RF2492 RFMD | Alldatasheet
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Functional Block Diagram RF Micro Devices, Inc.
7625 Thorndike Road
Greensboro, NC 27409, USA T el (336) 664 1233 Fax (336) 664 0454 http://www.rfmd.com Optimum Technology Matching® Applied Si BJT GaAs MESFETGaAs HBT Si Bi-CMOS SiGe HBT Si CMOS L N AI PS E L LNA ISET X2 ENABLE BAND SEL IF SEL LOGIC CONTROL PCS LNA IN CELL LNA IN LNA GAIN SEL MIX GAIN SEL 25 23 11815 PCS LO OUT - CELL LO OUT+ CELL LO OUT- PCS LO OUT+ IF1+ IF2+ IF1- IF2- LO IN CELL MIX IN CELL LNA OUT PCS MIX IN PCS LNA OUT RF2492 DUAL-BAND LOW NOISE AMPLIFIER/MIXER
- TDMA-GSM Cellular/PCS Handsets TDMA Cellular/PCS Handsets GAIT Handsets CDMA Cellular/PCS Handsets GSM DCS/PCS Handsets The RF2492 is a fully featured dual-band LNA/Mixer and is usable in a variety of mobile handset applications. The unique dual IF outputs provide interface to two indepen- dent IF SAW filters supporting applications such as TDMA-EDGE where 30kHz and 200kHz bandwidth SAW filters are used. With independent power management control pins for the LNAs and mixers, either IF output can be accessed from either high- or low-band LNAs, provid- ing maximum flexibility with minimum power usage. Multi- ple gain control options are provided to achieve a very large dynamic range for the receiver. A frequency doubler is included in the LO circuit to generate both high- and low-band LO signals with a single VCO. The RF2492 is packaged in a 32 pin, 5mmx5mm, leadless plastic pack- age. Complete Dual-Band Receiver Front End Low Noise Figure Stepped LNA/Mixer Gain Control Adjustable LNA Bias Current/IIP3 Integrated LO Frequency Doubler Differential LO Buffer Outputs RF2492 Dual-Band Low Noise Amplifier/Mixer RF2492 PCBA Fully Assembled Evaluation Board Rev A4 010828 1.00 0.85 5.00 sq. NOTES: Shaded Pin is Lead 1.1 Package Warpage: 0.05 mm max.4 Die Thickness Allowable: 0.305 mm max.5 Pin 1 identifier must exist on top surface of package by identification mark or feature on the package body. Exact shape and size is optional. Dimension applies to plated terminal: to be measured between 0.02 mm and 0.25 mm from terminal end. 0.30 0.183 0.60 0.24 typ 0.55 0.30 0.50 0.23 0.13 4P L C S 0.45 0.20 4P L C S 0.05 0.01 0.80 0.65 3.25 2.95 sq. 12° MAX Package Style: LCC, 32-Pin, 5x5
Supply Voltage -0.5 to +5.0 V DC Input LO and RF Levels +6 dBm Operating Ambient Temperature -40 to +85 °C Storage Temperature -40 to +150 °C Parameter Specification Unit ConditionMin. Typ. Max. Overall T = 25°C, VCC =2.75V RF Frequency Range 881 MHz Specifications
1960 MHz Specifications
