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DATASHEET
RF to IF Dual Downconverting Mixer
2300 - 2700 MHz F1162NBGI
GENERAL DESCRIPTION
This document describes the specifications for the
IDTF1162 Zero-DistortionTM RF to IF Downconverting
Mixer. This device is part of a series of mixers offered
with high side or low side injection options for all UTRA
bands. See the Part# Matrix for the details of all devices
in this series.
The F1162 dual channel device is designed to operate
with a single 5V supply. It is optimized for operation in
a Multi-mode, Multi-carrier BaseStation Receiver for RF
bands from 2300 - 2700 MHz with Low Side or High
Side Injection. IF frequencies from 50 to 500 MHz are
supported. Nominally, the device offers +43 dBm
Output IP3 with 330 mA of ICC. Alternately one can
adjust 4 resistor values and a toggle pin to run the
device in low current mode with +38 dBm Output IP3
and 230 mA of ICC.
COMPETITIVE ADVANTAGE
In typical basestation receivers the RF to IF mixer
dominates the linearity performance for the entire
receive system. The Zero-DistortionTM family of mixers
dramatically improve the maximum signal levels (IM3
tones) that the BTS can withstand at a desired Signal to
Noise Ratio (SNR.) Alternately, one can run the device
in Low Current Mode to reduce Power consumption
significantly. Zero-DistortionTM technology allows
realization of either benefit.
IP3O: 11 dB STD
Mode, 5 dB LC Mode
Dissipation: 40% LC,
15% STD Mode
Allows for higher RF gain improving Sensitivity
PART# MATRIX
Part#
F1100
F1102
F1150
F1152
F1162
RF freq
range
698 - 915
698 - 915
1700 - 2200
1400 - 2200
2300 – 2700
UTRA bands
5,6,8,12,13,14,17
,19,20
5,6,8,12,13,14,17
,19,20
1,2,3,4,9,10, 33,
34,35, 36, 37,39
1,2,3,4,9,10,111,
211, 241, 33,
34,35, 36, 37,39
7,38,40,41
IF freq
range
50 - 450
50 - 250
50 - 450
50 - 350
50 – 500
Typ.
Gain
8.5
8.5
8.5
8.5
8.9
1 – with High side injection
IDT Zero-DistortionTM Mixer
Injection
High Side
Both
High Side
Low Side
Both
1
FEATURES
Dual Path for Diversity Systems
Ideal for Multi-Carrier Systems
8.9 dB Gain
Ultra linear +43 dBm IP3O
Low NF < 10 dB
200 Ω output impedance
Ultra high +13 dBm P1dBI
Pin Compatible w/existing solutions
6x6 36 pin package
Constant LO Port Z in STBY mode
< 200 nsec settling from Power Down
Low Current Mode : ICC = 230 mA
Standard Mode: ICC = 330 mA
NOTE production BOM on p. 25
DEVICE BLOCK DIAGRAM
RFIN_A
RF VCO
RFIN_B
IFOUT_A
Bias
Control
STBY
2 LOISET
LCMODE
IFOUT_B
ORDERING INFORMATION
Omit IDT
prefix
0.8 mm height
package
Tape &
Reel
IDTF1162NBGI8
RF product Line
Green
Industrial
Temp range
Rev1, July 2012

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DATASHEET
RF to IF Dual Downconverting Mixer
ABSOLUTE MAXIMUM RATINGS
VCC to GND
STBY, LCMODE
IF_A+, IF_B+, IF_A-, IF_B-, LO1_ADJ, LO2_ADJ
LO_IN, LO_IN_ALT, RF_A, RF_B
IF_BiasA, IF_BiasB to GND
RF Input Power (RF_IN[A+, A-, B+, B-])
Continuous Power Dissipation
θJA (Junction – Ambient)
θJC (Junction – Case) The Case is defined as the exposed paddle
Operating Temperature Range (Case Temperature)
Maximum Junction Temperature
Storage Temperature Range
Lead Temperature (soldering, 10s) .
2300 - 2700 MHz F1162NBGI
-0.3V to +5.5V
-0.3V to (VCC_ + 0.3V)
-0.3V to (VCC_ + 0.3V)
-0.3V to +0.3V
-0.3V to +0.3V
+20dBm
2.2W
+35°C/W
+2.5°C/W
TC = -40°C to +100°C
150°C
-65°C to +150°C
+260°C
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.
IDT Zero-DistortionTM Mixer
2
Rev1, July 2012

