SKY13492-21 - Skyworks Solutions, Inc.

DATA SHEET
SKY13492-21: 0.7 to 2.7 GHz SP16T MIPI® Antenna Switch
Module
Applications
 2G/3G/4G multimode cellular handsets (LTE, UMTS, CDMA2000,
EDGE, GSM, TDD-LTE, TD-SCDMA)
 Embedded data cards
TRX1
TRX2
TRX3
TRX4
TRX5
Features
 Dedicated Band 7 TRX ports: 0.90 dB insertion loss @ 2.7 GHz
 High isolation and linearity
 Broadband frequency range: 0.7 to 2.7 GHz
 Fourteen linear TRX ports
 Integrated low and high band GSM harmonic filters
 External MIPI select pin to enable multiple trigger controls
 Small MCM (24-pin, 2.5 x 3.3 x 0.8 mm) package (MSL3,
260 C per JEDEC J-STD-020)
TRX6
TRX7
TRX8
ANT
TRX9
TRX10
TRX11
TRX12
TRX13
TRX14
TXHB
TXLB
SCLK
MIPI_SELECT
VIO
SDATA
MIPI Decoder
VDD
Skyworks Green™ products are compliant with
all applicable legislation and are halogen-free.
For additional information, refer to Skyworks
Definition of Green™, document number
SQ04-0074.
S3433
Figure 1. SKY13492-21 Block Diagram
Description
The SKY13492-21 is a Single-Pole, Sixteen-Throw (SP16T)
antenna switch with an integrated Mobile Industry Processor
Interface (MIPI) controller. Using an advanced switching
technology, the SKY13492-21 maintains low insertion and high
isolation, which makes it an ideal choice for UMTS, CDMA2000,
EDGE, GSM, and LTE applications.
The design features two dedicated GSM transmit ports and three
dedicated ultra low-loss TRX ports. The switch also has an
excellent triple beat ratio and 2nd/3rd Order Intermodulation
Distortion (IMD2/IMD3) performance.
Switching is controlled by the MIPI decoder. There is an external
MIPI select pin that enables how the switch responds to power
mode triggers. When this pin is grounded, the switch responds to
any of the power mode triggers. When this pin is left open, the
switch responds to individual power mode triggers. No external
DC blocking capacitors are required on the RF paths as long as no
DC voltage is applied.
The SKY13492-21 is manufactured in a compact,
2.5 x 3.3 x 0.8 mm, 24-pin surface mount Multi-Chip Module
(MCM) package.
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.
Skyworks Solutions, Inc. • Phone [781] 376-3000 • Fax [781] 376-3100 • [email protected] • www.skyworksinc.com
202826C • Skyworks Proprietary Information • Products and Product Information are Subject to Change Without Notice • March 13, 2014
1
TRX8
TRX9
TRX10
TRX11
TRX12
TRX1
TRX2
TRX14
DATA SHEET • SKY13492-21: SP16T ANTENNA SWITCH WITH MIPI INTERFACE
20
19
18
17
16
15
14
13
TXLB
23
10
VIO
GND
24
9
VDD
1
2
3
4
5
6
7
8
MIPI_SELECT
SDATA
TRX13
11
TRX3
22
TRX4
TXHB
TRX5
SCLK
TRX6
12
TRX7
21
ANT
GND
S3422
Figure 2. SKY13492-21 Pinout – 24-Pin MCM
(Top View)
Table 1. SKY13492-21 Signal Descriptions (1 of 2)
Pin
Name
Description
Pin
Name
Description
1
ANT
Antenna port
8
MIPI_SELECT
MIPI interface select. When this pin is grounded,
the switch responds to any of the power mode
triggers. When this pin is left open, the switch is
RFFE MIPI compliant and responds to individual
power mode triggers.
2
TRX7
3G WCDMA transmit/receive port 7. This pin is either
connected directly to or disconnected from pin 1,
depending on the applied control data.
9
VDD
DC power supply
3
TRX6
3G WCDMA transmit/receive port 6. This pin is either
connected directly to or disconnected from pin 1,
depending on the applied control data.
