Sendyx píše:9% rozdílu může být naprosto v třídě přesnosti toho osciloskopu, při vzpomínce na ty čínské střepy, co kolega kdysi koupil na školu... tam bylo 20% na časovce a 10% na napětí úplně běžné.
Nejde sem nahrat soubor tak tady jsou tech. data promě moc rozvětvená-složitá snad nebudu ukamenován já chápu 3% v horizontálním směru.:
1.2. CHARACTERISTICS
This instrument has been designed and tested in accordance with I EC Publication 348 for Class 1 instruments and has been applied in a safe condition. The present Instruction Manual contains information and warnings that shall be followed by the purchaser to ensure safe operation and to retain the instrument in a safe condition.
- This specification is valid after the instrument has warmed up for 30 minutes (reference temperature 23°C)
- Properties expressed in numerical values with tolerance stated, are guaranteed by the manufacturer. Numerical values without tolerances are typical and represent the characteristics of an average instrument.
- Inaccuracies (absolute or in %) relate to the indicated reference value.
Designation Specification Additional Information
1.2.1. CRT, Cathode Ray Tube
Type PHILIPS D14-302GH/95 Rectangular tube face, domed mesh type, post-accelerator, metal-backed phosphor
Measuring area 80 x 100 mm
Screen type P31 (GH) phosphor P7 (GM)or P11 (BE) phosphor optional
Photographic writing speed > 1500 cm/us, Typically 2000 cm/us, Measured with Steinheil Oscillophot M5 camera; aperture 1:1,2 object-to-image ratio 1:0,5; film: Polaroid 410 (10.000 ASA)
No pre-fogging, Phosphor type P31 (GH), Total acceleration 17 kV, Graticule Internal Continuously variable illumination Engravings,
Centimetre divisions with sub-divisions of 2 mm along the central axes. Dotted lines at 1,5 and 6,5 div. from top of display provide a measuring lattice for checking rise-time.
Trace rotation: Screw-driver adjustment accessible via ventilation hole in left side of instrument.
1.22. Vertical or Y axis
1.2.2.Display modes
- Channel + or - A only -Channel + or - B only
- Channel + or - C only - Channel + or - D only
- Channels ± A ± B added
- Channels ± C ± D added
- Trigger view only
- Any possible combination of the seven channels that are mentioned above can be selected in the chopped or alternate mode
Designation Specification
1.2.2.2. Response
Frequency range DC 0... 100MHz 3 dB bandwidth, DC coupled
AC 7 ... 100 MHz -3 dB bandwidth, AC coupled
Frequency range includes 10:1 probe over 20-30 °C
35 MHz at 2 mV For 2 mV spec. sec. 1.2.2.13.
Rise-time 3,5 ns See fig. 1.5.
Pulse aberrations ± 4 % peak-peak Over 6 divisions, 5 ... 40 °C
1.2.2.3. Deflection coefficient 2mV/DIV ...5V/DIV (for 2 mV spec, refer to Section .2.2.13)
Eleven calibrated positions in 1-2-5 sequence. Uncalibrated continuous control 1:2,5. Uncal, lamp signalling.
Error limit ± 3 Except linearity of CRT
Maximum permissible input voltage +- 400 V DC + AC Derating at frequencies above 500 kHz. peak See Fig. 1.2.
Maximum undistorted deflection 24 divisions Up to 35 MHz
Shift range 16 divisions 8 divisions each in upward and downward direction from the central horizontal line of graticule
1.2.2.4. Input impedance 1 Mohm ± 2 %//
Input RC time 22 ms Coupling to AC
1.2.2.5. Instability for 2 mV/DIV setting refer to 1.2.2.13)
Instability of trace 0.1 DIV/Hour 20 ... 40 °C temperature range.
Trace jump 0.2 DIV When switching between any of the attenuator positions.
Trace jump 0.5 DIV When operating the NORM/INVERTswitch.
Trace shift 0.2 DIV When rotating the continuous attenuator. 0.4 DIV in 5 mV/DIV position.
Trace jump 0.5 DIV When switching to the ADDED position.1 DIV in 5 mV/DIV position.Increasing when rotating the continuous attenuator.
1.2.2.6. Temperature drift 4 x10~ 3 DIV/K Typical value
1.2.2.7. Visible signal delay 15 ns approx. Typical value
1.2.2.8. Display time per channel in ~ 700ns
chopped mode
1.2.2.9. Cross-talk between channels 1:500 With 8 divisions of signal amplitude on one channel, cross talk on other channel within line width, up to 35 MHz. Both attenuators in the same setting.