1700 2100 MHz Usable range IF Frequency Range 110 MHz Specifications 50 250 MHz Usable range Cell LO Buffer Output -13.0 -12.7 dBm T1 insertion loss not considered. PCS LO Buffer Output -14.0 -12.7 dBm T2 insertion loss not considered. Cellular Band Freq=869MHz to 894MHz LNA (On) RF=880MHz and 881MHz Gain 13.5 14.5 15.5 dB LNA set for max IIP3 13.5 14 15 dB LNA set for Nominal IIP3 Noise Figure 2.0 2.2 dB LNA set for max IIP3 1.8 2.0 dB LNA set for Nominal IIP3 Input IP3 +7.0 +7.5 dBm LNA set for max IIP3 +1.5 +3.0 +7.0 dBm LNA set for Nominal IIP3 LNA (Off) Gain -8.5 -7.5 -6.5 dB Noise Figure 5.5 5.8 6.0 dB Input IP3 +20.0 +21.0 dBm Mixer IF Select=1, (IF1) RF=880MHz, LO=990MHz@-5dBm Gain 12 13 14 dB Mixer RF amp ON; ZLOAD =1k Ω single-ended 3.5 4.4 5.0 dB Mixer RF amp OFF Noise Figure 6.5 7.0 7.5 dB Mixer RF amp ON 13.5 14.0 14.5 dB Mixer RF amp OFF Input IP3 +2.0 +4.5 dBm Mixer RF amp ON +11.5 +13.8 dBm Mixer RF amp OFF LO Input Level -5 dBm Specifications -10 +3 dBm Usable range Mixer IF Select=0, (IF2) RF=880MHz, LO=990MHz@-5dBm Gain 12 13 14 dB Mixer RF amp ON; ZLOAD =1k Ω single-ended 3.0 4.4 dB Mixer RF amp OFF Noise Figure 6.8 7.2 7.4 dB Mixer RF amp ON 13.7 14.0 14.2 dB Mixer RF amp OFF Input IP3 +2.0 +4.5 dBm Mixer RF amp ON +11.5 +14.0 dBm Mixer RF amp OFF LO Input Level -5 dBm Specifications -10 +3 dBm Usable range Caution!ESD sensitive device. RF Micro Devices believes the furnished information is correct and accurate at the time of this printing. However, RF Micro Devices reserves the right to make changes to its products without notice. RF Micro Devices does not assume responsibility for the use of the described product(s).
Parameter Specification Unit ConditionMin. Typ. Max. Mixer Isolation LO to RF 40 42 dB Mixer RF amp ON LO to RF 33.5 35 dB Mixer RF amp OFF RF to LO 56.5 63 dB Mixer RF amp ON RF to LO 54.5 60.5 dB Mixer RF amp OFF LO to IF1 24 36.5 dB Mixer RF amp ON LO to IF2 28 42 dB Mixer RF amp ON IF1 to RF 50 51 dB Mixer RF amp ON RF to IF1 43.5 44.5 dB Mixer RF amp ON IF2 to RF 49.5 50.5 dB Mixer RF amp ON RF to IF2 43 45 dB Mixer RF amp ON Cascade (LNA On) IF Select=1, 3dB RF Filter Insertion Loss Gain 24.5 dB LNA set for max IIP3; Mixer RF amp ON 24 dB LNA set for Nominal IIP3; Mixer RF amp ON 15.9 dB LNA set for max IIP3; Mixer RF amp OFF 15.4 dB LNA set for Nominal IIP3; Mixer RF ampOFF Noise Figure 2.8 dB LNA set for max IIP3; Mixer RF amp ON 2.7 dB LNA set for Nominal IIP3; Mixer RF amp ON 5.3 dB LNA set for max IIP3; Mixer RF amp OFF 5.4 dB LNA set for Nominal IIP3; Mixer RF ampOFF Input IP3 -6.5 dBm LNA set for max IIP3; Mixer RF amp ON -6.4 dBm LNA set for Nominal IIP3; Mixer RF amp ON +1.1 dBm LNA set for max IIP3; Mixer RF amp OFF 0 dBm LNA set for Nominal IIP3; Mixer RF ampOFF Cascade (LNA Off) IF Select=1, 3dB RF Filter Insertion Loss Gain 2.5 dB Mixer RF amp ON -6.0 dB Mixer RF amp OFF Noise Figure 17.4 dB Mixer RF amp ON 24.5 dB Mixer RF amp OFF Input IP3 +14.5 dBm Mixer RF amp ON +19.0 dBm Mixer RF amp OFF PCS Band Freq=1930MHz to 1990MHz LNA (On) RF=1960MHz and 1961MHz Gain 13.0 14.8 dB LNA set for max IIP3 13.0 14.0 dB LNA set for Nominal IIP3 Noise Figure 1.5 1.9 dB LNA set for max IIP3 1.7 1.8 1.9 dB LNA set for Nominal IIP3 Input IP3 +7.0 +9.0 dBm LNA set for max IIP3 +0.5 +3.5 dBm LNA set for Nominal IIP3 LNA (Off) Gain -7.0 -5.5 dB Noise Figure 6.0 6.2 6.5 dB Input IP3 +20.0 +25.0 dBm Mixer RF=1960MHz, LO=1035MHz@-5dBm, IF Select=1 (IF1) Gain 11.5 12.5 dB Mixer RF amp ON; ZLOAD =1k Ω single-ended 2.0 3.5 dB Mixer RF amp OFF Noise Figure 8.0 8.5 9.0 dB Mixer RF amp ON 15.0 15.5 16.0 dB Mixer RF amp OFF Input IP3 +4.0 +6.0 dBm Mixer RF amp ON +14.0 +16.0 dBm Mixer RF amp OFF LO Input Level -5 dBm Specifications -10 +3 dBm Usable range