10
VIO
MIPI decoder enable/reference voltage
4
TRX5
3G WCDMA transmit/receive port 5. This pin is either
connected directly to or disconnected from pin 1,
depending on the applied control data.
11
SDATA
Data input/output
5
TRX4
3G WCDMA transmit/receive port 4. This pin is either
connected directly to or disconnected from pin 1,
depending on the applied control data.
12
SCLK
Clock signal
6
TRX3
Ultra low-loss 3G WCDMA transmit/receive port 3.
This pin is either connected directly to or
disconnected from pin 1, depending on the applied
control data.
13
TRX14
3G WCDMA transmit/receive port 14. This pin is
either connected directly to or disconnected from
pin 1, depending on the applied control data.
7
TRX13
3G WCDMA transmit/receive port 13. This pin is
either connected directly to or disconnected from pin
1, depending on the applied control data.
14
TRX2
Ultra low-loss 3G WCDMA transmit/receive port 2.
This pin is either connected directly to or
disconnected from pin 1, depending on the
applied control data.
Skyworks Solutions, Inc. • Phone [781] 376-3000 • Fax [781] 376-3100 • [email protected] • www.skyworksinc.com
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March 13, 2014 • Skyworks Proprietary Information • Products and Product Information are Subject to Change Without Notice • 202826C
DATA SHEET • SKY13492-21: SP16T ANTENNA SWITCH WITH MIPI INTERFACE
Table 1. SKY13492-21 Signal Descriptions (2 of 2)
Pin
Name
Description
Pin
Name
Description
15
TRX1
Ultra low-loss 3G WCDMA transmit/receive port 1.
This pin is either connected directly to or
disconnected from pin 1, depending on the applied
control data.
20
TRX8
3G WCDMA transmit/receive port 8. This pin is
either connected directly to or disconnected from
pin 1, depending on the applied control data.
16
TRX12
3G WCDMA transmit/receive port 12. This pin is
either connected directly to or disconnected from pin
1, depending on the applied control data.
21
GND
Ground
17
TRX11
3G WCDMA transmit/receive port 11. This pin is
either connected directly to or disconnected from pin
1, depending on the applied control data.
22
TXHB
GSM transmit high band. This pin is either
connected directly to or disconnected from pin 1,
depending on the applied control data.
18
TRX10
3G WCDMA transmit/receive port 10. This pin is
either connected directly to or disconnected from pin
1, depending on the applied control data.
23
TXLB
GSM transmit low band. This pin is either
connected directly to or disconnected from pin 1,
depending on the applied control data.
19
TRX9
3G WCDMA transmit/receive port 9. This pin is either
connected directly to or disconnected from pin 1,
depending on the applied control data.
24
GND
Ground
Note:
Bottom ground paddles must be connected to ground.
Table 2. SKY13492-21 Absolute Maximum Ratings (Note 1)
Parameter
Symbol
Minimum
Maximum
Units
2.5
6.0
V
2
V
Supply voltage
VDD
MIPI decoder enable/reference voltage
VIO
Clock signal voltage
SCLK
VIO
V
Data signal voltage
SDATA
VIO
V
RF input power:
LTX pin
HTX pin
All TRXx pins
PIN
+36
+34
+31
dBm
dBm
dBm
Storage temperature
TSTG
–55
+150
C
Operating temperature
TOP
–30
+90
C
Note 1: 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. Exceeding any of the limits listed here may result in permanent damage to the device.
CAUTION: Although this device is designed to be as robust as possible, Electrostatic Discharge (ESD) can damage this device. This device
must be protected at all times from ESD. Static charges may easily produce potentials of several kilovolts on the human body
or equipment, which can discharge without detection. Industry–standard ESD precautions should be used at all times.
Skyworks Solutions, Inc. • Phone [781] 376-3000 • Fax [781] 376-3100 • [email protected] • www.skyworksinc.com
202826C • Skyworks Proprietary Information • Products and Product Information are Subject to Change Without Notice • March 13, 2014
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DATA SHEET • SKY13492-21: SP16T ANTENNA SWITCH WITH MIPI INTERFACE
Electrical and Mechanical Specifications
The absolute maximum ratings of the SKY13492-21 are provided
in Table 2. Electrical specifications are provided in Tables 3 and 4.