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DATASHEET
RF to IF Dual Downconverting Mixer
2300 - 2700 MHz F1162NBGI
IDTF1162 SPECIFICATION
Specifications apply at VCC = +5.00V, TC = +25°C FRF = 2600 MHz, FIF = 400MHz, Low Side Injection, PLO = 0 dBm, STBY = GND, LCMODE
= VIH (STD Mode), EVKit BOM = Standard Mode, Transformer Loss included (not de-embedded) unless otherwise noted.
Parameter
Comment
Symbol min typ max units
Logic Input High
For Standby, LCMODE
Pins
VIH 2
V
Logic Input Low
For Standby, LCMODE
Pins
VIL
0.8 V
Logic Current
Logic Current
Supply Voltage(s)
Operating
Temperature Range
For Standby Pin
For LCMODE Pin
All VCC pins
Case Temperature
IIH, IIL
IIH, IIL
VCC
TCASE
-30 +30 µA
-100
-20 µA
4.75 to
5.25
V
-40 to
+100
degC
Supply Current
Supply Current
Supply Current
RF Freq Range
Total VCC , STD Mode
Total Both Channels
Total VCC , LC Mode
LCMODE = GND
EVkit BOM = LC Mode
Total Both Channels
Standby Mode
STBY = VIH
LCMODE > VIH (STD Mode)
Total Both Channels
Operating Range
ISTD
ILC
ISTBY
FRF
330 3751 mA
230 260 mA
23
2300 to
2700
30
mA
MHz
IF Freq Range
LO Freq Range
Operating Range
Operating Range
FIF
FLO
50 to 500
1800 to
2900
MHz
MHz
LO Power
Operating Range
PLO
-6 to +6
dBm
RF Input Impedance
Single Ended
Return Loss ~20 dB
ZRF
50
IF Output Impedance
Differential
Return Loss ~ 15 dB
ZIF
200
LO port Impedance
Single Ended
Return Loss ~15 dB
ZLO
50
Settling Time
Pin = -13 dBm
Gate STBY from VIH to VIL
Time for IF Signal to settle to
within 0.1 dB of final value
TSETT
0.150
µsec
Gain STD Mode
Conversion Gain
FRF = 2300 MHz
LCMODE = VIH
EVkit BOM = STD Mode
FIF = 400 MHz (Low Side Inj.)
GSTD 7.2 8.4 9.6 dB
IDT Zero-DistortionTM Mixer
3
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DATASHEET
RF to IF Dual Downconverting Mixer
IDTF1162 SPECIFICATION (CONTINUED)
2300 - 2700 MHz F1162NBGI
Parameter
Gain LC Mode
NF STD Mode
NF LC Mode
NF w/Blocker
Output IP3 – STD mode
Output IP3 – LC mode
Output IP3 – High Side
Injection
2RF – 2LO rejection
1 dB Compression –
STD Mode
1 dB Compression – LC
Mode
Gain Comp. w/blocker
Channel Isolation
LO to IF leakage
RF to IF leakage
LO to RF leakage
Comment
Conversion Gain
FRF = 2700 MHz
LCMODE = GND
EVkit BOM = LC Mode
FIF = 200 MHz (High Side Inj.)
Noise Figure
RF trace de-embedded
FIF = 200 MHz
Noise Figure
RF trace de-embedded
LCMODE = GND, EVKit BOM = LC
FIF = 200 MHz
+100 MHz offset blocker
PBLOCKER = +10 dBm
FIF = 250 MHz
PIN = -10 dBm per tone
800 KHz Tone Separation
PIN = -10 dBm per tone
FIF = 200 MHz (Low Side Inj.)
FRF = 2600 MHz
800 KHz Tone Separation
LCMODE = GND
EVKit BOM = LC Mode
PIN = -10 dBm per tone
800 KHz Tone Separation
FIF = 154 MHz (High Side Inj.)
FRF = 2600 MHz
Modified LC mode BOM (p. 26)
PIN = -10 dBm
Frequency = FRF - ½ FIF
Input referred
400 MHz IF
LCMODE = GND
EVKit BOM = LC Mode
FIF = 200 MHz (Low Side Inj.)
Blocker unmodulated tone
PIN = +8 dBm, +100 MHz offset
Signal Pin Tone = -20 dBm
Measure ∆G of signal
FIF = 250 MHz
IF_B Pout vs. IF_A w/ RF_A input
LO Frequency = 2200 MHz
Pin = -10 dBm
LO Frequency = 2345 MHz
Low Current Mode
Symbol min
GLC 6.8
NFSTD
NFLC
NFBLK
IP3O1
382
IP3O3
33.5
IP3O2
2x2
P1dBI1
P1dBI2
∆GAC
ISOC
ISOLI
ISORI
ISOLR
11
8
1 – Items in min/max columns in bold italics are Guaranteed by Test
2 – All other Items in min/max columns are Guaranteed by Design Characterization
typ
7.9
9.9
9.7
23.5
43
37.7
43
-68
11.9
10.2
0.15
63
-32
-57
-41
max units
9.0 dB
dB
dB
dB
dBm
dBm
dBm
dBc
dBm
dBm
dB
dB
-23 dBm
-43 dBm
dBm
IDT Zero-DistortionTM Mixer
4
Rev1, July 2012

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DATASHEET
RF to IF Dual Downconverting Mixer
2300 - 2700 MHz F1162NBGI
TYPICAL OPERATING CONDTIONS
Unless otherwise Noted, the following Apply to the Typ Ops Graphs
800 KHz Tone Spacing
Low Side injection graphs with 200MHz & 400MHz IF (pages 6 – 14)
High Side injection graphs with 200MHz & 154MHz IF (pages 15 – 17)
Average of Channel A & Channel B
Pin = – 10 dBm per Tone
LO port = Pin 19 (Main Port)
Listed Temperatures are Case Temperature (TC = Case Temperature)
Where noted, TA or TAMB = Ambient Temperature
IDT Zero-DistortionTM Mixer
5
Rev1, July 2012