Parameter Specification Unit ConditionMin. Typ. Max. Mixer RF=1960MHz, LO=1035MHz@-5dBm, IF Select=0 (IF2) Gain 11.0 12.6 dB Mixer RF amp ON; ZLOAD =1k Ω single-ended 2.0 3.5 dB Mixer RF amp OFF Noise Figure 8.0 8.4 9.0 dB Mixer RF amp ON 15.0 15.5 16.5 dB Mixer RF amp OFF Input IP3 +3.5 +6.0 dBm Mixer RF amp ON +14.0 +16.0 dBm Mixer RF amp OFF LO Input Level -5 dBm Specifications -10 +3 dBm Usable range Mixer Isolation LO to RF 55 57.5 dB Mixer RF amp ON LO to RF 54 63 dB Mixer RF amp OFF RF to LO 49.8 52.5 dB Mixer RF amp ON RF to LO 52 55.5 dB Mixer RF amp OFF LO to IF1 54.5 55.5 dB Mixer RF amp ON LO to IF2 58.5 59 dB Mixer RF amp ON IF1 to RF 49.5 51 dB Mixer RF amp ON RF to IF1 33 34.5 dB Mixer RF amp ON IF2 to RF 49 50.5 dB Mixer RF amp ON RF to IF2 41 42.5 dB Mixer RF amp ON Cascade (LNA On) 3dB RF Filter Insertion Loss Gain 24.3 dB LNA set for max IIP3; Mixer RF amp ON 23.5 dB LNA set for Nominal IIP3; Mixer RF amp ON 15.3 dB LNA set for max IIP3; Mixer RF amp OFF 14.5 dB LNA set for Nominal IIP3; Mixer RF ampOFF Noise Figure 2.6 dB LNA set for max IIP3; Mixer RF amp ON 3.1 dB LNA set for Nominal IIP3; Mixer RF amp ON 5.7 dB LNA set for max IIP3; Mixer RF amp OFF 6.3 dB LNA set for Nominal IIP3; Mixer RF ampOFF Input IP3 -6 dBm LNA set for max IIP3; Mixer RF amp ON -5.6 dBm LNA set for Nominal IIP3; Mixer RF amp ON +3.0 dBm LNA set for max IIP3; Mixer RF amp OFF +1.5 dBm LNA set for Nominal IIP3; Mixer RF ampOFF Cascade (LNA Off) 3dB RF Filter Insertion Loss Gain 4 dB Mixer RF amp ON -5 dB Mixer RF amp OFF Noise Figure 17 dB Mixer RF amp ON 24 dB Mixer RF amp OFF Input IP3 +14.0 dBm Mixer RF amp ON +21.7 dBm Mixer RF amp OFF Power Supply IF Select=1 Supply Voltage 2.75 V Specifications 2.7 3.6 V Operating range Supply Current 38 40 mA Cellular; LNA On, Max IIP3,MixerRFampON 36 38 mA Cellular;LNAOn,NomIIP3,Mixer RFamp ON 32 34 mA Cellular; LNA Off, Mixer RF amp ON 26 28 mA Cellular; LNA Off, Mixer RF amp OFF LNA Current 40.0 42.5 mA PCS; LNA On, Max IIP3, Mixer RF amp ON 38.5 40.5 mA PCS; LNA On, Nom IIP3, Mixer RF amp ON 34.5 36.0 mA PCS; LNA Off, Mixer RF amp ON 28.0 29.5 mA PCS; LNA Off, Mixer RF amp OFF
State Table (Typical Values for VCC=2.75V and 3dB RF Filter Insertion Loss) Control Logic Table Parameter Cellular PCS LNA On LNA Off LNA On LNA Off LNA at Max IIP3 LNA at Nom IIP3 LNA at Max IIP3 LNA at Nom IIP3 Mixer Amp On Mixer Amp Off Mixer Amp On Mixer Amp Off Mixer Amp On Mixer Amp Off Mixer Amp On Mixer Amp Off Mixer Amp On Mixer Amp Off Mixer Amp On Mixer Amp Off Cascade Total Current 38 36 32 26 40 38.5 34.5 28 LNA Isolation (dB) LNA Current (mA) Mixer LO Input Level (dBm) -5 -5 -5 -5 -5 -5 -5 -5 -5 -5 -5 -5 LO to RF Isolation(dB) Mixer Current (mA) BAND SEL IF SEL LNA GAIN MIX GAIN LNA IP SEL ENABLE PCS IF2 High Gain/High Linearity 101111 PCS IF2 High Gain/Nomi- nal Linearity 101101 P C S I F 2 M i d 1 G a i n 101001 P C S I F 2 M i d 2 G a i n 100101 P C S I F 2 L o w G a i n 100001 Cell IF2 High Gain/ High Linearity 001111 Cell IF2 High Gain/Nomi- nal Linearity 001101 C e l l I F 2 M i d 1 G a i n 001001 C e l l I F 2 M i d 2 G a i n 000101 C e l l I F 2 L o w G a i n 000001 Cell IF1 High Gain/ High Linearity 011111 Cell IF1 High Gain/ Nominal Linearity 011101 C e l l I F 1 M i d 1 G a i n 011001 C e l l I F 1 M i d 2 G a i n 010101 C e l l I F 1 L o w G a i n 010001 S h u t d o w n XXXXX0 Not Defined 1 1 X X X 1
Pin Function Description Interface Schematic 1L O I N LO input for both bands. Impedance is approximately (120-j25)Ω .1 k Ω shunt resistor (static bleed). AC coupled to transistor base (internal DC block). 2 VCC2 Power supply connection for internal LO amplifiers. External low-induc- tance bypass capacitor between 1nF and 47nF recommended. 3G N D Ground connection. 4I F 1 + High-band IF output. Open collector. “Current combiner” IF interface to 1000Ω SAW filter recommended 2pF internal shunt capacitance. 5I F 1 - High-band IF output. Open collector. “Current combiner” IF interface to 1000Ω SAW filter recommended 2pF internal shunt capacitance. 6B Y P A S S Pin requires external bypass capacitor between 1nF and 47nF . 7I F 2 - Low-band IF output. Open collector. “Current combiner” IF interface to 1000Ω SAW filter recommended 2pF internal shunt capacitance. 8I F 2 + Low-band IF output. Open collector. “Current combiner” IF interface to 1000Ω SAW filter recommended 2pF internal shunt capacitance. 9 IF SEL Logic input. High selects IF1 mixer; low selects IF2 mixer. Diode to VCC and Ground. CMOS logic interface. 10 LNA IP SEL Logic input. High selects external LNA current reference (pin 17); low selects internal LNA current reference. Diode to VCC and Ground. CMOS logic interface.
11 CELL LNA
Low-band LNA input (base). Simple external matching required for best performance.
12 LNA GAIN
Logic input. High selects maximum LNA gain; low selects minimum LNA gain. Diode to VCC and Ground. CMOS logic interface. 13 VCC1 Power supply for internal references, logic, and mixer preamplifiers. Internal RF bypass capacitor. External bypass capacitor between 1nF and 47nF required.
14 MIX GAIN
Logic input. High selects maximum mixer gain (mixer RF amp on); low selects minimum mixer gain (mixer RF amp off). Diode to VCC and Ground. CMOS logic interface.
15 CELL LNA
Low-band LNA output (collector). Simple external L-C matching required. 16 GND Ground connection. See evaluation board layout. 17 LNA ISET External current reference for LNA. Resistor to ground sets LNA cur- rent when Pin 10 is high. 20kΩ results in approximately 10mA LNA cur- rent. Higher resistance results in lower current.
