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200362D Skyworks Proprietary and Confidential information Products and Product Information are Subject to Change Without Notice November 6, 2006 1
PRELIMINARY DATA SHEET
SKY73020: 700 1000 MHz High Gain and Linearity DiversityDownconversion Mixer for 2G/3G Base Station TransceiverApplications
Applications
2G/3G base station transceivers:
GSM/EDGE, CDMA, UMTS/WCDMA, iDEN
Land mobile radio
ISM band transceivers
High performance radio links
RF identification
Features
Operating frequency range: 700 to 1000 MHz
IF frequency range: 50 to 250 MHz
Conversion gain: 7.0 dB
Input IP3: 27.0 dBm
Output IP3: 34.0 dBm
Noise figure: 10.2 dB
Integrated LO drivers
Integrated low-loss RF baluns
High linearity IF amplifiers
On-chip SPDT LO switch (greater than 65 dB LO-to-LO isolation)
Small, MCM (36-pin, 6 x 6 mm) Pb-free package (MSL3, 260 C
per JEDEC J-STD-020)
Skyworks offers lead (Pb)-free RoHS (Restriction of
Hazardous Substances) compliant packaging.
Description
The SKY73020 is a fully integrated diversity mixer that includes
Local Oscillator (LO) drivers, an LO switch, high linearity mixers,
and large dynamic range Intermediate Frequency (IF) amplifiers.
Low-loss RF baluns have also been included to reduce design
complications and lower system cost.
The SKY73020 features an input IP3 of 27.0 dBm and a Noise
Figure (NF) of 10.2 dB, making the device an ideal solution for
high dynamic range systems such as 2G/3G base station
receivers. The LO switch provides more than 65 dB of isolationbetween LO inputs and supports the switching time required for
GSM/EDGE base stations.
The SKY73020 is manufactured using a robust silicon BiCMOS
process and has been designed for optimum long-term reliability.
The SKY73020 diversity downconversion mixer is provided in a
compact, 36-pin 6 x 6 mm Multi-Chip Module (MCM). A functional
block diagram is shown in Figure 1. The pin configuration and
package are shown in Figure 2. Signal pin assignments and
functional pin descriptions are provided in Table 1.
S643
RFA
RFB
IFB+
RIFB
IFB
VCC_
IFB VCC_LO
LO1
LO2
LO_SEL
IFA+
RIFA
IFA
VCC_
IFA
VCC_
LO
Figure 1. SKY73020 Block Diagram
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2 November 6, 2006 Skyworks Proprietary and Confidential information Products and Product Information are Subject to Change Without Notice 200362D
S646
27
26
25
24
23
22
21
20
19
1
2
3
4
5
6
7
8
9
10 11 12 13 14 15 16 17 18
36 35 34 33 32 31 30 29 28
NC
RFA
VCC_LO
GND
VCC_LO
GND
NC
RFB
VCC
_RFB
NC
GND
IFB+
IFB
NC
VCC
_IFB
RIFB
NC
VCC
_RFA
NC
GND
IFA
IFA+
NC
VCC
_IFA
RIFA
NC
GND
GND
LO2
GND
GND
GND
LO_SEL
GND
LO1
VCC_LO
Figure 2. SKY73020 Pinout 36-Pin MCM
Table 1. SKY73020 Signal Descriptions
Pin # Name Description Pin # Name Description
1 RFA Channel A RF input 19 LO1 Local oscillator 1 input
2 NC No connect 20 GND Ground
3 GND Ground 21 VCC_LO DC supply, +5 V
4 VCC_LO DC supply, +5 V 22 GND Ground
5 GND Ground 23 LO_SEL Local oscillator select switch control
6 VCC_LO DC supply, +5 V 24 GND Ground
7 GND Ground 25 GND Ground
8 NC No connect 26 GND Ground
9 RFB Channel B RF input 27 LO2 Local oscillator 2 input
10 VCC_RFB Channel B RF DC supply, +5 V 28 NC No connect
11 NC No connect 29 RIFA Channel A IF bias adjust
12 GND Ground 30 VCC_IFA Channel A IF DC supply, +5 V
13 IFB+ Positive channel B IF output 31 NC No connect
14 IFB Negative channel B IF output 32 IFA+ Positive channel A IF output
15 NC No connect 33 IFA Negative channel A IF output
16 VCC_IFB Channel B IF DC supply, +5 V 34 GND Ground
17 RIFB Channel B IF bias adjust 35 NC No connect
18 NC No connect 36 VCC_RFA Channel A RF DC supply, +5 V
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Functional Description
The SKY73020 is a high gain diversity mixer, optimized for base
station receiver applications. The device consists of two diversity
channels (A and B), each consisting of a low-loss RF balun, high
linearity passive mixer, and a low-noise IF amplifier.
