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Dan MertelyEVLA Front-End CDR – C-Band Receiver April 24, 2006 1 EVLA Front-End CDR C-Band (4-8 GHz) EVLA Receiver.

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Presentation on theme: "Dan MertelyEVLA Front-End CDR – C-Band Receiver April 24, 2006 1 EVLA Front-End CDR C-Band (4-8 GHz) EVLA Receiver."— Presentation transcript:

1 Dan MertelyEVLA Front-End CDR – C-Band Receiver April 24, 2006 1 EVLA Front-End CDR C-Band (4-8 GHz) EVLA Receiver

2 Dan MertelyEVLA Front-End CDR – C-Band Receiver April 24, 2006 2 EVLA C-BAND PERFORMANCE PROJECT BOOK REQUIREMENTS

3 Dan MertelyEVLA Front-End CDR – C-Band Receiver April 24, 2006 3 C-band Block Diagram

4 Dan MertelyEVLA Front-End CDR – C-Band Receiver April 24, 2006 4 Estimated EVLA C-Band T Rx, Output Power & Headroom

5 Dan MertelyEVLA Front-End CDR – C-Band Receiver April 24, 2006 5 Vacuum/RF Window

6 Dan MertelyEVLA Front-End CDR – C-Band Receiver April 24, 2006 6 Interim AMC (narrow band) Polarizer #1 Note length, vs. Production OMT

7 Dan MertelyEVLA Front-End CDR – C-Band Receiver April 24, 2006 7 Interim VLA (salvaged), modified AMC Polarizer Salvaged VLA polarizer—modified: 4.5 – 5 GHz only. Cut-off flanges Add new flanges Add PAL coax adapters Add PAL sq  circ adapter

8 Dan MertelyEVLA Front-End CDR – C-Band Receiver April 24, 2006 8 NRAO (wide-band) Production OMT

9 Dan MertelyEVLA Front-End CDR – C-Band Receiver April 24, 2006 9 Dewar components 1 FQ:4-8 GHzFQ:4-8 GHzFQ:4-8 GHzFQ:4-8 GHzFQ:4-8 GHz VSWR:1.30VSWR:1.25/1.25VSWR:1.35/1.25VSWR:1.25VSWR:*/* ISO:18 dBISO:20 dBISO:20 dBGAIN:35 dB COUPL:3.2+/-.7COUPL:30+/-1.25NOISE T:4 K INS LOSS:TBD dBINS LOSS:0.25 dBINS LOSS:0.50 dBINS LOSS:.3dB@12K AMP BAL+/-0.2 dB PH BAL:+/-2.0 Deg FQ SENS:+/-0.75 dB ATM H915ATM C115-0/MIATM P215 DORADO 31CC60-1NRAO: “C” LNA Cal Splitter Cal Coupler90 deg hybrid Cryo Isolator Cryo LNA

10 Dan MertelyEVLA Front-End CDR – C-Band Receiver April 24, 2006 10 Dewar components 2 FQ:< 18 GHzFQ:< 18 GHzFQ:< 18 GHz VSWR:1.29VSWR: 1.18 LENGTH:18-22 INLENGTH:4, 6 IN INS LOSS:2 dB (est)INS LOSS:< 0.35 dBINS LOSS:0.42 dB RF-COAX S086MMSS-22 RF-Connection SMA-M/SMA-M.141 AMP/TYCO 1054874-1 SMA Bulkhead Re-formable CoaxSS Coax

11 Dan MertelyEVLA Front-End CDR – C-Band Receiver April 24, 2006 11 DEWAR PACKAGING 2 AC CONTROL BOX RF POST DEWAR BOX CTI 350 FRIG ZOTEFOAM WINDOW THERMAL GAP AMC POLARIZER RAD SHIELD (50K) COLD PLATE (15K) OMT ASSEMBLY SUPPORT ROD

12 Dan MertelyEVLA Front-End CDR – C-Band Receiver April 24, 2006 12 RF Box Components FQ:4-8 GHzFQ:4-8 GHzFQ:4-8 GHzFQ:4-8 GHz ? VSWR:1.3:1VSWR:1.5/1.5VSWR:2.0/2.0ENR:31 dB ISO:18 dB- 3 dBc FQ:3.97/8.15 GGAIN:28+/-2 dB COUPL:3.2+/-.7-50 dBc FQ: 9.8 G(+/-0.5 in 1G) INS LOSS:< 0.5 dBINS LOSS:< 1 dB NF:< 4 dB, 2 typ AMP FLAT:0.5 dBP1dB: >+10dBm, 15 typ MICA 604-S39 TTE K5221-4/8-G-AALC ALS04--149NORDEN N03-2086 Post-amp BPFIsolator Noise Source VLA SALVAGE/

13 Dan MertelyEVLA Front-End CDR – C-Band Receiver April 24, 2006 13 RF Box Packaging Digital control & Cal Drive PCB Noise Source Input Isolators Bandpass Filters Output Isolators Space for Solar Cal Var Attn

14 Dan MertelyEVLA Front-End CDR – C-Band Receiver April 24, 2006 14 Common Dewar Design

15 Dan MertelyEVLA Front-End CDR – C-Band Receiver April 24, 2006 15 DEWAR PACKAGING: THE COLD PLATE CHARCOAL CANISTER LNA ISO CAL COUP CAL SPLITTER SS COAX OUT REFORM COAX IN Au PLATED, OFC COLD PLATE Al RAD SHIELD BOTTOM PLATE

16 Dan MertelyEVLA Front-End CDR – C-Band Receiver April 24, 2006 16 EVLA C-BAND NARROW-BAND PERFORMANCE OTHER RESULTS: SNRL ================ 21415 31518 41914 Trx spec = 16K, incl feed and radome Trx

17 Dan MertelyEVLA Front-End CDR – C-Band Receiver April 24, 2006 17 EVLA C-BAND WIDE-BAND PERFORMANCE TEST CONDITIONS: RCP LNA= 3-13 GHz, SN18, not 4 – 8 GHz optomized. Dewar cool (12/50 K) SOIDA signal injected via cal port (after the 4.5-5.0 GHz AMC pol).086 SS coax, 22 in long used to inject test CW has 2+ dB loss, not calibrated out. Test demonstrates flatness, not absolute Trx. Interim Freq Range. Actual Trx = 15 K.

18 Dan MertelyEVLA Front-End CDR – C-Band Receiver April 24, 2006 18 EVLA C-BAND Preliminary Conclusions Interim (4.6 – 5.1 GHz) receivers meet noise temp and amp/phase stability goals. Full EVLA BW (4 – 8 GHz) tests show no BW limiting factors after polarizer. Interim receiver production keeping pace with antenna refurbishment schedule. EVLA full-bandwidth version awaits only the 4 – 8 GHz OMT design completion. 4 – 8 GHz OMT design completion will follow 1 – 2 GHz OMT design evaluation (in-progress). No technical or production problems anticipated.

19 Dan MertelyEVLA Front-End CDR – C-Band Receiver April 24, 2006 19 Summary M&S Budget - $237.3K already spent out of $603.0K allotment –Remaining large ticket items- Quad-ridge OMT’s - LNA’s - Cables - New Card Cages Many of the significant components have already been ordered and received for the entire build with component prices at or below our original estimates. To keep within the EVLA Project spend profile, it was felt that the upgraded design was low risk and that we could confidently proceed with mass production. We hope the FE CDR Panel agrees with this action…


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