F1180 RENESAS | Alldatasheet

Document overview

  • Manufacturer or author: Renesas Electronics Corporation
  • PDF pages: 43

Technical content

Dual Path Lowband RF Receiver 1400MHz to 2700MHz F1180 Datasheet RF Receiver 1 February 8, 2022

DESCRIPTION

This document describes the specifications for the F1180 Dual Path RF Receiver consisting of an RF Amplifier w/bypass function, Digital Step Attenuator (DSA), and RF Mixer in each signal path. Applications include Multi-mode, Multi-carrier BaseStation Receivers & Repeaters. The F1180 supports the following frequencies: RF from 1400MHz to 2700MHz, LO from 1350MHz to 2900MHz, and IF from 25MHz to 400MHz. Refer to the Part # Matrix below describing the complete series. The F1180 RF front-end offers 16.5dB gain with 3.5dB NF and +38dBm OIP3 performance at 2100MHz. The digital step attenuator provides 30dB adjustment range in 2dB steps via the SPI interface controller. For strong signal conditions, each RF amplifier can be configured to be internally bypassed via the SPI interface. The RF front-end output and mixer input signals are bonded to separate pins to allow interstage image-reject filtering. Each of the dual mixer paths provide 8.2dB power gain, 10.5dB NF and +35dBm OIP3 performance. An external LO signal is applied to the mixer LO port. This device is packaged in a 7 x 7 mm, 48-pin Thin QFN with 50 ohm single-ended RF & LO inputs and 200 ohm differential IF output impedance for ease of integration into the receiver lineup. COMPETITIVE ADVANTAGE This device integrates the critical elements and features necessary for high performance 3G and 4G receivers in TDD and FDD wireless infrastructure  The Amplifier bypass option improves SNR in signal blocking conditions and reduces power consumption.  The on-chip 4-bit RF digital step attenuator (DSA) has very low insertion loss and low distortion.  The device is optimized for < 1.9 Watts of power consumption with both paths on.  The device has fast-settling independent power down modes for each channel for TDD applications.  The mixer provides outstanding linearity and 2x2 performance (OIP3 > 35 dBm).

FEATURES

  • Dual Path RF amp, DSA, RF Mixer and IF amp for Diversity / MIMO Receivers
  • for Diversity / MIMO Receivers
  • RF: 1400MHz to 2700MHz
  • LO: 1350MHz to 2900MHz
  • IF: 25MHz to 400MHz
  • Bypassable RF amplifiers for blockers
  • 16.5dB RF front-end power gain
  • +38dBm RF front-end OIP3 (Bypass OFF)
  • +40dBm RF front-end OIP3 (Bypass ON)
  • 3.5dB front-end NF at 2100MHz
  • 8.2dB mixer power gain
  • +35dBm mixer OIP3
  • 50 Ω RF & LO impedance
  • 200 Ω differential IF output impedance
  • Independent CHA, CHB path standby mode
  • 30dB gain control range, 2dB steps
  • 3 bit SPI control
  • ICC = 365mA
  • 7 x 7 mm, 48-pin VFQFPN package FUNCTIONAL BLOCK DIAGRAM PART# MATRIX Part# RF freq range (MHz) UTRA bands IF freq range (MHz) LO freq range (MHz) F1130 400 - 1100 5,6,8,12,13,14,1 718,19,20, 26 25 – 400 500 - 1300 F1180 1400 - 2700 1,2,3,4,7,9,10, 11,15,16,21,23, 24,25,33,34,35, 36,37,39,40,41 25 – 400 1350 - 2900 IFOUT_A+ IFOUT_A- BPF IFOUT_B+ IFOUT_B- BPF RFIN_A RFIN_B DATA CLK CSb RF VCO Decode Logic STBY 2

Dual Path Lowband RF Receiver 1400MHz to 2700MHz F1180 Datasheet RF Receiver 2 February 8, 2022 ABSOLUTE MAXIMUM RATINGS Parameter Symbol Min Max Units VCC to GND VCC -0.3 +5.5 V SPI DATA, SPI LE, SPI CLK, STBY_A, STBY_B VLogic -0.3 Vcc + 0.25 V IFOUT_A+, IFOUT_A-, IFOUT_B+, IFOUT_B-, IIF 1.00 Vcc + 0.30 V LO_IN, RFIN_A, RFIN_B, MIXRFIN_A, MIXRFIN_B VCntl -0.3 +0.30 V LO_BIAS VLO +2.1 +4.0 V RFA_BIAS, RFB_BIAS VRFIN -0.3 +1.50 V RFAMP_BIAS, IFA_BIAS, IFB_BIAS VBias -0.3 +2.20 V RF Input Power applied for 24 hours maximum – Bypass OFF PRFIN_A PRFIN_B +24 dBm RF Input Power applied for 24 hours maximum – Bypass ON PRFIN_A PRFIN_B +22 dBm RF Input Power to Mixer applied for 24 hours maximum PRFMIX_A PRFMIX_B +21 dBm Continuous Power Dissipation Pdiss 2.15 W Junction Temperature Tj 150 °C Storage Temperature Range Tst -65 150 °C Lead Temperature (soldering, 10s) 260 °C ElectroStatic Discharge – HBM (JEDEC/ESDA JS-001-2012) 1500 (Class 1C) Volts ElectroStatic Discharge – CDM (JEDEC 22-C101F) 750 (Class C4) Volts Stresses above those listed above may cause permanent damage to the device. Functional operation of the device at these or any other conditions above those indicated in the operational section of this specification is not implied. Exposure to absolute maximum rating conditions for extended periods may affect device reliability. PACKAGE THERMAL AND MOISTURE CHARACTERISTICS θJA (Junction – Ambient) 32 °C/W θJC (Junction – Case) [The Case is defined as the exposed paddle] 3 °C/W Moisture Sensitivity Rating (Per J-STD-020) MSL1

Dual Path Lowband RF Receiver 1400MHz to 2700MHz F1180 Datasheet RF Receiver 3 February 8, 2022 F1180 RECOMMENDED OPERATING CONDITIONS Parameter Symbol Conditions Min Typ Max Units Supply Voltage(s) VCC All VCC pins 4.75 5.25 V Operating Temperature Range TCASE Case Temperature -40 +105 °C RF Freq Range FRF 1400 2700 MHz LO Freq Range FLO 1350 2900 MHz LO Power PLO -3 +3 dBm IF Freq Range FIF 25 400 MHz RF Amplifier Source Impedance ZRFIN_A ZRFIN_B Single Ended 50 Ω RF Amplifier Load Impedance ZRFOUT_A ZRFOUT_B Single Ended 50 Ω Mixer RF Source Impedance ZMXRRFIN_A ZMXRRFIN_B Single Ended 50 Ω Mixer LO Source Impedance ZMXRLOIN_A ZMXRLOIN_B Single Ended 50 Ω Mixer IF Load Impedance ZMXRIFOUT_A ZMXRIFOUT_B Differential 200 Ω

Dual Path Lowband RF Receiver 1400MHz to 2700MHz F1180 Datasheet RF Receiver 4 February 8, 2022 F1180 SPECIFICATION Specifications apply at VCC = +5.00V, TCASE = +25°C, FRF = 2100MHz, FIF = 200MHz, FLO = 1900MHz, PLO = 0dBm, For bypass ON, RF VGA input = +5dBm, for Bypass OFF, RF VGA input = -20dBm/tone, Attenuator = 0dB, STBY_A, STBY_B = GND unless otherwise noted. Trace, Connector, and external transformer losses are de-embedded. Parameter Symbol Conditions Min Typ Max Units General Logic Input High VIH All Control Pins 1.17 V Logic Input Low VIL All Control Pins 0.67 V Logic Current IIH, IIL All Control Pins -140 +20 μA Standby Mode Logic STBY STBY = VIH Power OFF STBY = VIL Power ON Supply Current ICC_ON Bypass OFF, 2 Channels 365 4101 mA ICC_OFF1 Bypass ON, 1 Channels (CHA or CHB) 295 330 ICC_OFF2 Bypass ON, 2 Channels (CHA and CHB) 230 260 ICC_STBY Standby Mode 20 26 RF Switching time3 τRF 10% to 90% risetime 250 ns DSA Settling time3 τSET 10% to 90% risetime 100 ns Turn ON time3 τON 10% to 90% risetime 225 ns Turn OFF time3 τOFF 10% to 90% risetime 25 ns Control Interface SPIBIT 14 bit Serial Clock Speed SPICLK 24 MHz Note 1: Items in min/max columns in bold italics are Guaranteed by Test. Note 2: Items in min/max columns that are not bold/italics are Guaranteed by Design Characterization. Note 3: Speeds are measured after SPI programming is completed (data latched with LE = HIGH). Note 4: Gain across the entire frequency band is affected by the inclusion of the RF switch.

Dual Path Lowband RF Receiver 1400MHz to 2700MHz F1180 Datasheet RF Receiver 5 February 8, 2022 F1180 SPECIFICATION (CONTINUED) Specifications apply at VCC = +5.00V, TCASE = +25°C, FRF = 2100MHz, FIF = 200MHz, FLO = 1900MHz, PLO = 0dBm, For bypass ON, RF VGA input = +5dBm, for Bypass OFF, RF VGA input = -20dBm/tone, Attenuator = 0dB, STBY_A, STBY_B = GND unless otherwise noted. Trace, Connector, and external transformer losses are de-embedded. Parameter Symbol Conditions Min Typ Max Units RF VGA – Bypass OFF Gain4 GVGA FRF = 1400 MHz 18.6 dB FRF = 2100 MHz 15 16.5 18 FRF = 2700 MHz 14.9 Gain Flatness GVGA_FLAT FRF = 1400 MHz to 2700 MHz over any 100 MHz bandwidth ± 0.3 dB Gain Variation GVGA_T Tcase =-40 to +105 °C -0.4 to +0.1 dB Noise Figure NFVGA FRF = 1400 MHz 3.3 dB FRF = 2100 MHz 3.5 FRF = 2700 MHz 3.7 Input 1 dB Pwr Compression IP1dBLBVGA 1.0 dBm Output Third Order Intercept Point OIP3VGA Pout = 0 dBm/Tone,

1 MHz tone separation 342 38 dBm

RF VGA – Bypass ON Gain GBYPASS -4 -3 dB Gain Flatness GBYPASS_FLAT FRF = 1400 MHz to 2700 MHz over any 100 MHz bandwidth ± 0.1 dB Gain Variation GBYPASS_T Tcase =-40 to +105 °C ± 0.25 dB Input 1 dB Pwr Compression IP1dBLBBYPAS S 23 dBm Output Third Order Intercept Point OIP3BYPASS_0 Attenuation = 0dB

