DATASHEET
RF to IF Dual Downconverting Mixer
2300 - 2700 MHz F1162NBGI
G
ENERAL
D
ESCRIPTION
This document describes the specifications for the
IDTF1162 Zero-Distortion
TM
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 I
CC
. 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 I
CC
.
F
EATURES
•
•
•
•
•
•
•
•
•
•
•
•
•
•
Dual Path for Diversity Systems
Ideal for Multi-Carrier Systems
8.9 dB Gain
Ultra linear
+43 dBm IP3
O
Low NF < 10 dB
200 output impedance
Ultra high +13 dBm P1dB
I
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 :
I
CC
= 230 mA
Standard Mode: I
CC
= 330 mA
NOTE production BOM on p. 25
D
EVICE
B
LOCK
D
IAGRAM
C
OMPETITIVE
A
DVANTAGE
In typical basestation receivers the RF to IF mixer
dominates the linearity performance for the entire
receive system. The Zero-Distortion
TM
family of mixers
dramatically improve the maximum signal levels (IM
3
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-Distortion
TM
technology allows
realization of either benefit.
IP3
O
:
⇑
11 dB
STD
Mode,
⇑
5 dB
LC Mode
Dissipation:
⇓
40%
LC,
⇓
15%
STD Mode
Allows for higher RF gain improving
Sensitivity
RF
IN_A
IF
OUT_A
RF VCO
STBY
Bias
Control
2
LO
ISET
LC
MODE
RF
IN_B
IF
OUT_B
O
RDERING
I
NFORMATION
P
ART
# M
ATRIX
Part#
RF freq
range
698 - 915
698 - 915
1700 - 2200
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
1,2,3,4,9,10,11 ,
21
1
, 24
1
, 33,
34,35, 36, 37,39
7,38,40,41
1
Omit IDT
prefix
IF freq
range
50 - 450
50 - 250
50 - 450
Typ.
Gain
8.5
8.5
8.5
Injection
0.8 mm height
package
Tape &
Reel
F1100
F1102
F1150
High Side
Both
High Side
IDTF1162NBGI8
RF product Line
Green
Industrial
Temp range
F1152
1400 - 2200
50 - 350
8.5
Low Side
F 1162
1
2300 – 2700
50 – 500
8 .9
Both
– with High side injection
IDT Zero-Distortion
TM
Mixer
1
Rev1, July 2012
DATASHEET
RF to IF Dual Downconverting Mixer
2300 - 2700 MHz F1162NBGI
A
BSOLUTE
M
AXIMUM
R
ATINGS
VCC to GND
STBY, LC
MODE
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
θ
JA
(Junction – Ambient)
θ
JC
(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) .
-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
T
C
= -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-Distortion
TM
Mixer
2
Rev1, July 2012
DATASHEET
RF to IF Dual Downconverting Mixer
2300 - 2700 MHz F1162NBGI
IDTF1162 S
PECIFICATION
Specifications apply at V
CC
= +5.00V, T
C
= +25°C F
RF
=
2600 MHz,
F
IF
=
400MHz,
Low Side Injection, P
LO
= 0 dBm, STBY = GND, LC
MODE
= V
IH
(STD Mode), EVKit BOM = Standard Mode, Transformer Loss included (not de-embedded) unless otherwise noted.
Parameter
Logic Input High
Logic Input Low
Logic Current
Logic Current
Supply Voltage(s)
Operating
Temperature Range
Supply Current
Supply Current
Comment
For Standby, LC
MODE
Pins
For Standby, LC
MODE
Pins
For Standby Pin
For LC
MODE
Pin
All V
CC
pins
Case Temperature
Total V
CC
, STD Mode
Total Both Channels
Symbol
V
IH
V
IL
I
IH,
I
IL
I
IH,
I
IL
V
CC
T
CASE
I
STD
I
LC
min
2
typ
max
units
V
0.8
-30
-100
4.75 to
5.25
-40 to
+100
330
375
1
V
µA
µA
V
degC
mA
mA
+30
-20
Total V
CC
, LC Mode
LC
MODE
= GND
EVkit BOM = LC Mode
Total Both Channels
230
260
Standby Mode
Supply Current
RF Freq Range
IF Freq Range
LO Freq Range
LO Power
RF Input Impedance
IF Output Impedance
LO port Impedance
STBY = V
IH
LC
MODE
> V
IH
(STD Mode)
Total Both Channels
I
STBY
F
RF
F
IF
F
LO
P
LO
Z
RF
Z
IF
Z
LO
23
2300 to
2700
50 to 500
1800 to
2900
-6 to +6
50
200
50
30
mA
MHz
MHz
MHz
dBm
Operating Range
Operating Range
Operating Range
Operating Range
Single Ended
Return Loss ~20 dB
Differential
Return Loss ~ 15 dB
Single Ended
Return Loss ~15 dB
•
Pin = -13 dBm
•
Gate STBY from V
IH
to V
IL
•
Time for IF Signal to settle to
within 0.1 dB of final value
Settling Time
T
SETT
0.150
µsec
Conversion Gain
Gain STD Mode
•
•
•
•
F
RF
= 2300 MHz
LC
MODE
= V
IH
EVkit BOM = STD Mode
F
IF
= 400 MHz (Low Side Inj.)