18 CELL MIX
Low band mixer RF preamplifier input (base). External L-C network required for best performance.
19 PCS LO
High-band buffered LO output. Internal DC blocking capacitor. 1kΩ shunt resistor (static bleed).
20 PCS LO
High-band buffered LO output. Internal DC blocking capacitor. 1kΩ shunt resistor (static bleed).
21 CELL LO
Low-band buffered LO output. Internal DC blocking capacitor. 1kΩ shunt resistor (static bleed).
22 CELL LO
Low-band buffered LO output. Internal DC blocking capacitor. 1kΩ shunt resistor (static bleed). 23 PCS MIX IN High-band mixer RF preamplifier input (base). External L-C network required for best performance. 24 GND Ground connection. Keep traces physically short and connect immedi- ately to ground plane (low-inductance ground required for best perfor- mance).
Pin Function Description Interface Schematic
25 PCS LNA
High-band LNA output (collector). Small external inductance required for best impedance match to 50Ω . 26 VCC2 High-band LNA power supply connection. Small series inductance required. 27 GND2 High-band LNA emitter. Low-inductance ground required. 28 GND2 Same as pin 27. 29 GND2 Same as pin 27. 30 PCS LNA IN High-band LNA input (base). Simple external matching required for best performance. 31 BAND SEL Logic input. High selects high-band operation; low selects low-band operation. Diode to V CC and Ground. CMOS logic interface. 32 X2 ENABLE Logic input. High enables LO doubler; low disables LO doubler. Diode to VCC and Ground. CMOS logic interface. Die Flag GND Low inductance ground connection critical to proper operation.
120 Ω 47 nH C2 33 nF 36 nH 2.2 nH 33 nF 47 nH 20 pF 33 nF 180 nH 18 pF 270 nH 8p F 20 pF180 nH 18 pF 270 nH 8p F 33 nF LNA GAIN 33 nF IN OUT GND GND GND GND 7.5 nH IP SETIF SEL 47 nH C1 IN OUT GND GND GND GND 33 nF F241 27 kΩ 4p F5.6 nH MIX GAIN VCO L OUT N VCO L OUT P VCO H OUT N VCO H OUT P VCC LNA H IN LO IN VCC VCC IF1 OUT VCC IF2 OUT LNA L IN VCC VCC 4p F LNA L OUT 33 pF NOTES: 1. C1's are not needed if filter DC impedance is open circuit (as is normally the case). 2. C2's are not needed if duplexer DC impedance is open circuit (as is normally the case). 3. IF interface shown is 50Ω @1 1 0M H z .
Evaluation Board Schematic IF=110MHz (Download Bill of Materialsfrom www.rfmd.com.) 9 1410 1311 12 32 2731 2830 29 26 25 15 16 LO IN C27 33 nF X2 ENABLE BAND SELC28 33 nF 120 Ω VCC L13 47 nH C26 33 nF C25 33 nF J11 LNA H IN L12 36 nH VCC L11 2.2 nH C23 33 nF J10 LNA H OUT C22 33 nF 47 nH C24 DNI 20 pF 33 nF 180 nH 18 pF 270 nH 0 Ω 8p F VCC DNI IF1 OUT 20 pF 180 nH 18 pF 270 nH VCC 0 Ω 8p F DNI IF2 OUT C13 33 nF VCCLNA GAIN C11 33 nF LNA L IN C10 33 nF IN OUT GND GND GND GND 7.5 nH 33 nF IP SET 33 nF IF SEL C21 DNI C20 33 nF MIX H IN 5 2 LO L OUT IN GND GND OUT IN GND IN IN GND GND GND IN 3T2 LO H OUT 47 nH C18 DNI MIX L IN IN OUT GND GND GND GND C17 33 nF F241 27 kΩ C12 33 nF C16 DNI 5.6 nH C15 4p F LNA L OUT VCC C14 33 nF MIX GAIN 10CON10 P1-8 GND P1-1 GND P1-7 P1-6 P1-5 P1-4 P1-3 P1-2 VCC X2 ENABLE BAND SEL IP SET IF SEL LNA GAIN MIX GAIN NC C29 1u F 636.6 pS Delay 0.20 dB Line Loss 460.0 pS Delay 0.02 dB Line Loss 522.7 pS Delay 0.03 dB Line Loss 629.8 pS Delay 0.17 dB Line Loss 592.7 pS Delay 0.15 dB Line Loss 644.7 pS Delay 0.17 dB Line Loss C19 33 nF 442.2 pS Delay 0.28 dB Line Loss 421.3 pS Delay 0.11 dB Line Loss 605.0 pS Delay 0.40 dB Line Loss 637.6 pS Delay 0.45 dB Line Loss 633.0 pS Delay 0.45 dB Line Loss NOTE: T1 and T2 approximate insertion loss is ~2 dB.