1 MHz tone separation 38 40 dBm

Output Third Order Intercept Point OIP3BYPASS_6 Attenuation = 6dB

1 MHz tone separation 32 34 dBm

RF VGA – Bypass ON or OFF DSA Gain Control Range DSARANGE 30 dB DSA Gain Step DSASTEP 2 dB DSA Glitching ATTNA -2.3 +1 dB Gain Accuracy DSAACC ATTN ≤ 6dB -0.4 +0.4 dB ATTN > 6dB ±(0.05 + 0.05*ATTN) Max Channel Isolation ISOA/B RFA Input to RFB Output RFB Input to RFA Output 40 48 dB VGA Input Match S11VGA -15 dB VGA Output Match S22VGA -17 dB Isolation between VGA RFout and Mixer RFin ISOVGA/MIX No Connection between ports 45 48 dB

Dual Path Lowband RF Receiver 1400MHz to 2700MHz F1180 Datasheet RF Receiver 6 February 8, 2022 F1180 SPECIFICATION (CONTINUED) Specifications apply at VCC = +5.00V, TCASE = +25°C, FRF = 2100MHz, FIF = 200MHz, FLO = 1900MHz, PLO = 0dBm, For bypass ON, RF VGA input = +5dBm, for Bypass OFF, RF VGA input = -20dBm/tone, Attenuator = 0dB, STBY_A, STBY_B = GND unless otherwise noted. Trace, Connector, and external transformer losses are de-embedded. Parameter Symbol Conditions Min Typ Max Units RF VGA – Bypass OFF to ON Gain Range Accuracy 5 GRANGE12dB_1 Attenuator = 12dB 6.2 7.3 8.2 dB Attenuator = 12dB Voltage Extremes Temperature Extremes 6.5 7.3 8.2 GRANGE12dB_2 Attenuator = 12dB FRF = 1.5 GHz 8.5 9.3 10.0 GRANGE12dB_3 Attenuator = 12dB FRF = 1.8 GHz 7.5 8.1 8.8 GRANGE12dB_4 Attenuator = 12dB FRF = 2.6 GHz 5.4 6.3 7.1 Note 5: Gain difference between (bypass OFF + X dB attenuation) to (bypass ON + 0dB attenuation)

Dual Path Lowband RF Receiver 1400MHz to 2700MHz F1180 Datasheet RF Receiver 7 February 8, 2022 F1180 SPECIFICATION (CONTINUED) Specifications apply at VCC = +5.00V, TCASE = +25°C, FRF = 2100MHz, FIF = 200MHz, FLO = 1900MHz, PLO = 0dBm, For bypass ON, RF VGA input = +5dBm, for Bypass OFF, RF VGA input = -20dBm/tone, Attenuator = 0dB, STBY_A, STBY_B = GND unless otherwise noted. Trace, Connector, and external transformer losses are de-embedded. Parameter Symbol Conditions Min Typ Max Units Mixer Gain GMXR 7.2 8.2 9.2 dB Gain Flatness GMXR_FLAT FRF = 1400 MHz to 2700 MHz over any 100 MHz bandwidth ± 0.25 dB IF Gain Flatness Bandwidth GIF_FLAT1 Fixed LO Flatness = 0.5 dB 100 MHz GIF_FLAT2 Fixed LO Flatness = 0.8 dB 150 MHz Gain Variation GMXR_T Tcase =-40 to +105 °C -0.9 to 0.7 dB Noise Figure NFMXR 10.5 dB Blocking Noise Figure NFMXR_BLK +100 MHz offset Pin (Blocker) = + 4dBm 15 dB Input 1 dB Compression IP1dBMXR 7 9 dBm Output Third Order Intercept Point OIP3MXR 1 MHz tone separation 32 35 dBm Output Second Order Intercept Point OIP2MXR 1 MHz tone separation 58 dBm 2RF – 2LO rejection 2x2MXR FRF – FIF/2 65 dBc 3RF – 3LO rejection 3x3MXR Frequency = FRF – 2*FIF/3 72 dBc Second Harmonic HD2MXR 67 dBc Third Harmonic HD3MXR 82 dBc Settling Time τMXR_SET Pin = -13 dBm STBY VIH to VIL Time for IF to settle to 0.1 dB of final value 170 ns Mixer RF Input Match S11MXR_RF -16 dB Mixer LO Input Match S11MXR_LO -14 dB Mixer IF Output Match S22MXR_IF -19 dB Channel Isolation ISOIF IFOUT_A to IFOUT_B 63 dBc RF to IF Isolation ISORI Pin = -10 dBm Ratio of IF level to RF leakage at IF port 48 dBc LO to RF Leakage ISOLR -33 dBm LO to IF Leakage ISOLI -30 dBm Note 1: Items in min/max columns in bold italics are Guaranteed by Test. Note 2: Items in min/max columns that are not bold/italics are Guaranteed by Design Characterization. Note 3: Speeds are measured after SPI programming is completed (data latched with LE = HIGH). Note 4: Gain across the entire frequency band is affected by the inclusion of the RF switch.

Dual Path Lowband RF Receiver 1400MHz to 2700MHz F1180 Datasheet RF Receiver 8 February 8, 2022 Serial Control Mode Data is clocked in LSB first via serial mode. Serial data is formatted as a 14-bit word. The 14-bit word contains logic for bypass mode, 4-bit attenuator setting, and guard bit. Each word contains the following sequence: Table 1 - 14 Bit SPI Word Sequence D13 RX Path 2 bypass mode D12 Guard bit D11 RX Path 1 bypass mode D10 Guard bit D9 Attenuator 2 D8 Attenuator 2 D7 Attenuator 2 D6 Attenuator 2 D5 Guard bit D4 Attenuator 1 D3 Attenuator 1 D2 Attenuator 1 D1 Attenuator 1 D0 Guard bit Figure 1 - Serial Register Timing Diagram PIN 8 LATCH ENABLE (LE): When LE is high (> VIH), the CLK input is disabled. IDT recommends keeping LE high to reduce F1180 sensitivity to CLK bus noise when SPI is not being programmed. When LE is low (< VIL), the DATA word can be programmed into the shift registers. The programmed word is then latched into F1180 on the LE rising edge (refer to Figure 1). End of data occurs after 14th bit. Attenuator 1 CLK (pin 7) DATA (pin 6) Attenuator 2 RX1 bypass RX2 bypass D13D0 Clock in LSB first Increasing time Designates guard bit LE (pin 8) Data Word Latched into Active Register

Dual Path Lowband RF Receiver 1400MHz to 2700MHz F1180 Datasheet RF Receiver 9 February 8, 2022 Table 2 – Attenuator Data Word Bit Sequence Attenuation Setting Attenuator 1 D4, D3, D2, D1 Attenuator 2 D9, D8, D7, D6 Insertion Loss 0000 0000 2 dB 0001 0001 4 dB 0010 0010 6 dB 0011 0011 8 dB 0100 0100 10 dB 0101 0101 12 dB 0110 0110 14 dB 0111 0111 16 dB 1000 1000 18 dB 1001 1001 20 dB 1010 1010 22 dB 1011 1011 24 dB 1100 1100 26 dB 1101 1101 28 dB 1110 1110 30 dB 1111 1111 Table 3 - RF Bypass Data Word Bit Sequence RF Switch ByPass Mode RX1 D11 RX2 D13 OFF 0 0 ON 1 1 DEFAULT REGISTER SETTING: After power on, the default setting for the VGA is Bypass OFF mode with attenuation set to 30dB. This means the amplifier is in the signal path.

Dual Path Lowband RF Receiver 1400MHz to 2700MHz F1180 Datasheet RF Receiver 10 February 8, 2022 SPI TIMING: Figure 2 - SPI Timing Diagram Table 4 - SPI Preset Timing Parameters Calcuated for 24 MHz Parameter Symbol Min Typ Max Units Clock Frequency 24 MHz Data Setup 20.83 ns Data Hold 20.83 ns Data to CLK Setup Time 5 ns Data to CLK Hold Time 5 ns Data Valid 30.83 ns LE to CLK Setup Time 5 ns CLK to LE Setup Time 5 ns LE Pulse Time 20 ns CLK DATA LE t2 t3 t4 t5 t8

Dual Path Lowband RF Receiver 1400MHz to 2700MHz F1180 Datasheet RF Receiver 11 February 8, 2022 TYPICAL OPERATING CONDITIONS (TOC) Unless otherwise noted for the TOC graphs on pages XX to YY, the following conditions apply.

  • VCC = +5.00 V
  • TCASE = +25 °C
  • FRF = 2100 MHz
  • FIF = 200 MHz
  • FLO = 1900 MHz
  • PLO = 0 dBm
  • RF VGA output = -5 dBm/tone
  • RF Mixer output = 0 dBm/tone
  • Attenuator = 0 dB
  • STBY_A, STBY_B = GND

Dual Path Lowband RF Receiver 1400MHz to 2700MHz F1180 Datasheet RF Receiver 12 February 8, 2022 VGA BYPASS OFF: TYPICAL OPERATING CONDITIONS (- 1 -) Gain vs. Tcase [GVGA] Output IP3 vs. Tcase [OIP3VGA] Channel Isolation vs. Tcase [ISOA/B] Gain vs. Vcc [GVGA] Output IP3 vs. Vcc [OIP3VGA] Channel Isolation vs. Vcc [ISOA/B] 1300 1500 1700 1900 2100 2300 2500 2700 2900 Gain (dB) RF Frequency (MHz) 105degC - 5V - OFF - CHA 105degC - 5V - OFF - CHB 25degC - 5V - OFF - CHA 25degC - 5V - OFF - CHB -40degC - 5V - OFF - CHA -40degC - 5V - OFF - CHB 1300 1500 1700 1900 2100 2300 2500 2700 2900 Output IP3 (dBm) RF Frequency (MHz) 105degC - 5V - OFF - CHA 105degC - 5V - OFF - CHB 25degC - 5V - OFF - CHA 25degC - 5V - OFF - CHB -40degC - 5V - OFF - CHA -40degC - 5V - OFF - CHB 1300 1500 1700 1900 2100 2300 2500 2700 2900 Channel Isolation (dBc) RF Frequency (MHz) 105degC - 5V - OFF - CHA 105degC - 5V - OFF - CHB 25degC - 5V - OFF - CHA 25degC - 5V - OFF - CHB -40degC - 5V - OFF - CHA -40degC - 5V - OFF - CHB 1300 1500 1700 1900 2100 2300 2500 2700 2900 Gain (dB) RF Frequency (MHz) 25degC - 4.75V - OFF - CHA 25degC - 4.75V - OFF - CHB 25degC - 5V - OFF - CHA 25degC - 5V - OFF - CHB 25degC - 5.25V - OFF - CHA 25degC - 5.25V - OFF - CHB 1300 1500 1700 1900 2100 2300 2500 2700 2900 Output IP3 (dBm) RF Frequency (MHz) 25degC - 4.75V - OFF - CHA 25degC - 4.75V - OFF - CHB 25degC - 5V - OFF - CHA 25degC - 5V - OFF - CHB 25degC - 5.25V - OFF - CHA 25degC - 5.25V - OFF - CHB 1300 1500 1700 1900 2100 2300 2500 2700 2900 Channel Isolation (dBc) RF Frequency (MHz) 25degC - 4.75V - OFF - CHA 25degC - 4.75V - OFF - CHB 25degC - 5V - OFF - CHA 25degC - 5V - OFF - CHB 25degC - 5.25V - OFF - CHA 25degC - 5.25V - OFF - CHB