G
STD
7.2
8.4
9.6
dB
IDT Zero-Distortion
TM
Mixer
3
Rev1, July 2012
DATASHEET
RF to IF Dual Downconverting Mixer
2300 - 2700 MHz F1162NBGI
IDTF1162 S
PECIFICATION
(C
ONTINUED
)
Parameter
Gain LC Mode
Comment
Conversion Gain
•
•
•
•
F
RF
= 2700 MHz
LC
MODE
= GND
EVkit BOM = LC Mode
F
IF
= 200 MHz (High Side Inj.)
Symbol
G
LC
min
6.8
typ
7.9
max
9.0
units
dB
NF STD Mode
Noise Figure
•
RF trace de-embedded
•
F
IF
= 200 MHz
NF
STD
9.9
dB
Noise Figure
NF LC Mode
•
RF trace de-embedded
•
LC
MODE
= GND, EVKit BOM = LC
•
F
IF
= 200 MHz
+100 MHz offset blocker
P
BLOCKER
= +10 dBm
F
IF
= 250 MHz
P
IN
= -10 dBm per tone
800 KHz Tone Separation
P
IN
= -10 dBm per tone
F
IF
= 200 MHz (Low Side Inj.)
F
RF
= 2600 MHz
800 KHz Tone Separation
LC
MODE
= GND
EVKit BOM = LC Mode
P
IN
= -10 dBm per tone
800 KHz Tone Separation
F
IF
= 154 MHz (High Side Inj.)
F
RF
= 2600 MHz
Modified LC mode BOM (p. 26)
P
IN
= -10 dBm
Frequency = F
RF
- ½ F
IF
Input referred
400 MHz IF
LC
MODE
= GND
EVKit BOM = LC Mode
F
IF
= 200 MHz (Low Side Inj.)
Blocker
unmodulated tone
P
IN
= +8 dBm, +100 MHz offset
Signal Pin Tone = -20 dBm
Measure ∆G of signal
F
IF
= 250 MHz
IF_B Pout vs. IF_A w/ RF_A input
LO Frequency = 2200 MHz
Pin = -10 dBm
NF
LC
9.7
dB
NF w/Blocker
Output IP3 – STD mode
NF
BLK
IP3
O1
38
2
23.5
43
dB
dBm
Output IP3 – LC mode
IP3
O3
33.5
37.7
dBm
Output IP3 – High Side
Injection
2RF – 2LO rejection
1 dB Compression –
STD Mode
1 dB Compression – LC
Mode
IP3
O2
43
dBm
2x2
P1dB
I1
P1dB
I2
11
8
-68
11.9
10.2
dBc
dBm
dBm
Gain Comp. w/blocker
∆G
AC
ISO
C
ISO
LI
ISO
RI
ISO
LR
0.15
dB
Channel Isolation
LO to IF leakage
RF to IF leakage
LO to RF leakage
63
-32
-57
-41
-23
-43
dB
dBm
dBm
dBm
•
LO Frequency = 2345 MHz
•
Low Current Mode
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
IDT Zero-Distortion
TM
Mixer
4
Rev1, July 2012
DATASHEET
RF to IF Dual Downconverting Mixer
2300 - 2700 MHz F1162NBGI
T
YPICAL
O
PERATING
C
ONDTIONS
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 (T
C
= Case Temperature)
Where noted, T
A
or T
AMB
= Ambient Temperature
IDT Zero-Distortion
TM
Mixer
5
Rev1, July 2012