IMD2 and IMD3 test conditions for various frequencies are listed
in Tables 5 and 6, respectively.
Triple Beat Ratio (TBR) test conditions for bands 2 and 5 are listed
in Table 7.
Figure 3 shows a timing diagram. Figure 4 illustrates the test
setup used to measure intermodulation products. This industry
standardized test is used to simulate the WCDMA Band 1 linearity
of the antenna switch. A +20 dBm Continuous Wave (CW) signal,
fFUND, is sequentially applied to the TRX1 through TRX14 ports,
while a –15 dBm CW blocker signal, fBLK, is applied to the ANT
port.
The resulting 3rd Order Intermodulation Distortion (IMD3), fRX, is
measured over all phases of fFUND. The SKY13492-21 exhibits
exceptional performance for all TRXx ports.
Table 8 shows the isolation matrix for "On" to "Off" arms. Table 9
shows the isolation matrix for "Ant” to "Off" arms. Table 10
provides the matrix of insertion loss and return loss information.
Table 11 describes the register content and programming
read/write sequences. Refer to the MIPI Alliance Specification for
RF Front–End Control Interface (RFFE), v1.10 (26 July 2011) for
additional information on MIPI programming sequences and MIPI
bus specifications.
Figures 5 and 6 provide the timing diagrams for register write
commands and read commands, respectively.
Table 12 provides the Register_0 logic. Table 13 describes the
register parameters and bit values.
Table 3. SKY13492-21 DC Electrical Specifications (Note 1)
(VDD = 2.85 V, TOP = +25 C, Characteristic Impedance [ZO] = 50 Ω, Unless Otherwise Noted)
Parameter
Symbol
Supply voltage
VDD
Supply current, active mode
IDD
Interface supply voltage
VIO
Interface signal:
High
Low
SDATA
Test Condition
Min
Typical
Max
2.50
2.85
6.00
V
50
100
μA
1.80
1.95
V
0.2 × VIO
V
V
5
5
μA
μA
1.65
0.8 × VIO
Control current:
High
Low
Units
Note 1: Performance is guaranteed only under the conditions listed in this Table.
Table 4. SKY13492-21 RF Electrical Specifications (Note 1) (1 of 2)
(VDD = 2.85 V, TOP = +25 C, Characteristic Impedance [ZO] = 50 Ω, Unless Otherwise Noted)
Parameter
Symbol
Operating frequency
f
Insertion loss
IL
Test Condition
Min
Typical
0.7
Max
Units
2.7
GHz
TXLB, 824 to 915 MHz
1.35
1.50
dB
TXHB, 1710 to 1910 MHz
1.25
1.40
dB
TRX1 to TRX14 ports (except TRX7):
700 to 824 MHz
824 to 960 MHz
1710 to 1990 MHz
0.55
0.65
0.80
0.80
0.90
0.95
dB
dB
dB
TRX4 to TRX14 ports (except TRX7):
2110 to 2170 MHz
2300 to 2690 MHz
0.90
0.90
1.05
1.15
dB
dB
TRX1/2/3 ports:
2110 to 2170 MHz
2300 to 2690 MHz
0.80
0.90
1.00
1.10
dB
dB
TRX7 port:
824 to 960 MHz
1710 to 1990 MHz
2110 to 2170 MHz
2300 to 2690 MHz
0.70
0.90
1.15
1.15
0.90
1.05
1.25
1.25
dB
dB
dB
dB
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DATA SHEET • SKY13492-21: SP16T ANTENNA SWITCH WITH MIPI INTERFACE
Table 4. SKY13492-21 RF Electrical Specifications (Note 1) (2 of 2)
(VDD = 2.85 V, TOP = +25 C, Characteristic Impedance [ZO] = 50 Ω, Unless Otherwise Noted)
Parameter
Symbol
Test Condition
Min
Typical
Max
Units
GSM LB TX:
2f0 attenuation
3f0 attenuation
4f0 attenuation
H2LB
H3LB
H4LB
2f0 attenuation 1830 MHz
3f0 attenuation 2745 MHz
4f0 attenuation 3660 MHz
