
Key specifications
- 8, 12, 14, 16 bit resolution, 0.25 % DC vertical accuracy, 0.1 % typical
- Up to 1 GSa/s sampling, up to 250 MHz bandwidth
- Up to 256 MSamples memory per channel
- Up to 200 MSs/s continuous streaming
- 1 ppm time base accuracy
This powerful high speed WiFi oscilloscope combines fast sampling up to 1 GSa/s with high resolutions of 12, 14 and 16 bit and a large memory of 64 MSamples on all four channels. The oscilloscope supports continuous streaming measurements up to 200 MSa/s and can be synchronized with other oscilloscopes using the CMI interface to form a multi channel combined instrument with synchronized time base. The CMI interface is available by default on the WiFiScope WS6. Optionally, the WiFiScope WS6 can be delivered with SureConnect connection test and resistance measurement on each channel.
The flexibility and quality that the WiFiScope WS6 offers is unparalleled by any other oscilloscope in its class.
Rugged industrial design
The WiFiScope WS6 features a rugged design. Its enclosure is fitted with rubber protectors at the front and the rear. These protect the WiFiScope WS6 against damage by mechanical shocks. The rubber helps absorbing shocks and protects the connectors at the front and the rear of the WiFiScope WS6, these fall within the protected zone.
Additionally, the rubber prevents your WiFiScope WS6 from sliding. The rubber protectors have special notches that simplify stacking instruments. Holes are included that allow to connect a strap to hang the instrument near the test subject.
SureConnect
The SureConnect connection test feature of the WiFiScope WS6 tells you immediately whether your test probe or clip actually makes electrical contact or not. No more doubt whether your probe doesn't make contact or there really is no signal.
EMI pre compliance testing
The powerful capabilities of the WiFiScope WS6 - 1000XMES EMI analyzer give the user the possibility to quickly perform a good EMI compliance test. With this cost effective test, time and money are saved by avoiding extra visits to expensive EMC testing facilities. The supplied EMI probe set TP-EMI-HS6 contains three magnetic field (H field) probes and one electric field (E field) probe. The tripod ensures that the probes can be positioned properly at the object under test.
Multi instrument synchronisation
The WiFiScope WS6 is equipped with a sophisticated CMI synchronization bus, allowing to connect multiple WiFiScope WS6s to each other by means of TP-C50H Coupling cable CMIs, to use them as a combined instrument. All instruments will measure at the same sample frequency (0 ppm deviation!). Apart from a synchronization bus, the CMI also contains a trigger bus and a detection bus. The maximum number of instruments is only limited by the number available USB ports.
High accuracy
The WiFiScope WS6 measures with high resolutions of 14 and 16 bit. A signal measured with the WiFiScope WS6 therefore has 256 times more resolution than most standalone oscilloscopes, which usually have a low resolution of 8 or 9 bit. The high resolution of the WiFiScope WS6 precision oscilloscope allows for measuring signals with more accuracy, because the quantization error is much lower.
Large memory
When measuring at high sample rates, a long record length/large memory is necessary to be able to record a complete signal in the acquisition buffer. Where most oscilloscopes have 2.5 kSamples or 100 kSamples memory, the WiFiScope WS6 has up to 256 MSamples memory per channel, depending on the selected resolution and the number of active channels. When measuring at 14 bit resolution and all four channels, the available memory is 32 MSamples per channel. This gives the user 300 to 100000 times more memory. An advantage of a large memory is that once-only fast phenomena can be captured accurately or complete serial communication signal blocks can be measured all at once. For example complete serial communications, like CAN bus signals, can be measured all in one record to be reviewed and analyzed afterwards.
Bandwidth limit
It seems reasonable to assume that more bandwidth is better, but a wider bandwidth gives more noise. To reduce your noise you can switch on a bandwidth limiter for each channel of the WiFiScope WS6.