Two LO amplifiers (independent of channels A and B) are also
included that allow the SKY73020 to connect directly to the output
of a Voltage Controlled Oscillator (VCO). This eliminates the extra
gain stages needed by most discrete passive mixers. A Single-
Pole, Double-Throw (SPDT) switch has been included to select
between two different LO inputs for frequency hopping
applications (i.e., GSM).
RF Baluns and Passive Mixer
The RF baluns provide a single-ended input, which can easily be
matched to 50 using a simple external matching circuit. The RF
baluns offer very low loss, and excellent amplitude and phase
balance.
The high linearity SKY73020 is a passive, double balanced mixer
that provides a very low conversion loss and an excellent 3rd
Order Input Intercept Point (IIP3).
Addtionally, the balanced nature of the mixer provides for high
port-to-port isolation.
LO Buffers and SPDT LO Switch
The LO buffers allow the input power of the SKY73020 to be in
the range of 3 dBm. The LO section is optimized for low-side LO
injection. However, each of the two LOs can be driven over a wide
frequency range with only slight degradation in performance.
A high isolation SPDT switch allows the SKY73020 to be used for
frequency hopping applications. This switch provides greater than
65 dB of LO1 to LO2 isolation:
LO_SEL Input LO Path Selected
High LO1 (pin 19) enabled
Low LO2 (pin 27) enabled
For applications that do not require frequency hopping, LO_SEL isfixed to one state and the appropriate LO input is used. An internal
pull-down resistor enables the LO2 input.
IF Amplifier
The SKY73020 includes high dynamic range IF amplifiers that
follow the passive mixers in the signal path. The outputs require a
supply voltage connection using inductive chokes. These choke
inductors should be high-Q and have the ability to handle 200 mA
or greater.
A simple matching network allows the output ports to be matched
to a balanced 200 impedance. The IF amplifiers are optimized
for IF frequencies between 50 and 250 MHz. The IF amplifiers canbe operated outside of this range, but with a slight degradation in
performance.
Electrical and Mechanical Specifications
The absolute maximum ratings of the SKY73020 are provided in
Table 2 and the recommended operating conditions in Table 3.
Electrical characteristics for the SKY73020 are provided in
Table 4.
Typical performance characteristics of the SKY73020 are
illustrated in Figures 3 through 39.
Table 2. SKY73020 Absolute Maximum Ratings
Parameter Symbol Minimum Maximum Units
Supply voltage (VCC_LO, VCC_RFB, VCC_IFB,
VCC_IFA, and VCC_RFA)
VCC 5.5 V
Supply current ICC 420 mA
RF input power PRF 20 dBm
LO input power PLO 6 dBm
Operating case temperature TC 40 +85 C
Storage case temperature TSTG 40 +150 C
Note: Exposure to maximum rating conditions for extended periods may reduce device reliability. There is no damage to device with only one parameter set at the limit and all other
parameters set at or below their nominal value.