22
23
30
24
27
35
dB
dB
dB
GSM HB TX:
2f0 attenuation
3f0 attenuation
H2HB
H3HB
2f0 attenuation 3820 MHz
3f0 attenuation 5730 MHz
20
17
22
19
dB
dB
824 to 1910 MHz
1910 to 2690 MHz
25
20
28
23
dB
dB
824 to 1910 MHz
1910 to 2690 MHz
20
17
23
20
dB
dB
0.7 to 2.7 GHz
14
18
dB
Isolation (TRXx to any off TRXx port
[non-adjacent ports])
(See Table 8 for full matrix)
Iso
Isolation (TRXx to any off TRXx port
[adjacent ports])
(See Table 8 for full matrix)
Iso
On state match
Return Loss
GSM harmonics:
High band
2fo, 3fo
Low band
TRXx harmonics
2fo, 3fo
TRX1 through TRX14, band 13 2nd
harmonics
nd
2fo
PIN = +33 dBm, 50 Ω
PIN = +33 dBm, 3:1 VSWR
–45
–36
–38
dBm
dBm
PIN = +35 dBm, 50 Ω
PIN = +35 dBm, 3:1 VSWR
–45
–36
–40
dBm
dBm
PIN = +25 dBm, 50 Ω,
f = 704 to 2700 MHz
–63
–59
dBm
PIN = +25 dBm,
5:1 VSWR,
f = 704 to 2700 MHz
–40
dBm
PIN = +25 dBm,
f = 787 MHz
–78
dBm
2 Order Intermodulation Distortion
IMD2
See test conditions in Table 5
–104
–102
dBm
3rd Order Intermodulation Distortion
IMD3
See test conditions in Table 6
–110
–105
dBm
Triple Beat Ratio:
650 to 900 MHz
1710 to 2155 MHz
TBR
See test conditions in Table 7
Turn–on time (See Figure 3)
tON
From application of VDD and VIO
Switching speed (See Figure 3)
tS
Port to port
dBc
dBc
+81
+81
2
20
μs
5
μs
Note 1: Performance is guaranteed only under the conditions listed in this Table.
Skyworks Solutions, Inc. • Phone [781] 376-3000 • Fax [781] 376-3100 • [email protected] • www.skyworksinc.com
202826C • Skyworks Proprietary Information • Products and Product Information are Subject to Change Without Notice • March 13, 2014
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DATA SHEET • SKY13492-21: SP16T ANTENNA SWITCH WITH MIPI INTERFACE
Table 5. IMD2 Test Conditions
Power Blocker
(dBm)
Receive Frequency
(MHz)
Frequency Blocker,
Low
(MHz)
Frequency Blocker,
High
(MHz)
190
4090
2140.0
1880.0
80
3840
1960.0
1732.0
400
3864
Band
Transmit
Frequency
(MHz)
1
1950.0
2
4
Transmit Power
(dBm)
+20
2132.0
–15
5
836.5
45
1718
881.5
7
2535.0
120
5187
2655.0
8
897.0
45
1839
942.0
Table 6. IMD3 Test Conditions
Band
Transmit Frequency
(MHz)
Transmit Power
(dBm)
1
1950.0
1760.0
2140.0
2
1880.0
1800.0
1960.0
4
1732.0
1332.0
5
836.5
791.5
881.5
7
2535.0
2415.0
2655.0
8
897.0
852.0
942.0
+20
Frequency Blocker
(MHz)
Power Blocker
(dBm)
Receive Frequency
(MHz)
2132.0
–15
Table 7. Triple Beat Ratio Test Conditions
Band
Transmit
Frequency 1
(MHz)
2
1880.0
5
836.5
Transmit Power 1
(dBm)
+21.5
Transmit
Frequency 2
(MHz)
1881.0
837.5
Transmit Power 2
(dBm)
+21.5
Frequency
Blocker @ ANT
(MHz)
1960.0
Power
Blocker
(dBm)
–30
881.5
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TBR Product
Frequency
(MHz)
1960.0 ± 1
881.5 ± 1
DATA SHEET • SKY13492-21: SP16T ANTENNA SWITCH WITH MIPI INTERFACE
VDD (V)
VDD
Final VDD
50% of final VDD
Time (μs)
Rising edge of last clock
signal that sets the switch
into the desired state
VIO
VIO (V) – Interface Supply
SCLK (V) – Interface Signal
SCLK
Time (μs)
POUT (dBm)
POUT
90% of POUT
Time (μs)
Switching Time
tsw < 5 μs
Switching Time (tSW) is measured from the
rising edge of the last clock signal to 90% of RF power.
