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Tender For Purchase Of Analog Channel Digital Storage Oscilloscope, bargur-Tamil Nadu

Directorate Of Technical Education has published Tender For Purchase Of Analog Channel Digital Storage Oscilloscope. Submission Date for this Tender is 17-03-2025. Oscilloscopes Tenders in bargur Tamil Nadu. Bidders can get complete Tender details and download the document.




Tender Notice

47725684
Tender For Purchase Of Analog Channel Digital Storage Oscilloscope
Open Tender
Indian
Tamil Nadu
Bargur
17-03-2025

Tender Documents

Tender Details

Purchase Of Analog Channel Digital Storage Oscilloscope , Digital Storage Oscilloscope , Annexure - 1 Specifications Of Digital Storage Oscilloscop Sn Feature Specification 1 Analog Channels 2 2 Analog Channel Bandwidth 70 Mhz 3 Sample Rate 1 Gs/S All Channels 4 Record Length 20K Points Vertical System Analog Channels 5 Input Sensitivity Range 1 Mv/Div To10 V/Div Max. In 1-2-5 Sequence With Probe Attenuation Set To 1X 6 Dc Gain Accuracy±3.0 % Step Gain, Derated At 0.1 %/°C Above 30°C 7 Maximum Input Voltage300 Vrms, Installation Category Ii; Derate Above 4 Mhz At 20 Db Per Decade To 200 Mhz 8 Offset Range 1 Mv/Div To 50 Mv/Div: ± 1 V 100 Mv/Div To 500 Mv/Div: ± 10 V 1 V/Div To 5 V/Div : ± 100 V 9 Bandwidth Limit20 Mhz 10 Input Couplingdc, Ac 11 Input Impedance1 M? ±2 % In Parallel With 14 Pf ±2 Pf 12 Vertical Zoomvertically Expand Or Compress A Live Or Stopped Waveform 13 Vertical Resolution 8 Bits Acquisition Modes Sampleacquire Sampled Values Peak Detectcaptures Glitches As Narrow As 4 Nsec At All Sweep Speeds. Averagefrom 2 To 256 Waveforms Included In Average. Hi-Resolution Averages Multiple Sample Of One Acquisition Interval Into One Waveform Point. Roll Scrolls Waveforms Right To Left Across The Screen At Sweep Speeds Slower Than Or Equal To 40 Ms/Div Horizontal System Analog Channels 14 Time Base Range 2 Ns/Div To 100 Sec/Div In A 1-2-4 Sequence 15 Horizontal Zoom Horizontally Expand Or Compress A Live Or Stopped Waveform 16 Deskew Range± 100 Nsec 17 Time Base Accuracy ±25 X 10-6 Over Any >1 Ms Interval Trigger System 18 Trigger Modesauto, Normal, And Single Sequence 19 Trigger Coupling Dc, Noise Reject, High Frequency Reject, Low Frequency Reject 20 Trigger Sourcech1, Ch2, Aux In, Ac Line 21 External Trigger Input Should Be Available Trigger Types 22 Edgepositive Or Negative Slope On Any Channel. Coupling Includes Dc, Hf Reject, Lf Reject, And Noise Reject. 23 Pulse Widthtrigger On Width Of Positive Or Negative Pulses That Are >, <, =, Or ? A Specified Period Of Time. 24 Runt Trigger On A Pulse That Crosses One Threshold But Fails To Cross A Second Threshold Before Crossing The First Again 25 Trigger Signal Frequency Readoutshould Provide A Frequency Readout Of The Trigger Source Up To Instrument Bandwidth. Waveform Measurements Cursorstime, Amplitude, Screen Automated Measurementsshould Provide 32 Measurements, Of Which Up To Six Can Be Displayed On-Screen At Any One Time. Measurements Include: Period, Frequency, Rise Time, Fall Time, Positive Duty Cycle, Negative Duty Cycle, Positive Pulse Width, Negative Pulse Width, Burst Width, Phase, Positive Overshoot, Negative Overshoot, Peak To Peak, Amplitude, High, Low, Max, Min, Mean, Cycle Mean, Rms, Cycle Rms, Positive Pulse Count, Negative Pulse Count, Rising Edge Count, Falling Edge Count, Area, Cycle Area, Delay Fr, Delay Ff, Delay Fr, And Delay Rr. Gatingisolate The Specific Occurrence Within An Acquisition To Take Measurements On, Using Either The Screen, Between Waveform Cursors Or Full Record Length. Waveform Math Arithmetic Add, Subtract, And Multiply Waveforms Fft Spectral Magnitude. Set Fft Vertical Scale To Linear Rms Or Dbv Rms, And Fft Window To Rectangular, Hamming, Hanning, Or Blackman-Harris. Display 26 Display Typeequal To Or More Than 7 Inch Tft Color Display 27 Display Resolution800 Horizontal By 480 Vertical Displayed Pixels 28 Waveform Stylesvectors, Variable Persistence, And Infinite Persistence. 29 Formatyt And Xy Input/Output Ports 30 Usb Host Port Should Support Usb 2.0 Host Ports For Mass Storage Devices 31 Usb 2.0 Device Port Usb Connector Allows For Communication/Control Of Oscilloscope Through Usbtmc Or Gpib With A Relevant Entity 32 Security Lock Kensington Style Lock Probe Compensation Signal Amplitude 5 V Frequency 1 Khz Software Should Provide The Following I) Remotely Control And View The Screen On The Instrument Ii) Provide A Standard Instrument Programming Interface For Common Applications Such As Labview, Labwindows/Cvi, Microsoft .Net, And Matlab. Compatible With Python, C/C++/C# And Many Other Languages Through Visa. Iii) Should Provide A Software For The Oscilloscope Analysis Environment To The Pc. Iv) Upload, Store, Organize, Search, Download, And Share Any File Type From Any Connected Device Power Source Line Power 100 - 240 Vac Rms ± 10% Power Source Frequency45 Hz To 65 Hz (100 To 240 V) 360 Hz To 440 Hz (100 To 132 V) Power Consumptionless Than 40 W (Max) Dimensions Instrument Only Height Less Than 180 Mm Width Less Than 350 Mm Depth Less Than 120 Mm Cooling Clearance Requirements Appropriate Clearance Should Be Provided On Left Side, Right Side And Rear Side Of The Instrument Operating Temperature0 °C To +50 °C Non-Operating Temperature -30 °C To +70 °C Humidity Operating5% To 90% Relative Humidity At Temperatures Up To +30 °C, 5% To 60% Relative Humidity At Temperatures Greater Than +30 °C And Up To +50 °C, Non-Condensing Non-Operating 5% To 90% Relative Humidity At Temperatures Up To +30 °C, 5% To 60% Relative Humidity At Temperatures Greater Than +30°C And Up To +60 °C, Non-Condensing

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