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Table 3. SKY73020 Recommended Operating Conditions
Parameter Symbol Minimum Typical Maximum Units
Supply voltage (VCC_LO, VCC_RFB,
VCC_IFB, VCC_IFA, and VCC_RFA)
VCC 4.75 5.00 5.25 V
Supply current ICC 370 420 mA
LO input power PLO 3 0 +3 dBm
LO_SEL input:
high
low
LO_SELH
LO_SELL
2.2
0.8
V
V
Operating case temperature TC 40 +85 C
RF frequency range FRF 700 1000 MHz
LO frequency range (Note 1) FLO 625 950 MHz
IF frequency range FIF 50 250 MHz
Note 1: The SKY73020 has been optimized for low side LO injection. However, the LO can be used outside of the specified frequency range with degraded performance.
Table 4. SKY73020 Electrical Specifications (1 of 2)
(VCC = +5 V, TC = +25 C, LO Input Power = 0 dBm, RF Frequency = 900 MHz, IF Frequency = 70 MHz, LO Frequency = 830 MHz,
Unless Otherwise Noted)
Parameter Symbol Test Condition Min Typical Max Units
Conversion gain G 5.0 7.0 8.0 dB
Noise Figure NF 10.2 13.0 dB
Noise Figure with a blocker signal NFBLK Blocking signal input
power = +8 dBm
23 dB
Third order input intercept point IIP3 Tone spacing = 800 kHz,
Input power = 10 dBm
each tone
27.0 dBm
Third order output intercept point OIP3 Tone spacing = 800 kHz,
Input power = 10 dBm
each tone
32.5 34.0 dBm
2RF 2LO 2x2 PRF = 10 dBm 63 dBc
3RF 3LO 3x3 PRF = 10 dBm 70 dBc
Input 1 dB compression point IP1dB 16.5 dBm
Output 1 dB compression point OP1dB 19.0 22.5 dBm
LO1-to-LO2 isolation 65 dB
Channel-to-channel isolation 46 dB
RF-to-IF isolation 75 dB
LO leakage:
@ RF port
@ IF port
45
80
30 dBm
dBm
LO_SEL input 20 +150 +250 A
LO switching time 1 s
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Table 4. SKY73020 Electrical Specifications (2 of 2)
(VCC = +5 V, TC = +25 C, LO Input Power = 0 dBm, RF Frequency = 900 MHz, IF Frequency = 70 MHz, LO Frequency = 830 MHz,
Unless Otherwise Noted)
Parameter Symbol Test Condition Min Typical Max Units
RF port input return loss ZIN_RF With external matching
components
14 dB
LO port input return loss ZIN_LO With external matching
components
14 dB
IF port input return loss ZOUT_IF With external matching
components
14 dB
10
9
8
7
6
5880875 890885 900895 910
Frequency (MHz)
Gain(dB)
905 920915
3 dBm0 dBm
+3 dBm
Figure 3. Mixer A Gain vs Frequency and LO Power
10
9
8
7
6
5
880875 890885 900895 910 915 920
Frequency (MHz)
Gain(dB)
905
4.75 V5.00 V5.25 V
Figure 5. Mixer A Gain vs Frequency and Supply Voltage
10
9
8
7
6
5
880875 890885 900895 910 915 920
Frequency (MHz)
Gain(dB)
905
0oC
25oC
85oC
Figure 4. Mixer A Gain vs Frequency and Temperature
10
9
8
7
6
5
880875 890885 900895 910 915 920
Frequency (MHz)
Gain(dB)
905
3 dBm0 dBm
+3 dBm
Figure 6. Mixer B Gain vs Frequency and LO Power
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10
9
8
7
6
5
880875 890885 900895 910 915 920
Frequency (MHz)
Gain(dB)
905
0oC
25oC
85oC
Figure 7. Mixer B Gain vs Frequency and Temperature
13
12
11
10
9
8
7
6
880875 890885 900895 910 915 920
Frequency (MHz)
NoiseFigure(dB)
905
3 dBm0 dBm
+3 dBm