Dual Path Lowband RF Receiver 1400MHz to 2700MHz F1180 Datasheet RF Receiver 13 February 8, 2022 VGA BYPASS OFF: TYPICAL OPERATING CONDITIONS (- 2 -) Gain Accuracy [DSAACC 1400MHz] Gain Accuracy [DSAACC 2100MHz] Gain Accuracy [DSAACC 2700MHz] OIP3 vs. Attenuation [1400MHz] OIP3 vs. Attenuation [2100MHz] OIP3 vs. Attenuation [2700MHz] -2.0 -1.6 -1.2 -0.8 -0.4 0.0 0.4 0.8 1.2 1.6 2.0 0 2 4 6 8 10 12 14 16 18 20 22 24 26 28 30 105 C / 5.00 V / CH A 105 C / 5.00 V / CH B 25 C / 5.00 V / CH A 25 C / 5.00 V / CH B -40 C / 5.00 V / CH A -40 C / 5.00 V / CH B Attenuator Setting (dB) Gain INL (dB) -2.0 -1.6 -1.2 -0.8 -0.4 0.0 0.4 0.8 1.2 1.6 2.0 0 2 4 6 8 10 12 14 16 18 20 22 24 26 28 30 105 C / 5.00 V / CH A 105 C / 5.00 V / CH B 25 C / 5.00 V / CH A 25 C / 5.00 V / CH B -40 C / 5.00 V / CH A -40 C / 5.00 V / CH B Attenuator Setting (dB) Gain INL (dB) -2.0 -1.6 -1.2 -0.8 -0.4 0.0 0.4 0.8 1.2 1.6 2.0 0 2 4 6 8 10 12 14 16 18 20 22 24 26 28 30 105 C / 5.00 V / CH A 105 C / 5.00 V / CH B 25 C / 5.00 V / CH A 25 C / 5.00 V / CH B -40 C / 5.00 V / CH A -40 C / 5.00 V / CH B Attenuator Setting (dB) Gain INL (dB) -10 0 2 4 6 8 10 12 14 16 18 20 22 24 26 28 30 105 C / 5.00 V / CH A 105 C / 5.00 V / CH B 25 C / 5.00 V / CH A 25 C / 5.00 V / CH B -40 C / 5.00 V / CH A -40 C / 5.00 V / CH B Attenuator Setting (dB) Output IP3 (dBm) -10 0 2 4 6 8 10 12 14 16 18 20 22 24 26 28 30 105 C / 5.00 V / CH A 105 C / 5.00 V / CH B 25 C / 5.00 V / CH A 25 C / 5.00 V / CH B -40 C / 5.00 V / CH A -40 C / 5.00 V / CH B Attenuator Setting (dB) Output IP3 (dBm) -10 0 2 4 6 8 10 12 14 16 18 20 22 24 26 28 30 105 C / 5.00 V / CH A 105 C / 5.00 V / CH B 25 C / 5.00 V / CH A 25 C / 5.00 V / CH B -40 C / 5.00 V / CH A -40 C / 5.00 V / CH B Attenuator Setting (dB) Output IP3 (dBm)

Dual Path Lowband RF Receiver 1400MHz to 2700MHz F1180 Datasheet RF Receiver 14 February 8, 2022 VGA BYPASS OFF: TYPICAL OPERATING CONDITIONS (- 3 -) Gain vs. Input Power [1400MHz] Gain vs. Input Power [2100MHz] Gain vs. Input Power [2700MHz] OIP3 vs. Input Power [1400MHz] OIP3 vs. Input Power [2100MHz] OIP3 vs. Input Power [2700MHz] -20 -18 -16 -14 -12 -10 -8 -6 -4 -2 0 2 4 6 Gain (dB) Input Power (dBm) 105degC - 5V - OFF - CHA - 1400 105degC - 5V - OFF - CHB - 1400 25degC - 5V - OFF - CHA - 1400 25degC - 5V - OFF - CHB - 1400 -40degC - 5V - OFF - CHA - 1400 -40degC - 5V - OFF - CHB - 1400 -20 -18 -16 -14 -12 -10 -8 -6 -4 -2 0 2 4 6 Gain (dB) Input Power (dBm) 105degC - 5V - OFF - CHA - 2100 105degC - 5V - OFF - CHB - 2100 25degC - 5V - OFF - CHA - 2100 25degC - 5V - OFF - CHB - 2100 -40degC - 5V - OFF - CHA - 2100 -40degC - 5V - OFF - CHB - 2100 -20 -18 -16 -14 -12 -10 -8 -6 -4 -2 0 2 4 6 Gain (dB) Input Power (dBm) 105degC - 5V - OFF - CHA - 2700 105degC - 5V - OFF - CHB - 2700 25degC - 5V - OFF - CHA - 2700 25degC - 5V - OFF - CHB - 2700 -40degC - 5V - OFF - CHA - 2700 -40degC - 5V - OFF - CHB - 2700 -20 -18 -16 -14 -12 -10 -8 -6 -4 -2 0 2 4 6 Output IP3 (dBm) RF Input Power (dBm) 105degC - 5V - OFF - CHA - 1400 105degC - 5V - OFF - CHB - 1400 25degC - 5V - OFF - CHA - 1400 25degC - 5V - OFF - CHB - 1400 -40degC - 5V - OFF - CHA - 1400 -40degC - 5V - OFF - CHB - 1400 -20 -18 -16 -14 -12 -10 -8 -6 -4 -2 0 2 4 6 Output IP3 (dBm) RF Input Power (dBm) 105degC - 5V - OFF - CHA - 2100 105degC - 5V - OFF - CHB - 2100 25degC - 5V - OFF - CHA - 2100 25degC - 5V - OFF - CHB - 2100 -40degC - 5V - OFF - CHA - 2100 -40degC - 5V - OFF - CHB - 2100 -20 -18 -16 -14 -12 -10 -8 -6 -4 -2 0 2 4 6 Output IP3 (dBm) RF Input Power (dBm) 105degC - 5V - OFF - CHA - 1400 105degC - 5V - OFF - CHB - 1400 25degC - 5V - OFF - CHA - 1400 25degC - 5V - OFF - CHB - 1400 -40degC - 5V - OFF - CHA - 1400 -40degC - 5V - OFF - CHB - 1400

Dual Path Lowband RF Receiver 1400MHz to 2700MHz F1180 Datasheet RF Receiver 15 February 8, 2022 VGA BYPASS OFF: TYPICAL OPERATING CONDITIONS (- 4 -) Input Match – [S11VGA] Noise Figure [NFVGA], +25 °C Output Match – [S22VGA] -40 -35 -30 -25 -20 -15 -10 1300 1500 1700 1900 2100 2300 2500 2700 2900 Channel A Channel B RF Frequency (MHz) VGA Input Return Loss (dB) 1300 1500 1700 1900 2100 2300 2500 2700 2900 4.75 V 5.00 V 5.25 V RF Frequency (MHz) Noise Figure (dB) -40 -35 -30 -25 -20 -15 -10 1300 1500 1700 1900 2100 2300 2500 2700 2900 Channel A Channel B RF Frequency (MHz) VGA Output Return Loss (dB)

Dual Path Lowband RF Receiver 1400MHz to 2700MHz F1180 Datasheet RF Receiver 16 February 8, 2022 VGA BYPASS ON: TYPICAL OPERATING CONDITIONS (- 5 -) Gain vs. Tcase [GBYPASS] Output IP3 vs.Tcase [OIP3BYPASS_0] Channel Isolation vs. Tcase [ISOA/B] Gain vs. Vcc [GBYPASS] Output IP3 vs.Vcc [OIP3BYPASS_0] Channel Isolation vs. Vcc [ISOA/B] 1300 1500 1700 1900 2100 2300 2500 2700 2900 Gain (dB) RF Frequency (MHz) 105degC - 5V - ON - CHA - 5dBm 105degC - 5V - ON - CHB - 5dBm 25degC - 5V - ON - CHA - 5dBm 25degC - 5V - ON - CHB - 5dBm -40degC - 5V - ON - CHA - 5dBm -40degC - 5V - ON - CHB - 5dBm 1300 1500 1700 1900 2100 2300 2500 2700 2900 Output IP3(dBm) RF Frequency (MHz) 105degC - 5V - ON - CHA - 5dBm 105degC - 5V - ON - CHB - 5dBm 25degC - 5V - ON - CHA - 5dBm 25degC - 5V - ON - CHB - 5dBm -40degC - 5V - ON - CHA - 5dBm -40degC - 5V - ON - CHB - 5dBm 1400 1600 1800 2000 2200 2400 2600 2800 Channel Isolation (dBc) RF Frequency (MHz) 105degC - 5.00V - CHA - ON 105degC - 5.00V - CHB - ON 25degC - 5.00V - CHA - ON 25degC - 5.00V - CHB - ON -40degC - 5.00V - CHA - ON -40degC - 5.00V - CHB - ON 1300 1500 1700 1900 2100 2300 2500 2700 2900 Gain (dB) RF Frequency (MHz) 25degC - 4.75V - ON - CHA - 5dBm 25degC - 4.75V - ON - CHB - 5dBm 25degC - 5.25V - ON - CHA - 5dBm 25degC - 5.25V - ON - CHB - 5dBm 25degC - 5V - ON - CHA - 5dBm 25degC - 5V - ON - CHB - 5dBm 1300 1500 1700 1900 2100 2300 2500 2700 2900 Output IP3(dBm) RF Frequency (MHz) 25degC - 4.75V - ON - CHA - 5dBm 25degC - 4.75V - ON - CHB - 5dBm 25degC - 5.25V - ON - CHA - 5dBm 25degC - 5.25V - ON - CHB - 5dBm 25degC - 5V - ON - CHA - 5dBm 25degC - 5V - ON - CHB - 5dBm 1400 1600 1800 2000 2200 2400 2600 2800 Channel Isolation (dBc) RF Frequency (MHz) 25degC - 4.75V - CHA - ON 25degC - 4.75V - CHB - ON 25degC - 5.00V - CHA - ON 25degC - 5.00V - CHB - ON 25degC - 5.25V - CHA - ON 25degC - 5.25V - CHB - ON