Turn-on Time (tON) is measured from 50%
of final VDD supply voltage to 90% of RF power.
Turn-on Time
tON ~ 20 μs
Y0113
Figure 3. SKY13492-21. Timing Diagram
Skyworks Solutions, Inc. • Phone [781] 376-3000 • Fax [781] 376-3100 • [email protected] • www.skyworksinc.com
202826C • Skyworks Proprietary Information • Products and Product Information are Subject to Change Without Notice • March 13, 2014
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DATA SHEET • SKY13492-21: SP16T ANTENNA SWITCH WITH MIPI INTERFACE
Table 8. SKY13492-21: Isolation Matrix: Isolation “On” Arms to “Off” Arms (1 of 2)
Isolation (dB)
“On”
Arms
Freq
(MHz)
LTX
915
–31
–52
LTX
1910
–26
–51
LTX
2690
–16
–47
–48
–42
–41
–42
–39
–34
HTX
915
–33
–48
–46
–53
–53
–53
–51
–46
HTX
1910
–23
–42
–38
–45
–45
–45
–43
–37
LTX
HTX
TRX1
–49
TRX2
TRX3
TRX4
TRX5
TRX6
TRX7
TRX8
TRX9
TRX10
TRX11
TRX12
TRX13
TRX14
–51
–46
–42
–45
–45
–41
–46
–49
–51
–51
–52
–55
–54
–52
–43
–42
–47
–43
–37
–37
–41
–44
–45
–49
–53
–46
–33
–37
–40
–41
–44
–48
–44
–37
–41
–44
–57
–53
–50
–52
–32
–36
–38
–47
–53
–42
–43
HTX
2690
–17
–40
–49
–49
–49
–48
–47
–33
–38
–41
–33
–39
–52
–47
TRX1
915
–35
–50
–29
–52
–54
–55
–53
–49
–54
–49
–46
–43
–34
–39
–50
TRX1
1910
–34
–33
–22
–42
–43
–43
–42
–38
–42
–41
–39
–36
–27
–31
–41
TRX1
2690
–28
–30
–19
–38
–39
–38
–38
–34
–37
–37
–35
–32
–24
–27
–37
TRX2
915
–35
–55
–37
–51
–53
–54
–53
–49
–55
–51
–49
–48
–40
–36
–48
TRX2
1910
–34
–34
–29
–41
–43
–42
–42
–37
–43
–42
–41
–39
–32
–28
–39
TRX2
2690
–28
–31
–26
–37
–38
–38
–37
–34
–37
–38
–37
–35
–28
–24
–36
TRX3
915
–33
–54
–55
–52
–29
–37
–42
–45
–57
–58
–59
–58
–57
–48
–36
TRX3
1910
–31
–35
–47
–44
–23
–31
–35
–34
–44
–46
–48
–46
–47
–39
–29
TRX3
2690
–27
–32
–42
–39
–20
–28
–32
–31
–38
–41
–43
–41
–41
–35
–25
TRX4
915
–32
–51
–55
–52
–34
–29
–38
–43
–57
–58
–59
–57
–56
–49
–39
TRX4
1910
–31
–35
–46
–43
–28
–23
–31
–33
–44
–46
–47
–45
–46
–40
–32
TRX4
2690
–27
–32
–41
–38
–25
–20
–28
–29
–38
–41
–43
–40
–41
–35
–28
TRX5
915
–33
–48
–54
–52
–41
–34
–29
–36
–56
–57
–57
–55
–55
–50
–46
TRX5
1910
–32
–35
–45
–42
–35
–27
–22
–28
–44
–46
–47
–45
–45
–40
–38
TRX5
2690
–28
–33
–41
–38
–32
–25
–19
–24
–38
–41
–42
–40