Figure 9. Mixer A Noise Figure vs Frequency and LO Power
13
12
11
10
9
8
7
6
880875 890885 900895 910 915 920
Frequency (MHz)
NoiseFigure(dB)
905
4.75 V5.00 V5.25 V
Figure 11. Mixer A Noise Figure vs Frequency and Supply Voltage
10
9
8
7
6
5880875 890885 900895 910 915 920
Frequency (MHz)
Gain(dB)
905
4.75 V5.00 V5.25 V
Figure 8. Mixer B Gain vs Frequency and Supply Voltage
13
12
11
10
9
8
7
6880875 890885 900895 910 915 920
Frequency (MHz)
NoiseFigure(dB)
905
0oC
25oC
85oC
Figure 10. Mixer A Noise Figure vs Frequency and Temperature
13
12
11
10
9
8
7
6
880875 890885 900895 910 915 920
Frequency (MHz)
NoiseFigure(dB)
905
3 dBm0 dBm
+3 dBm
Figure 12. Mixer B Noise Figure vs Frequency and LO Power
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13
12
11
10
9
8
7
6880875 890885 900895 910 915 920
Frequency (MHz)
Nois
eFigure(dB)
905
0oC
25oC
85oC
Figure 13. Mixer B Noise Figure vs Frequency and Temperature
25
24
23
22
21
20880875 890885 900895 910
Frequency (MHz)
Output1dBCompressionPoint(dBm)
905 920915
3 dBm0 dBm
+3 dBm
Figure 15. Mixer A OP1dB vs Frequency and LO Power
25
24
23
22
21
20880875 890885 900895 910 915 920
Frequency (MHz)
Output1dBCompressionPoint(dBm)
905
4.75 V5.00 V5.25 V
Figure 17. Mixer A OP1dB vs Frequency and Supply Voltage
13
12
11
10
9
8
7
6880875 890885 900895 910 915 920
Frequency (MHz)
NoiseFigure(dB)
905
4.75 V5.00 V5.25 V
Figure 14. Mixer B Noise Figure vs Frequency and Supply Voltage
25
24
23
22
21
20
880875 890885 900895 910 915 920
Frequency (MHz)
Output1dBCompressionPoint(dBm)
905
0oC
25o
C85oC
Figure 16. Mixer A OP1dB vs Frequency and Temperature
25
24
23
22
21
20
880875 890885 900895 910
Frequency (MHz)
Output1dBCompressionPoint(dBm)
905 920915
3 dBm0 dBm
+3 dBm
Figure 18. Mixer B OP1dB vs Frequency and LO Power
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25
24
23
22
21
20
880875 890885 900895 910 915 920
Frequency (MHz)
Output1dBCompressionPoint(dBm)
905
0oC
25oC
85oC
Figure 19. Mixer B OP1dB vs Frequency and Temperature
37
36
35
34
33
32
31
30
880875 890885 900895 910
Frequency (MHz)
Output3rdOrderInterceptPoi
nt(dBm)
905 920915
3 dBm0 dBm
+3 dBm
Figure 21. Mixer A OIP3 vs Frequency and LO Power
37
36
35
34
33
32
31
30880875 890885 900895 910 915 920
Frequency (MHz)
Output3rdOrderInterceptPoint(dBm)
905
4.75 V5.00 V5.25 V
Figure 23. Mixer A OIP3 vs Frequency and Supply Voltage
25
24
23
22
21
20880875 890885 900895 910 915 920
Frequency (MHz)
Output1dBC
ompressionPoint(dBm)
905
4.75 V5.00 V5.25 V
Figure 20. Mixer B OP1dB vs Frequency and Supply Voltage
37
36
35
34
33
32
31
30
880875 890885 900895 910 915 920
Frequency (MHz)
Output3rdOrderInterceptPo
int(dBm)
905
0oC
25oC
85oC
Figure 22. Mixer A OIP3 vs Frequency and Temperature
37
36
35
34
33
32
31
30
880875 890885 900895 910
Frequency (MHz)
Output3rdOrderInterceptPoint(dBm)
905 920915
3 dBm0 dBm
+3 dBm
Figure 24. Mixer B OIP3 vs Frequency and LO Power
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37
36
35
34
33
32
31
30
880875 890885 900895 910 915 920
Frequency (MHz)
