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  • 70MHz ´ë¿ªÆø

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»ç¾ç (Specification) :


ModelDSO5072P
Acquisition
Sample RateReal-Time Sample: 1GS/s
Acquisition Modes
NormalNormal data only
Peak DetectHigh-frequency and randon glith capture
AverageWavefom Average, selectable 4,8,16,32,64,128
Inputs
Inputs CouplingAC, DC, GND
Inputs Impendance1M¥Ø¡¾2% 20pF¡¾3pF
Probe Attenuation1X, 10X
Supported Probe Attenuation Factor1X, 10X, 100X, 1000X
Maximum Input VoltageCAT I and CAT II: 300VRMS (10¡¿), Installation Category;
CAT III: 150VRMS (1¡¿);
Installation Category II: derate at 20dB/decade above 100kHz to 13V peak AC at 3MHz* and above. For non-sinusoidal waveforms, peak value must be less than 450V. Excursion above 300V should be of less than 100ms duration. RMS signal level including all DC components removed through AC coupling must be limited to 300V. If these values are exceeded, damage to the oscilloscope may occur.
Horizontal System
Sample Rate Range500MS/s--1GS/s
Waveform Interpolation(sin x)/x
Record Length40K
SEC/DIV Range4ns/div to 40s/div
Sample Rate and
Delay Time Accuracy
¡¾50ppm(at over any ¡Ã1ms time interval)
Position Range20ns/div to 80us/div; (-8div x s/div) to 40ms;
200us/div to 40s/div; (-8div x s/div) to 400s
Delta Time Measurement Accuracy 
(Full Bandwidth)
Single-shot, Normal mode:¡¾ (1 sample interval +100ppm ¡¿ reading + 0.6ns);
>16 averages:¡¾ (1 sample interval + 100ppm ¡¿ reading + 0.4ns);
Sample interval = s/div ¡À 200
Vertical System
Vertical Resolution8-bit resolution, all channel sampled simultaneously
Position Range2mV/div to 10V/div
Bandwidth70MHz
Rise Time at BNC( typical)5ns
Analog Bandwidth in Normal and Average modes at BNC or with probe, DC Coupled2mV/div to 20mV/div, ¡¾400mV;  50mV/div to 200mV/div, ¡¾2V
500mV/div to 2V/div, ¡¾40V; 5V/div, ¡¾50V
Math+, -, *, /, FFT
FFTWindows: Hanning, Flatop, Rectamgular, Bartlett, Blackman;
1024 sample point
Bandwidth Limit20MHz
Low Frequency Response (-3db)¡Â10Hz at BNC
DC Gain Accuracy¡¾3% for Normal or Average acquisition mode, 5V/div to 10mV/div;
¡¾4% for Normal or Average acquisition mode, 5mV/div to 2mV/div
DC Measurement Accuracy, 
Average Acquisition Mode
When vertical displacement is zero, and N ¡Ã16:¡¾ (3% ¡¿ reading + 0.1div + 1mV) only 10mV/div or greater is selected; 
When vertical displacement is not zero, and N¡Ã16: ¡¾ [3% ¡¿ (reading + vertical position) + 1% of vertical position + 0.2div]; Add 2mV for settings from 2mV/div to 200mV/div; add 50mV for settings from 200mV/div to 5V/div
Volts Measurement Repeatability, 
Average Acquisition Mode
Delta volts between any two averages of ¡Ã16 waveforms acquired under same setup and ambient conditions
Trigger System
Trigger TypesEdge, Video, Pulse, Slope, Over time, Alternative
Trigger SourceCH1, CH2, EXT, EXT/5, AC Line
Trigger ModesAuto, Normal, Single
Coupling TypeDC, AC, Noise Reject, HF Reject, LF Reject
Trigger Sensitivity
(Edge Trigger Type)
DC(CH1,CH2):
1div from DC to 10MHz; 1.5div from 10MHz to 100MHz; 2div from 100MHz to Full;
DC(EXT): 
200mV from DC to 100MHz; 350mV from 100MHz to 200MHz;
DC(EXT/5):       
1V from DC to 100MHz;1.75V from 100MHz to 200MHz;       
AC: Attenuates signals below 10Hz;
HF Reject: Attenuates signals above 80kHz 
LF Reject: Same as the DC-coupled limits for frequencies above 150kHz; attenuates signals below 150kHz
Trigger Level RangeCH1/CH2: ¡¾8 divisions from center of screen; 
EXT: ¡¾1.2V;
EXT/5:¡¾6V
Trigger Level Accuracy( typical)Accuracy is for signals having rise and fall times ¡Ã20nsCH1/CH2: 0.2div ¡¿ volts/div within ¡¾4 divisions from center of screen;
EXT: ¡¾ (6% of setting + 40mV);
EXT/5: ¡¾ (6% of setting + 200mV);
Set Level to 50%(typical)Operates with input signals ¡Ã50Hz
Video Trigger
Video Trigger Type CH1, CH2: Peak-to-peak amplitude of 2 divisions;
EXT: 400mV;
EXT/5: 2V
Signal Formats and Field Rates, Video Trigger TypeSupports NTSC, PAL and SECAM broadcast systems for any field or any line
