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Home>Products>Oscilloscopes>Analog Storage Oscilloscopes TS-Series>Specifications

Analog Storage Oscilloscopes TS-SeriesSpecifications

Notes for TS-Series Oscilloscopes
Display section
  Type 5.8-inch color LCD (800 x 480 dots)
8 div x 10 div (60 dots/div, Graticule selectable)

Storage CRT

  Type 2-inch dia., CCD scan converter tube (380,000 pixels)
Persistence characteristics
  Fastest writing speed 10 div/ns
Persistence time Variable between 0 and infinity

Storage CRT

  Type 2-inch dia., CCD scan converter tube (380,000 pixels)
Persistence characteristics
  Fastest writing speed 10 div/ns
Persistence time Variable between 0 and infinity
Vertical deflection system (Y axis)
  Mode CH1, CH2, CH3, CH4, ADD (CH1±CH2), ALT/CHOP (555kHz±1%)
CH1,2
  Sensitivity range
  50W 5mV/div - 1V/div 8 steps (1-2-5)
1MW 5mV/div - 5V/div 10 steps (1-2-5)
Variable Adjustable to less than 1/2.5
Accuracy ±2%
Frequency bandwidth (-3dB)
  50W TS-81000: DC - 1GHz (10mV - 1V/div)
TS-80600: DC - 600MHz (10mV - 1V/div)
DC - 500MHz (5mV - 9.9mV/div)
1MW
(Passive probe model SS-101R is optional)
DC - 500MHz (10mV - 5V/div) at the tip of SS-101R probe
DC - 350MHz (5mV - 9.9mV/div) at the tip of SS-101R probe
Rise time
TS-81000 TS-80600
350ps
(50W 10mV - 1V/div)
583ps
(50W 10mV - 1V/div)
Calculated from freq. Bandwidth x rise time = 0.35
Offset voltage 5mV - 50mV/div: ±1V
100mV - 500mV/div: ±10V
1V - 5V/div: ±100V
Offset accuracy ±(1.5%+0.5% of full scale + 1mV)
Input RC 50W: ±2%
1MW: ±1% // 16pF
(DC 1MW 5mV - 5V/div, AC 1MW 100mV - 5V/div)
1.2MW ±1.0% // 16pF (AC 1MW 5mV - 50mV/div)
Input coupling DC 50W, DC 1MW, AC 1MW, GND
Max. input voltage 50W: 5Vrms
1MW: 250Vmax (DC + Peak AC, 5kHz or less)
CH3, CH4
  Sensitivity range 100mV/div, 500mV/div
Accuracy ±2%
Frequency bandwidth (-3dB) DC - 500MHz
Offset voltage 100mV/div: ±1V
500mV/div: ±5V
Input RC 1MW: ±1.0% // 16pF
Input coupling DC, AC
Max. input voltage 1MW: ±250Vmax (DC + Peak AC, 5kHz or less)
ADD
  Frequency bandwidth (-3dB)
TS-81000
TS-80600
DC - 1GHz
(10mV - 1V/div)
at 50W input
DC - 600MHz
(10mV - 1V/div)
at 50W input
Lower cutoff for AC couple 10Hz (-3dB)
Bandwidth limiter 20MHz
200MHz
CH skew Adjustable CH1 to CH4 (1MW)
Probe sense 10:1, 100:1 detection
Signal delay time 20ns
Trace separation More than 4div
Triggering
  A triggering
  Frequency
TS-81000
TS-80600
DC - 1GHz
DC - 600MHz
Signal sources CH1, CH2, CH3, CH4, LINE
Coupling DC: DC - fmax
AC: 100Hz - fmax
HF-REJ: Attenuated at 10kHz or more
LF-REJ: Attenuated at 10kHz or less
Slope +,-
Sensitivity
DC - 10MHz
0.4div
- 100MHz
1.0div
- fmax
2.0div
50W 5mV/div - 9.9mV/div fmax: 500MHz
50W 10mV/div - 1V/div fmax: 1GHz (TS-81000)
50W 10mV/div - 1V/div fmax: 600MHz (TS-80600)
B triggering
  Frequency
DC - 500MHz
Signal sources
CH1, CH2, CH3, CH4
Coupling DC: DC - 500MHz
AC: 100Hz - 500MHz
HF-REJ: Attenuated at 10kHz or more
LF-REJ: Attenuated at 10kHz or less
Slope +,-
Sensitivity
DC - 10MHz
0.4div
- 100MHz
1.0div
- 500MHz
2.0div
TV triggering NTSC, PAL, CUSTOM
Line select (1 to 3,000), Field select (1,2,4,8)
CUSTOM (including HDTV)
  Slope +,-
Sensitivity 1.5 - 8.0div
TV clamp available
Event trigger
  Count mode Range:1 - 65,535
Max. count frequency: 50MHz
Burst mode Range: 0.15 ms - 9.99 s
Horizontal deflection system (X axis)
  Horizontal display A, ALT, B, X-Y
A sweep
  Sweep mode AUTO, NORMAL, SINGLE
Max. sweep rate
200ps/div(TS-81000)
500ps/div(TS-80600)
Range 2ns - 200ms/div 25 steps, 1-2-5 (TS-81000)
5ns - 200ms/div 24 steps, 1-2-5 (TS-80600)
Variable 2ns - 600ms/div (TS-81000)
5ns - 600ms/div (TS-80600)
Accuracy I (*1) ±2% (5ns - 200ms/div) over center 8div
±3% (2ns/div) over center 8div (TS-81000)
Accuracy II (*1) ±5%(5ns - 200ms/div) any 2div within center 8div
±6% (2ns/div) over center 8div
(*1) 20ns or 1div for the beginning of the sweep and 20ns for the end of sweep should be excluded.
Add 1% when VARIABLE is ON
B sweep
  Delay method Triggered delay (TRIG'D DELAY)
Continuous delay (RUNS AFTER DELAY)
Max. sweep rate 200ps/div (TS-81000)
500ps/div (TS-80600)
Range 2ns - 20ms/div 22 steps, 1-2-5 (TS-81000)
5ns - 20ms/div 21 steps, 1-2-5 (TS-80600)
Accuracy I (*2) ±2% (5ns - 200ms/div) over center 8div
±3% (2ns/div) over center 8div
Accuracy II (*2) ±5% (5ns - 200ms/div) any 2div within center 8div
±6% (2ns/div) over center 8div (TS-81000)
(*2) 20ns or 1div for the beginning of the sweep and 20ns for the end of sweep should be excluded.
Dual delay Available
Sweep magnification x 10
Delay jitter Less than 1/50,000
Hold off time Variable 1 sec. max.
X-Y
  X axis CH1
  Sensitivity Same as CH1
Frequency bandwidth 10MHz (-3dB)
Y axis CH1, CH2, CH3, CH4
  Sensitivity Same as each CH
Frequency bandwidth Same as each CH
X-Y phase difference Within 3° (DC - 5MHz)
CAL signal
  Waveform Square-wave
Frequency 1kHz ±0.1%
Output voltage 0.6V ±1%
CH2 OUT
  Amplitude 20mV/div ±20% (50W)
Frequency bandwidth 500MHz(-3dB) 50W, 10mV/div (TS-81000)
300MHz(-3dB) 50W, 10mV/div (TS-80600)
Output resistance 50W ±10%
Z AXIS IN
  Intensity modulation voltage 0.5Vp-p
Polarity Dark with positive voltage and brighter with negative voltage
Frequency range DC - 5MHz
Input resistance 5kW ±20%
Max. Input voltage ±40V
Probe power supply
  Connectors 2
Suitable probes SFP-5A, SFP-4A, SS-250, SS-240A
Auto Setup
  Auto Setup Input sensitivity, Offset, TIME/DIV, Trigger level
Amplitude: 30mV - 35V
Frequency: 50Hz-200MHz
Cursor measurement
  Dt Relative time difference measurement with cursor
Resolution: 1/60 div
DV Relative voltage difference measurement with cursor
Resolution: 1/60 div
Frequency counter
  Frequency bandwidth
2Hz - 1GHz (TS-81000)
2Hz - 600MHz (TS-80600)
Digit 6 digits, accuracy ±0.01%
Clock
  Display Month/Date/Time/Minute
Accuracy ±50ppm
Interface
  Remote control 10Base-T (Ethernet)
PC card slot ATA card available (PCMCIA Type II)
External monitor out VGA WIDE
NTSC output
(Composite, S out)
Amplitude: 1 Vp-p ± 0.3 V 75W
Output resistance: approx. 75W (AC coupling)
Built-in printer Line thermal printer
Paper size: width 112mm, length 25m
Power supply
  Voltage range 100V - 240V AC 50/60Hz
Power consumption 200VA max. (with built-in printer operation)
Power consumption in the Standby mode Approx. 5VA max.
Weight and dimensions
  Dimensions Approx. 198H x 332W x 406Lmm (accessories and projections are not included)
Weight Approx. 10kg (accessories and options are not included)
Environmental conditions
  Operating range temperature 0°C - +40°C
+5°C - +40°C (Built-in printer operation temperature)
Humidity 90%/+40°C
Performance guaranteed temperature
+10°C - +35°C
Preheating time These specifications are guaranteed after power has been on for 30 minutes or longer.
Storage range temperature -20°C - +60°C/80% RH
Operating 2,000m, air pressure of approx. 79kPa
Not operating 15,000m, air pressure of approx. 12kPa
Accessories
  Instruction manual (1), Power cord (1), Thermal printer paper (1)