Output3rdOrderInterceptPoint(dBm)
905
0oC
25oC
85oC
Figure 25. Mixer B OIP3 vs Frequency and Temperature
65
60
55
50880 890885 900895 910 915
Frequency (MHz)
Channel-to-
ChannelIsolation
(dB)
905
4.75 V5.00 V
5.25 V
Figure 27. Channel A To Channel B Isolation vs Frequency and
Supply Voltage
80
75
70
65880 890885 900895 910 915
Frequency (MHz)
LO-to-LOIsolation(dB)
905
4.75 V5.00 V5.25 V
Figure 29. LO1-To-LO2 Isolation vs Frequency and Supply Voltage
37
36
35
34
33
32
31
30880875 890885 900895 910 915 920
Frequency (MHz)
Output3rdOrder
InterceptPoint(dBm)
905
4.75 V5.00 V5.25 V
Figure 26. Mixer B OIP3 vs Frequency and Supply Voltage
65
60
55
50880 890885 900895 910 915
Frequency (MHz)
Channel-to-
ChannelIsolation(dB)
905
0oC
25oC
85oC
Figure 28. Channel A To Channel B Isolation vs Frequency and
Temperature
80
75
70
65880 890885 900895 910 915
Frequency (MHz)
LO-to-LOIsolation(dB)
905
0oC
25oC
85oC
Figure 30. LO1-To-LO2 Isolation vs Frequency and Temperature
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60
65
70
75
80
85880 890885 900895 910 915
Frequency (MHz)
2RF
x2LO1(dBc)
905
4.75 V5.00 V5.25 V
Figure 31. Channel A 2RF 2LO vs Frequency and Supply Voltage
60
65
70
75
80
85880 890885 900895 910 915
Frequency (MHz)
2RFx2LO2(dBc)
905
4.75 V5.00 V5.25 V
Figure 33. Channel B 2RF 2LO vs Frequency and Supply Voltage
70
72
74
76
78
80
82
84
86880 890885 900895 910 915
Frequency (MHz)
LO1-to-IFALeakage(dBc)
905
4.75 V5.00 V5.25 V
Figure 35. Channel A LO1-to-IF Leakage vs Frequency and Supply
Voltage
60
65
70
75
80
85880 890885 900895 910 915
Frequency (MHz)
2RF
x2LO1(dBc)
905
0oC
25oC
85oC
Figure 32. Channel A 2RF 2LO vs Frequency and Temperature
60
65
70
75
80
85880 890885 900895 910 915
Frequency (MHz)
2RFx2LO2(dBc)
905
0oC
25oC
85o
C
Figure 34. Channel B 2RF 2LO vs Frequency and Temperature
70
72
74
76
78
80
82
84
86
880 890885 900895 910 915
Frequency (MHz)
LO1-to-IFALeakage(dBc)
905
0oC
25oC
85oC
Figure 36. Channel A LO1-to-IF Leakage vs Frequency and
Temperature
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80
78
76
74
72
880 890885 900895 910 915
Frequency (MHz)
RF-to-IF
AIsolation(dBc)
905
4.75 V5.00 V5.25 V
Figure 37. Channel A RF-to-IF Isolation vs Frequency and Supply
Voltage
40
42
44
46
48
50
52
54
56880 890885 900895 910 915
Frequency (MHz)
LO1/LO2-to-RFALeakage(dBc)
905
4.75 V5.00 V5.25 V
Figure 39. Channel A LO1-to-RF Leakage vs Frequency and
Supply Voltage
80
78
76
74
72
880 890885 900895 910 915
Frequency (MHz)
RF-to-IF
AIsolation(dBc)
905
0oC
25oC
85oC
Figure 38. Channel A RF-to-IF Isolation vs Frequency and
Temperature
40
42
44
46
48
50
52
54
56880 890885 900895 910 915
Frequency (MHz)
LO1/LO2-to-RFALeakage(dBc)
905
0oC
25oC
85oC
Figure 40. Channel A LO1-to-RF Leakage vs Frequency and
Temperature
Evaluation Board Description
The SKY73020 Evaluation Board is used to test the performance
of the SKY73020 downconversion mixer. An assembly drawing for
the Evaluation board is shown in Figure 41 and the layer detail is
provided in Figure 42.