4
Designation Specification
1.2.2.10. Common
factor mode rejection Better than 100 up to 2 MHz 20 at 50 MHz// Measured with +A and -B added.Max. common-mode signal 8 divisions.
1.2.2.11. Trigger view display External or internal trigger signal
Deflection coefficients Same as vertical, error ± 10 %
External 100mV/DIV±3 %
7.2.2.12. Trigger point (threshold) Screen centre ± 0,3 div DC-coupling
Aberrations ±10 % peak-to-peak
Time delay between vertical input and external input 2 ns ± 1 ns
Bandwidth 80 MHz
1.2.2.13. Specification f
setting
a. Deflection coeff. 2 mV/DIV
Error limit ±5 %
b. Response
Frequency range DC 0... 35 MHz //-3 dB bandwidth, DC coupled
AC 7 Hz... 35 MHz //-3 dB bandwidth, DC coupled
Rise time 10 ns
Pulse aberration ± 5 % peak-to-peak
Common mode rejection factor Better than 100 up to 2 MHz
c. Instability
Instability of trace 0.25 DIV/hour //20 ... 40 °C temperature range
Trace jump 2 DIV //When switching from 5 mV to 2 mV attenuator position
Trace jump 2 DIV // When operating the Normal/Invert switch
Trace shift 1 DIV // When rotating the continuous attenuator
Trace jump 2 DIV //When switching to ADDED position
1.2.3. Horizontal or X Axis
1.2.3.1. Display modes - Main time-base
- Main time-base intensified by delayed time-base
- Delayed time-base
-Main TB intensified and // With possibility of trace separation of 4 divisions. Not functioning if TRIG VIEW is selected.
delayed TB alternately displayed
- X-Y operation //X deflection by: - channel A signal,- channel B signal,- channel C signal,- channel D signal,- signal applied to EXT connector of,main time base,- line voltage
Designation 1.2.3.2. Horizontal positionXI position drift in Specification 0,2 DIV/hour //*The horizontal position drift with the magnifier in the X1 position, shall not exceed 0.1 DIV/hour over 20 ... 40 °C temperature range. The same stability requirement applies to the start of the sweep during variation of the sweep speed setting, with exception of the highest sweep ranges 50 and 100 ns/DIV.
1.2.3.3. Horizontal position control t 5,2 DIV from screen centre //The horizontal shift control combines coarse and fine adjustment.
1.2.4.1.2.4.1. Main time-base Operation Automatic //Automatic free running in the absence of triggering signals, after less than 100 ms.
Triggered single shot //NOT TRIG'D lamp lights after reset and extinguishes at the end of the sweep
1.2.4.2. Time coefficient 1s/DIV ... 50ns/DIV //23 calibrated positions in a 1-2-5 sequence.Uncalibrated continuous control
1 : > 2,5 between the steps. One UNCAL lamp for both time bases.
1.2.4.3. Coefficient error ±2% ±3'//+20 °C ... +30 °C
+ 5 °C ... +40 °C The sweep accuracy over any two divisions of the sweep is ± 5%.
1.2.4.4. Expansion
Magnification 10x //Switched, calibrated.The display, when coinciding with the central horizontal graticule line, shall not shift more than one DIV when the horizontal magnifier is changed from x 10 t o x l .
Coefficient error ± 1 % additional //Excluded the first and last 50 ns of the 5 ns/DIV, 10 ns/DIV, 20 ns/DIV and 50 ns/DIV magnified sweep rates.
Max. effective time coefficient
1.2.4.5. Variable hold-off time
1.2.5. Delayed time base
1.2.5.1. Operation
5 ns/DIV
The sweep hold-off time can be increased by a factor of 10.
STARTS:DEL'DTB starts immediately after the selected delay time. TRIG:DEL'D TB is triggered after the delay time.
Designation Specification Additional information
1.2.5.2. Comparator long - term stability <2DIVat 1000 times magnification When MAIN TB at 1 ms/DIV and DEL'D TB at 1 MS/DIV a selected signal detail in the DEL'D TB mode shall not move more than two divisions after warming-up
1.2.5.3. Time coefficient 0.5s/DIV... 50ns/DIV 22 calibrated positions in 1-2-5 sequence Uncalibrated continuous control
One uncal. lamp for both MAIN TB and DEL'D TB
1.2.5.4.Coefficient ±2' , +20 °C ... +30 °C
±3' , + 5°C...+40°C
The sweep accuracy over any two divisions of the sweep is ±5%.
