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B3UO

B3UO

  • 厂商:

    CPI

  • 封装:

  • 描述:

    B3UO - 50W Solid State BUCs - Communications & Power Industries, Inc.

  • 数据手册
  • 价格&库存
B3UO 数据手册
5 0W Solid State BUCs CPI Solid Inside and Out Ku- Band Model B3UO 50 watt Ku-band Solid State Block Upconverters — Environmentally sealed compact design for outdoor operation CPI-Built RF Brick Inside Global Applications Ku-Band With CPI-built RF brick inside and plenty of thermal margin, this SSPA is rock-solid, highly efficient and easy to maintain. High LInearity Excellent AM/PM, phase noise and spectral regrowth performance. Simple to Operate Perfect for Satcom on the Move, Micro Flyaway Systems, VSATs, and antennamount applications. Meets International Safety Standard EN-60950, Electromagnetic Compatibility 89/336/EEC and Harmonic Standard EN-61000-3-2 to satisfy worldwide requirements. Worldwide Support 50W Solid State BUCs User-friendly microprocessor-controlled logic with both integrated serial (RS-232 and RS-422/485) and Ethernet computer interfaces. Also contains digitally controlled attenuator. Extended Band Operation Backed by over three decades of satellite communications experience, and CPI’s worldwide 24-hour customer support network that includes sixteen regional factory service centers. Provides 45 watts of P1dB output power at the flange over the entire 13.75 to 14.50 GHz frequency range. 811 Hansen Way P.O. Box 51625, Palo Alto, CA 94303 tel: + 1 (650) 846-3803 f ax: + 1 (650) 424-1744 e-mail: s atcommarketing@satcom.cpii.com www.cpii.com/satcom K u -B a n d SPECIFICATIONS, 50 W Ku-Band Outdoor Solid State BUC (Model B3UO) Electrical Monitor and Control 13.75 to 14.50 GHz 950 to 1700 MHz 50W (47.0 dBm) Psat 45W (46.5 dBm) P1dB 12,800 MHz or 13,050 MHz (select either) standard 70 dB min. (higher gain options available) ±1.0 dB over oper. temp. range ±0.25 dB ±0.04 dB/MHz max. ±0.85 dB pk-pk max. ±1.25 dB 17 dB 1.5:1 max. (50 ohms) 1.3:1 max. Cooling Shock and Vibration Relative Humidity Altitude Remote Control Transmit ON/OFF Fault Reset Attenuator Setting OPTIONS: • 14.0 - 14.5 GHz operation • Front Panel Display Frequency L-Band Input Output Power Local Oscillator Frequency Internal 10 MHz Reference Small Signal Gain Gain Stability Over temp., constant drive Over 24 hours, fixed temp. Gain Slope Small Signal Gain Variation Across any 80 MHz band Across the full band Gain Adjustment Range Input VSWR Output VSWR Load VSWR Continuous operation Full spec compliance Residual AM, max. Phase Noise, max. 100 Hz 1 kHz 10 kHz 100 kHz 1 MHz AM/PM Conversion Harmonic Output Spurious Response at P1dB Intermodulation Distortion Computer/Network Interface RS-232C, 422/485 and Ethernet Remote Status Transmit ON/OFF, Summary Fault Temperature, Fault Identification RF Inhibit (ON/OFF), Lock Detect Environmental Ambient Temperature -40°C to +60°C operating, solar loading immune; -50°C to +85°C non-operating 100% condensing 12,000 ft. with standard adiabatic derating of 2°C/1000 ft., operating; 50,000 ft., non-operating Integral forced air 20 g peak, 11 msec, 2 sine; 2.1 grms, 5 to 500 Hz. Mechanical 2.0:1 1.5:1 -80 dBc > 100 kHz from carrier L-Band Input connection -63 dBc/Hz -73 dBc/Hz -83 dBc/Hz -93 dBc/Hz -103 dBc/Hz 2.5°/dB max. for a single-carrier at 2.5 dB backoff from P1dB -60 dBc max. at P1dB -60 dBc max. in band -25 dBc max. with two equal carriers and 5 MHz apart at 3.0 dB total backoff from P1dB 0.03 ns/MHz linear max. 0.003 ns/MHz2 parabolic max. 1.0 ns pk-pk ripple max. Single phase, 100-250 VAC ±10% 47-63 Hz 428 VA typ. 0.95 min. M&C Connection Dimensions Weight RF Output Connection WR-75 waveguide flange, grooved with UNC 2B 6-32 threaded holes Type N female 12 Pin Circular (LF10WBR-12S) 6 x 6 x 16 in. (142 x 142 x 406 mm) 25 lbs (11.4 kg) typ. Group Delay (in any 80 MHz band) Primary Power Power Consumption Power Factor Certificate Number: 30515 For more detailed information, please refer to the corresponding CPI Technical Description. Note: Specifications may change without notice as a result of additional data or product refinement. Please contact CPI before using this information for system design. MKT 193, ISSUE 17 2/09 PDF

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