–41
–36
–35
TRX6
915
–34
–46
–53
–51
–45
–41
–33
–30
–55
–56
–55
–54
–54
–50
–48
TRX6
1910
–35
–35
–44
–42
–38
–34
–26
–23
–43
–45
–46
–43
–44
–40
–40
–19
TRX6
2690
–30
–34
–40
–37
–34
–31
–23
–37
–40
–41
–39
–40
–36
–36
TRX7
915
–35
–44
–52
–51
–47
–45
–39
–36
–53
–54
–54
–52
–52
–51
–49
TRX7
1910
–39
–36
–43
–41
–39
–37
–31
–29
–41
–44
–44
–42
–43
–40
–40
TRX7
2690
–31
–36
–39
–36
–35
–33
–27
–25
–39
–40
–38
–39
–35
–36
TRX8
915
–34
–42
–46
–47
–54
–55
–56
–54
–49
–30
–35
–38
–43
–50
–52
TRX8
1910
–46
–35
–39
–39
–44
–44
–44
–43
–37
–23
–28
–31
–37
–40
–42
TRX8
2690
–32
–34
–36
–35
–39
–39
–40
–39
–34
–20
–25
–27
–34
–36
–38
TRX9
915
–34
–45
–44
–46
–54
–56
–56
–53
–49
–38
–28
–35
–41
–50
–52
TRX9
1910
–40
–37
–38
–38
–44
–44
–44
–43
–38
–30
–22
–28
–35
–40
–43
TRX9
2690
–32
–44
–34
–34
–39
–40
–40
–39
–34
–26
–19
–25
–32
–36
–38
TRX10
915
–34
–46
–42
–45
–54
–56
–55
–53
–49
–40
–33
–29
–37
–49
–52
TRX10
1910
–37
–35
–36
–37
–44
–44
–44
–43
–38
–32
–27
–23
–32
–40
–42
TRX10
2690
–31
–34
–33
–33
–39
–40
–39
–39
–34
–28
–24
–20
–29
–36
–38
–36
Skyworks Solutions, Inc. • Phone [781] 376-3000 • Fax [781] 376-3100 • [email protected] • www.skyworksinc.com
8
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DATA SHEET • SKY13492-21: SP16T ANTENNA SWITCH WITH MIPI INTERFACE
Table 8. SKY13492-21: Isolation Matrix: Isolation “On” Arms to “Off” Arms (2 of 2)
Isolation (dB)
“On”
Arms
Freq
(MHz)
TRX11
915
–34
–47
TRX11
1910
–35
–33
TRX11
2690
–30
–30
–29
–32
–39
–39
–39
–38
–34
–30
–28
–25
–36
–38
TRX12
915
–34
–48
–29
–35
–53
–55
–55
–54
–49
–52
–46
–42
–36
–40
–51
TRX12
1910
–35
–33
–23
–27
–43
–44
–44
–43
–38
–41
–39
–36
–29
–31
–41
–27
–38
LTX
HTX
TRX1
TRX2
TRX3
TRX4
TRX5
TRX6
TRX7
TRX8
TRX9
TRX10
–38
–42
–54
–55
–55
–53
–49
–43
–39
–32
–35
–44
–44
–44
–43
–38
–34
–32
TRX11
TRX12
TRX13
TRX14
–34
–30
–48
–52
–28
–24
–39
–42
–21
TRX12
2690
–29
–30
–19
–24
–39
–39
–39
–38
–34
–36
–35
–33
–26
TRX13
915
–48
–72
–58
–54
–31
–37
–44
–49
–53
–65
–65
–64
–63
–61
–46
TRX13
1910
–47
–63
–55
–51
–28
–33
–40
–46
–50
–63
–62
–61
–60
–58
–38
TRX13
2690
–45
–54
–55
–53
–27
–31
–38
–44
–48
–60
–60
–59
–59
–57
TRX14
915
–61
–61
–33
–17
–53
–57
–60