Dual Path Lowband RF Receiver 1400MHz to 2700MHz F1180 Datasheet RF Receiver 17 February 8, 2022 VGA BYPASS ON: TYPICAL OPERATING CONDITIONS (- 6 -) Gain Accuracy [DSAACC 1400MHz] Gain Accuracy [DSAACC 2100MHz] Gain Accuracy [DSAACC 2700MHz] OIP3 vs. Attenuation [1400MHz] OIP3 vs. Attenuation [2100MHz] OIP3 vs. Attenuation [2700MHz] -2.0 -1.6 -1.2 -0.8 -0.4 0.0 0.4 0.8 1.2 1.6 2.0 0 2 4 6 8 10 12 14 16 18 20 22 24 26 28 30 105 C / 5.00 V / CH B 105 C / 5.00 V / CH A 25 C / 5.00 V / CH A 25 C / 5.00 V / CH B -40 C / 5.00 V / CH A -40 C / 5.00 V / CH B Attenuator Setting (dB) Gain INL (dB) -2.0 -1.6 -1.2 -0.8 -0.4 0.0 0.4 0.8 1.2 1.6 2.0 0 2 4 6 8 10 12 14 16 18 20 22 24 26 28 30 105 C / 5.00 V / CH B 105 C / 5.00 V / CH A 25 C / 5.00 V / CH A 25 C / 5.00 V / CH B -40 C / 5.00 V / CH A -40 C / 5.00 V / CH B Attenuator Setting (dB) Gain INL (dB) -2.0 -1.6 -1.2 -0.8 -0.4 0.0 0.4 0.8 1.2 1.6 2.0 0 2 4 6 8 10 12 14 16 18 20 22 24 26 28 30 105 C / 5.00 V / CH B 105 C / 5.00 V / CH A 25 C / 5.00 V / CH A 25 C / 5.00 V / CH B -40 C / 5.00 V / CH A -40 C / 5.00 V / CH B Attenuator Setting (dB) Gain INL (dB) 0 2 4 6 8 10 12 14 16 18 20 22 24 26 28 30 105 C / 5.00 V / CH B 105 C / 5.00 V / CH A 25 C / 5.00 V / CH A 25 C / 5.00 V / CH B -40 C / 5.00 V / CH A -40 C / 5.00 V / CH B Attenuator Setting (dB) Output IP3 (dB) 0 2 4 6 8 10 12 14 16 18 20 22 24 26 28 30 105 C / 5.00 V / CH B 105 C / 5.00 V / CH A 25 C / 5.00 V / CH A 25 C / 5.00 V / CH B -40 C / 5.00 V / CH A -40 C / 5.00 V / CH B Attenuator Setting (dB) Output IP3 (dB) 0 2 4 6 8 10 12 14 16 18 20 22 24 26 28 30 105 C / 5.00 V / CH B 105 C / 5.00 V / CH A 25 C / 5.00 V / CH A 25 C / 5.00 V / CH B -40 C / 5.00 V / CH A -40 C / 5.00 V / CH B Attenuator Setting (dB) Output IP3 (dB)

Dual Path Lowband RF Receiver 1400MHz to 2700MHz F1180 Datasheet RF Receiver 18 February 8, 2022 VGA BYPASS ON: TYPICAL OPERATING CONDITIONS (- 7 -) Gain vs. Input Power [1700MHz] Gain vs. Input Power [2100MHz] Gain vs. Input Power [2400MHz] Input Match - S11 VGA Output Match - S22 VGA -10 15 16 17 18 19 20 21 22 23 24 25 Gain (dB) RF Input Power (dBm) 105degC - 5.00V - CHA - ON - 1700 25degC - 5.00V - CHA - ON - 1700 -40degC - 5.00V - CHA - ON - 1700 -10 15 16 17 18 19 20 21 22 23 24 25 Gain (dB) RF Input Power (dBm) 105degC - 5.00V - CHA - ON - 2100 25degC - 5.00V - CHA - ON - 2100 -40degC - 5.00V - CHA - ON - 2100 -10 15 16 17 18 19 20 21 22 23 24 25 Gain (dB) RF Input Power (dBm) 105degC - 5.00V - CHA - ON - 2400 25degC - 5.00V - CHA - ON - 2400 -40degC - 5.00V - CHA - ON - 2400 -40 -35 -30 -25 -20 -15 -10 1300 1500 1700 1900 2100 2300 2500 2700 2900 Channel A Channel B RF Frequency (MHz) VGA Input Return Loss (dB) -40 -35 -30 -25 -20 -15 -10 1300 1500 1700 1900 2100 2300 2500 2700 2900 Channel A Channel B RF Frequency (MHz) VGA Output Return Loss (dB)

Dual Path Lowband RF Receiver 1400MHz to 2700MHz F1180 Datasheet RF Receiver 19 February 8, 2022 VGA: TYPICAL OPERATING CONDITIONS (- 8 -) Amplifier Bypass ON Switching Time [τRF] Amplifier Turn OFF (STBY) Time [τOFF] Attenuator Settling Speed [Min to Max, τSET] Amplifier Bypass OFF Switching Time [τRF] Amplifier Turn ON (STBY) Time [τON] Attenuator Settling Speed [Max to Min, τSET]

Dual Path Lowband RF Receiver 1400MHz to 2700MHz F1180 Datasheet RF Receiver 20 February 8, 2022 MIXER: TYPICAL OPERATING CONDITIONS (- 9 -) Gain vs. Tcase [GMXR, HS Injection] Gain vs. Vcc [GMXR, HS Injection] Gain vs. LO Power [GMXR, HS Injection] Gain vs. Tcase [GMXR, LS Injection] Gain vs. Vcc [GMXR, LS Injection] Gain vs. LO Power [GMXR, LS Injection] 1300 1500 1700 1900 2100 2300 2500 2700 2900 Conversion Gain (dB) RF Freq (MHz) 105degC - 5V - 0dBm - Channel A 105degC - 5V - 0dBm - Channel B 25degC - 5V - 0dBm - Channel A 25degC - 5V - 0dBm - Channel B -40degC - 5V - 0dBm - Channel A -40degC - 5V - 0dBm - Channel B 1300 1500 1700 1900 2100 2300 2500 2700 2900 Conversion Gain (dB) RF Freq (MHz) 25degC - 4.75V - 0dBm - Channel A 25degC - 4.75V - 0dBm - Channel B 25degC - 5.25V - 0dBm - Channel A 25degC - 5.25V - 0dBm - Channel B 25degC - 5V - 0dBm - Channel A 25degC - 5V - 0dBm - Channel B 1300 1500 1700 1900 2100 2300 2500 2700 2900 Conversion Gain (dB) RF Freq (MHz) 25degC - 5V - 0dBm - Channel A 25degC - 5V - 0dBm - Channel B 25degC - 5V - 3dBm - Channel A 25degC - 5V - 3dBm - Channel B 25degC - 5V - -3dBm - Channel A 25degC - 5V - -3dBm - Channel B 1300 1500 1700 1900 2100 2300 2500 2700 2900 Conversion Gain (dB) RF Freq (MHz) 105degC - 5V - 0dBm - Channel A 105degC - 5V - 0dBm - Channel B 25degC - 5V - 0dBm - Channel A 25degC - 5V - 0dBm - Channel B -40degC - 5V - 0dBm - Channel A -40degC - 5V - 0dBm - Channel B 1300 1500 1700 1900 2100 2300 2500 2700 2900 Conversion Gain (dB) RF Freq (MHz) 25degC - 4.75V - 0dBm - Channel A 25degC - 4.75V - 0dBm - Channel B 25degC - 5.25V - 0dBm - Channel A 25degC - 5.25V - 0dBm - Channel B 25degC - 5V - 0dBm - Channel A 25degC - 5V - 0dBm - Channel B 1300 1500 1700 1900 2100 2300 2500 2700 2900 Conversion Gain (dB) RF Freq (MHz) 25degC - 5V - 0dBm - Channel A 25degC - 5V - 0dBm - Channel B 25degC - 5V - 3dBm - Channel A 25degC - 5V - 3dBm - Channel B 25degC - 5V - -3dBm - Channel A 25degC - 5V - -3dBm - Channel B

Dual Path Lowband RF Receiver 1400MHz to 2700MHz F1180 Datasheet RF Receiver 21 February 8, 2022 MIXER: TYPICAL OPERATING CONDITIONS (- 10 -) OIP3 vs. Tcase [OIP3MXR, HS injection] OIP3 vs. Vcc [OIP3MXR, HS injection] OIP3 vs. LO Power [OIP3MXR, HS injection] OIP3 vs. Tcase [OIP3MXR, LS injection] OIP3 vs. Vcc [OIP3MXR, LS injection] OIP3 vs. LO Power [OIP3MXR, LS injection] 1300 1500 1700 1900 2100 2300 2500 2700 2900 Output IP3 (dBm) RF Frequency (MHz) 105degC - 5V - 0dBm - Channel A 105degC - 5V - 0dBm - Channel B 25degC - 5V - 0dBm - Channel A 25degC - 5V - 0dBm - Channel B -40degC - 5V - 0dBm - Channel A -40degC - 5V - 0dBm - Channel B 1300 1500 1700 1900 2100 2300 2500 2700 2900 Output IP3 (dBm) RF Frequency (MHz) 25degC - 4.75V - 0dBm - Channel A 25degC - 4.75V - 0dBm - Channel B 25degC - 5V - 0dBm - Channel A 25degC - 5V - 0dBm - Channel B 25degC - 5.25V - 0dBm - Channel A 25degC - 5.25V - 0dBm - Channel B 1300 1500 1700 1900 2100 2300 2500 2700 2900 Output IP3 (dBm) RF Frequency (MHz) 25degC - 5V - -3dBm - Channel A 25degC - 5V - -3dBm - Channel B 25degC - 5V - 0dBm - Channel A 25degC - 5V - 0dBm - Channel B 25degC - 5V - 3dBm - Channel A 25degC - 5V - 3dBm - Channel B 1300 1500 1700 1900 2100 2300 2500 2700 2900 Output IP3 (dBm) RF Frequency (MHz) 105degC - 5V - 0dBm - Channel A 105degC - 5V - 0dBm - Channel B 25degC - 5V - 0dBm - Channel A 25degC - 5V - 0dBm - Channel B -40degC - 5V - 0dBm - Channel A -40degC - 5V - 0dBm - Channel B 1300 1500 1700 1900 2100 2300 2500 2700 2900 Output IP3 (dBm) RF Frequency (MHz) 25degC - 4.75V - 0dBm - Channel A 25degC - 4.75V - 0dBm - Channel B 25degC - 5V - 0dBm - Channel A 25degC - 5V - 0dBm - Channel B 25degC - 5.25V - 0dBm - Channel A 25degC - 5.25V - 0dBm - Channel B 1300 1500 1700 1900 2100 2300 2500 2700 2900 Output IP3 (dBm) RF Frequency (MHz) 25degC - 5V - -3dBm - Channel A 25degC - 5V - -3dBm - Channel B 25degC - 5V - 0dBm - Channel A 25degC - 5V - 0dBm - Channel B 25degC - 5V - 3dBm - Channel A 25degC - 5V - 3dBm - Channel B