Acquisition system |
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Number of input channels | 4 analog | |||
CH1, CH2, CH3, CH4 | Female BNC | |||
Type | Single ended input | |||
Resolution | 8, 12, 14, 16 bit user selectable | |||
DC Accuracy | 0.25 % (0.1 % typical) of full scale ± 1 LSB at 20°C to 25°C To achieve rated accuracy, allow the instrument to settle for 20 minutes. When subjected to extreme temperatures, allow additional time for internal temperatures to stabilize. |
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Ranges (full scale) | ±200 mV ±400 mV ±800 mV |
±2 V ±4 V ±8 V |
±20 V ±40 V ±80 V |
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Coupling | AC/DC | |||
Impedance | 1 MΩ / 20 pF ± 1 % | |||
Maximum voltage | 200 V (DC + AC peak < 10 kHz) | |||
Bandwidth | WS6-1000 | WS6-500 | WS6-200 | |
-3dB at 75 % of full scale input | 250 MHz | 250 MHz | 250 MHz | |
Limit, selectable per channel | Off (250 MHz) 150 MHz 100 MHz 50 MHz |
Off (250 MHz) 150 MHz 100 MHz 50 MHz |
Off (250 MHz) 150 MHz 100 MHz 50 MHz |
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AC coupling cut off frequency (-3dB) | ±1.5 Hz | |||
SureConnect | Optionally available (option S) | |||
Maximum voltage on connection | 200 V (DC + AC peak < 10 kHz) | |||
Resistance measurement | Optionally available (option S) | |||
Ranges (Full scale) | 1 kΩ 2 kΩ 5 kΩ |
10 kΩ 20 kΩ 50 kΩ |
100 kΩ 200 kΩ 500 kΩ |
1 MΩ 2 MΩ |
Accuracy | 1 % of full scale | |||
Response time (to 95%) | < 10 µs | |||
Maximum sampling rate | WS6-1000 | WS6-500 | WS6-200 | |
8 bit | ||||
measuring one channel | 1 GSa/s | 500 MSa/s | 200 MSa/s | |
measuring two channels | 500 MSa/s | 200 MSa/s | 100 MSa/s | |
measuring three or four channels | 200 MSa/s | 100 MSa/s | 50 MSa/s | |
12 bit | ||||
measuring one channel | 500 MSa/s | 200 MSa/s | 100 MSa/s | |
measuring two channels | 200 MSa/s | 100 MSa/s | 50 MSa/s | |
measuring three or four channels | 100 MSa/s | 50 MSa/s | 20 MSa/s | |
14 bit | 100 MSa/s | 50 MSa/s | 20 MSa/s | |
16 bit | 6.25 MSa/s | 3.125 MSa/s | 1.25 MSa/s | |
Maximum streaming rate 1 | WS6-1000 | WS6-500 | WS6-200 | |
8 bit | ||||
measuring one channel | 200 MSa/s 2 | 100 MSa/s 2 | 40 MSa/s | |
measuring two channels | 100 MSa/s 3 | 50 MSa/s 3 | 20 MSa/s | |
measuring three or four channels | 50 MSa/s 4 | 25 MSa/s 4 | 10 MSa/s | |
12 bit | ||||
measuring one channel | 100 MSa/s 3 | 50 MSa/s 3 | 20 MSa/s | |
measuring two channels | 50 MSa/s 4 | 25 MSa/s 4 | 10 MSa/s | |
measuring three or four channels | 25 MSa/s 5 | 12.5 MSa/s 5 | 5 MSa/s | |
14 bit | ||||
measuring one channel | 100 MSa/s 3 | 50 MSa/s 3 | 20 MSa/s | |
measuring two channels | 50 MSa/s 4 | 25 MSa/s 4 | 10 MSa/s | |
measuring three or four channels | 25 MSa/s 5 | 12.5 MSa/s 5 | 5 MSa/s | |
16 bit | 6.25 MSa/s 6 | 3.125 MSa/s | 1.25 MSa/s | |
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Sampling clock source | ||||
Internal | TCXO | |||
Accuracy | ± 0.0001 % | |||
Stability | ± 1 ppm over 0°C to 55°C | |||
Time base aging | ±1 ppm/year | |||
External | LVDS, on CMI connectors | |||
Input frequency | 10 MHz ± 1 % 16.369 MHz ± 1 % |
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Memory | Standard model | XM option via USB | XM option via WiFi/LAN | |
8 bit resolution | ||||
Measuring one channel | 1 MSa per channel | 256 MSa per channel | 64 MSa per channel | |
Measuring two channels | 512 KSa per channel | 128 MSa per channel | 32 MSa per channel | |
Measuring three or four channels | 256 KSa per channel | 64 MSa per channel | 16 MSa per channel | |
12, 14, 16 bit resolution | ||||
Measuring one channel | 512 KSa per channel | 128 MSa per channel | 32 MSa per channel | |
Measuring two channels | 256 KSa per channel | 64 MSa per channel | 16 MSa per channel | |
Measuring three or four channels | 128 KSa per channel | 32 MSa per channel | 8 MSa per channel | |
Trigger | ||||
System | Digital, 2 levels | |||
Source | CH1, CH2, CH3, CH4, OR, digital external | |||
Trigger modes | Rising edge, falling edge, any edge, inside window, outside window, enter window, exit window, pulse width | |||
Level adjustment | 0 to 100 % of full scale | |||
Hysteresis adjustment | 0 to 100 % of full scale | |||
Resolution | 0.006 % (14, 16 bits) / 0.025% (12 bits) | |||
Pre trigger | 0 to selected record length, 1 sample resolution | |||
Post trigger | 0 to selected record length, 1 sample resolution | |||
Trigger hold-off | 0 to 63 MSamples, 1 sample resolution | |||
Trigger delay | 0 to 8 GSamples, 1 sample resolution | |||
