Amplifier Systems. 1:1, Dual 1:1 and 1:2 Redundant Low-Noise. Back to

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1 R Back to Amplifier Systems 1:1, Dual 1:1 and 1:2 Redundant Low-Noise The 1:1, dual 1:1 and 1:2 redundant lownoise amplifier (LNA) systems are designed to ensure continuous operation without disruption of signal transmission. A fault condition in the on-line LNA, or an operator generated command, will switch the standby LNA to the on-line position and remove the on-line LNA from the signal path. The redundant LNA system consists of an outdoor amplifier/switch assembly which mounts at the antenna hub, rack mounted indoor local control unit and interconnection control cable. FEATURES Low amplifier noise temperature Fault tolerant design Fully redundant, hot swappable power supplies Remote control via RS485 or RS422 user selectable Automatic/manual control from both local and remote mode Remote status Off-line input/output access Amplifier current fault detection Weather resistant amplifier/switch plate assembly Time-stamped alarm history Front panel LNA bias display 1:1, DUAL 1:1 AND 1:2 REDUNDANT LOW-NOISE AMPLIFIER SYSTEMS 1:1 1:2 DUAL 1:1 OPTIONS Remote RS232 or contact closure Transmit reject filter Internal noise source Input/output signal monitors Higher gain Increased output power Remote control unit Specifications Standard Waveguide Flanges Controller Rear Panel Block Diagrams 1:1 and 1:2 Redundant LNA Systems Outline Drawings 1:1 and 1:2 Ku-Band 1:1 and 1:2 C-Band Options 100 Davids Drive Hauppauge NY Fax:

2 The 1:1, dual 1:1 and 1:2 redundant lownoise amplifier (LNA) systems are designed to ensure continuous operation without disruption of signal transmission. A fault condition in the on-line LNA, or an operator generated command, will switch the standby LNA to the on-line position and remove the on-line LNA from the signal path. The redundant LNA system consists of an outdoor amplifier/switch assembly which mounts at the antenna hub, rack mounted indoor local control unit and interconnection control cable. 1:1, DUAL 1:1 AND 1:2 REDUNDANT LOW-NOISE AMPLIFIER SYSTEMS 1:1 1:2 FEATURES Low amplifier noise temperature Fault tolerant design Fully redundant, hot swappable power supplies Remote control via RS485 or RS422 user selectable Automatic/manual control from both local and remote mode Remote status Off-line input/output access Amplifier current fault detection Weather resistant amplifier/switch plate assembly Time-stamped alarm history Front panel LNA bias display DUAL 1:1 OPTIONS Remote RS232 or contact closure Transmit reject filter Internal noise source Input/output signal monitors Higher gain Increased output power Remote control unit

3 SPECIFICATIONS Available Noise Temperature Interface Frequency (GHz) Band Abbreviation At +25 C (Maximum) Input/Output , 40, 60 SMA/SMA , 40, 60 SMA/SMA , 35, 40, 50, 60 CPR-229G/N , 35, 40, 50, 60 CPR-229G/N , 35, 40, 50, 60 CPR-229G/N , 35, 40, 50, 60 CPR-229G/N *, 55, 60, 65 CPR-112G/SMA , 50, 55, 60, 65 CPR-112G/SMA *, 55, 60, 65 CPR-112G/SMA , 80, 90, 100 WR-75/SMA , 70, 80, 90, 100 WR-75/SMA , 70, 80, 90, 100 WR-75/SMA , 70, 80, 90, 100 WR-75/SMA *, 140, 160, 200 WR-42/SMA *, 140, 160, 200 WR-42/SMA *, 140, 160, 200 WR-42/SMA *, 140, 160, 200 WR-42/SMA * References 14 db minimum input return loss specification. Low-noise amplifier system model numbers: Model number: LN (controller)-(frequency band abbreviation)-(amplifier noise temperature) Controller code: 1 = 1:1 Controller 2 = 1:2 Controller 3 = Dual 1:1 Controller Please note that each low-noise amplifier system is supplied with: 1 Redundant amplifier/switch assembly 1 Local control and monitoring unit foot interconnection control cable (other lengths optional) Example: Example: 1:1 system, GHz with 65 K amplifier noise temperature: LN :2 system, GHz with 30 K amplifier noise temperature: LN Assembly enclosure option: To substitute a weather resistant enclosure for the standard weather resistant plate assembly add -W to end of part number. The weather resistant enclosure is recommended for mounting in a nonsheltered environment with direct rainfall. Example: 1:2 system, GHz with 30 K amplifier noise temperature in a weather resistant enclosure: LN W SPECIFICATIONS Gain db minimum, 52 db typical (higher gain optional) Gain flatness db/40 MHz, 1.0 db peak-to-peak/ bands up to 500 MHz, 1.5 db peak-to-peak/ bands up to 800 MHz, 2.0 db peak-to-peak/ bands greater than 800 MHz Gain slope db/10 MHz maximum

