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Rigol DS1104Z 100 MHz Digital Oscilloscope with 4 channels

Rigol DS1104Z
Catalog #: DS1104Z
         
5 of 5
100 MHz Digital Oscilloscope with 4 channels plus 12 Mpt memory and 1 GSa/sec sampling

Click to Listen - Top Features

Features

  • 4 Channels, 100 MHz Bandwidth
  • UltraVision: Deeper memory(Std.12Mpts,Opt.24Mpts)
  • UltraVision: Up to 30,000 wfms/s Waveform capture rate
  • UltraVision: Multi-Level intensity grading display
  • UltraVision:Realtime  waveform  Record,Replay, function (Opt.)
  • A variety of Math Functions
  • FFT function
  • A variety of Trigger Functions
  • Optional Serial Bus Triggering and Decoding functions(RS232,I2C,SPI)
  • Standard Mask test function
  • Automatic Measurements with Statistics
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Product Name Bandwidth Channels Sampling Rate Availability Price  
DS1104Z
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Product Information

DS1000Z series are 4-channel digital oscilloscope bandwidth 70MHz ~ 100MHz, sample rates up to 1GSa / s, while bothdeep storage depth and high waveform capture rate, high-performance economical general purpose digital oscilloscopes. DS1000Z series uses many of today's advanced technology and processes, the overall performance reached the international advanced level, for the most widely used digital oscilloscope markets including communications, semiconductor, computer, aerospace and defense, instrumentation, industrial electronics, consumer electronics, automotive electronics, site maintenance, research / education and many other areas of universal design / debugging / testing requirements and design an oscilloscope.

DS1000Z Series Digital Oscilloscope

Innovative UltraVision technology

  • Deeper Memory Depth (Std.12Mpts,Opt.24Mpts)
  • Higher Waveform Capture Rate (Up to 30,000 wfms/s)
  • Real Time Waveform Record&Replay (Up to 60,000 frames, opt.)
  • Multi-level Intensity Grading Display

Advanced functions


4 Channels


UltraVision: Deeper memory
(Std.12Mpts,Opt.24Mpts)


UltraVision: Up to 30,000
wfms/s Waveform

capture rate


UltraVision: Multi-Level
intensity grading display


Mask test functions


A variety of Math Functions


FFT function


A variety of Trigger Functions


Optional Serial Bus
Triggering and Decoding

functions(RS232,I2C,SPI)


Standard Mask test function


Automatic Measurements
with Statistics


Built in 2 channel 25MHz
Signal Source(DS1000Z-S)

RIGOL Probes and Accessories supported by DS1000Z Series:

Model Number Attenuation Ratio Bandwidth Input R Max.Input voltage Recommended applications
RP2200 1:1 or 10:1 1X: DC~7 MHz
10X:DC~150 MHz
1X: 1MΩ ±2%
10X: 10 MΩ±2%
1X: CAT II 150 V AC
10X: CAT II 300V AC
Small signal test (1X)
General purpose test
RP3300 1:1 or 10:1 1X: DC~8 MHz
10X:DC~350 MHz
1X: 1MΩ ±2%
10X: 10 MΩ±2%
1X: CAT II 150 V AC
10X: CAT II 300V AC
Small signal test (1X)
General purpose test
RP3500 10:1 DC~500 MHz 10 MΩ±2% CAT II 300VAC General purpose test
RP1300H   DC~300MHz   CATI 2000V(DC+AC),
CATII 1500 V(DC+AC)
High voltage probe
RP1050H 1000:1 DC~50 MHz 10 MΩ±0.5% DC: 0~15KV DC
AC: pulse <=30 KVp-p
AC: sine wave <=10 KVrms
High voltage test
RT50J     50ohm Impedance
adapter(2W,1GHz)
   
RP1001C   BW:DC~300kHz  

Max.DC:±100A,
AC P-P:200A,AC RMS:70A

Current Probe
RP1002C   BW:DC~1MHz   Max.DC:±70A,
AC P-P:140A,AC RMS:50A
Current Probe
RP1003C   BW:DC~50MHz   Max.AC RMS:30A
AC Peak:50A(Noncontinuous)
Current Probe
RP1004C   BW:DC~100MHz,   Max. AC RMS:30A,
AC Peak:50A(Noncontinuous)
Current Probe
RP1005C   BW:DC~10MHz   Max.150 A rms,
300 A peak (Noncontinuous),
500 A peak (@pulse width <=30 ms)
Current Probe
RP1000P         Power Supply
RP1025D   BW:25MHz   Max. Voltage ≤ 1400Vpp High Voltage Differential Probe
RP1050D   BW:50MHz   Max. Voltage ≤ 7000Vpp High Voltage Differential Probe
RP1100D   BW:100MHz   Max. Voltage ≤ 7000Vpp High Voltage Differential Probe

