TMXU392 RAKON | Alldatasheet

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Technical content

Issue: Rev 4, 10 January 2023 Specifications are subject to change without notice Copyright © 2016 to 2023 Rakon Limited. All rights reserved www.rakonxpress.com Table of Contents TMX U392 SAW Filter datasheet 3.0 x 3.0 x 1.3 mm, SMD

SAW Bandpass Filters | Wireless Communications Issue: Rev 4, 10 January 2023 Specifications are subject to change without notice Copyright © 2016 to 2023 Rakon Limited. All rights reserved Page 1 of 6 www.rakonxpress.com

Features

Parameter Min. Typ. Max. Unit Storage temperature range (Tstg) -40 85 °C Operating temperature range (TA) 0 70 °C Maximum Input Power Handling 15 dBm Frequency and Electrical Characteristics (Reference temperature @ 25°C) Parameter Min. Typ.1 Max. Unit Center frequency (fc) 915 MHz Bandwidth (BW, passband width) 26.00 MHz Insertion Loss (IL, 902 – 928 MHz) 2.5 3.3 dB Amplitude ripple (902 – 928 MHz) 0.5 1.5 dB Absolute Attenuation From 100 to 800 MHz From 800 to 845 MHz From 845 to 880 MHz From 947 to 992 MHz From 992 to 1020 MHz From 1020 to 1200 MHz dB Temperature coefficient of frequency -30.0 ppm/K Source impedance2 (Single ended) 50 Ω Load impedance2 (Single ended) 50 Ω

1 Typical values are nominal performances at room temperature

2 No external matching is required

Features Applications 3.0 x 3.0 x 1.3 mm  915 MHz frequency  Ceramic package for Surface Mounted Technology  Passband: 26 MHz  No external matching is required  Remote control - RF  Wireless applications: o Home appliances o Security systems

SAW Bandpass Filters | Wireless Communications Issue: Rev 4, 10 January 2023 Specifications are subject to change without notice Copyright © 2016 to 2023 Rakon Limited. All rights reserved Page 2 of 6 www.rakonxpress.com Model Outline, Pin Connection and Marking Test Circuit Pin Connections

2 Input

5 Output

1, 3, 4, 6 Case Ground Marking Note Line 1 U392 RakonXpress designation Line 2 S638 S = Production Code 6 = Year 2016 38 = week 38 Line 3 • AA • = Identify black dot AA = Internal Code (Wafer Batch) Unit: mm 50 Ω / 50 Ω Configuration DUT Input Single, 50 Ω Output Single, 50 Ω GND 1, 3, 4, 6 1.5±0.2 FRONT VIEW 1.5 max 1.8 BOTTOM VIEW 1.6 0.7 (x5) 0.6 (x6) RECOMMENDED PAD LAYOUT TOP VIEW 2.15 2.20 0.80 (x6) 1.70 1.05 (x5) 3.0 ±0.13 SQ TOP VIEW U392 S638

  • AA

SAW Bandpass Filters | Wireless Communications Issue: Rev 4, 10 January 2023 Specifications are subject to change without notice Copyright © 2016 to 2023 Rakon Limited. All rights reserved Page 3 of 6 www.rakonxpress.com Frequency Characteristics TYPICAL S21 RESPONSE

SAW Bandpass Filters | Wireless Communications Issue: Rev 4, 10 January 2023 Specifications are subject to change without notice Copyright © 2016 to 2023 Rakon Limited. All rights reserved Page 4 of 6 www.rakonxpress.com Recommended Reflow Soldering Profile NOTE:

  • The components shall remain within the electrical specifications after it soldered on the 1mm thickness PCB board and dipped in the solder at 260 ±5°C during 10 ± 1 seconds.
  • The components shall remain within the electrical specifications after it soldered by electric iron, solder at 350 ± 10 °C during 3~4 seconds. Recovery time: 2 ±0.5h.
  • Ultrasonic cleaning may cause deterioration and destruction of the component. Please avoid ultrasonic cleaning.
  • Only leads of component may be soldered. Please avoid soldering another part of component. 100 120 140 160 180 200 220 240 260 280 100 120 140 160 180 200 220 240 260 280 300 320 340 360 Time (Sec) Temp ( Deg C)

SAW Bandpass Filters | Wireless Communications Issue: Rev 4, 10 January 2023 Specifications are subject to change without notice Copyright © 2016 to 2023 Rakon Limited. All rights reserved Page 5 of 6 www.rakonxpress.com Tape and Reel Specifications TAPE DETAILS: REEL DETAILS: NOTE:  Unit: mm  Standard Packing Quantity (SPQ) is 3000 pieces/ reel Parameter Code Dimension Tolerance Height of component hole A 3.3 max Width of component hole B 3.3 max Diameter of sprocket hole D0 Φ 1.5 ± 0.1 Diameter of feed hole D1 Φ 1.5 ± 0.25 Pitch of sprocket hole P0 4.0 ± 0.2 Length from hole center to component center P1 4.0 ± 0.1 Length from Pocket hole center to sprocket hole center P2 2.0 ± 0.2 Width of carrier tape W 12.0 ± 0.3 Width of adhesive tape F 5.5 ± 0.3 Gap of hold down tape and carrier tape E 1.75 ± 0.1 Thickness of Ebossed tape sheet t1 0.31 max Thickness of Ebossed tape t2 1.7 max Tape running direction U392 S638

  • AA Tape running direction

SAW Bandpass Filters | Wireless Communications Issue: Rev 4, 10 January 2023 Specifications are subject to change without notice Copyright © 2016 to 2023 Rakon Limited. All rights reserved Page 6 of 6 www.rakonxpress.com Reliability Test Parameter Test condition / Description Thermal Shock The components shall remain within the electrical specifications after being kept at the condition of heat cycle conditions: TA=-40°C ±3°C, TB=85°C ±2°C, t1=t2=30min, switch time ≤3min & cycle time: 100 times, recovery time: 2h±0.5h. Temperature Storage High Temperature Storage: The components shall remain within the electrical specifications after being kept at the 85°C ±2°C for 500 hours, recovery time: 2h ±0.5h. Low Temperature Storage: The components shall remain within the electrical specifications after being kept at the -40°C ±3°C for 500 hours, recovery time: 2h ±0.5h. Humidity test The components shall remain within the electrical specifications after being kept at the condition of ambient temperature 60°C ±2°C, and 90~95% RH for 500 hours. Drop test The components shall remain within the electrical specifications after random free drops 10 times from height of 1.0 meter onto concrete floor, and the specimens shall meet the electrical specifications. Vibration Fatigue The components shall remain within the electrical specifications after loaded vibration at 10~55Hz, amplitude 1.5mm, X, Y, Z, direction, during 2 hours. Mechanical Shock The components shall remain within the electrical specifications after 1000 shocks, acceleration 392 m/s2 , duration 6ms. Note As a result of the particularity of inner structure of SAW products, the components can easily be breakdown by electrostatic shock; so it’s mandatory to pay attention to ESD protect during the tests.