Board Size 3.0” x 3.0” Board Thickness 0.0616”, Board Material FR-4, Multi-Layer Assembly
LNA Low Band Gain, Noise Figure and IIP3 versus ICC LNA Only (LNA High Gain) -10.0 -5.0 0.0 5.0 10.0 15.0 20.0 ICC (mA) Gain (dB) and IIP3 (dBm) 0.0 0.5 1.0 1.5 2.0 2.5 3.0 Noise Figure (dB) Gain (dB) IIP3 (dBm) NF (dB) Resistor (R6) versus ICC (mA) LNA Low Band Only (LNA High Gain) 0.0 10.0 20.0 30.0 40.0 50.0 60.0 70.0 80.0 90.0 100.0 ICC (mA) R6 (kΩ ) LNA High Band Gain, Noise Figure and IIP3 versus ICC LNA Only (LNA High Gain) -10.00 -5.00 0.00 5.00 10.00 15.00 20.00 ICC (mA) Gain (dB) and IIP3 (dBm) 1.30 1.35 1.40 1.45 1.50 1.55 1.60 1.65 Noise Figure (dB) Gain (dB) IIP3 (dBm) NF (dB) Resistor (R6) versus ICC (mA) L N AH i g hB a n dO n l y( L N AH i g hG a i n ) 0.0 10.0 20.0 30.0 40.0 50.0 60.0 70.0 80.0 90.0 100.0 ICC (mA) R6 (kΩ )
(Low Gain Mode) -8.3 -8.2 -8.1 -8.0 -7.9 -7.8 -7.7 -7.6 -7.5 -7.4 VCC (V) Gain (dB) Gain, -30º Gain, 25º Gain, 85º LNA Cellular Band (Low Gain Mode) 15.0 16.0 17.0 18.0 19.0 20.0 21.0 22.0 VCC (V) IIP3 (dBm) IIP3, -30º IIP3, 25º IIP3, 85º LNA Cellular Band (High Gain/Nominal IP Mode) 13.4 13.5 13.6 13.7 13.8 13.9 14.0 14.1 14.2 14.3 14.4 VCC (V) Gain (dB) Gain, -30º Gain, 25º Gain, 85º LNA Cellular Band (High Gain/Nominal IP Mode) 2.0 2.5 3.0 3.5 4.0 4.5 5.0 5.5 6.0 VCC (V) IIP3 (dBm) IIP3, -30º IIP3, 25º IIP3, 85º LNA Cellular Band (High Gain/Nominal IP Mode) 1.0 1.2 1.4 1.6 1.8 2.0 2.2 2.4 VCC (V) Noise Figure (dB) NF, -30º NF, 25º NF, 85º LNA Cellular Band (High Gain/Max IP Mode) 14.0 14.1 14.2 14.3 14.4 14.5 14.6 14.7 14.8 14.9 VCC (V) Gain (dB) Gain, -30º Gain, 25º Gain, 85º
(High Gain/Max IP Mode) 6.0 6.5 7.0 7.5 8.0 8.5 VCC (V) IIP3 (dBm) IIP3, -30º IIP3, 25º IIP3, 85º LNA Cellular Band (High Gain/Max IP Mode) 1.0 1.2 1.4 1.6 1.8 2.0 2.2 2.4 2.6 VCC (V) Noise Figure (dB) NF, -30º NF, 25º NF, 85º LNA Cellular Band (High Gain/Nominal IP Mode) 4.00 4.05 4.10 4.15 4.20 4.25 4.30 4.35 4.40 4.45 4.50 VCC (V) ICC (mA) Icc, -30º Icc, 25º Icc, 85º LNA Cellular Band ( H i g hG a i n/ M a xI PM o d e ) 5.95 6.00 6.05 6.10 6.15 6.20 6.25 6.30 6.35 6.40 VCC (V) ICC (mA) Icc, -30º Icc, 25º Icc, 85º