 


Probes Supported

RP2200 High Z Probe

RP1002C Current Probe

 

RP3300 High Z Probe

RP1003C Current Probe

 

RP3500 High Z Probe

RP1004C Current Probe

 

RP1300H High Voltage Probe

RP1005C Current Probe

 

RP1050H High Voltage Probe

RP1000P Power Supply

 

RT50J 50ohm Impedance adapter

RP1025D High Voltage Differential Probe

 

RP1001C Current Probe

RP1050D High Voltage Differential Probe

 



 
   RP1100D High Voltage Differential Probe
?

What's In The Box

Power Cord
USB Data Cable
4 Passive Probes (150 MHz)
Quick Guide
Resource CD (User’s Guide and Application Software)

Specifications

Image
Model DS1074Z DS1074Z-S DS1104Z DS1104Z-S
Analog Bandwidth 70 MHz 100MHz
Channels 4
Max. Sample rate 1GSa/s (Single-channel),  500MSa/s(Dual-channel), 250MSa/s(Fulll-channel)
Max. Memory Depth 12Mpts(std.), 24Mpts(option)
Max. Waveform Capture rate Up to 30,000 wfms/s
Real Time waveform Record,
Replay and Analysis function
Up to 60, 000 Frames(Opt.)
Std. Probes RP2200 150MHz BW Passive Probe:4 sets
Built in 2 Ch Source No Yes No Yes

 

