BT1-0026 MARKIMICROWAVE | Alldatasheet
Document overview
- Manufacturer or author: Provided By ALLDATASHEET.COM(FREE DATASHEET DOWNLOAD SITE)
- PDF pages: 5
Technical content
Features
Broadband: 50 kHz to 26.5 GHz Low Insertion Loss High Power Non-Resonant Compact Size Electrical Specifications - Specifications guaranteed from -55 to +100°C, measured in a 50Ω system. Parameter Frequency Range Min Typ Max Insertion Loss (dB) 200 kHz-26.5 GHz 1 2 50-200 kHz 2 DC Port Isolation (dB) 50 kHz -1 GHz 50 1-26.5 GHz 30 Return Loss (dB) 50 kHz-26.5 GHz RF Power (W) 10 DC Current (A) DC Voltage (V) 50 DC Resistance (Ω) 1 Inductance (uH) 330 Capacitance (nF) 100 Weight (g) 23.5 Risetime /Falltime (ps)1 10 1Specified as 90%/10%. Calculated from bt2 = (out2 – in2) D/C 50 kHz-26.5 GHz BT10026 .57 .28 1.060 .070 .600 .460 .045 Alternate Bias Pin SMC Female Bias Port Ø.100 Thru 2 PL 1.420 .300 .190 .38 Typ .51 Typ .27 Typ INCH [MM] PROJECTION [7.62] [4.83] [9.65] [12.95] [6.86] Note: Bias-Tee Connectors are not removeable. microwave [26.92] [15.24] [11.68] [1.14] [1.78] [14.5] [7.2] .200 [1.27] .050 [5.97] .235 [9.40] [11.94] .470 .370 [5.08] .135 [3.43] [2.54] [1.70] Ø.067 Thru[36.07] 4 PL SMA Female SMA Male Connector Type RF in Port Bias The BT1-0026 is constructed using a custom -made, resonance-free conical inductor to achieve extremely broadband performance. By minimizing the overall inductor size and using proprietary packaging techniques, the BT 1-0026 is a superior option in terms of performance, reliability and ease -of-use when compared to cumbersome user-designed bias tees employing off -the-shelf conical inductors. The extremely low cutoff and resonance free operation makes th e BT1 -0026 suitable for biasing amplifiers, lasers, and modulators driven with high frequency data patterns.
Copyright © 2020 Marki Microwave, Inc. All Rights Reserved| Rev. C HIGH POWER BIAS TEE BT1-0026 Page 2 Schematic Application Examples Fig. 1. Example Schematics of a) Broadband Microwave Amplifier Biasing, b) Laser/LED Biasing for Data Communication and c) Mach-Zender Modulator Biasing for Data Communication Typical Performance Fig. 2. RF insertion loss. Fig. 3. Return loss. HIGH POWER BIAS TEE BT1-0026 -10 0 3 6 9 12 15 18 21 24 27 Insertion Loss (dB) Frequency (GHz) -25 -20 -15 -10 0 3 6 9 12 15 18 21 24 27 Return Loss (dB) Frequency (GHz) RF Port Common Port RF DC Common (RF+DC)
Copyright © 2020 Marki Microwave, Inc. All Rights Reserved | Rev. C Page 3 Fig. 4. Low frequency RF response. Fig. 6. DC-RF isolation. Fig. 8. Group delay. Fig. 5. Low frequency isolation. Fig. 7. Near DC isolation Fig. 9. Performance over temperature -50 -40 -30 -20 -10 0 3 6 9 12 15 18 21 24 27 Isolation (dB) Frequency (GHz) 100 120 140 160 180 0 3 6 9 12 15 18 21 24 27 Group Delay (ps) Frequency (GHz) -10 -25 -20 -15 -10 0 3 6 9 12 15 18 21 24 27 Insertion Loss (dB) Common Port Return Loss (dB) Frequency (GHz) 5C 85C
Copyright © 2020 Marki Microwave, Inc. All Rights Reserved | Rev. C HIGH POWER BIAS TEE BT1-0026 Page 4 Typical Performance vs Bias Current at Low frequencies Fig. 10. Insertion Loss vs Bias Current. Fig. 11. Input Return Loss vs Bias Current. Fig. 12. Output Return Loss vs Bias Current.
Copyright © 2020 Marki Microwave, Inc. All Rights Reserved | Rev. C HIGH POWER BIAS TEE BT1-0026 Page 5 Fig. 13. Oscilloscope measurements of the BT1-0026 with a 10Gb/s PR BS pattern. Eye diagrams are taken with a 2 31-1 PRBS input demonstrating minimal eye distortion/closure afforded by the extremely low frequency operation of the bias tee. Model Number Description BT1-0026 50 kHz to 26.5 GHz High Power Bias Tee with SMA connectors1, LEAD-FREE/RoHS COMPLIANT 1Consult factory for other connector options. Marki Microwave reserves the right to make changes to the product(s) or information contained herein without notice. Marki Microwave makes no warranty, representation or guarantee regarding the suitability of its products for any particular purpose, nor does Marki Mi crowave assume any liability whatsoever arising out of the use of or application of any product.
Revision History
Revision code Revision Date Comment - September 2012 Datasheet Initial Release A February 2019 Corrected Low Frequency plots B April 2020 Performance vs Bias current plots C June 2020 Updated Outline Drawing INPUT OUTPUT