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F1162NBGI Datasheet, PDF (3/26 Pages) Integrated Device Technology – RF to IF Dual Downconverting Mixer
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
30
2300 to
2700
mA
MHz
IF Freq Range
Operating Range
FIF
LO Freq Range
Operating Range
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
Ω
IF Output Impedance
Differential
Return Loss ~ 15 dB
ZIF
200
Ω
LO port Impedance
Single Ended
Return Loss ~15 dB
ZLO
50
Ω
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
Rev1, July 2012