Handheld Spectrum Analyzer

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9101 Handheld Spectrum Analyzer The 9101 Handheld Spectrum Analyzer provides RF engineers with the excellent performance of a workbench analyzer in a handheld form, at a competitive price. Highlights Covering all applications in a frequency range up to 4 GHz Ideal for mobile phone repair, basic testing in R&D labs, alignment testing for manufacturing and measurement of base station emissions in the field One Instrument For All Your Needs Used in mobile phone repair to detect and locate faulty mobile phone parts and components Used in R&D labs to assess the electromagnetic radiation and to verify measures against EMI Used in manufacturing to check and align the output of RF modules or units Used in the field to measure and verify base station emissions Used for installation troubleshooting, repair and maintenance e.g. in wireless local loop and modern 2.4 GHz Wi-Fi systems Typical measurements include transmitter testing, alignment of modulators and measuring switch breakthrough. The analyzer is fully controllable via front panel or by remote control from a PC. Measurement results and instrument settings can easily be transferred to a PC for presentation or post-processing. This rugged portable instrument is suitable for indoor and outdoor usage and with its excellent technical data and extensive feature set, meets many application needs. Comprehensive Feature Set In One-Button Measurement With its clear and easy-to-use operation, the 9101 Handheld Spectrum Analyzer presents all the measurement functions required to quickly and precisely resolve measurement tasks. The user-friendly interface with logical softkeys enhances operation. For the very latest specifications visit www.aeroflex.com

Frequencies Are Increasing Needn't Break The Budget The wide frequency range from 100 khz to 4 GHz enables testing in RF systems and modules such as modern wireless local oscillators. This frequency coverage also captures the higher harmonics from amplifier or oscillator modules, plus any spurious signals that can mix and break through into the pass-band. Its complete coverage of carrier, IF stages and audio frequencies gives the performance needed when other analyzers run out of bandwidth. Manual Or Automatic Control Made Simple Controlling the 9101 from a PC is easy and convenient with the built-in RS-232 interface and Ethernet port. All functions of the spectrum analyzer can be controlled via the industrial standard remote control SCPI command set. Easy-to-read Screens Make All the Difference in Finding Signals The high-resolution colour VGA display (640 x 480 pixels) is great for finding misleading spurs or aligning modulators. Multiple colours facilitate the comparison of measurement traces on the screen. The extra bright 6.5" TFT display has a superb 140 viewing angle and provides fast updates. Markers Help In Accurately Reading Signals Up to four markers allow for exact reading of complex signals. The transmitter performance can be checked, spurious signals can be detected and sideband levels can be established using the four markers with their flexibility and clear on-screen display. Convenience No time is wasted in setting up the instrument or copying settings from one instrument to the o ther by hand. The 9100 Data Exchange Software, which comes with the 9101, supports enhanced manage and transfer functions. Channel systems, limit templates, settings and correction tables can easily be set up and maintained on a PC. The act of building new limit templates and correction tables is child s play, using the PC s mouse. A live trace can be downloaded from the instrument at all times. An easy export to standard graphic formats such as BMP and JPG supports the need for quick documentation of measurement data. Likewise, stored traces can be uploaded to set the unit to the previous measurement settings. By pressing Delta Marker second and third harmonic levels can easily be checked. Power level and frequency are displayed in relation to a reference point. Pass/Fail Verdict With Limit Templates Limit lines simplify assessment of complex displayed signals, give users the ability to decide whether the signal passes or fails. These limit templates can be set up with 30 segments. At the same time it can be tested whether the signal exceeds an upper and/or lower limit. 9132 RMS Detector Option The 9132 RMS Detector helps to get more out of digitally modulated signals. It adds high precision to the 9101's channel power measurements. Broadband and narrowband signals can be measured alike with superb accuracy, as the new detector is capable of analyzing signals that are similar to noise on the spectrum display. Such signals are smoothed and displayed with the precise RMS level.