Sample
Sample Mode Real-time Sample
Real-time Sample Rate 1 GSa/s (single-channel)
500 MSa/s (dual-channel)
250 MSa/s (four-channel)
Peak Detect 4 ns
Averaging After both the channels finish N samples at the same time, N can be 2, 4, 8, 16, 32, 64, 128, 256, 512, 1024.
High Resolution The highest resolution is 12 bit
Memory Depth Single-channel: Auto, 12k pts, 120k pts, 1.2M pts, 12M pts and 24M pts (option) are available
Dual-channel: Auto, 6k pts, 60k pts, 600k pts, 6M pts and 12M pts (option) are available
Four-channel: Auto, 3k pts, 30k pts, 300k pts, 3M pts and 6M pts (option) are available
Input
Number of Channels four-channel
Input Coupling DC, AC or GND
Input Impedance (1 MΩ±2%) || (13 pF±3 pF)
Probe
Attenuation
Coefficient
0.01X-1000X, 1-2-5 step
Maximum Input Voltage (1MΩ)  Maximum input voltage of the analog channel
CAT I 300 Vrms, CAT II 100 Vrms, transient overvoltage 1000 Vpk
With RP2200 10:1 probe: CAT II 300 Vrms
Horizontal
Time Base Scale 5 ns/div to 50 s/div
Time Base Accuracy [1] ≤ ± 25 ppm
Time Base Drift ≤ ± 5 ppm/Year
Delay Range Pre-trigger (negative delay): ≥1 screen width
Post-trigger (positive delay): 1 s to 100,000 s
Time Base Mode Y-T, X-Y, Roll, Delayed
Number of X-Ys 1 path
Waveform Capture Rate [2] 30,000 wfms/s (dots display)
Vertical
Bandwidth (-3dB) DS1104Z: DC to 100 MHz
DS1074Z: DC to 70 MHz
Single Bandwidth DS1104Z: DC to 100 MHz
DS1074Z: DC to 70 MHz
Vertical Resolution 8 bit
Vertical Scale 1 mV/div to 10 V/div
Offset Range 1 mV/div to 499 mV/div: ± 2 V
500 mV/div to 10 V/div: ± 100 V
Bandwidth Limit1 20 MHz
Low Frequency Response
(AC coupling, -3dB)
≤5 Hz (on BNC)
Rise Time [1] DS1104Z: 3.5 ns
DS1074Z: 5 ns
DC Gain Accuracy [3] <10 mV: ±4% full scale
≥10 mV: ±3% full scale
DC Offset Accuracy ±0.1 div ± 2 mV ± 1% offset
Channel to Channel
Isolation
DC to maximum bandwidth: >40 dB
Trigger
Trigger Level Range ±5 div from the center of the screen
Trigger Mode Auto, Normal, Single
Holdoff Range 16 ns to 10 s
High Frequency
Rejection2
75 kHz
Low Frequency
Rejection2
75 kHz
Trigger Sensitivity [1] 1.0div (below 5mV or noise rejection is enabled)
0.3div (above 5mV and noise rejection is disabled)
Edge Trigger
Edge Type Rising, Falling, Rising&Falling
Pulse Trigger
Pulse Condition Positive Pulse Width (greater than, lower than, within specified interval)
Negative Pulse Width (greater than, lower than, within specified interval)
Pulse Width Range 8 ns to 10 s
Runt Trigger
Pulse Condition None, > (greater than), < (lower than), <> (within the specified interval)
Polarity Positive, Negative
Pulse Width Range 8 ns to 4 s
Windows Trigger 
Windows Type Rising, Falling, Rising&Falling
Trigger Position Enter, Exit, Time
Windows Time 8 ns to 10 s
Nth Edge Trigger
Edge Type Rising, Falling
Idle Time 16 ns to 10 s
Number of Edges 1 to 65535
Slope Trigger
Slope Condition Positive Slope (greater than, lower than, within specified interval)
Negative Slope (greater than, lower than, within specified interval)
Time Setting 8 ns to 10 s
Video Trigger
Signal Standard Support standard NTSC, PAL and SECAM broadcasting standards
Support 480P, 576P HDTV standards
Pattern Trigger
Pattern Setting H, L, X, Rising Edge, Falling Edge
Delay Trigger
Edge Type Rising, Falling
Delay Type > (greater than), < (lower than), <> (within the specified interval), >< (outside the specified interval)
Delay Time 8 ns to 10 s
TimeOut Trigger 
Edge Type Rising, Falling, Rising&Falling
TimeOut Value 16 ns to 10 s
Duration Trigger 
Pattern Setting H, L, X
Trigger Condition > (greater than), < (lower than), <> (within the specified interval)
Duration Time 8 ns to 10 s
Setup/Hold Trigger 
Edge Type Rising, Falling
Data Pattern H, L,X
Setup Time 8 ns to 1 s
Hold Time 8 ns to 1 s
RS232/UART Trigger
Polarity Normal, Invert
Trigger Condition Start, Error, Check Error, Data
Baud 2400 bps, 4800 bps, 9600 bps, 19200 bps, 38400 bps, 57600 bps, 115200 bps, User
Data Bits 5 bits, 6 bits, 7 bits, 8 bits
I2C Trigger
Trigger Condition Start, Restart, Stop, Missing Ack, Address, Data, A&D
Address Bits 7 bits, 8 bits, 10 bits