–63
–65
–59
–56
–51
–44
–39
–46
TRX14
1910
–56
–47
–29
–13
–51
–54
–58
–61
–64
–57
–53
–48
–41
–36
–39
TRX14
2690
–52
–44
–27
–10
–48
–52
–56
–60
–63
–56
–52
–47
–39
–34
–34
–34
Table 9. SKY13492-21 Isolation Matrix: Isolation "Ant" to "Off" Arms (1 of 2)
(VDD = 2.85 V, TOP=+25 °C, Characteristic Impedance [Z0] = 50 Ω, Unless Otherwise Noted)
Isolation (dB)
“On”
Arms
Freq
(MHz)
LTX
915
–33
–48
LTX
1910
–45
–54
LTX
2690
–38
–45
HTX
915
–40
HTX
1910
–24
HTX
2690
–21
TRX1
915
–38
TRX1
1910
–34
TRX1
2690
–28
–32
TRX2
915
–38
–34
–43
TRX2
1910
–34
–30
–32
LTX
HTX
TRX1
TRX2
TRX3
TRX4
TRX5
TRX6
TRX7
TRX8
TRX9
TRX10
TRX11
TRX12
TRX13
TRX14
–48
–40
–38
–40
–39
–34
–42
–44
–46
–47
–48
–43
–47
–54
–45
–41
–35
–35
–32
–44
–46
–49
–51
–53
–48
–51
–42
–43
–39
–34
–34
–32
–43
–44
–45
–44
–44
–45
–42
–50
–49
–46
–45
–43
–42
–38
–42
–47
–49
–43
–46
–48
–47
–42
–40
–39
–38
–36
–35
–32
–32
–37
–38
–36
–39
–40
–39
–39
–36
–36
–34
–33
–32
–31
–29
–34
–35
–36
–39
–38
–36
–35
–36
–48
–45
–44
–44
–39
–46
–51
–54
–51
–44
–50
–40
–31
–30
–41
–39
–38
–37
–33
–39
–42
–43
–39
–32
–42
–30
–25
–38
–36
–36
–35
–30
–35
–38
–39
–35
–28
–39
–25
–48
–46
–45
–44
–39
–46
–50
–53
–50
–45
–52
–42
–41
–39
–39
–38
–33
–39
–42
–43
–39
–35
–43
–31
–38
TRX2
2690
–29
–34
–28
–36
–36
–35
–29
–35
–38
–40
–35
–31
–39
–26
TRX3
915
–36
–36
–49
–49
–35
–43
–48
–41
–45
–47
–47
–47
–47
–44
–52
TRX3
1910
–32
–32
–41
–38
–29
–36
–37
–32
–38
–41
–41
–40
–40
–31
–40
TRX3
2690
–27
–36
–38
–35
–24
–31
–32
–28
–35
–38
–38
–36
–37
–27
–37
TRX4
915
–36
–37
–49
–49
–45
–33
–43
–41
–45
–47
–47
–47
–48
–46
–51
TRX4
1910
–31
–33
–41
–39
–33
–28
–35
–32
–38
–41
–41
–40
–41
–34
–40
TRX4
2690
–27
–37
–38
–36
–28
–24
–30
–28
–35
–38
–38
–36
–37
–30
–36
TRX5
915
–38
–37
–50
–49
–50
–42
–35
–40
–45
–47
–48
–48
–49
–52
–51
TRX5
1910
–32
–33
–42
–40
–39
–33
–29
–30
–38
–41
–41
–40
–41
–41
–40
TRX5
2690
–27
–40
–39
–36
–35
–29
–24
–26
–35
–37
–38
–37
–38
–36
–36
Skyworks Solutions, Inc. • Phone [781] 376-3000 • Fax [781] 376-3100 • [email protected] • www.skyworksinc.com
202826C • Skyworks Proprietary Information • Products and Product Information are Subject to Change Without Notice • March 13, 2014
9