Get More Out of Digitally Modulated Signals Through RMS Channel Power Measurement Functions The RMS power measurement capability offers Channel Power, Adjacent Channel Power Ratio (ACPR) and the Occupied Bandwidth (OBW). ACPR enables measurements of the leakage power from a modulated communication channel into an adjacent channel. The occupied bandwidth measurement represents the part of the transmitted power that lies in a specified bandwidth. This measurement function can give useful qualitative information about the used bandwidth, e.g. give useful insight into transmitter operation. This one-button function allows rapid measurement and information about the behaviour of the specified communication channel. All significant values are displayed at a glance. Additionally, the channel power measurement, ACPR and OBW are implemented into the "Spectrum Analyzer Mode". In contrast to the one-key operation an experienced user can set the measuring range, the resolution and the sweep time freely according to individual needs. This way, besides defined communication systems, measurements are easily set up when pre-defined communication systems cannot be used. Accurate Measurements In Different RF Environments When making accurate amplitude measurements with a spectrum analyzer, it is required that any effects that alter the signal of interest between the device under test (DUT) and the analyzer be corrected while measuring. External devices like cables, amplifier, antenna and additional attenuator can influence the signal level. In the instrument software, the built-in amplitude correction is realised. The "External Device Compensation" function takes a list of frequency and amplitude pairs. Connected linearly, these points offset the input signal accordingly. This correction table can be set up easily with the new "9100 Data Exchange Software". Easy Adjustment onto Different Impedance Situations Besides the 50 ohm world, the 75 ohm impedance is common in cable TV. The instrument software supports this standard too. When switching between impedances the suitable correction table will be automatically loaded to assure correct measurement. AM and FM Demodulation The presence of audio signals can be checked by demodulation of AM or FM signals using Zero Span mode and listening via the built-in loudspeaker. Digital Signal Processing with Reloadable Digital IF RF signals are digitally processed by microprocessor and field-programmable gate arrays (FPGA) to ensure both superb accuracy and repeatability as well as flexibility for future requirements. Small and Portable With its minimal footprint, the 9101 is suitable for usage both on the bench and in the field. The low weight makes it a highly portable instrument in the lab and supports mobile applications in the field that seemed impossible before. With the Aeroflex 1500 Battery Charger, additional battery modules can be recharged outside of the 9101. The batteries are easy to exchange, preparing the instrument for many hours of independent operation in the field.

SPECIFICATIONS Specifications valid after 30 minutes warm-up time at ambient temperature, specified environmental conditions and typical measurement range, within a period of one year after calibration. FREQUENCY FREQUENCY RANGE Measurement Range 100 khz to 4 GHz Resolution 1 khz REFERENCE FREQUENCY Temperature Stability ±2 ppm Aging ±1.5 ppm/year Frequency Uncertainty ±1.5 ppm FREQUENCY COUNTER Resolution 1 Hz, 10 Hz, 100 Hz Min. Required Input Level 90 dbm FREQUENCY SPAN Setting Range 0 Hz, 10 khz to 4 GHz SWEEP TIME Span >100 khz 1 ms to 250 s Span = 0 Hz 1 ms to 250 s RESOLUTION BANDWIDTH (RBW) RBW Selection Manual or automatic RBW ( 3 db) Range 100 Hz to 1 MHz Steps 1, 3, 10 VIDEO BANDWIDTH (VBW) VBW Selection Manual or automatic VBW Range ( 3 db) 10 Hz to 1 MHz Steps 1, 3, 10 SSB Noise (f = 2 GHz, f = 100 khz, RBW = 10 khz, VBW = 1 khz) typ. < 83 dbc/hz AMPLITUDE Maximum Safe DC Voltage at RF-in ±50 V Maximum Safe Input Power 30 dbm Display Units dbm, dbµv, dbmv, dbv, db, V, mv, µv, mw, µw Measurement Range In Automatic mode Average noise floor to 20 dbm DISPLAYED AVERAGE NOISE LEVEL (DANL) (RBW = 100 Hz, attenuation = 0 db) 10 MHz to 1 GHz < 127 dbm, typ. 130 dbm 1 GHz to 4 GHz < 130 dbm, typ. 135 dbm INPUT ATTENUATION User-defined by direct entry or step keys. 0 db only selectable by direct entry to protect the first mixer. Setting Range (0) 10 to 50 db Attenuation Steps 10 db DYNAMIC RANGE Range >70 db Max. Measurable Input Level 20 dbm (Attenuation = 40 db) Min. Measurable Input Level 130 dbm LEVEL ACCURACY (Input Attenuation = 10 db, ambient temperature from +20 C to +26 C) 10 MHz to 3.6 GHz ±1 db RF Input Match (Input Attenuation = 10 db, 10 MHz to 4 GHz) VSWR <1.6, typ. <1.5 Return Loss < 12 db, typ. < 14 db REFERENCE LEVEL Reference level setting by keyboard entry or step keys Setting Range 100 to +30 dbm Resolution 0.1 db SPURIOUS RESPONSE Image Rejection (f = 1 GHz) >80 db Spurious Level (attenuation = 0 db) < 90 dbm LO Breakthrough (attenuation = 10 db) < 77 dbm