Address Range 0x0 to 0x7F, 0x0 to 0xFF, 0x0 to 0x3FF
Byte Length 1 to 5
SPI Trigger
Trigger Condition TimeOut, CS
Timeout Value 16 ns to 10 s
Data Bits 4 bit to 32 bit
Data Line Setting H, L, X
Measure Manual mode | Voltage deviation between cursors (ΔV)
Time deviation between cursors (ΔT)
Reciprocal of ΔT (Hz) (1/ΔT)
Track mode | Voltage and time values of the waveform point
Auto mode | Allow to display cursors during auto measurement
Auto Measurement Measurements of Maximum, Minimum,
Peak-Peak Value, Top Value, Bottom Value,
Amplitude, Average, Mean Square Root,
Overshoot, Pre-shoot, Frequency, Period, Rise
Time, Fall Time, Positive Pulse Width, Negative
Pulse Width, Positive Duty Cycle, Negative
Duty Cycle, Delay A~B , Delay A~B , Phase
A~B , Phase A~B
Number of
Measurements
Display 5 measurements at the same time
Measurement
Range
Screen Region or Cursor Region
Measurement
Statistic
Counter
Average, Max, Min, Standard Deviation
Number of Measurements
Hardware 6 bits counter (channels are
selectable)
Math
Waveform A+B, A-B, A×B, A/B, FFT, &&, ||, ^, !, intg, diff, sqrt, lg, ln, exp, abs
FFT Window Rectangle, Hanning, Blackman, Hamming,Flat Top,Triangle
FFT Display Split, Full Screen
FFT Vertical Scale dB/dBm, Vrms
Number of Buses
for Decoding
2
Decoding Type Parallel (standard), RS232/UART (option), I2C (option), SPI (option)
Display
Display Type 7.0 inches TFT LCD display
Display Resolution 800 horizontal×RGB×480 vertical pixel
Display Color 160,000 Color (TBD)
Persistence Time Min, 50 ms, 100 ms, 200 ms, 500 ms, 1 s, 2 s, 5 s, 10 s, 20 s, Infinite
Display Type Dots, Vectors
I/O
Standard Ports USB HOST, USB DEVICE, LAN, Aux (TrigOut /PassFail)
Signal Sourse (DS1000Z-S) 
Number of Channels  2
Sample Rate  200 MSa/s
Vertical Resolution  14 bits
Highest  Frequency  25 MHz
Standard Waveform  Sine, Square, Pulse, Triangle, Noise, DC
Arbitrary Waveform  Since, Exp.Rise, EXP.Fall, ECG, Gauss, Lorentz, Haversine
Sine  Frequency Range  0.1 Hz to 25 MHz
 Flatness  ±0.5 dB (relative to 1 kHz)
 Harmonic Distortion  -40 dBc
 Stray (Non-Harmonic)  -40 dBc
 Total Harmonic Distortion  1%
 Signal-to-Noise ration  40 dB
Square/Pulse  Frequency Range  0.1 Hz to 15 MHz
 Rise/Fall time  <15 ns
 Overshoot  <5%
 Duty Cycle  10% to 90%
 Duty Cycle  Resolution  1% to 10 ns (select the greater one)
 Minimum Pulse Width  20 ns
 Pulse Width Resolution  10 ns or 5 bits (select the greater one)
 Jitter  500 ps
Triangle  Frequency Range  0.1 Hz to 100 kHz
 Linearity  1%
 Symmetry  0 to 100%
Noise [1]  Bandwidth 25 MHz
Internal Generated
waveforms
 Frequency Range  0.1 Hz to 1 MHz
Arbitrary Waveforms  Frequency Range  0.1 Hz to 10 MHz
 Waveform Length  2 to 16k pts
Frequency  Accuracy 100 ppm (lower than 10 kHz)
50 ppm (greater than 10 kHz)
 Resolution  0.1 Hz or 4 bit, select the greater one
Amplitude  Output Range  20 mVpp to 5 Vpp, High-resistance
10 mVpp to 2.5 Vpp, 50 Ω
 Resolution  100 μV or 3 bit, select the greater one
 Accuracy  2% (1 kHz)
DC Offset  Range  ±2.5 V, High-resistance
±1.25 V, 50 Ω
 Resolution  100 μV or 3 bit, select the greater one
 Accuracy  2% (1 kHz)
General Specifications
Probe Compensation Output
Output Voltage [1] About 3 V, peak-peak
Frequency [1] 1 kHz
Power
Power Voltage 100-240 V, 45-440 Hz
Power Maximum 50 W
Fuse 2 A, T degree, 250 V
Environment
Temperature Range In operation: 0°C to +50°C
Out of operation: -40°C to +70°C
Cooling Method Fan
Humidity Range 0° to +30°C : ≤95°C relative humidity
+35°C to +40°C : ≤75°C relative humidity
+40°C to +50°C : ≤45°C relative humidity
Altitude In operation: under 3,000 meters
Out of operation: under 15,000 meters
Mechanical
Dimensions [4] Width×Height×Depth =313.1 mm× 160.8 mm×122.4 mm
Weight [4] Without package | 3.2 kg ± 0.2 kg
With package | 3.8 kg ± 0.5 kg
Adjustment Interval
  The recommended calibration interval is one year.
Regulation Standards
Electromagnetic 2004/108/EC
Compatibility Execution standard EN 61326-1:2006 EN
61326-2-1:2006
Safety UL 61010-1:2004; CAN/CSA-C22.2 NO.
61010-1-2004;
EN 61010-1:2001; IEC 61010-1:2001