4 SPECIFICATIONS (CONT.) Gain stability... ±0.2 db/24 hours (constant temperature), 5 db maximum/-40 to +60 C (higher stability optional) Power output (1 db compression) dbm minimum (higher output power optional) AM/PM conversion /db maximum to 0 dbm output Group delay (±18 MHz) Linear ns/mhz maximum Parabolic ns/mhz 2 maximum Ripple ns peak-to-peak maximum Spurious outputs... Below thermal noise Isolation db minimum Input return loss db minimum, *14 db minimum (refer to table) Output return loss db minimum Input/output impedance ohms Switchover time ms maximum Nondamage input power dbm maximum Transmit desensitivity threshold C-band dbm maximum (-30 dbm with Option 11) X-band dbm maximum (-60 dbm with Option 11) Ku-band dbm maximum (-30 dbm with Option 11) Ka-band dbm maximum (-60 dbm with Option 11) LOCAL CONTROL UNIT PRIMARY POWER REQUIREMENTS Voltage VAC Frequency Hz Power consumption W typical, 50 W peak during switchover SUMMARY ALARM Contact closure/open for DC voltage and/or amplifier alarm Status alarm readout on remote control bus PHYSICAL AC input connectors... IEC-320 Summary alarm interface mating connector... DEM-9P Remote interface connector... DEM-9S for RS485 and RS422, DB-25P for RS232, DB-37S for contact closure Switch/amplifier weight (does not apply to weather resistant housing option) 1:1 units... Below 10 GHz 15 lbs, above 10 GHz 10 lbs nominal 1:2 units... Below 10 GHz 25 lbs, above 10 GHz 20 lbs nominal ENVIRONMENTAL Operating Ambient temperature (Controller)... 0 to 50 C Ambient temperature (Amplifier assembly) to +60 C (other ranges available, consult factory) Atmospheric pressure... Up to 10,000 feet Nonoperating Temperature to 70 C Atmospheric pressure... Up to 40,000 feet Shock and Vibration... Normal handling by commercial carriers

5 STANDARD WAVEGUIDE FLANGES #1/4-20 x 0.31 DP (TYP. 10 PLACES) WR-112 CPR-G FLANGE #8-32 x 0.25 DP (TYP. 8 PLACES) WR-229 CPR-G FLANGE SQ SQ SQ #6-32 x 0.25 DP (TYP. 4 PLACES) #4-40 x 0.25 DP (TYP. 4 PLACES) # 4-40 x 0.25 DP (TYP. 4 PLACES) WR-75 GROOVED FLANGE WR-42 GROOVED FLANGE WR-28 GROOVED FLANGE NOTE: FLANGES NOT DRAWN TO SIZE REAR PANEL VIEW 1:1 AND 1:2 DUAL 1:1 Ground lug Power supply A AC voltage input/switch Power supply B AC voltage input/switch Summary alarm connector Remote interface connectors LNA 1 interface LNA 2 interface Amplifier assembly interface connectors

