Oscilloscopes

Results:
607
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Series
Memory Size
Rise Time (Typ)
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Sampling Rate (Per Second)
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Voltage - Input (Max)
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Applications
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Results remaining607
Select
ImageProduct DetailPriceAvailabilityECAD ModelDisplay TypeInterfaceTypeBandwidthChannelsFunctionProbe TypeSampling Rate (Per Second)Input ImpedanceRise Time (Typ)Voltage - Input (Max)Memory SizeSeriesVoltage - Supply
FLUKE-199B/003S
SCOPEMETER 200MHZ B/W SCC USA
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Quantity
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PCB Symbol, Footprint & 3D Model
LCD - Monochrome
RS232, USB
Handheld
200 MHz
2
Record, Save, Trend, DMM
Passive 10:1 (2)
2.5G
1M - 15pF
1.7 ns
CAT II 1000V, CAT III 600V
6kpts
ScopeMeter® 190
7.2VDC Battery, 17.8VDC Adapter
FLUKE-190-062/AM/S
SCOPEMETER 2CH 60MHZ COLOR SCC
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Quantity
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PCB Symbol, Footprint & 3D Model
LCD - Color
USB
Handheld
60 MHz
2
Record, Save, Trend, DMM
Passive 10:1 (2)
625M
1M - 14pF
5.8 ns
CAT III 1000V, CAT IV 600V
20kpts
ScopeMeter® 190 II
7.2VDC Battery, 17.8VDC Adapter
FLUKE-190-102/AM/S
SCOPEMETER 2CH 100MHZ COLOR SCC
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Quantity
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PCB Symbol, Footprint & 3D Model
LCD - Color
USB
Handheld
100 MHz
2
Record, Save, Trend, DMM
Passive 10:1 (2)
1.25G
1M - 14pF
3.5 ns
CAT III 1000V, CAT IV 600V
20kpts
ScopeMeter® 190 II
7.2VDC Battery, 17.8VDC Adapter
FLUKE-190-204/AM
SCOPEMETER 4CH 200MHZ COLOR AMER
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Quantity
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PCB Symbol, Footprint & 3D Model
LCD - Color
USB
Handheld
200 MHz
4
Record, Save, Trend, DMM
Passive 10:1 (4)
2.5G
1M - 14pF
1.7 ns
CAT III 1000V, CAT IV 600V
30kpts
ScopeMeter® 190 II
7.2VDC Battery, 17.8VDC Adapter
SDS1202X-E
Siglent Technologies NA, Inc.
OSCILLOSCOPE 2CH 200 MHZ 7"TF
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Quantity
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PCB Symbol, Footprint & 3D Model
LCD - Color
Ethernet, USB
Bench, Digital
200 MHz
2
Record, Playback, Save
-
1G
-
-
-
14Mpts
SDS1000X-E
-
TDS8204
O-SCOPE 200MHZ 4 CH 2GS/S
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Quantity
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PCB Symbol, Footprint & 3D Model
LCD - Color
Bench
200 MHz
4
Record
Passive 10:1 (4)
2G
1M - 15pF
1.7 ns
400V
TDS
100 ~ 240VAC
ZOOLARK-TG491
MULTIFUNCTIONAL CIRCUIT DEBUGGIN
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Quantity
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PCB Symbol, Footprint & 3D Model
LCD
UART
Handheld
1 MHz
2
-
5M
1M
30V
-
-
3.7V, 5V

Oscilloscopes

Oscilloscopes are indispensable measurement tools in the field of electronics, providing a visual representation of electronic signals. They are widely used by technicians, engineers, and researchers to observe, analyze, and measure high-speed phenomena in electrical circuits and systems. One of the primary advantages of oscilloscopes is their ability to capture and display waveforms in real-time. This allows users to visually examine the shape, amplitude, and timing characteristics of electrical signals. Unlike other measurement instruments, such as multimeters, oscilloscopes provide a dynamic view of signal behavior, making them particularly useful for analyzing time-varying signals. Oscilloscopes come in a variety of models, ranging from basic to advanced, with different performance capabilities. Advanced oscilloscopes can handle signals with high-frequency content approaching the gigahertz (GHz) range. These high-performance oscilloscopes are essential for applications involving high-speed digital circuits, telecommunications, and radio frequency (RF) systems. However, it's important to note that oscilloscopes typically prioritize speed over absolute accuracy and measurement resolution. This means that while they excel at capturing fast-changing signals, they may sacrifice some precision compared to other instruments like multimeters. For low-frequency and DC phenomena, where multimeters are well-suited, even modest multimeters may provide more accurate measurements than most oscilloscopes. Nevertheless, oscilloscopes play a crucial role in the electronics industry by providing a visual representation of signals and allowing users to perform measurements, such as voltage, current, frequency, and time intervals. They enable engineers and technicians to troubleshoot circuit problems, validate signal integrity, analyze waveform distortions, and verify compliance with specifications. In summary, oscilloscopes are essential tools for observing and measuring high-speed electronic phenomena. While they may not offer the same level of accuracy as multimeters for low-frequency measurements, their real-time visualization capabilities make them invaluable for analyzing dynamic electrical signals and ensuring the proper functioning of electronic devices and systems.