Rigol DS1104Z Product Specifications Summary:
(for full specs please see the full specs tab or the data sheet)

Oscilloscopes/Digital Oscilloscopes Template

Bandwidth What's This?100 Mhz
Channels4
Sampling Rate What's This?1 GS/S 
Memory What's This?12 MP [megapoints] (12288 kB)
Rise Time What's This?3.5 ns
Screen Type (Oscilloscopes)TFT/LCD
Screen Size7 IN
Bits What's This?8
Battery OptionsNo

Test Equipment General Attributes

Warranty3 YEARS
Calibration IncludedFactory Calibration
Power Supply Voltage120V/220V Universal
Safety ApprovalCE, CSA
Data Logging What's This?Yes 
Interfaces I/O LAN / Ethernet, LXI, USB Host, USB
Product Weight3.2 KILOS (7.05 LBS)
Shipping Weight4.2 KILOS (9.26 LBS)
ECCN Number3A992
HTS/Schedule B Number9030201500
Country of OriginChina

Reviews

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Q & A

Q: What is the difference between the Rigol DS1104Z and the Rigol DS1104Z-S?
A: The difference between the Rigol DS1104Z and the Rigol DS1104Z-S is the Rigol DS1104Z-S has an additional two channel signal source/function generator.

Q: Do the serial triggers and decode options for RS232/UART, I2C and SPI for the Rigol DS1104Z and Rigol DS1104Z-S work on the analog channels?
A: Yes, you can use the serial decodes and triggers on the analog channels. If you order the MSO1104Z or MSO1104Z-S, you can decode and trigger on both analog and digital channels.

Q: Does the Rigol DS1104Z have the ability to record and play data from memory?
A: Yes. The DS1104Z does have record and playback functions. See the REC-DS1000Z option.

Q: Do you need the AT-DS1000Z Advanced Trigger Option to use the SA-DS1000Z Serial Bus Decoding with the Rigol DS1104Z?
A: No, you do not. You can manually set your triggers and then decode what you captured. However, it makes the process much, much easier if you have correct triggers already available.

Q: Why is the DS1054Z so inexpensive compared to the DS1104Z ?
A: This is a question we often get asked about this unit.  It looks fantastic.  Why is it so inexpensive?  The answer to this is somewhat of an opinion here at TEquipment but Rigol wants market share.  They are making waves by having such a great unit at an unbelievable price. We like to see the reviews.  Our customers write honest feedback. This unit is simply an AMAZING value.

Q: Could you confirm the maximum input voltage for the DS1104Z, using a 1x probe?
A: The Rigol DS1054Z comes with the RP2200 probes. In the 1x mode, the maximum input voltage is: 150Vrms. When in the 10x mode, the maximum input voltage is: 300Vrms. This is approximately equal to 425 VDC, if you consider the peak value. However, its always advised to use a DC Blocking capacitor when working with tube amplifiers with plate voltages over 300 Vdc.

Q: Is there a -S version of the DS1054Z with a built in generator?
A:
The Rigol DS1104Z does have a -S version with a built in generator.

Q: Can the Rigol DS1054Z show me harmonic content and distortion?
A:
Yes it can by utilizing the FFT Math function. You can find the information in the User Guide on page 6-16.
FFT (Fast Fourier Transform) is used to transform time domain signals to frequency domain components (frequency spectrum). MSO1000Z/DS1000Z oscilloscope provides FFT operation function which enables users to observe the time domain waveform and spectrum of the signal at the same time. FFT operation can facilitate the following: 
  • Measure harmonic components and distortion in the system 
  • Display the characteristics of the noise in DC power
  • Analyze vibration
Q: When I capture a single trigger event, the only waveform information that is captured is whats on the screen, what can I do to get more capture time ?
A
: What you need to do is change ( increase ) the memory depth manually. By default it is in AUTO mode. To increase the memory depth manually, press the ACQUIRE button, then select MEM DEPTH off the display menu, then use the multifunction knob and take it out of AUTO mode and set it the required memory depth. What is usually suggested as a starting point is the setting just before the maximum setting. Recapture the single triggered event and adjust the horizontal knob to move the displayed waveform left or right and confirm that you have captured a longer record length.
    Also be aware that the memory depth decreases for each channel that is turned on and this in turn decreases the record length of the capture.

Q: Is there a way to tell which displayed trace is what channel when I am using more than one channel ? Are the trace colors configurable?
A
: The individual trace colors are not configurable, however, each of the displayed traces are different colors that match the color indicated just over the channel connector. Additionally, there are channel labels to the left of the trace which display the number of the corresponding channel for that trace. These labels can be edited. Its important to note that if there is a DC OFFSET on the signal then the trace marker will be offset as well; making it a little more difficult to identify the trace. As a last resort setting the scope to the channel in question and utilizing the vertical position control will also reveal which trace.

Q: When I use the X-Y mode, the refresh rate is really slow. Is there a way to increase it?
A: Yes, when using the X-Y mode, you need to take the memory depth out of AUTO and change it to 6 K.  This will increase the update rate substantially.
 

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