Intermodulation-Free Range AM/FM >63 db On marker/permanent/on multi marker (Input level 30 dbm, f1 = 990 MHz, f2 = 992 MHz) KEYBOARD Key Type FUNCTIONS Silicon click DETECTOR AND SWEEP Parameters Shortcut Keys Detector Types Cent, Span, Ref Pos./neg. peak, pos. peak, neg. peak, sample, RMS (optional) Quick Setting Keys Sweep Processing Preset, Hold/Run, Clr Trc, Rcl/Store Actual, average, max. hold, min. hold TRACE GENERAL Max. Displayed Traces Display (TFT) 2 Size 6.5'' Trace Points Resolution 2 x 501 1 640 x 480 Trace Functions Colours A + B A, A B A, 256 Copy a>b, copy b>a Brightness Trace A 300 cd Colour selectable (default is black) Measurement Result Points Trace B 2 x 501 1 1 Two independent traces are available (min. hold, max. hold at the same time) Colour selectable (default is blue) POWER SUPPLY 1 Two independent traces are available (min. hold, max. hold at the DC Voltage, External same time) 11 to 15 V / max. 28 W MARKER Internal Battery Max. Markers Li Ion 6 Operating Time (battery fully charged, full brightness) Delta Markers 2.1 h 5 MEMORY Marker Functions Type Max. peak, next peak Flash disk Transfer Functions M centre frequency Capacity (set-ups and traces) M ref. level 257 M f step DIMENSIONS LIMIT CHECK W x H x D Max. No. of Limit Templates 355 x 190 x 85 mm (14 x 7.5 x 3.3 ) 99 WEIGHT Limit Functions With battery Upper, lower, upper and lower 3.0 kg (6.6 lbs) Max. No. of Limit Segments Power supply only 30 0.32 kg (0.7 lbs) POWER MEASUREMENT ENVIRONMENTAL CONDITIONS Max. No. of Channel Systems (Unless otherwise specified) 99 MIL-PRF28800F class 2 Measurement Functions OPERATING TEMPERATURE Channel Power, ACPR, OBW 0 to +45 C Default Systems Storage Temperature GSM, WCDMA, DECT, WLAN 10 to +50 C DEMODULATION Rel. Humidity (non-condensing) Min. Input Level 80% 50 dbm For the very latest specifications visit www.aeroflex.com

CONNECTORS RF IN Connector Type N (female) Impedance 50 Ω DC In Connector 2.1 mm dia. barrel jack socket Max. Current 3 A SERIAL INTERFACE For software updates and remote control Connector DB-9 (male) Speed 57.6 kbit/s Required Cable Null modem cable LAN (TCP/IP) For software updates and remote control Connector RJ-45 Speed 10 Mbit/s STANDARD DELIVERY 9100 Cross-link Ethernet communication cable AG 880 629 1205 RF Probe 20 db AG 248 640 Frequency range 100 khz to 4 GHz RF attenuation (nominal at 50 Ω) 20 db including adapter N (male), BNC (female) Antenna 900 MHz band (TNC) AG 860 261 Antenna 1800 MHz band (TNC) AG 860 262 Antenna 1880 MHz band (BNC) AG 860 260 Antenna 2400 MHz band (TNC) AG 860 146 Adapter N TNC AG 886 098 Adapter N BNC AG 886 097 Matching pad N 50 Ω to N 75 Ω AG 886 205 Matching pad N 50 Ω to F 75 Ω AG 886 204 Attenuator 18 GHz, 6 db AG 874 061 Related products 9102 Handheld Spectrum Analyzer AG 100 412 Bench Edition 9102 Handheld Spectrum Analyzer AG 248 806 Field Edition 9102 Handheld Spectrum Analyzer AG 248 801 Tracking Edition Note: Specifications, terms and conditions are subject to change without prior notice. Power Supply (90 to 240 V, 50 to 60 Hz) Getting started manual User s guide on CD 9100 Data Exchange Software (1 license) Cross-link Ethernet communication cable ORDERING INFORMATION Product Packages 9101 Handheld Spectrum Analyzer AG 100 411 Bench Edition 9101 Handheld Spectrum Analyzer AG 248 800 Field Edition Options and Accessories 9132 RMS Detector Option AG 897 275 9100 Battery module, 7.2 Ah AG 205 012 9100 Outdoor backpack AG 241 015 9100 Soft carrying bag AG 241 013 1500 Battery charger AG 204 097 9100 Power supply AG 248 328 9100 12 V car adapter AG 860 389 9100 Safety lock AG 867 037 9100 Data Exchange Software AG 897 137 9100 Serial communication cable AG 860 388

For the very latest specifications visit www.aeroflex.com

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