6 1:1 REDUNDANT LNA SYSTEM BLOCK DIAGRAM OPTION 3 OPTION 1 OPTION 2 A1 TRANSMIT REJECT -40 dbc A2-20 dbc 1:2 REDUNDANT LNA SYSTEM BLOCK DIAGRAM A1 OPTION 3 OPTION 1 OPTION 2 1 TRANSMIT REJECT 1-40 dbc A3-20 dbc OPTION 3 OPTION 1 WAVE- GUIDE W2 OPTION 2 2 TRANSMIT REJECT WAVE- GUIDE W dbc A2-20 dbc Typical system noise temperature calculation: 1:1 Redundant System: T system = T LNA + T SWITCH + T OPTION 3 + T OPTION 1 1:2 Redundant LNA System: input 1: LNA 1 on-line signal path T system = T LNA + T SWITCH + T OPTION 3 + T OPTION 1 input 1: LNA 3 on-line signal path (LNA 1 standby) T system = T LNA + 2 * T SWITCH + T W2 + T OPTION 3 + T OPTION 1 input 2: LNA 2 on-line signal path T system = T LNA + T W1 + T SWITCH + T OPTION 3 + T OPTION 1 input 1: LNA 3 on-line signal path (LNA 2 standby) T system = T LNA + 2 * T SWITCH + T W1 + T W2 + T OPTION 3 + T OPTION 1 Typical Noise Temperature in Kelvin at 23 C & Band (GHz) (coaxial) WR-229 WR-229 WR-112 WR-75 WR-42 WR-28 T SWITCH T W1 N/A N/A T W T OPTION T OPTION 3 N/A N/A N/A N/A

7 1:1 Ku-BAND AMPLIFIER ASSEMBLY OUTLINE DRAWING MS3112R14-18P (MS3116F14-18S MATING CONNECTOR SUPPLIED) [254.0] 9.00 [228.6].257 DIA. THRU (TYP. 4 PLACES) J1 WR-75 WAVEGUIDE [158.75] 7.50 [190.5] 2.00 [50.8] 3.75 [95.25] 5.00 [127.0] TYPE 'SMA' FEMALE CONNECTOR WITH TERMINATION J3 LOCAL INTEACE J2 J5 J4 MONITOR [428.75] [228.6] [203.2] MITEQ INC. HAUPPAUGE, NY 1:1 REDUNDANT LNA UNIT MODEL LN1- TRANSMIT REJECT (OPT. 3 ONLY) TEST INJECT COUPLER (OPT. 1 ONLY) [114.3] 1.25 [31.75] MONITOR (OPT. 2 ONLY).75 [19.05] [177.8] 6.35 [161.29] [203.33] [88.9].25 [6.35} 1:2 Ku-BAND AMPLIFIER ASSEMBLY OUTLINE DRAWING 6.09 [154.79] 7.32 [185.80] 1.19 [30.30] 1.62 [41.13] 2.81 [71.42] 3.04 [77.14] J5 LOCAL INTEACE J2 1 J4 2 J2 1 J [369.31] MAX [203.2] 9.00 [228.6] [254.0] 9.00 [228.6] 1:2 REDUNDANT LNA UNIT MODEL LN2 J1 1 J DIA. THRU (TYP. 4 PLACES) TEST INJECT COUPLER (OPT. 1 ONLY) TRANSMIT REJECT (OPT. 3 ONLY) J1 1 WR-75 WAVEGUIDE MITEQ P/N [114.3] 2.49 [63.25].64 [16.21] 1.25 [31.75] 3.28 [83.33] MS3112R16-26P (MS3116F16-26S MATING CONNECTOR SUPPLIED) MITEQ INC. HAUPPAUGE, NY MONITOR (OPT. 2 ONLY).75 [19.05] 9.30 [236.2] J3 2 WR-75 WAVEGUIDE 1.75 [44.45] 3.50 [88.9] 8.00 [203.3].25 [6.35] NOTE: DIMENSIONS IN BRACKETS [ ] ARE IN MILLIMETERS