Digital external trigger | ||||
Input | Extension connector pins 1 and 2 | |||
Range | 0 to 2.5 V (TTL) | |||
Coupling | DC | |||
Jitter | ≤ 1 sample | |||
Multi-instrument synchronization |
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Combining instruments is only available when all instruments are connected via USB. When instruments are connected via LAN or WiFi, combining is not available. |
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Maximum number of instruments | Limited by number of available USB ports | |||
Synchronization accuracy | 0 ppm | |||
CMI interface | 2x, CMI 1, CMI 2 | |||
Required coupling cable | TP-C50H Coupling cable CMI | |||
Maximum coupling cable length | 50 cm | |||
Probe calibration |
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Output | Extension connector pins 3 (signal) and 6 (ground) | |||
Signal | Square wave | |||
Level | -1 V to 1 V | |||
Frequency | 1 kHz | |||
Interface |
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Interface | ||||
USB | USB 3.0 SuperSpeed (5 Gbit/s); (USB 2.0 HighSpeed compatible) |
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Network | ||||
LAN | 1 Gbps | |||
WiFi | 802.11 | |||
Network port (TCPIP and UDP) | 5450 (IANA assigned) | |||
Power Requirements |
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Power | From USB, external input or built-in battery | |||
Consumption | 12 VDC 2 A max | |||
External power | From power adapter | |||
Internal battery | Li-ion | |||
Capacity | 7000 mAh, 3.7 V | |||
Physical |
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Instrument | ||||
Height | 44 mm (1.7 inch) | |||
Length | 187 mm (6.7 inch) | |||
Width | 215 mm (5.2 inch) | |||
Weight | 791 g (27.9 ounce) | |||
USB cord length | 1.5 m (59 inch) | |||
I/O connectors |
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Channel 1, 2, 3, 4 | BNC | |||
LAN | RJ45 socket | |||
USB | USB 3.0 type B Super Speed socket | |||
Extension connector | D-sub 9 pins female | |||
Power | 3.5 mm power socket | |||
CMI connectors | 2 x HDMI type C socket | |||
System requirements |
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PC I/O connection | USB 2.0, USB 3.0 or USB 3.1 RJ45 WiFi |
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Operating system | Windows 10, 32 and 64 bits Linux (via own software using the LibTiePie SDK) |
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Environmental conditions |
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Operating | ||||
Ambient temperature | 20°C to 25°C for rated accuracy (10°C to 40°C without specifications) | |||
Relative humidity | 10 % to 90 %, non condensing | |||
Charging | ||||
Ambient temperature | 0°C to 35°C | |||
Relative humidity | 10 % to 90 %, non condensing | |||
Storage | ||||
Ambient temperature | 0°C to 35°C | |||
Relative humidity | 5 % to 95 %, non condensing | |||
Certifications and Compliances |
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CE mark compliance | Yes | |||
RoHS | Yes | |||
EN 55011:2009/A1:2010 | Yes | |||
EN 55022:2006/A1:2007 | Yes | |||
EN 61000-6-1:2007 | Yes | |||
EN 61000-6-3:2007 | Yes | |||
Package contents |
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Instrument | WiFiScope WS6 | |||
Probes | 4 x Oscilloscope Probe 1:1-1:10 - HP-3250I | |||
Accessories |
Handyscope / WiFiScope power supply USB3 cable, 1.5 m long network cable, 3 m long |
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Software | for Windows 10, via website | |||
Drivers | for Windows 10, via website | |||
Software Development Kit | for Windows 10 and Linux, via website | |||
Manuals | instrument manual and software user's manuals color printed and digital, via website |
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Optional Accessories |
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Optional accessories for the WiFiScope WS6 need to be ordered separately | ||||
Customer service |
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TiePie engineering instruments are designed, manufactured and tested to provide high reliability. In the unlikely event you experience difficulties, the TiePie engineering instruments are fully warranted for two years. | ||||
This warranty includes | All parts and labor (excluding probes and/or measure leads and/or batteries) Warranty on batteries is 6 months. No charge for return shipping Long-term 7 year support Upgrade to the latest software at no charge |
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Optionally available | Extension to five year warranty, option W5 |