pound; Pressure: pascal, bar, atmosphere (technical), atmosphere (standard), torr, psi; Electrical: volts, amps, watts, volt-amperes, volt-amperes reactive, farad, coulomb, ohm, siemen, volt/meter, coulomb/m2, farad/meter, siemen/meter, power factor; Magnetic: weber, tesla, henry, amp/meter, henry/meter; Energy: joule, Btu, calorie; Rotating Machine: radian/second, frequency, revolution/second, revolution/minute, N?m, lb-ft, lb-in, oz-in, watt, horsepower; Other: %.
 

Horizontal - Analog Channels

Timebases Internal timebase common to 4 input channels; an external clock may be applied at the EXT input
Acquisition Modes Real-time, Roll, Random Interleaved Sampling (RIS), Sequence
Time/Division Range 20 ps/div - 1.6 ks/div
RIS available at ≤ 10 ns/div;
Roll Mode available at ≥ 100 ms/div and ≤ 5 MS/s
Clock Accuracy <=1.5 ppm +(aging of 0.5 ppm/yr from last calibration)
Sample Clock Jitter up to 10
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