Cellular Band, Mixer IF1, Low Gain Mode, LO @ -5 dBm 4.00 4.20 4.40 4.60 4.80 5.00 5.20 5.40 5.60 5.80 VCC (V) Gain (dB) Gain, -30º Gain, 25º Gain, 85º Cellular Band, Mixer IF1, Low Gain Mode, LO @ -5 dBm 13.00 13.50 14.00 14.50 15.00 15.50 16.00 16.50 VCC (V) IIP3 (dBm) IIP3, -30º IIP3, 25º IIP3, 85º Cellular Band, Mixer IF1, Low Gain Mode, LO @ -5 dBm 10.00 10.50 11.00 11.50 12.00 12.50 13.00 13.50 14.00 VCC (V) Noise Figure (dB) NF, -30º NF, 25º NF, 85º Cellular Band, Mixer IF1, High Gain Mode, LO @ -5 dBm 12.50 13.00 13.50 14.00 14.50 15.00 VCC (V) Gain (dB) Gain, -30º Gain, 25º Gain, 85º Cellular Band, Mixer IF1, High Gain Mode, LO @ -5 dBm 5.00 5.50 6.00 6.50 7.00 7.50 8.00 8.50 9.00 VCC (V) IIP3 (dBm) IIP3, -30º IIP3, 25º IIP3, 85º Cellular Band, Mixer IF1, High Gain Mode, LO @ -5 dBm 6.00 6.50 7.00 7.50 8.00 VCC (V) Noise Figure (dB) NF, -30º NF, 25º NF, 85º
Cellular Band, Mixer IF1, High Gain Mode, VCC @2 . 7 5V 12.0 12.5 13.0 13.5 14.0 14.5 15.0 LO (dBm) Gain (dBm) Gain, -30º Gain, 25º Gain, 85º Cellular Band, Mixer IF1, High Gain Mode, LO @ -5 dBm 55.00 56.00 57.00 58.00 59.00 60.00 61.00 62.00 63.00 VCC (V) LO to IF Isolation (dB) Isolation, -30º Isolation, 25º Isolation, 85º Cellular Band, Mixer IF1, High Gain Mode, VCC =2 . 7 5V 5.0 5.1 5.2 5.3 5.4 5.5 5.6 5.7 LO (dBm) IIP3 (dBm) IIP3, -30º IIP3, 25º IIP3, 85º Cellular Band, Mixer IF1, High Gain Mode, LO @ -5 dBm 31.0 31.5 32.0 32.5 33.0 33.5 34.0 34.5 35.0 VCC (V) ICC (mA) Icc, -30º Icc, 25º Icc, 85º Cellular LO Buffer Output, LOIN @- 5d B m (T1 Insertion LossNot Taken Into Consideration) -13.50 -13.00 -12.50 -12.00 -11.50 -11.00 -10.50 -10.00 VCC (V) Cellular LO Buffer Output (dBm) Isolation, -30º Isolation, 25º Isolation, 85º
(Low Gain Mode) -7.0 -6.0 -5.0 -4.0 VCC (V) Gain (dB) Gain, -30º Gain, 25º Gain, 85º LNA PCS Band (Low Gain Mode) 24.0 25.0 26.0 27.0 VCC (V) IIP3 (dBm) IIP3, -30º IIP3, 25º IIP3, 85º LNA PCS Band (High Gain/Nominal IP Mode) 13.5 14.0 14.5 15.0 15.5 16.0 VCC (V) Gain (dB) Gain, -30º Gain, 25º Gain, 85º LNA PCS Band (High Gain/Nominal IP Mode) 1.8 2.0 2.2 2.4 2.6 2.8 3.0 3.2 3.4 3.6 VCC (V) IIP3 (dBm) IIP3, -30º IIP3, 25º IIP3, 85º