Dual Path Lowband RF Receiver 1400MHz to 2700MHz F1180 Datasheet RF Receiver 22 February 8, 2022 MIXER: TYPICAL OPERATING CONDITIONS (- 11 -) OIP2 vs. Tcase [OIP2MXR, HS injection] OIP2 vs. Vcc [OIP2MXR, HS injection] OIP2 vs. LO Power [OIP2MXR, HS injection] OIP2 vs. Tcase [OIP2MXR, LS injection] OIP2 vs. Vcc [OIP2MXR, LS injection] OIP2 vs. LO Power [OIP2MXR, LS injection] 100 1300 1500 1700 1900 2100 2300 2500 2700 2900 105 C / 5.00 V / 0 dBm / CH A 105 C / 5.00 V / 0 dBm / CH B 25 C / 5.00 V / 0 dBm / CH A 25 C / 5.00 V / 0 dBm / CH B -40 C / 5.00 V / 0 dBm / CH A -40 C / 5.00 V / 0 dBm / CH B Attenuator Setting (dB) Output IP2 (dBm) 100 1300 1500 1700 1900 2100 2300 2500 2700 2900 25 C / 4.75 V / 0 dBm / CH A 25 C / 4.75 V / 0 dBm / CH B 25 C / 5.00 V / 0 dBm / CH A 25 C / 5.00 V / 0 dBm / CH B 25 C / 5.25 V / 0 dBm / CH A 25 C / 5.25 V / 0 dBm / CH B Attenuator Setting (dB) Output IP2 (dBm) 100 1300 1500 1700 1900 2100 2300 2500 2700 2900 25 C / 5.00 V / -3 dBm / CH A 25 C / 5.00 V / -3 dBm / CH B 25 C / 5.00 V / 0 dBm / CH A 25 C / 5.00 V / 0 dBm / CH B 25 C / 5.00 V / +3 dBm / CH A 25 C / 5.00 V / +3 dBm / CH B Attenuator Setting (dB) Output IP2 (dBm) 100 1300 1500 1700 1900 2100 2300 2500 2700 2900 105 C / 5.00 V / 0 dBm / CH A 105 C / 5.00 V / 0 dBm / CH B 25 C / 5.00 V / 0 dBm / CH A 25 C / 5.00 V / 0 dBm / CH B -40 C / 5.00 V / 0 dBm / CH A -40 C / 5.00 V / 0 dBm / CH B Attenuator Setting (dB) Output IP2 (dBm) 100 1300 1500 1700 1900 2100 2300 2500 2700 2900 25 C / 4.75 V / 0 dBm / CH A 25 C / 4.75 V / 0 dBm / CH B 25 C / 5.00 V / 0 dBm / CH A 25 C / 5.00 V / 0 dBm / CH B 25 C / 5.25 V / 0 dBm / CH A 25 C / 5.25 V / 0 dBm / CH B Attenuator Setting (dB) Output IP2 (dBm) 100 1300 1500 1700 1900 2100 2300 2500 2700 2900 25 C / 5.00 V / -3 dBm / CH A 25 C / 5.00 V / -3 dBm / CH B 25 C / 5.00 V / 0 dBm / CH A 25 C / 5.00 V / 0 dBm / CH B 25 C / 5.00 V / +3 dBm / CH A 25 C / 5.00 V / +3 dBm / CH B Attenuator Setting (dB) Output IP2 (dBm)

Dual Path Lowband RF Receiver 1400MHz to 2700MHz F1180 Datasheet RF Receiver 23 February 8, 2022 MIXER: TYPICAL OPERATING CONDITIONS (- 12 -) IP1dB vs. Tcase [IP1dBMXR, HS injection] IP1dB vs. Vcc [IP1dBMXR, HS injection] IP1dB vs. LO Power [IP1dBMXR, HS injection] IP1dB vs. Tcase [IP1dBMXR, LS injection] IP1dB vs. Vcc [IP1dBMXR, LS injection] IP1dB vs. LO Power [IP1dBMXR, LS injection] 1300 1500 1700 1900 2100 2300 2500 2700 2900 Input P1dB (dBm) RF Freq (MHz) 105degC - 5V - 0dBm - Channel A 105degC - 5V - 0dBm - Channel B 25degC - 5V - 0dBm - Channel A 25degC - 5V - 0dBm - Channel B -40degC - 5V - 0dBm - Channel A -40degC - 5V - 0dBm - Channel B 1300 1500 1700 1900 2100 2300 2500 2700 2900 Input P1dB (dBm) RF Freq (MHz) 25degC - 4.75V - 0dBm - Channel A 25degC - 4.75V - 0dBm - Channel B 25degC - 5.25V - 0dBm - Channel A 25degC - 5.25V - 0dBm - Channel B 25degC - 5V - 0dBm - Channel A 25degC - 5V - 0dBm - Channel B 1300 1500 1700 1900 2100 2300 2500 2700 2900 Input P1dB (dBm) RF Freq (MHz) 25degC - 5V - 0dBm - Channel A 25degC - 5V - 0dBm - Channel B 25degC - 5V - 3dBm - Channel A 25degC - 5V - 3dBm - Channel B 25degC - 5V - -3dBm - Channel A 25degC - 5V - -3dBm - Channel B 1300 1500 1700 1900 2100 2300 2500 2700 2900 Input P1dB (dBm) RF Freq (MHz) 105degC - 5V - 0dBm - Channel A 105degC - 5V - 0dBm - Channel B 25degC - 5V - 0dBm - Channel A 25degC - 5V - 0dBm - Channel B -40degC - 5V - 0dBm - Channel A -40degC - 5V - 0dBm - Channel B 1300 1500 1700 1900 2100 2300 2500 2700 2900 Input P1dB (dBm) RF Freq (MHz) 25degC - 4.75V - 0dBm - Channel A 25degC - 4.75V - 0dBm - Channel B 25degC - 5.25V - 0dBm - Channel A 25degC - 5.25V - 0dBm - Channel B 25degC - 5V - 0dBm - Channel A 25degC - 5V - 0dBm - Channel B 1300 1500 1700 1900 2100 2300 2500 2700 2900 Input P1dB (dBm) RF Freq (MHz) 25degC - 5V - 0dBm - Channel A 25degC - 5V - 0dBm - Channel B 25degC - 5V - 3dBm - Channel A 25degC - 5V - 3dBm - Channel B 25degC - 5V - -3dBm - Channel A 25degC - 5V - -3dBm - Channel B

Dual Path Lowband RF Receiver 1400MHz to 2700MHz F1180 Datasheet RF Receiver 24 February 8, 2022 MIXER: TYPICAL OPERATING CONDITIONS (- 13 -) 2x2 Rejection vs. Tcase [2x2MXR, HS rejection] 2x2 Rejection vs. Vcc [2x2MXR,HS rejection] 2x2 Rejection vs. LO Power [2x2MXR, HS rejection] 2x2 Rejection vs. Tcase [2x2MXR, LS rejection] 2x2 Rejection vs. Vcc [2x2MXR, LS rejection] 2x2 Rejection vs. LO Power [2x2MXR, LS rejection] -90 -80 -70 -60 -50 -40 -30 -20 -10 1300 1500 1700 1900 2100 2300 2500 2700 2900 105 C / 5.00 V / 0 dBm / CH A 105 C / 5.00 V / 0 dBm / CH B 25 C / 5.00 V / 0 dBm / CH A 25 C / 5.00 V / 0 dBm / CH B -40 C / 5.00 V / 0 dBm / CH A -40 C / 5.00 V / 0 dBm / CH B RF Frequency (MHz) 2x2 Rejection [Pin=-10 dBm] (dBc) -90 -80 -70 -60 -50 -40 -30 -20 -10 1300 1500 1700 1900 2100 2300 2500 2700 2900 25 C / 4.75 V / 0 dBm / CH A 25 C / 4.75 V / 0 dBm / CH B 25 C / 5.00 V / 0 dBm / CH A 25 C / 5.00 V / 0 dBm / CH B 25 C / 5.25 V / 0 dBm / CH A 25 C / 5.25 V / 0 dBm / CH B RF Frequency (MHz) 2x2 Rejection [Pin=-10 dBm] (dBc) -90 -80 -70 -60 -50 -40 -30 -20 -10 1300 1500 1700 1900 2100 2300 2500 2700 2900 25 C / 5.00 V / -3 dBm / CH A 25 C / 5.00 V / -3 dBm / CH B 25 C / 5.00 V / 0 dBm / CH A 25 C / 5.00 V / 0 dBm / CH B 25 C / 5.00 V / +3 dBm / CH A 25 C / 5.00 V / +3 dBm / CH B RF Frequency (MHz) 2x2 Rejection [Pin=-10 dBm] (dBc) -90 -80 -70 -60 -50 -40 -30 -20 -10 1300 1500 1700 1900 2100 2300 2500 2700 2900 105 C / 5.00 V / 0 dBm / CH A 105 C / 5.00 V / 0 dBm / CH B 25 C / 5.00 V / 0 dBm / CH A 25 C / 5.00 V / 0 dBm / CH B -40 C / 5.00 V / 0 dBm / CH A -40 C / 5.00 V / 0 dBm / CH B RF Frequency (MHz) 2x2 Rejection [Pin=-10 dBm] (dBc) -90 -80 -70 -60 -50 -40 -30 -20 -10 1300 1500 1700 1900 2100 2300 2500 2700 2900 25 C / 4.75 V / 0 dBm / CH A 25 C / 4.75 V / 0 dBm / CH B 25 C / 5.00 V / 0 dBm / CH A 25 C / 5.00 V / 0 dBm / CH B 25 C / 5.25 V / 0 dBm / CH A 25 C / 5.25 V / 0 dBm / CH B RF Frequency (MHz) 2x2 Rejection [Pin=-10 dBm] (dBc) -90 -80 -70 -60 -50 -40 -30 -20 -10 1300 1500 1700 1900 2100 2300 2500 2700 2900 25 C / 5.00 V / -3 dBm / CH A 25 C / 5.00 V / -3 dBm / CH B 25 C / 5.00 V / 0 dBm / CH A 25 C / 5.00 V / 0 dBm / CH B 25 C / 5.00 V / +3 dBm / CH A 25 C / 5.00 V / +3 dBm / CH B RF Frequency (MHz) 2x2 Rejection [Pin=-10 dBm] (dBc)