Notes for TS-Series Oscilloscopes

Writing speed (maximum recording speed)
The writing speed indicates the ability to store the transition of a signal, and is expressed in units of div/ns which express the electron beam moving speed. The TS-Series has a writing speed of 10 div/ns. In other words, it can store a 100 ps/div signal sweep trace when there is no signal. When a 1,000MHz sine wave is input, an amplitude [peak-peak div] of up to 3.18 [div] can be stored.
The writing speed at the point where the sinewave crosses 0°, 180° and 360° is calculated with the following equation.

WS = Apf
  WS: Write speed [div], A: Amplitude (peak-peak div),
p: 3.14, f: Frequency (Hz)
  10 div/ns = 10 x 1-E9 div/s
10 x 10E9 = A[div] x 3.14 x 1,000 x 10E6, where A = 3.18[div]

  Pulse rise time is defined as the time it takes the pulse to rise from 10% to 90% of its amplitude, assuming that the pulse transition is a straight line. The equation for amplitude is A = 1.25 x WS x Tr, where Tr = rise time.

Relation between writing speed and amplitude
Sinewave: WS = pAf
A = WS/pf
Pulse: WS = A/(1.25 x Tr)
A = WS(1.25 x Tr)
Writing Speed and Amplitude
Notice regarding defective pixels in TFT display
The TFT (thin-film transistor) color liquid crystal display is carefully manufactured using advanced technology. Nonetheless, it may contain several display defects such as pixels that are constantly dark or constantly bright. This is not a malfunction of the instrument.
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