(High Gain/Max IP Mode) 8.5 9.0 9.5 10.0 10.5 VCC (V) IIP3 (dBm) IIP3, -30º IIP3, 25º IIP3, 85º LNA PCS Band (High Gain/Max IP Mode) 0.7 0.8 0.9 1.0 1.1 1.2 1.3 1.4 1.5 1.6 1.7 1.8 1.9 VCC (V) Noise Figure (dB) NF, -30º NF, 25º NF, 85º LNA PCS Band (High Gain/Nominal IP) 4.00 4.05 4.10 4.15 4.20 4.25 4.30 4.35 4.40 4.45 VCC (V) ICC (mA) Icc, -30º Icc, 25º Icc, 85º LNA PCS Band (High Gain Mode/Max IP Mode) 5.95 6.00 6.05 6.10 6.15 6.20 6.25 6.30 6.35 VCC (V) ICC (mA) Icc, -30º Icc, 25º Icc, 85º LNA PCS Band (High Gain/Nominal IP Mode) 0.6 0.8 1.0 1.2 1.4 1.6 1.8 2.0 VCC (V) Noise Figure (dB) NF, -30º NF, 25º NF, 85º LNA PCS Band (High Gain/Max IP Mode) 14.0 14.5 15.0 15.5 16.0 16.5 VCC (V) Gain (dB) Gain, -30º Gain, 25º Gain, 85º
PCS Band, Mixer IF1, Low Gain Mode, LO @ -5 dBm 15.00 15.50 16.00 16.50 17.00 17.50 18.00 18.50 VCC (V) Noise Figure (dB) NF, -30º NF, 25º NF, 85º PCS Band, Mixer IF1, High Gain Mode, LO @ -5 dBm 12.00 12.50 13.00 13.50 14.00 14.50 15.00 VCC (V) Gain (dB) Gain, -30º Gain, 25º Gain, 85º
PCS Band, Mixer IF1, High Gain Mode, LO @ -5 dBm 56.94 56.96 56.98 57.00 57.02 57.04 57.06 57.08 57.10 57.12 57.14 57.16 VCC (V) LO to IF Isolation (dB) Isolation, -30º Isolation, 25º Isolation, 85º PCS Band, Mixer IF1, High Gain Mode, VCC @2 . 7 5V 12.0 12.5 13.0 13.5 14.0 14.5 15.0 LO (dBm) Gain (dBm) Gain, -30º Gain, 25º Gain, 85º PCS Band, Mixer IF1, High Gain Mode, VCC =2 . 7 5V 6.9 7.0 7.1 7.2 7.3 7.4 7.5 7.6 7.7 7.8 7.9 LO (dBm) IIP3 (dBm) IIP3, -30º IIP3, 25º IIP3, 85º PCS Band, Mixer IF1, High Gain Mode, LO @ -5 dBm 32.5 33.0 33.5 34.0 34.5 35.0 35.5 36.0 36.5 37.0 VCC (V) ICC (mA) Icc, -30º Icc, 25º Icc, 85º PCS LO Buffer Output, LOIN @- 5d B m (T2 Insertion Loss Not Taken Into Consideration) -14.00 -13.50 -13.00 -12.50 -12.00 -11.50 -11.00 -10.50 -10.00 VCC (V) Cellular LO Buffer Output (dBm) Isolation, -30º Isolation, 25º Isolation, 85º PCS Band, Mixer IF1, Low Gain Mode LO @ -5 dBm 2.50 3.00 3.50 4.00 4.50 5.00 VCC (V) Gain (dB) Gain, -30º Gain, 25º Gain, 85º PCS Band, Mixer IF1, Low Gain Mode, LO @ -5 dBm 17.00 18.00 19.00 20.00 21.00 22.00 VCC (V) IIP3 (dBm) IIP3, -30º IIP3, 25º IIP3, 85º PCS Band, Mixer IF1, High Gain Mode, LO @ -5 dBm 6.00 7.00 8.00 9.00 10.00 11.00 VCC (V) IIP3 (dBm) IIP3, -30º IIP3, 25º IIP3, 85º PCS Band, Mixer IF1, High Gain Mode, LO @ -5 dBm 7.00 8.00 9.00 10.00 VCC (V) Noise Figure (dB) NF, -30º NF, 25º NF, 85º