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Handyscope HS5-220

Handyscope HS5-220

  • High-Speed Sampling Achieve precise signal analysis with a maximum sampling speed of 200 MSa/s, capturing even the most detailed waveforms.
  • Efficient Data Streaming Stream data continuously at 10 MSa/s, perfect for extended measurements without any data loss.
  • Versatile AWG The built-in 20 MHz Arbitrary Waveform Generator enables users to create custom signals for extensive testing and simulations.
  • Portable and USB-Powered Enjoy the convenience of a compact, lightweight design with USB connectivity, making it easy to use in both fieldwork and laboratory settings.
  • Advanced Software Features Benefit from deep memory, advanced triggering options, and user-friendly software tools for comprehensive diagnostics and analysis.
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Key Features

  • 200 MSa/s maximum sampling speed for high-resolution waveform capture
  • 10 MSa/s streaming speed for real-time data acquisition
  • 20 MHz Arbitrary Waveform Generator (AWG) for advanced signal simulation
  • Compact USB design for portability and convenience
  • Advanced triggering and deep memory for detailed signal analysis
  • User-friendly software interface with powerful analysis tools

The Handyscope HS5-220 is a state-of-the-art USB oscilloscope designed to deliver high-speed signal acquisition and precise waveform analysis in a compact, portable form factor. With a maximum sampling speed of 200 mega samples per second (MSa/s), it captures even the most transient and high-frequency signals with outstanding accuracy, making it ideal for a wide range of applications including electronics design, troubleshooting, and education. The device supports a maximum streaming speed of 10 MSa/s, allowing for real-time data acquisition and long-duration signal monitoring without loss of resolution or fidelity. Equipped with a built-in Arbitrary Waveform Generator (AWG) capable of generating signals up to 20 MHz, the HS5-220 enables users to simulate and inject a variety of signal types into circuits for comprehensive testing and validation. Its rugged yet lightweight design makes it suitable for both field and bench use, while the intuitive software interface provides powerful tools for measurement, analysis, and reporting. Additional features such as deep memory buffers, advanced triggering options, and multi-channel support enhance its flexibility and performance. Whether in research, service, or development environments, the Handyscope HS5-220 delivers the precision and capability professionals require in a compact and easy-to-use package.

Handyscope HS5 Specifications

Acquisition system

Number of input channels 2 analog
CH1, CH2 BNC, female
Type Single ended
Resolution User selectable in software
Native 8, 12, 14 bit
Enhanced 16 bit
DC Accuracy 0.25 % (0.1 % typical) of full scale ± 1 LSB
Noise 300 µVrms (200 mV range, 12 bit, 50 MSa/s)
85 µVrms (200 mV range, 16 bit, 6.25 MSa/s)
Ranges (Full scale) ±200 mV
±400 mV
±800 mV
±2 V
±4 V
±8 V
±20 V
±40 V
±80 V
Coupling AC/DC
Impedance 1 MΩ / 25 pF ± 1 %
Maximum voltage 200 V (DC + AC peak < 10 kHz)
Maximum voltage 1:10 probe 600 V (DC + AC peak < 10 kHz)
Bandwidth (-3dB) at 75 % of full scale input
Ch1 250 MHz
Ch2 250 MHz (serial number < 41382 : 100 MHz)
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) 100 Ω
200 Ω
500 Ω
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 HS5-540 HS5-530 HS5-220 HS5-110 HS5-055
8/12 bit, measuring one channel 500 MSa/s 500 MSa/s 200 MSa/s 100 MSa/s 50 MSa/s
8/12 bit, measuring two channels 200 MSa/s 200 MSa/s 100 MSa/s 50 MSa/s 20 MSa/s
14 bit 100 MSa/s 100 MSa/s 50 MSa/s 20 MSa/s 10 MSa/s
16 bit 6.25 MSa/s 6.25 MSa/s 3.125 MSa/s 1.25 MSa/s 625 kSa/s
Maximum streaming rate 1 HS5-540 HS5-530 HS5-220 HS5-110 HS5-055
8 bit, measuring one channel 40 MSa/s 40 MSa/s 20 MSa/s 10 MSa/s 4 MSa/s
8 bit, measuring two channels 20 MSa/s 20 MSa/s 10 MSa/s 5 MSa/s 2 MSa/s
12/14 bit, measuring one channel 20 MSa/s 20 MSa/s 10 MSa/s 5 MSa/s 2 MSa/s
12/14 bit, measuring two channels 10 MSa/s 10 MSa/s 5 MSa/s 2 MSa/s 1 MSa/s
16 bit 6.25 MSa/s 6.25 MSa/s 3.125 MSa/s 1.25 MSa/s 625 kSa/s
Memory Standard model XM option
Measuring one channel 256 KSamples per channel 64 MSamples per channel
Measuring two channels 128 KSamples per channel 32 MSamples per channel
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 auxiliary connectors
Input range 10 MHz ± 1 %
Trigger Only available in scope/block mode, not in streaming mode
System Digital, 2 levels
Source CH1, CH2, OR, digital external
Generator start, Generator new period, Generator stop
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 16 GSamples, 1 sample resolution
Segmented trigger Available on models with extended memory option XM, available via libtiepie-hw SDK
Maximum number of segments 1024
Minimum segment length 1 sample
Maximum segment length 32 M / number of segments
64 M / number of segments measuring one channel
Trigger rearm time Sample frequency dependent, < 700 ns on highest sample frequency
Digital external trigger
Input Extension connector pins 1, 2 and 3
Range 0 to 2.5 V (TTL)
Coupling DC
Jitter Depending on source and sample frequency
Source = channel ≤ 1 sample
Source = external or generator
Sample frequency = 500 MSa/s ≤ 8 samples
Sample frequency < 500 MSa/s ≤ 4 samples
Sample frequency ≤ 100 MSa/s ≤ 1 sample