Circuit Design Considerations
The following design considerations are general in nature and
must be followed regardless of final use or configuration:1. Paths to ground should be made as short and as low
impedance as possible.
2. The ground pad of the SKY73020 provides critical electrical
and thermal functionality. This pad is the main thermal
conduit for heat dissipation. Since the circuit board acts as
the heat sink, it must shunt as much heat as possible from
the device. Therefore, design the connection to the ground
pad to dissipate the maximum heat produced by the circuit
board. For more information on soldering the SKY73020, refer
to the Package and Handling Information section of this Data
Sheet.
3. Skyworks recommends including external bypass capacitors
on the VCC voltage inputs of the device.
4. Components L5, L6, L14, and L15 (see Figure 3) are high-Q,
low-loss inductors. These inductors must be able to pass
currents in excess of 200 mA DC.
5. Components R1 and R2 (see Figure 3) allow for external
adjustment of the IF amplifier bias points. For operation as
specified in Tables 3 and 4, these resistors are not required.
A schematic diagram for the SKY73020 Evaluation Board is
shown in Figure 43.
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S811
J4
J1
J7
J6
J3
J8
J5
L12
L13
L15
L11
R2L14
L1
L2
C28
C29
C26
C23
C20 C21
C18C17
C24
C22
L10C19
C15C12
C6
C7
C8
C14
C11
C16L8
L3
L5
L4
T1
L9
L6R1
C25
C32
C33
C27
C2
C3
C1
C4
C5U1
T2
Figure 41. SKY73020 Evaluation Board Assembly Diagram
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S903
Layer 1: Top -- Metal
Layer 2: Ground
Layer 3: Power Plane
Layer 4: Solid Ground Plane
Figure 42. SKY73020 Evaluation Board Layer Detail
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PRELIMINARY DATA SHEET SKY73020 DOWNCONVERSION MIXER
Skyworks Solutions, Inc. Phone [781] 376-3000 Fax [781] 376-3100 [email protected] www.skyworksinc.com
14 November 6, 2006 Skyworks Proprietary and Confidential information Products and Product Information are Subject to Change Without Notice 200362D
RFB
VCC_
RFB
NC
GND
IFB+
IFB
NC
VCC_
IFB
RIFB
VCC_
RFA
NC
GND
IFA+
IFA
NC
VCC_
IFA
RIFA
NC
VCC_LO
NC
GND
VCC_LO
GND
GND
NC
RFA
LO1
GND
GND
VCC_LO
GND
LO_SEL
GND
GND
LO2
J4
SKY73020
C15.6 pF
1
2
3
4
5
6
7
8
9
27
26
25
24
23
22
21
20
19
10 11 12 13 14 15 16 17 18
36 35 34 33 32 31 30 29 28
C322 nH
L26.8 pF
J7 C85.6 pF
VCC
VCC
C722 nH
L46.8 pF
L5470 nH
L8
39 nH
L6470 nH
C16
47 pF
C1733 pF
C2212 pF
J6
T1
DB714
VCC
VCC
NC
J3
VCC
VCC
VCC
VCC
C2333 pF
J8
C131 F
Element Jumper
C201 F
C1433 pF
C281 F
C2733 pF
C2847 pF
T2
DB714
VCC
J5L1339 nH
L14470 nH
L15470 nH
R2(Not Req'd)
R1(Not Req'd)
S685
Figure 43. SKY73020 Evaluation Board Schematic
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PRELIMINARY DATA SHEET SKY73020 DOWNCONVERSION MIXER
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200362D Skyworks Proprietary and Confidential information Products and Product Information are Subject to Change Without Notice November 6, 2006 15
Package Dimensions
Figure 44 shows the package dimensions for the 36-pin MCM and
Figure 45 provides the tape and reel dimensions.
