SLOSEF5 June   2026 TRF1218

ADVANCE INFORMATION  

  1.   1
  2. 1Features
  3. 2Applications
  4. 3Description
  5. 4Pin Configuration and Functions
  6. 5Specifications
    1. 5.1 Absolute Maximum Ratings
    2. 5.2 ESD Ratings
    3. 5.3 Recommended Operating Conditions
    4. 5.4 Thermal Information
    5. 5.5 Electrical Characteristics
  7. 6Device and Documentation Support
    1. 6.1 Device Support
      1. 6.1.1 Third-Party Products Disclaimer
    2. 6.2 Documentation Support
      1. 6.2.1 Related Documentation
    3. 6.3 Receiving Notification of Documentation Updates
    4. 6.4 Support Resources
    5. 6.5 Trademarks
    6. 6.6 Electrostatic Discharge Caution
    7. 6.7 Glossary
  8. 7Revision History
  9. 8Mechanical, Packaging, and Orderable Information
    1. 8.1 Package Option Addendum
    2. 8.2 Tape and Reel Information
    3. 8.3 Mechanical Data

Electrical Characteristics

at TA = 25°C, VDD = 5V, 50Ω single-ended input, and 50Ω differential output (unless otherwise noted)
PARAMETER TEST CONDITIONS MIN TYP MAX UNIT
AC PERFORMANCE
SSBW Small-signal 3dB bandwidth VO = 0.1VPP 25 GHz
LSBW Large-signal 3dB bandwidth VO = 1VPP 25 GHz
1dB BW 1dB bandwidth VO = 1VPP 23.5 GHz
Sds21 Power gain f = 0.5GHz 16.3 dB
f = 2GHz 16.1
f = 4GHz 16
f = 8GHz 15.9
f = 10GHz 15.7
f = 12GHz 15.6
f = 14GHz 15.9
f = 16GHz 16.6
f = 18GHz 17.3
f = 20GHz 17.5
Sss11 Single-ended input return loss f = 10MHz to 20GHz –15 dB
Sdd22 Differential output return loss f = 10MHz to 20GHz –10 dB
Ssd12 Reverse isolation f = 10MHz to 20GHz -45 dB
ImbGAIN Gain imbalance f = 10MHz to 20GHz 0.2 dB
ImbPHASE Phase imbalance f = 10MHz to 20GHz 3 °
CMRR Common-mode rejection ratio(1) f = 10MHz to 12GHz –35 dB
f = 12GHz to 20GHz –30
HD2 Second-order harmonic distortion PO = 3dBm f = 0.5GHz –68.5 dBc
f = 2GHz –70
f = 6GHz –53.5
f = 8GHz –62
HD3 Third-order harmonic distortion PO = 3dBm f = 0.5GHz –68.3 dBc
f = 2GHz –60.3
f = 4GHz –56
f = 6GHz –50
OIP2 Output second-order intercept point PO = 0dBm per tone,
10MHz spacing
f = 0.5GHz 64.5 dBm
f = 2GHz 64.8
f = 6GHz 49.9
f = 8GHz 60.4
PO = –4dBm per tone,
10MHz spacing
f = 0.5GHz 66
f = 2GHz 67
f = 6GHz 52
f = 8GHz 62
IMD2 Second-order intermodulation distortion PO = –4dBm per tone,
10MHz spacing
f = 0.5GHz –70 dBc
f = 2GHz –71
f = 6GHz –56
f = 8GHz –66
OIP3 Output third-order intercept point PO = 0dBm per tone,
10MHz spacing
f = 0.5GHz 36 dBm
f = 2GHz 32.4
f = 4GHz 30.9
f = 8GHz 28.7
f = 10GHz 27.3
f = 12GHz 25.5
f = 14GHz 23.9
f = 16GHz 22
f = 18GHz 21
PO = –4dBm per tone,
10MHz spacing
f = 0.5GHz 34.5
f = 2GHz 32
f = 4GHz 31
f = 8GHz 29
f = 10GHz 27.8
f = 12GHz 26.4
f = 14GHz 24.5
f = 16GHz 22.8
f = 18GHz 22
IMD3 Third-order intermodulation distortion PO = –4dBm per tone,
10MHz spacing
f = 0.5GHz –77 dBc
f = 2GHz –72
f = 4GHz –70
f = 8GHz –66
f = 10GHz –64
f = 12GHz –61
f = 14GHz –57
f = 16GHz –54
f = 18GHz –52
OP1dB Output 1dB compression point f = 0.5GHz 11.8 dBm
f = 2GHz 11.8
f = 4GHz 12.6
f = 8GHz 13.1
f = 10GHz 12.6
f = 12GHz 12.9
f = 14GHz 13.4
f = 16GHz 13.1
f = 18GHz 13.8
NF Noise Figure f = 0.5GHz 9.3 dB
f = 2GHz 9.3
f = 4GHz 10
f = 8GHz 11
f = 10GHz 12
f = 12GHz 12.5
f = 14GHz 12.8
f = 16GHz 13.2
f = 18GHz 13.5
IMPEDANCE
ZO-DIFF Differential output impedance f = dc (internal to the device) 26.5 Ω
RINM Internal INM resistance Internal INM resistance 50 Ω
CINM Internal INM capacitance Internal INM capacitance 12.5 pF
TRANSIENT
tREC Overdrive recovery time Using a –0.5VP input pulse of 2ns duration TBD ns
POWER SUPPLY
IQA Active current Current on VDD pin, PD = 0 190 mA
IQPD Power-down quiescent current Current on VDD pin, PD = 1 20 mA
ENABLE
VPDHIGH PD pin logic high 1.45 V
VPDLOW PD pin logic low 0.8 V
IPDBIAS PD bias current (current on PD pin) PD = high (1.8V logic) 40 100 µA
PD = high (3.3V logic) 200 250
CPD PD pin capacitance 2 pF
tON Turn-on time 50% VPD to 90% RF TBD ns
tOFF Turn-off time 50% VPD to 10% RF TBD ns
Calculated using the formula (S21 – S31) / (S21 + S31). Port-1: INP, Port-2: OUTP, Port-3: OUTM.