Arbitrary Waveform Generator (independent from acquisition system)

Waveforms
Standard Sine, square, triangle, pulse, noise, DC
Signal characteristics
Sine HS5-540 HS5-530 HS5-220 HS5-110 HS5-055
Frequency range 1 µHz to 40 MHz 1 µHz to 30 MHz 1 µHz to 20 MHz 1 µHz to 10 MHz 1 µHz to 5 MHz
Amplitude flatness Relative to 1 kHz
< 100 kHz ±0.1 dB
< 5 MHz ±0.15 dB
< 20 MHz ±0.3 dB (Amplitude ≤ 11 V (22 Vpp))
< 30 MHz ±0.4 dB (Amplitude ≤ 9 V (18 Vpp))
< 40 MHz ±1 dB (Amplitude ≤ 7.5 V (15 Vpp))
Spurious (non harmonic)
< 100 kHz -75 dBc
100 kHz to 1 MHz -70 dBc
1 MHz to 10 MHz -60 dBc
10 MHz to 15 MHz -55 dBc
15 MHz to 20 MHz -45 dBc
20 MHz to 30 MHz -35 dBc
30 MHz to 40 MHz -30 dBc
Square HS5-540 HS5-530 HS5-220 HS5-110 HS5-055
Frequency range 1 µHz to 30 MHz 2 1 µHz to 30 MHz 1 µHz to 20 MHz 1 µHz to 10 MHz 1 µHz to 5 MHz
Rise/fall time < 8 ns
Overshoot < 1 %
Variable duty cycle 0.01 % to 99.99 %
Asymmetry 0 % of period + 5 ns (@ 50 % Duty cycle)
Jitter (RMS) < 50 ps
Triangle HS5-540 HS5-530 HS5-220 HS5-110 HS5-055
Frequency range 1 µHz to 30 MHz 2 1 µHz to 30 MHz 1 µHz to 20 MHz 1 µHz to 10 MHz 1 µHz to 5 MHz
Nonlinearity (of peak output) < 0.01 %
Symmetry 0 % – 100 %, 0.1 % steps
Pulse
Period 100 ns to 1000 s
Pulse width 15 ns to 1000 s
Variable edge time 8 ns to 1 s
Overshoot < 1 %
Jitter (rms) < 50 ps
Noise
Bandwidth (typical) 30 MHz
Arbitrary HS5-540 HS5-530 HS5-220 HS5-110 HS5-055
Frequency range 0.4 nHz to 30 MHz 0.4 nHz to 30 MHz 0.4 nHz to 20 MHz 0.4 nHz to 10 MHz 0.4 nHz to 5 MHz
Maximum sample rate 240 MSa/s 240 MSa/s 200 MSa/s 100 MSa/s 50 MSa/s
Length
Standard model 1 to 256 KiSamples
XM option 1 to 64 MiSamples
Rise/Fall time < 8 ns
Nonlinearity (of peak output) < 0.01 %
Settling time < 8 ns to 10 % final value
Jitter (RMS) < 50 ps
Common characteristics
Number of output channels 1 analog, BNC, female
DAC resolution 14 bit
Output range frequency ≤ 10 MHz frequency ≤ 20 MHz frequency ≤ 30 MHz frequency ≤ 40 MHz
At open circuit -12 to +12 V (24 Vpp) -11 to +11 V (22 Vpp) -9 to +9 V (18 Vpp) -7.5 to +7.5 V (15 Vpp)
Amplitude
Ranges (at open circuit) 0.12 V (0.24 Vpp) 1.2 V (2.4 Vpp) 12 V (24 Vpp)
Resolution 12 bit
Accuracy 0.4 % of range
DC offset
Range -12 to +12 V at open circuit
Resolution 12 bit
Accuracy 0.4 % of range
Noise level
0.12 V range 900 µVRMS
1.2 V range 1.3 mVRMS
12 V range 1.5 mVRMS
Coupling DC
Impedance 50 Ω
Overload protection Output turns off automatically when overload is applied. Instrument will tolerate a short circuit to ground indefinitely.
Burst
Waveforms Sine, square, triangle, noise, arbitrary
Count 1 to 65535
Trigger Software, external
Sweep Available on models with extended memory option XM
Waveforms Sine, square, triangle
Type Linear, logarithmic
Direction Up, down
Trigger Software, external
System characteristics
System Constant Data Size
Memory
Standard model 256 KiSamples
Option XM 64 MiSamples
Operating modes Continuous, triggered, gated
Maximum sample rate HS5-540 HS5-530 HS5-220 HS5-110 HS5-055
240 MSa/s 240 MSa/s 200 MSa/s 100 MSa/s 50 MSa/s
Sampling source Internal TCXO
Accuracy ±0.0001 %
Stability ±1 ppm over 0°C to +55°C
Time base aging ±1 ppm/year