Dual Path Lowband RF Receiver 1400MHz to 2700MHz F1180 Datasheet RF Receiver 25 February 8, 2022 MIXER: TYPICAL OPERATING CONDITIONS (- 14 -) 3x3 Rejection vs. Tcase [3x3MXR, HS rejection] 3x3 Rejection vs. Vcc [3x3MXR, HS rejection] 3x3 Rejection vs. LO Power [3x3MXR, HS rejection] 3x3 Rejection vs. Tcase [3x3MXR, LS rejection] 3x3 Rejection vs. Vcc [3x3MXR, LS rejection] 3x3 Rejection vs. LO Power [3x3MXR, LS rejection] -100 -90 -80 -70 -60 -50 -40 -30 -20 -10 1400 1600 1800 2000 2200 2400 2600 2800 3x3 Rejection Pin=-10dBm RF Frequency (MHz) 105degC - 5.00V - 0dBm - CHA 105degC - 5.00V - 0dBm - CHB 25degC - 5.00V - 0dBm - CHA 25degC - 5.00V - 0dBm - CHB -40degC - 5.00V - 0dBm - CHA -40degC - 5.00V - 0dBm - CHB -100 -90 -80 -70 -60 -50 -40 -30 -20 -10 1400 1600 1800 2000 2200 2400 2600 2800 3x3 Rejection Pin=-10dBm RF Frequency (MHz) 25degC - 4.75V - 0dBm - CHA 25degC - 4.75V - 0dBm - CHB 25degC - 5.00V - 0dBm - CHA 25degC - 5.00V - 0dBm - CHB 25degC - 5.25V - 0dBm - CHA 25degC - 5.25V - 0dBm - CHB -100 -90 -80 -70 -60 -50 -40 -30 -20 -10 1400 1600 1800 2000 2200 2400 2600 2800 3x3 Rejection Pin=-10dBm RF Frequency (MHz) 25degC - 5.00V - -3dBm - CHA 25degC - 5.00V - -3dBm - CHB 25degC - 5.00V - 0dBm - CHA 25degC - 5.00V - 0dBm - CHB 25degC - 5.00V - 3dBm - CHA 25degC - 5.00V - 3dBm - CHB -100 -90 -80 -70 -60 -50 -40 -30 -20 -10 1400 1600 1800 2000 2200 2400 2600 2800 3x3 Rejection Pin=-10dBm RF Frequency (MHz) 105degC - 5.00V - 0dBm - CHA 105degC - 5.00V - 0dBm - CHB 25degC - 5.00V - 0dBm - CHA 25degC - 5.00V - 0dBm - CHB -40degC - 5.00V - 0dBm - CHA -40degC - 5.00V - 0dBm - CHB -100 -90 -80 -70 -60 -50 -40 -30 -20 -10 1400 1600 1800 2000 2200 2400 2600 2800 3x3 Rejection Pin=-10dBm RF Frequency (MHz) 25degC - 4.75V - 0dBm - CHA 25degC - 4.75V - 0dBm - CHB 25degC - 5.00V - 0dBm - CHA 25degC - 5.00V - 0dBm - CHB 25degC - 5.25V - 0dBm - CHA 25degC - 5.25V - 0dBm - CHB -100 -90 -80 -70 -60 -50 -40 -30 -20 -10 1400 1600 1800 2000 2200 2400 2600 2800 3x3 Rejection Pin=-10dBm RF Frequency (MHz) 25degC - 5.00V - -3dBm - CHA 25degC - 5.00V - -3dBm - CHB 25degC - 5.00V - 0dBm - CHA 25degC - 5.00V - 0dBm - CHB 25degC - 5.00V - 3dBm - CHA 25degC - 5.00V - 3dBm - CHB

Dual Path Lowband RF Receiver 1400MHz to 2700MHz F1180 Datasheet RF Receiver 26 February 8, 2022 MIXER: TYPICAL OPERATING CONDITIONS (- 15 -) HD2 vs. Tcase [HD2MXR, HS injection] HD2 vs. Vcc [HD2MXR, HS injection] HD2 vs. LO Power [HD2MXR, HS injection] HD2 vs. Tcase [HD2MXR, LS injection] HD2 vs. Vcc [HD2MXR, LS injection] HD2 vs. LO Power [HD2MXR, LS injection] -100 -90 -80 -70 -60 -50 -40 -30 -20 -10 1300 1500 1700 1900 2100 2300 2500 2700 2900 HD2 Pin=10dBm RF Frequency(MHz) 105degC - 5V - 0dBm - Channel A 105degC - 5V - 0dBm - Channel B 25degC - 5V - 0dBm - Channel A 25degC - 5V - 0dBm - Channel B -40degC - 5V - 0dBm - Channel A -40degC - 5V - 0dBm - Channel B -100 -90 -80 -70 -60 -50 -40 -30 -20 -10 1300 1500 1700 1900 2100 2300 2500 2700 2900 HD2 Pin=10dBm RF Frequency(MHz) 25degC - 4.75V - 0dBm - Channel A 25degC - 4.75V - 0dBm - Channel B 25degC - 5V - 0dBm - Channel A 25degC - 5V - 0dBm - Channel B 25degC - 5.25V - 0dBm - Channel A 25degC - 5.25V - 0dBm - Channel B -100 -90 -80 -70 -60 -50 -40 -30 -20 -10 1300 1500 1700 1900 2100 2300 2500 2700 2900 HD2 Pin=10dBm RF Frequency(MHz) 25degC - 5V - -3dBm - Channel A 25degC - 5V - -3dBm - Channel B 25degC - 5V - 0dBm - Channel A 25degC - 5V - 0dBm - Channel B 25degC - 5V - 3dBm - Channel A 25degC - 5V - 3dBm - Channel B -100 -90 -80 -70 -60 -50 -40 -30 -20 -10 1300 1500 1700 1900 2100 2300 2500 2700 2900 HD2 Pin=10dBm RF Frequency(MHz) 105degC - 5V - 0dBm - Channel A 105degC - 5V - 0dBm - Channel B 25degC - 5V - 0dBm - Channel A 25degC - 5V - 0dBm - Channel B -40degC - 5V - 0dBm - Channel A -40degC - 5V - 0dBm - Channel B -100 -90 -80 -70 -60 -50 -40 -30 -20 -10 1300 1500 1700 1900 2100 2300 2500 2700 2900 HD2 Pin=10dBm RF Frequency(MHz) 25degC - 4.75V - 0dBm - Channel A 25degC - 4.75V - 0dBm - Channel B 25degC - 5V - 0dBm - Channel A 25degC - 5V - 0dBm - Channel B 25degC - 5.25V - 0dBm - Channel A 25degC - 5.25V - 0dBm - Channel B -100 -90 -80 -70 -60 -50 -40 -30 -20 -10 1300 1500 1700 1900 2100 2300 2500 2700 2900 HD2 Pin=10dBm RF Frequency(MHz) 25degC - 5V - -3dBm - Channel A 25degC - 5V - -3dBm - Channel B 25degC - 5V - 0dBm - Channel A 25degC - 5V - 0dBm - Channel B 25degC - 5V - 3dBm - Channel A 25degC - 5V - 3dBm - Channel B

Dual Path Lowband RF Receiver 1400MHz to 2700MHz F1180 Datasheet RF Receiver 27 February 8, 2022 MIXER: TYPICAL OPERATING CONDITIONS (- 16 -) HD3 vs. Tcase [HD3MXR, HS injection] HD3 vs. Vcc [HD3MXR, HS injection] HD3 vs. LO Power [HD3MXR, HS injection] HD3 vs. Tcase [HD3MXR, LS injection] HD3 vs. Vcc [HD3MXR, LS injection] HD3 vs. LO Power [HD3MXR, LS injection] -100 -90 -80 -70 -60 -50 -40 -30 -20 -10 1300 1500 1700 1900 2100 2300 2500 2700 2900 HD3 [Pin = -10dBm] (dBc) RF Freq (MHz) 105degC - 5V - 0dBm - Channel A 105degC - 5V - 0dBm - Channel B 25degC - 5V - 0dBm - Channel A 25degC - 5V - 0dBm - Channel B -40degC - 5V - 0dBm - Channel A -40degC - 5V - 0dBm - Channel B -100 -90 -80 -70 -60 -50 -40 -30 -20 -10 1300 1500 1700 1900 2100 2300 2500 2700 2900 HD3 [Pin = -10dBm] (dBc) RF Freq (MHz) 25degC - 4.75V - 0dBm - Channel A 25degC - 4.75V - 0dBm - Channel B 25degC - 5.25V - 0dBm - Channel A 25degC - 5.25V - 0dBm - Channel B 25degC - 5V - 0dBm - Channel A 25degC - 5V - 0dBm - Channel B -100 -90 -80 -70 -60 -50 -40 -30 -20 -10 1300 1500 1700 1900 2100 2300 2500 2700 2900 HD3 [Pin = -10dBm] (dBc) RF Freq (MHz) 25degC - 5V - 0dBm - Channel A 25degC - 5V - 0dBm - Channel B 25degC - 5V - 3dBm - Channel A 25degC - 5V - 3dBm - Channel B 25degC - 5V - -3dBm - Channel A 25degC - 5V - -3dBm - Channel B -100 -90 -80 -70 -60 -50 -40 -30 -20 -10 1300 1500 1700 1900 2100 2300 2500 2700 2900 HD3 [Pin = -10dBm] (dBc) RF Freq (MHz) 105degC - 5V - 0dBm - Channel A 105degC - 5V - 0dBm - Channel B 25degC - 5V - 0dBm - Channel A 25degC - 5V - 0dBm - Channel B -40degC - 5V - 0dBm - Channel A -40degC - 5V - 0dBm - Channel B -100 -90 -80 -70 -60 -50 -40 -30 -20 -10 1300 1500 1700 1900 2100 2300 2500 2700 2900 HD3 [Pin = -10dBm] (dBc) RF Freq (MHz) 25degC - 4.75V - 0dBm - Channel A 25degC - 4.75V - 0dBm - Channel B 25degC - 5.25V - 0dBm - Channel A 25degC - 5.25V - 0dBm - Channel B 25degC - 5V - 0dBm - Channel A 25degC - 5V - 0dBm - Channel B -100 -90 -80 -70 -60 -50 -40 -30 -20 -10 1300 1500 1700 1900 2100 2300 2500 2700 2900 HD3 [Pin = -10dBm] (dBc) RF Freq (MHz) 25degC - 5V - 0dBm - Channel A 25degC - 5V - 0dBm - Channel B 25degC - 5V - 3dBm - Channel A 25degC - 5V - 3dBm - Channel B 25degC - 5V - -3dBm - Channel A 25degC - 5V - -3dBm - Channel B