8 1:1 C-BAND AMPLIFIER ASSEMBLY OUTLINE DRAWING 1.31 [33.27].31 [7.87] [265.18].50 MITEQ P/N [304.80] [279.40].50 [12.70] 4.43 [112.52] MS3112R14-18P (MS3116F14-18S MATING CONNECTOR SUPPLIED) 8.50 [219.9] 6.75 [171.45] 5.50 [139.7] 4.25 [107.95] 3.00 [76.2] MONITOR (OPT. 2 ONLY) J3 LOCAL INTEACE J2 J5 J5 MONITOR [304.8] [279.4].257 DIA. THRU (TYP. 4 MOUNTING HOLES).78 [19.81] 1.25 [31.75] 18.1 [459.74] TRANSMIT REJECT (OPT. 3 ONLY) WR-229 TEST INJECT COUPLER (OPT. 1 ONLY) 6.00 [152.4] 1:2 C-BAND AMPLIFIER ASSEMBLY OUTLINE DRAWING MS3112R16-26P (MS3116F16-26S MATING CONNECTOR SUPPLIED).257 DIA. THRU (TYP. 6 MOUNTING HOLES) 8.75 [222.25] [254.00] 1.31 [33.27] 3.75 [95.25] 5.00 [127.0] 6.25 [158.75] 7.50 [190.5] J3 J2 LOCAL INTEACE 1 J$ 2 J^ 1 MONITOR 2.25 [57.15].500 [12.70].500 [12.70] [304.80] [279.40] [406.40] [381.00] 7.50 [190.50] 1:2 REDUNDANT LNA UNIT MODEL LN2- MITEQ P/N [445.77] 5.00 [127.0] 4.45 [113.03] 6.00 [152.40] 5.00 [127.0] J7 2 MONITOR MONITOR (OPT. 2 ONLY) [266.7].78 [ 19.81] [374.65] 7.52 [191.01] TRANSMIT REJECT (OPT. 3 ONLY).31 [7.87] WR-229 TEST INJECT COUPLER (OPT. 1 ONLY) NOTE: DIMENSIONS IN BRACKETS [ ] ARE IN MILLIMETERS

9 1:1, DUAL 1:1 AND 1:2 REDUNDANT LOW-NOISE AMPLIFIER SYSTEMS OPTIONS Note: System noise temperature will increase and return loss will degrade for any additional component located before the amplifier. This applies to Options 1 and Test input inject couplers. Below 3.4 GHz, coaxial coupler 40 db nominal coupling level. Above 3.4 GHz, crossguide coupler 40 db nominal coupling level. 2. Output test coupler. 20 db nominal coupling level. 3. Transmit reject filter. Receive Band Receive Band Transmit Band Transmit Band Frequency (GHz) Insertion Loss Frequency (GHz) Rejection db db db db db db db db db db db db db db 4. Noise source. 15 db ENR nominal. Local and remote control provided. 6-(x). Local control unit to amplifier/switch assembly cable length, where (x) is the length of the cable in feet. Available from 10 to 400 feet in 10 foot increments. 100 foot cable supplied as standard. 11. Increased gain. 60 db minimum gain. 12. Increased output power. +20 dbm output power at 1 db compression. 13. Increased gain stability. 3 db peak-to-peak maximum/-40 to +60 C. 17. Remote control. B. RS422/485 (supplied as standard). C. RS232. D. Contact closure. 22. Dedicated remote control panel. Provides remote control over a dedicated RS422/485 bus. Option 17B (RS422/485 remote bus) must be ordered. Notes: Missing option numbers are not applicable to this product. For literature describing local control and remote control (bus protocols), refer to MITEQ s Technical Note 25T042. D-235B 100 Davids Drive, Hauppauge, NY TEL.: (631) FAX: (631) /

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