Package and Handling Information
Since the device package is sensitive to moisture absorption, it is
baked and vacuum packed before shipping. Instructions on the
shipping container label regarding exposure to moisture after the
container seal is broken must be followed. Otherwise, problems
related to moisture absorption may occur when the part is
subjected to high temperature during solder assembly.
THE SKY73020 is rated to Moisture Sensitivity Level 3 (MSL3) at
260 C. It can be used for lead or lead-free soldering. For
additional information, refer to the Skyworks Application Note,
PCB Design & SMT Assembly/Rework Guidelines for MCM-L
Packages, document number 101752.
Care must be taken when attaching this product, whether it is
done manually or in a production solder reflow environment.
Production quantities of this product are shipped in a standard
tape and reel format. For packaging details, refer to the Skyworks
Application Note, Tape and Reel, document number 101568.
Electrostatic Discharge (ESD) Sensitivity
The SKY73020 is a static-sensitive electronic device. Do not
operate or store near strong electrostatic fields. Take proper ESD
precautions.
All measurements are in millimeters
Pads are solder mask defined on one edge and metaldefined on three edges.
Dimensioning and tolerancing according to ASME Y14.5M-1994
S689
6
6
Pin 1 Indicator
Metal Pad Edge
1.45 0.10
0.4 0.05
0.5 0.1
(0.1)
Side View
B
Bottom View
A
Detail A
Detail D
Top View
Pin 36
Pin 1
Pin 1 Indicator(See Detail D)
0.25 0.05
18X 2.9
(0.2 x 0.2)
Solder Mask Opening
36x SMT Pad
0.15 A B C
0.2 A B C
0.15 A B C
C
A
0.1
4X 2
4X 2
2X 1.9
2X 1.9
18X 2.9
3X R0.2
4X 1.5
4X 1.54X 1
4X 14X 0.5
4X 0.5
Figure 44. SKY73020 36-Pin MCM Package Dimensions
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PRELIMINARY DATA SHEET SKY73020 DOWNCONVERSION MIXER
Skyworks Solutions, Inc. Phone [781] 376-3000 Fax [781] 376-3100 [email protected] www.skyworksinc.com
16 November 6, 2006 Skyworks Proprietary and Confidential information Products and Product Information are Subject to Change Without Notice 200362D
C1222
Notes:1. Carrier tape: black conductive polystyrene2. Cover tape material: transparent conductive PSA3. Cover tape size: 9.3 mm width4. All dimensions are in millimeters A
B
2.00 0.05
1.55 0.05
0.30 0.05
5o Max.
5o Max.
6.3
0
1.75 0.10
1.50 Min.
5.5
0
0.0
5
8.00 4.00
A
B
B
A
1.70
12.0
00.3
0
6.30
Pin #1Indicator
Figure 45. SKY73020 Tape and Reel Dimensions
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PRELIMINARY DATA SHEET SKY73020 DOWNCONVERSION MIXER
Skyworks Solutions, Inc. Phone [781] 376-3000 Fax [781] 376-3100 [email protected] www.skyworksinc.com
200362D Skyworks Proprietary and Confidential information Products and Product Information are Subject to Change Without Notice November 6 2006 17
Ordering Information
Model Name Manufacturing Part Number Evaluation Kit Part Number
SKY73020 Downconversion Mixer SKY73020-11 (Pb-free package)
Copyright 2006 Skyworks Solutions, Inc. All Rights Reserved.
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