Dual Path Lowband RF Receiver 1400MHz to 2700MHz F1180 Datasheet RF Receiver 28 February 8, 2022 MIXER: TYPICAL OPERATING CONDITIONS (- 17 -) LO to IF Leakage vs. Tcase [ISOLI, HS injection] RF to IF Rejection vs. Tcase [ISORI, HS injection] Channel Isolation vs. Tcase [ISOIF, HS injection] LO to IF Leakage vs. Tcase [ISOLI, LS injection] RF to IF Rejection vs. Tcase [ISORI, LS injection] Channel Isolation vs. Tcase [ISOIF, LS injection] -90 -80 -70 -60 -50 -40 -30 -20 -10 1300 1500 1700 1900 2100 2300 2500 2700 2900 105 C / 5.00 V / 0 dBm / CH A 105 C / 5.00 V / 0 dBm / CH B 25 C / 5.00 V / 0 dBm / CH A 25 C / 5.00 V / 0 dBm / CH B -40 C / 5.00 V / 0 dBm / CH A -40 C / 5.00 V / 0 dBm / CH B RF Frequency (MHz) LO to IF Leakage (dBm) -90 -80 -70 -60 -50 -40 -30 -20 -10 1300 1500 1700 1900 2100 2300 2500 2700 2900 105 C / 5.00 V / 0 dBm / CH A 105 C / 5.00 V / 0 dBm / CH B 25 C / 5.00 V / 0 dBm / CH A 25 C / 5.00 V / 0 dBm / CH B -40 C / 5.00 V / 0 dBm / CH A -40 C / 5.00 V / 0 dBm / CH B RF Frequency (MHz) Rejection (dBc) 1300 1500 1700 1900 2100 2300 2500 2700 2900 105 C / 5.00 V / 0 dBm / CH A 105 C / 5.00 V / 0 dBm / CH B 25 C / 5.00 V / 0 dBm / CH A 25 C / 5.00 V / 0 dBm / CH B -40 C / 5.00 V / 0 dBm / CH A -40 C / 5.00 V / 0 dBm / CH B RF Frequency (MHz) Channel Isolation (dBc) -90 -80 -70 -60 -50 -40 -30 -20 -10 1300 1500 1700 1900 2100 2300 2500 2700 2900 105 C / 5.00 V / 0 dBm / CH A 105 C / 5.00 V / 0 dBm / CH B 25 C / 5.00 V / 0 dBm / CH A 25 C / 5.00 V / 0 dBm / CH B -40 C / 5.00 V / 0 dBm / CH A -40 C / 5.00 V / 0 dBm / CH B RF Frequency (MHz) LO to IF Leakage (dBm) -90 -80 -70 -60 -50 -40 -30 -20 -10 1300 1500 1700 1900 2100 2300 2500 2700 2900 105 C / 5.00 V / 0 dBm / CH A 105 C / 5.00 V / 0 dBm / CH B 25 C / 5.00 V / 0 dBm / CH A 25 C / 5.00 V / 0 dBm / CH B -40 C / 5.00 V / 0 dBm / CH A -40 C / 5.00 V / 0 dBm / CH B RF Frequency (MHz) Rejection (dBc) 1300 1500 1700 1900 2100 2300 2500 2700 2900 105 C / 5.00 V / 0 dBm / CH A 105 C / 5.00 V / 0 dBm / CH B 25 C / 5.00 V / 0 dBm / CH A 25 C / 5.00 V / 0 dBm / CH B -40 C / 5.00 V / 0 dBm / CH A -40 C / 5.00 V / 0 dBm / CH B RF Frequency (MHz) Channel Isolation (dBc)

Dual Path Lowband RF Receiver 1400MHz to 2700MHz F1180 Datasheet RF Receiver 29 February 8, 2022 MIXER: TYPICAL OPERATING CONDITIONS (- 18 -) IF Gain flatness vs. Tcase [GMXR_T, HS injection] IF Gain flatness vs. Vcc [GMXR_T, HS injection] IF Gain flatness vs. LO Power [GMXR_T, HS injection] IF Gain flatness vs. Tcase [GMXR_T, LS injection] IF Gain flatness vs. Vcc [GMXR_T, LS injection] IF Gain flatness vs. LO Power [GMXR_T, LS injection] 40 80 120 160 200 240 280 320 360 400 Gain vs. IF (dB) IF Freq (MHz) 105degC - 5V - 0dBm - Channel A 105degC - 5V - 0dBm - Channel B 25degC - 5V - 0dBm - Channel A 25degC - 5V - 0dBm - Channel B -40degC - 5V - 0dBm - Channel A -40degC - 5V - 0dBm - Channel B 40 80 120 160 200 240 280 320 360 400 Gain vs. IF (dB) IF Freq (MHz) 25degC - 4.75V - 0dBm - Channel A 25degC - 4.75V - 0dBm - Channel B 25degC - 5.25V - 0dBm - Channel A 25degC - 5.25V - 0dBm - Channel B 25degC - 5V - 0dBm - Channel A 25degC - 5V - 0dBm - Channel B 40 80 120 160 200 240 280 320 360 400 Gain vs. IF (dB) IF Freq (MHz) 25degC - 5V - 0dBm - Channel A 25degC - 5V - 0dBm - Channel B 25degC - 5V - 3dBm - Channel A 25degC - 5V - 3dBm - Channel B 25degC - 5V - -3dBm - Channel A 25degC - 5V - -3dBm - Channel B 40 80 120 160 200 240 280 320 360 400 Gain vs. IF (dB) IF Freq (MHz) 105degC - 5V - 0dBm - Channel A 105degC - 5V - 0dBm - Channel B 25degC - 5V - 0dBm - Channel A 25degC - 5V - 0dBm - Channel B -40degC - 5V - 0dBm - Channel A -40degC - 5V - 0dBm - Channel B 40 80 120 160 200 240 280 320 360 400 Gain vs. IF (dB) IF Freq (MHz) 25degC - 4.75V - 0dBm - Channel A 25degC - 4.75V - 0dBm - Channel B 25degC - 5.25V - 0dBm - Channel A 25degC - 5.25V - 0dBm - Channel B 25degC - 5V - 0dBm - Channel A 25degC - 5V - 0dBm - Channel B 40 80 120 160 200 240 280 320 360 400 Gain vs. IF (dB) IF Freq (MHz) 25degC - 5V - 0dBm - Channel A 25degC - 5V - 0dBm - Channel B 25degC - 5V - 3dBm - Channel A 25degC - 5V - 3dBm - Channel B 25degC - 5V - -3dBm - Channel A 25degC - 5V - -3dBm - Channel B

Dual Path Lowband RF Receiver 1400MHz to 2700MHz F1180 Datasheet RF Receiver 30 February 8, 2022 MIXER: TYPICAL OPERATING CONDITIONS (- 19 -) Noise Figure vs.Tcase [NFMXR, HS Injection] Noise Figure vs.Tcase [NFMXR LS, Injection] Noise Figure with Blocker [NFMXR_BLK] Mixer RF Input Return Loss [S11MXR_RF] Mixer LO Port Return Loss [S11MXR_LO] Mixer IF Output Return Loss [S22MXR_IF] 1300 1500 1700 1900 2100 2300 2500 2700 Noise Figure (dB) RF Freq (MHz) 105degC - 5V - 0dBm - ChannelA 105degC - 5V - 0dBm - ChannelB 25degC - 5V - 0dBm - ChannelA 25degC - 5V - 0dBm - ChannelB -40degC - 5V - 0dBm - ChannelA -40degC - 5V - 0dBm - ChannelB 1300 1500 1700 1900 2100 2300 2500 2700 Noise Figure (dB) RF Freq (MHz) 105degC - 5V - 0dBm - ChannelA 105degC - 5V - 0dBm - ChannelB 25degC - 5V - 0dBm - ChannelA 25degC - 5V - 0dBm - ChannelB -40degC - 5V - 0dBm - ChannelA -40degC - 5V - 0dBm - ChannelB -20 -15 -10 -5 0 5 10 NF (dB) Blocker Power Level (dBm) Nosie Figure (dB) LO=1.9 GHz, 0 dBm RF=2.1 GHz Blocker=2.2 GHz Tc = +25 C -30 -25 -20 -15 -10 1300 1500 1700 1900 2100 2300 2500 2700 2900 RF Frequency (MHz) Mixer Input Return Loss (dB) -30 -25 -20 -15 -10 1300 1500 1700 1900 2100 2300 2500 2700 2900 RF Frequency (MHz) Mixer Input Return Loss (dB) -30 -25 -20 -15 -10 0 50 100 150 200 250 300 350 400 450 500 IF Frequency (MHz) Mixer Output Return Loss (dB)

Dual Path Lowband RF Receiver 1400MHz to 2700MHz F1180 Datasheet RF Receiver 31 February 8, 2022 MIXER: TYPICAL OPERATING CONDITIONS (- 20 -) Mixer STBY ON time [Min to Max, τMXR_SET] Mixer STBY OFF time [Max to Min, τMXR_SET]

Dual Path Lowband RF Receiver 1400MHz to 2700MHz F1180 Datasheet RF Receiver 32 February 8, 2022 VGA & MIXER: TYPICAL OPERATING CONDITIONS (- 21 -) Current Consumption vs. Tcase [HS injection] Current consumption vs. Vcc [HS injection] Current consumption vs. LO Power [HS injection] Current consumption vs. Tcase [LS injection] Current consumption vs. Vcc [LS injection] Current consumption vs. LO Power [LS injection] 0.05 0.1 0.15 0.2 0.25 0.3 0.35 0.4 0.45 0.5 1300 1500 1700 1900 2100 2300 2500 2700 2900 Current consumption (A) RF Freq (MHz) 105degC - 5V - 0dBm - Channel A 105degC - 5V - 0dBm - Channel B 25degC - 5V - 0dBm - Channel A 25degC - 5V - 0dBm - Channel B -40degC - 5V - 0dBm - Channel A -40degC - 5V - 0dBm - Channel B 0.05 0.1 0.15 0.2 0.25 0.3 0.35 0.4 0.45 0.5 1300 1500 1700 1900 2100 2300 2500 2700 2900 Current consumption (A) RF Freq (MHz) 25degC - 4.75V - 0dBm - Channel A 25degC - 4.75V - 0dBm - Channel B 25degC - 5.25V - 0dBm - Channel A 25degC - 5.25V - 0dBm - Channel B 25degC - 5V - 0dBm - Channel A 25degC - 5V - 0dBm - Channel B 0.05 0.1 0.15 0.2 0.25 0.3 0.35 0.4 0.45 0.5 1300 1500 1700 1900 2100 2300 2500 2700 2900 Current consumption (A) RF Freq (MHz) 25degC - 5V - 0dBm - Channel A 25degC - 5V - 0dBm - Channel B 25degC - 5V - 3dBm - Channel A 25degC - 5V - 3dBm - Channel B 25degC - 5V - -3dBm - Channel A 25degC - 5V - -3dBm - Channel B 0.05 0.1 0.15 0.2 0.25 0.3 0.35 0.4 0.45 0.5 1300 1500 1700 1900 2100 2300 2500 2700 2900 Current consumption (A) RF Freq (MHz) 105degC - 5V - 0dBm - Channel A 105degC - 5V - 0dBm - Channel B 25degC - 5V - 0dBm - Channel A 25degC - 5V - 0dBm - Channel B -40degC - 5V - 0dBm - Channel A -40degC - 5V - 0dBm - Channel B 0.05 0.1 0.15 0.2 0.25 0.3 0.35 0.4 0.45 0.5 1300 1500 1700 1900 2100 2300 2500 2700 2900 Current consumption (A) RF Freq (MHz) 25degC - 4.75V - 0dBm - Channel A 25degC - 4.75V - 0dBm - Channel B 25degC - 5.25V - 0dBm - Channel A 25degC - 5.25V - 0dBm - Channel B 25degC - 5V - 0dBm - Channel A 25degC - 5V - 0dBm - Channel B 0.05 0.1 0.15 0.2 0.25 0.3 0.35 0.4 0.45 0.5 1300 1500 1700 1900 2100 2300 2500 2700 2900 Current consumption (A) RF Freq (MHz) 25degC - 5V - 0dBm - Channel A 25degC - 5V - 0dBm - Channel B 25degC - 5V - 3dBm - Channel A 25degC - 5V - 3dBm - Channel B 25degC - 5V - -3dBm - Channel A 25degC - 5V - -3dBm - Channel B