Multi-instrument synchronization

Using CMI Synchronizing instruments via CMI is available when all instruments are connected via USB.
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
Using WCMI Synchronizing instruments via WCMI is available when instruments are connected via USB, LAN and WiFi.
Maximum number of instruments No limitation
Required coupling module WCMI – 8, WCMI – 9
Clock synchronization accuracy ≤ 1 ppm, typical ≤ 0.2 ppm
Trigger jitter at sample rate 1 ≤ 1 MSa/s > 1 MSa/s
2 x “5” ≤ ±2 samples ≤ ±2 µs
“5” and “6”
Trigger source “5” ≤ ±2 samples ≤ ±2 µs
Trigger source “6” ≤ ±8 samples ≤ ±8 µs
2 x “6” ≤ ±8 samples ≤ ±8 µs
  1. “5” = WiFiScope WS5 or Handyscope HS5.
    “6” = WiFiScope WS6 DIFF, WiFiScope WS6, Handyscope HS6 DIFF, Handyscope HS6, ATS610004DW-XMSG, ATS610004D-XMSG, ATS605004DW-XMS or ATS605004D-XMS

Interface

Interface USB 2.0 High Speed (480 Mbit/s);
(USB 1.1 Full Speed (12 Mbit/s) and USB 3.0 compatible)

Power Requirements

Power From USB port or external input
Consumption 5 VDC 2000 mA max
External power From second USB port or power adapter

Physical

Instrument height 25 mm (1 inch)
Instrument length 170 mm (6.7 inch)
Instrument width 140 mm (5.2 inch)
Weight 430 g (15 ounce)
USB cord length 1.8 m (70 inch)

I/O connectors

Channel 1, 2 BNC, female
Generator BNC, female
USB Fixed cable with USB 2.0 and USB 1.1 type A connector, 1.8 m
Extension connector D-sub 9 pins female
Power 3.5 mm power socket
Auxiliary I/O connectors 2 x HDMI type C socket

System requirements

PC I/O connection USB 1.1, USB 2.0 or newer
Operating system Windows 10 / 11, 64 bits, 32 and 64 bits
Linux (via libtiepie-hw SDK)

Environmental conditions

Operating
Ambient temperature 0 to 55°C
Relative humidity 10 % to 90 %, non condensing
Storage
Ambient temperature -20 to 70°C
Relative humidity 5 % to 95 %, non condensing

Certifications and Compliances

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

Accessories

Package contents

Instrument Handyscope HS5
Oscilloscope probes 2 x Oscilloscope Probe 1:1-1:10 – HP-3250I
Accessories Handyscope / WiFiScope power supply, external power cable for USB port
Software for Windows 10 / 11, 64 bits, via website
Drivers for Windows 10 / 11, 64 bits, via website
Software Development Kit for Windows 10 / 11, 64 bits, and Linux, via website
Manuals instrument manual and software user’s manuals
color printed and digital, via website

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Handyscope HS5-220

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