Holdoff Range100ns ~ 10s
Pulse Width Trigger
Pulse Width Trigger ModeTrigger when (< , >, = , or ¡Á); Positive pulse or Negative pulse
Pulse Width Trigger PointEqual: The oscilloscope triggers when the trailing edge of the pulse crosses the trigger level.
Not Equal: If the pulse is narrower than the specified width, the trigger point is the trailing edge. Otherwise, the oscilloscope triggers when a pulse continues longer than the time specified as the Pulse Width.
Less than: The trigger point is the trailing edge.
Greater than (also called overtime trigger): The oscilloscope triggers when a pulse continues longer than the time specified as the Pulse Width
Pulse Width Range20ns ~ 10s
Slope Trigger
Slope Trigger ModeTrigger when (< , > , = , or ¡Á ); Positive slope or Negative slope
Slope Trigger PointEqual: The oscilloscope triggers when the waveform slope is equal to the set slope.
Not Equal: The oscilloscope triggers when the waveform slope is not equal to the set slope.
Less than: The oscilloscope triggers when the waveform slope is less than the set slope.
Greater than: The oscilloscope triggers when the waveform slope is greater than the set slope.
Time Range20ns ~ 10s
Overtime Trigger
Over Time ModeRising edge or Falling edge
Time Range20ns ~ 10s
Alternative Trigger
Trigger on CH1Internal Trigger: Edge, Pulse Width, Video, Slope
Trigger on CH2Internal Trigger: Edge, Pulse Width, Video, Slope
Trigger Frequency Counter
Readout Resolution6 digits
Accuracy (typical)¡¾30ppm (including all frequency reference errors and ¡¾1 count errors)
Frequency RangeAC coupled, from 4Hz minimum to rated bandwidth
Signal SourcePulse Width or Edge Trigger modes: all available trigger sources
The Frequency Counter measures trigger source at all times, including when the oscilloscope acquisition pauses due to changes in the run status, or acquisition of a single shot event has completed.
Pulse Width Trigger mode: The oscilloscope counts pulses of significant magnitude inside the 1s measurement window that qualify as triggerable events, such as narrow pulses in a PWM pulse train if set to < mode and the width is set to a relatively small time.
Edge Trigger mode: The oscilloscope counts all edges of sufficient magnitude and correct polarity.
Video Trigger mode: The Frequency Counter does not work.
Measure
Cursor MeasurementVoltage difference between cursors: ¡âV
Time difference between cursors: ¡âT
Reciprocal of ¡âT in Hertz (1/¥ÄT)
Auto MeasuermentFrequency, Period, Mean, Pk-Pk, Cycli RMS, Minimum, Maximum, Rise time, Fall Time, +Pulse Width, -Pulse Width, Delay1-2Rise, Delay1-2Fall, +Duty, -Duty, Vbase, Vtop, Vmid, Vamp, Overshoot, Preshoot, Preiod Mean, Preiod RMS, FOVShoot, RPREShoot, BWIDTH, FRF, FFR, LRR, LRF, LFR, LFF
Display
Display Type7 inch 64K color TFT (diagonal liquid crystal)
Display Resolution800 horizontal by 480 vertical pixels
Display ContrastAdjustable (16 gears) with the progress bar
Probe Compensator Output
Output Voltage( typical)About 5Vpp into ¡Ã1M¥Ø load
Frequency(typical)1kHz
Power Supply
Supply Voltage100-120VACRMS(¡¾10%), 45Hz to 440Hz, CAT¥±
120-240VACRMS(¡¾10%), 45Hz to 66Hz, CAT¥±
Power Consumption<30W
Fuse2A, T rating, 250V
Environmental
TemperatureOperating: 32¢µ to 122¢µ (0¡É to 50¡É);
Nonoperating: -40¢µ to 159.8¢µ (-40¡É to +71¡É)
Cooling MethodConvection
Humidity+104¢µ or below (+40¡É or below): ¡Â90% relative humidity;
106¢µ to 122¢µ (+41¡É to 50¡É): ¡Â60% relative humidity
AltitudeOperating: Below 3,000m (10,000 feet);
Nonoperaring: Below 15,000m(50,000 feet)
Mechanical
SizeLength 385mm, Width 200mm, Height 245mm
Weight3.5KG(with Packing);  2.08KG(without Packing£©



±¸¼ºÇ° (Components) :

  • DSO5072P ¼¼Æ® x 1

  • ¼ÒÇÁÆ®¿þ¾î CD x 1 

  • »ç¿ë ¸Å´º¾ó x 1


Âü°íÀÚ·á (noted items) :

  • ¸ÞÄ«¼Ö·ç¼Ç Ä¿¹Â´ÏƼ Mechasolution Blog´Â ´Ù¾çÇÑ Á¤º¸¸¦ Á¦°øÇÕ´Ï´Ù.


    KC ÀÎÁõ¹øÈ£ :

    • R-R-mEC-DSO5000



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