1.2.5.5.Delay-time Continuously variable Range delay-time multiplier 0 ... 10 between 0,5x and 10x the Incremental accuracy 0.5 %, time coefficient of thetypically 0.2%.
MAIN TB
1.2.5.6. Delay-time jitter ter than 1:30.000 When MAIN TB at 1ms/DIV and DEL'D TB at 1/VDIV a selected detail in the DEL'D TB mode shall not move more than one third of a division after warming up.
1.2.6.X Deflection
X deflection via channel
YA,Y B,Y CorY D 2mV/DIV ... 5V/DIV Uncalibrated continuous control 1:2,5 via Y gain potentiometer.
1.2.6.1. Coefficient error r ±5%
1.2.6.2. Bandwidth 2 MHz -3dB bandwidth over 4 divisions in horizontal screen centre.
1.2.6.3.Maximum
undistorted deflection 20 divisions up to 100 kHz
1.2.6.4.Phase difference
with respect to Y display 3° at 100 kHz
External X-deflection via EXT socket
1.2.6.5.Deflection
coefficient External 50 mV/DIV Uncalibrated continuous control 1:3
1.2.6.6.Accuracy
External + 3%
1.2.6.7.Bandwidth 0... 2 MHz 7 Hz... 2 MHz With DC trigger coupling With AC trigger coupling
1.2.6.8. Input characteristics Identical to Y channels
1.2.6.9.Phase difference
with respect to Y-channels 3° at 100 kHz
1.2.6.10. Linearity 1.5%
1.2.6.11. Drift 0.2 DIV/hour
1.2.7. Triggering of the main time-base
Designation Specification Additional information
1.2.7.1.Trigger source Internal from channel A
Internal from channel B
Internal from channel C
Internal from channel D
Composite (COMP): In alternate mode only. any combination of the channels A, B, C or D
Internal from mains (LINE)
External source (EXT)
1.2.7.2. Slope Positive or negative
1.2.7.3.Trigger sensitivity Internal: better than 0.5 Typical sensitivity as a function of frequency:
DIV up to 30 MHz. see fig. 1.3
External: 50 mV up to Typical sensitivity as a function of frequency:
30 MHz. 150 mV up to see fig. 1.4.
100 MHz
1.2.7.4.Trigger modes and DC: 0 - full bandwidth Both internal and external -3dB
coupling AC: 100 Hz - full bandwidth
1.2.7.5.Level range
Internal trigg. 24 DIV
External trigg. +1,2 V to-1,2 V
1.2.7.6.Input characteristics 1 MJ2±2%//15pFapprox.
1.2.7.7.Trigger jitter Less than 0,5 ns
1.2.8.Triggering of the delayed time-base
1.2.8.1.Trigger source Internal from channel A
Internal from channel B
Internal from channel C
Internal from channel D
Other characteristics are identical to those of MTB triggering; see section 1.2.7.
I: 1:2,5 between the steps.
1.5 DIV up to 100 MHz
Designation Specification Additional information
1.2.9. Calibration unit
Output voltage Output current 3 Vp.p ± 1 % 6 mA ± 1 % Square wave voltage and current.
Frequency 2 kHz ±2 %
Protection The output is protected against continuous short-circuiting.
1.2.10. Additional input and outputs
1.2.10.1. Z-modulation DC coupled. TTL compatible. High level blanks display.
Response time 35 ns. Input impedance 10 kL2. Max. input voltage 50 V.
1.2.10.2. MAIN gate +5 V during MAIN TB s Optional sweep Otherwise 0 Volt
Output impedance 1 kohm
1.2.10.3.DEL'Dgate +5 V during DEL'DTB Optional
sweep. Otherwise 0 Volt.
Output impedance 1 kohm
1.2.11. Power supply
Line voltage 100... 127 VAC, ± 10% Automatically protected against
220... 240 VAC, ±10% incorrect setting of the mains voltage 250 ... 350 VDC selector switch
Line frequency 46 ... 440 Hz
Power consumption 50 Watt
Power transients Damage to the oscilloscope shall not occur under voltage and frequency transient conditions specified in MIL-T-28800.