Dual Path Lowband RF Receiver 1400MHz to 2700MHz F1180 Datasheet RF Receiver 33 February 8, 2022 VGA & MIXER: TYPICAL OPERATING CONDITIONS (- 22 -) RF Amplifier to Mixer Isolation -60 -55 -50 -45 -40 -35 -30 -25 -20 -15 -10 1000 1250 1500 1750 2000 2250 2500 2750 3000 AMP to Mixer Isolation (dB) RF Freq (MHz) 105degC - 5V - CHA 105degC - 5V - CHB 25degC - 5V - CHA 25degC - 5V - CHB -40degC - 5V - CHA -40degC - 5V - CHB

Dual Path Lowband RF Receiver 1400MHz to 2700MHz F1180 Datasheet RF Receiver 34 February 8, 2022 PACKAGE OUTLINE DRAWINGS The package outline drawings are located at the end of this document and are accessible from the Renesas website (see Ordering Information for POD links). The package information is the most current data available and is subject to change without revision of this document. PIN DIAGRAM

Dual Path Lowband RF Receiver 1400MHz to 2700MHz F1180 Datasheet RF Receiver 35 February 8, 2022 PIN DESCRIPTION Pin Name Function 1, 12, 23, 32, 38 VCC Power Supply. Bypass to GND with capacitors shown in the Typical Application Circuit as close as possible to pin. 46, 48 GND Ground these pins. 3 RFIN_A Channel-A VGA RF Input. Internally matched to 50Ω. AC coupled. DO NOT apply DC to this pin. Place coupling capacitor as close to the pin as possible.

5 RFAMP_BIAS Connect a resistor to GND (refer to BOM)

6 SPI Data Data: 1.8V CMOS compatible. 7 SPI CLK Clock: 1.8V CMOS compatible. 8 SPI LE Latch Enable: 1.8V CMOS compatible. See Serial Interface Section for pin description. 10 RFIN_B Channel-B VGA RF Input. Internally matched to 50Ω. AC coupled. DO NOT apply DC to this pin. Place coupling capacitor as close to the pin as possible. 14 RFB_BIAS Connect a resistor to GND (refer to BOM). 16 RFOUT_B Channel-B VGA RF Output. Internally matched to 50Ω. AC coupled. DO NOT apply DC to this pin. Place coupling capacitor as close to the pin as possible. 21 MIXRFIN_B Channel-B Mixer RF Input. Internally matched to 50Ω. DO NOT apply DC to this pin. 24 IFB_BIAS Connect a resistor to GND (refer to BOM).

25 STBY_B Standby Diversity Channel (Low = device power ON, High = device power OFF with

SPI still powered ON) 26 IFOUT_B+ Channel-B Mixer Differential IF- Output. Connect pullup inductor from this pin to VCC. 27 IFOUT_B- Channel-B Mixer Differential IF+ Output. Connect pullup inductor from this pin to VCC. 29 LO_BIAS Connect a resistor to GND (refer to BOM). 30 LO_IN Mixer Local Oscillator Input. Connect the LO to this port through the recommended coupling capacitor. 34 IFOUT_A- Channel-A Mixer Differential IF- Output. Connect pullup inductor from this pin to VCC. 35 IFOUT_A+ Channe-Al Mixer Differential IF+ Output. Connect pullup inductor from this pin to VCC.

36 STBY_A Standby Main Channel (Low = device power ON, High = device power OFF with SPI

still powered ON). 37 IFA_BIAS Connect a resistor to GND (refer to BOM). 40 MIXRFIN_A Channel-A Mixer RF Input. Internally matched to 50Ω. DO NOT apply DC to this pin. 45 RFOUT_A Channel-A RF VGA Output. Internally matched to 50Ω. AC coupled. DO NOT apply DC to this pin. Place coupling capacitor as close to the pin as possible. 47 RFA_BIAS Connect a resistor to GND (refer to BOM). — EP Exposed Pad. Internally connected to GND. Solder this exposed pad to a PCB pad that uses multiple ground vias to provide heat transfer out of the device into the PCB ground planes. These multiple via grounds are also required to achieve the noted RF performance.

Dual Path Lowband RF Receiver 1400MHz to 2700MHz F1180 Datasheet RF Receiver 36 February 8, 2022 EVKIT PICTURE

Dual Path Lowband RF Receiver 1400MHz to 2700MHz F1180 Datasheet RF Receiver 37 February 8, 2022 EVKIT / APPLICATIONS CIRCUIT

Dual Path Lowband RF Receiver 1400MHz to 2700MHz F1180 Datasheet RF Receiver 38 February 8, 2022 EVKIT BOM Item # Part Reference QTY Description Mfr. Part # Mfr.

1 C2, 8, 14, 17, 20,

26, 28, 34 8 CAP CER 10000PF 16V 10% X7R 0402 GRM155R71C103KA01D Murata

2 C1, 9, 15, 18, 21,

27, 29, 35 8 CAP CER 0.1UF 16V 10% X7R 0402 GRM155R71C104KA88D Murata

3 C3, 7, 12, 13, 19,

30, 31 7 CAP CER 39PF 50V 5% C0G 0402 GRM1555C1H390JZ010 Murata

4 C22-25 4 CAP CER 1000PF 50V C0G 0402 GRM1555C1H102JA01D Murata

5 R2 1 RES 12.4K OHM 1/10W 1% 0402 SMD ERJ-2RKF1242X Panasonic 6 R3, 5, 6, 26 4 RES 3.00K OHM 1/10W 1% 0402 SMD ERJ-2RKF3001X Panasonic 7 R19, 33 2 RES 3.83K OHM 1/10W 1% 0402 SMD ERJ-2RKF3831X Panasonic 8 R22, 30 2 RES 62.0 OHM 1/10W 1% 0402 SMD ERJ-2RKF62R0X Panasonic

9 R11-15, 17, 18,

24, 25, 27, 28 11 RES 0.0 OHM 1/10W 0402 SMD ERJ-2GE0R00X Panasonic

10 L1, 2, 10, 11 4 0805LS (2012) Ceramic Chip Inductor 0805LS-102XJLB COILCRAFT

11 T1, 2 2 4:1 Center Tap Balun TC4-1TG2+ Mini Circuits

12 J11, 12, 14 3 CONN HEADER VERT SGL 2POS GOLD 961102-6404-AR 3M

13 J10 1 CONN HEADER VERT DBL 4POS GOLD 67997-108HLF FCI

14 J15 1 CONN HEADER VERT DBL 7POS GOLD 67996-114HLF FCI

15 J1-4, 6, 8, 9 7 SMA_END_LAUNCH (Big) 142-0701-851 Emerson Johnson

16 J5, 7, 13 3 SMA_END_LAUNCH (Small) 142-0711-821 Emerson Johnson

17 U1 1 Dual Path RF Receiver 400-1100MHz AV650B00_6ZNA Renesas

18 1 Printed Cicuit Board F1130 EVKIT REV 01

19 Bill Of Material 0

C4-6, R1, 7-10, 20, 21, 23, 29, 31, 32

0 Do not populate N/A N/A

Date Code [YYWW] (Week 02 of 2014) Lot CodeDie Step

Dual Path Lowband RF Receiver 1400MHz to 2700MHz F1180 Datasheet RF Receiver 39 February 8, 2022 APPLICATIONS INFORMATION F1180 has been optimized for use in high performance RF applications from 1400MHz to 2700MHz. Power Supplies A common VCC power supply should be used for all pins requiring DC power. All supply pins should be bypassed with external capacitors to minimize noise and fast transients. Supply noise can degrade noise figure and fast transients can trigger ESD clamps and cause them to fail. Supply voltage change or transients should have a slew rate smaller than 1V/20µs. In addition, all control pins should remain at 0V (+/-0.3V) while the supply voltage ramps or while it returns to zero. Control Pin Interface If control signal integrity is a concern and clean signals cannot be guaranteed due to overshoot, undershoot, ringing, etc., the following circuit at the input of each control pin is recommended. This applies to SPI and control pins 6, 7, 8, 25, and 36 as shown below. Note the recommended resistor and capacitor values do not necessarily match the EV kit BOM for the case of poor control signal integrity. For multiple devices driven by a single control line, the component values will need to be adjusted accordingly so as not to overload the control line.

Dual Path Lowband RF Receiver 1400MHz to 2700MHz F1180 Datasheet RF Receiver 40 February 8, 2022 F1180 Digital Pin Voltage & Resistance Values (pins not connected) The following table list the resitance between various pins and ground when no DC power is applied. When the device is powered up with +5 Volts DC these same pins to should have the measured voltage to ground. Pin Name DC Voltage (volts) Resistance (ohms)

6 DATA 5 57K

7 CLK 5 57K

8 LE 5 57K

25 STBY_B 5 57K

36 STBY_A 5 57K

ORDERING INFORMATION

Part Number Package Description Carrier Type Temperature Range F1180NBGI 48-VFQFPN, 7 × 7 mm Tape and Reel -40°C to +85°C F1180NBGI8 Tray

REVISION HISTORY

February 8, 2022 Rebranded to Renesas. July 20, 2016 Initial release.

© Integrated Device Technology, Inc.

© Integrated Device Technology, Inc. Sept 27, 2017Rev 01New FormatPackage Revision HistoryRev No.Date CreatedDescriptionSept 10, 2018Rev 02Correct VFQFP-N to VFQFPN, Remove Black Package Code

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