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PI3L720 Datenblatt(PDF) 6 Page - List of Unclassifed Manufacturers

Teilenummer PI3L720
Bauteilbeschribung  RF and Microwave Power Sensors/Meters
PDF  13 Pages
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Hersteller  ETC2 [List of Unclassifed Manufacturers]
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Data Sheet
Characteristic
PSM4110
PSM4120
PSM4320
PSM4410
Temperature Uncertainty (T)
40 °C < T ≤ 50 °C: 1.00% (plus 1%, 0 dBm to 10 dBm;
plus 3%, 10 dBm to 20 dBm)
30 °C < T ≤ 40 °C: 0.75% (plus 1%, 0 dBm to 10 dBm;
plus 3%, 10 dBm to 20 dBm)
20 °C < T ≤ 30 °C: 0.00%
10 °C < T ≤ 20 °C: 0.75% (plus 1%, 0 dBm to 10 dBm;
plus 3%, 10 dBm to 20 dBm)
0°C<T ≤ 10 °C: 1.00% (plus 1%, 0 dBm to 10 dBm;
plus 3%, 10 dBm to 20 dBm)
40 °C < T ≤ 50 °C: 6.00%
30 °C < T ≤ 40 °C: 3.00%
20 °C < T ≤ 30 °C: 0.00%
10 °C < T ≤ 20 °C: 3.00%
0°C < T ≤ 10 °C: 6.00%
*1 Total uncertainty includes contributions from Calibration Factor Uncertainty (CF), Linearity Uncertainty (L), Noise Uncertainty (N), Zero Offset Uncertainty (Z), Mismatch Uncertainty, and Temperature Uncertainty (T). All
error terms must be converted to percentages for Total Uncertainty (RSS) calculation. Mismatch Uncertainty (Mm) requires knowledge of source match and should be expressed as a percentage using the equation
Mm = 100 × [(1 ± Γsource × Γsensor)2 –1].
*2 Use the following formula to determine Zero Offset Uncertainty as a percentage: Z = (Zero Offset Power / Nominal Power) × 100.
*3 Nominal impedance = 50 Ω.
PSM5000 Series USB Power Meters (Average/Peak/Pulse + Profiling)
Characteristic
PSM5110
PSM5120
PSM5320
PSM5410
Input Connector
3.5 mm, male
N-type, male
N-type, male
3.5 mm, male
Frequency Range
100 MHz to 8 GHz
50 MHz to 18.6 GHz
50 MHz to 20 GHz
Dynamic Range
100 MHzto6GHz: –60dBm to +20dBm
6 GHz to 8GHz: –50 dBmto+20 dBm
–40 dBm to +20 dBm
Maximum Peak-to-Average Ratio
100MHz to 6GHz: 80dB
6GHz to8GHz: 70dB
55 dB
Internal Video Bandwidth
10 MHz, typical
Timebase
±50 ppm, typical
Real-time Sample Rate
500 kS/s
Average Power, Minimum Pulse
Width
500 ns, typical
Peak Power, Minimum Pulse
Width
200 ns, typical
Pulse Profiling, Maximum
Equivalent-time Sample Rate*4
48 MS/s
Pulse Profiling, Minimum Rise
Time, 10% to 90%
54 ns (–70 dBm to –20 dBm pulse, 4 GHz)
Pulse Profiling, Minimum Fall
Time, 90% to 10%
44 ns (–70 dBm to –20 dBm pulse, 4 GHz)
Pulse Profiling, Manual Trigger
Level Accuracy
±1 dBm
Pulse Profiling, Minimum Number
of Cycles
2 cycles
Pulse Profiling, Video Filters
100 kHz, 200 kHz, 300 kHz, 500 kHz, 1 MHz, 2MHz, 3 MHz, 5MHz, 10MHz
Total Accuracy*1
Total Uncertainty = 2 × √[(CF/2)2 + (L/2)2 +(N/2)2 +(Z/√2)2 +(Mm/√2)2 +(T/√2)2 ]
Calibration Factor Uncertainty
(CF)
100 MHz to 500 MHz: 4.0%
500MHz to 8GHz: 2.5%
100MHz to 500MHz: 4.0%
500MHz to 8GHz: 1.7%
50 MHz to 500 MHz: 4.0%
500 MHz to 10 GHz: 1.7%
10 GHzto18.6GHz: 1.9%
50 MHz to 500 MHz: 4.0%
500 MHz to 12.5 GHz: 2.6%
12.5 GHzto18GHz: 3.2%
18 GHzto20GHz: 3.5%
Linearity Uncertainty (L)
100 MHz to 2 GHz
+15 dBm to +20 dBm: 7.0%
+5 dBm to +15 dBm: 5.0%
–60 dBm to +5 dBm: 3.0%
2GHz to8GHz
+15 dBm to +20 dBm: 5.0%
+5 dBm to +15 dBm: 3.0%
–60 dBm to +5 dBm: 2.0%
50 MHz to 100 MHz
+15 dBm to +20 dBm: 7.0%
–40dBm to +15dBm: 5.0%
100 MHz to 2 GHz
+15 dBm to +20 dBm: 7.0%
+5 dBm to +15 dBm: 5.0%
–40 dBm to +5 dBm: 3.0%
2GHz to 20 GHz
+15 dBm to +20 dBm: 6.0%
+5 dBm to +15 dBm: 4.0%
–40 dBm to +5 dBm: 2.0%
6 www.tektronix.com



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