DATA SHEET • SKY13492-21: SP16T ANTENNA SWITCH WITH MIPI INTERFACE
Table 9. SKY13492-21 Isolation Matrix: Isolation "Ant" to "Off" Arms (2 of 2)
(VDD = 2.85 V, TOP=+25 °C, Characteristic Impedance [Z0] = 50 Ω, Unless Otherwise Noted)
Isolation (dB)
“On”
Arms
Freq
(MHz)
LTX
HTX
TRX1
TRX2
TRX3
TRX4
TRX5
TRX7
TRX8
TRX9
TRX10
TRX11
TRX12
TRX13
TRX14
TRX6
915
–40
–38
–50
–49
–52
–50
–44
–37
–46
–48
–48
–48
–50
–51
–51
TRX6
1910
–34
–34
–42
–40
–41
–39
–32
–28
–39
–41
–41
–41
–42
–41
–40
–22
TRX6
TRX6
2690
–28
–43
–39
–36
–37
–34
–28
–35
–37
–38
–37
–38
–37
–36
TRX7
915
–43
–39
–51
–50
–51
–51
–45
–42
–47
–49
–49
–49
–50
–51
–50
TRX7
1910
–37
–34
–42
–40
–41
–39
–34
–31
–39
–41
–42
–41
–42
–41
–40
TRX7
2690
–29
–45
–38
–36
–36
–35
–30
–27
–34
–37
–38
–37
–38
–36
–35
TRX8
915
–40
–33
–57
–53
–47
–45
–43
–43
–39
–36
–45
–49
–54
–49
–50
TRX8
1910
–37
–28
–45
–42
–40
–38
–37
–36
–32
–31
–37
–37
–44
–41
–39
TRX8
2690
–28
–27
–40
–37
–36
–35
–34
–33
–30
–26
–31
–31
–39
–37
–35
TRX9
915
–39
–35
–55
–53
–47
–45
–43
–43
–39
–41
–34
–45
–49
–49
–50
TRX9
1910
–36
–32
–45
–42
–40
–38
–37
–36
–32
–31
–29
–36
–42
–41
–39
TRX9
2690
–29
–37
–39
–37
–37
–35
–34
–34
–30
–26
–24
–31
–37
–37
–35
TRX10
915
–39
–36
–50
–53
–47
–45
–43
–43
–39
–43
–45
–35
–43
–49
–50
TRX10
1910
–35
–32
–43
–42
–40
–38
–37
–36
–32
–33
–33
–30
–38
–41
–39
TRX10
2690
–29
–41
–38
–38
–37
–35
–34
–34
–30
–29
–29
–26
–34
–38
–34
TRX11
915
–38
–35
–43
–50
–47
–45
–43
–43
–39
–42
–47
–46
–34
–49
–49
TRX11
1910
–35
–32
–38
–42
–40
–38
–37
–37
–32
–33
–36
–35
–29
–41
–39
TRX11
2690
–29
–36
–34
–37
–37
–35
–34
–34
–30
–29
–32
–30
–38
–34
TRX12
915
–38
–35
–35
–45
–47
–45
–44
–43
–39
–47
–53
–51
–44
–49
–41
TRX12
1910
–34
–32
–30
–34
–40
–38
–38
–37
–33
–39
–42
–42
–35
–42
–31
–38
–26
–25
TRX12
2690
–28
–32
–25
–29
–37
–36
–35
–35
–30
–35
–38
–37
–31
TRX13
915
–37
–33
–46
–44
–50
–46
–45
–44
–39
–46
–49
–51
–49
–44
–49
TRX13
1910
–34
–29
–36
–33
–42
–39
–39
–38
–33
–39
–41
–42
–39
–35
–42
TRX13
2690
–29
–33
–31
–28
–38
–36
–35
–34
–29
–35
–38
–39
–35
–30
–38
TRX14
915
–37
–36
–49
–49
–35
–45
–49
–48
–40
–45
–47
–47
–46
–47
–41
TRX14
1910
–33
–32
–40
–37
–29
–35
–39
–38
–32
–38
–41
–41
–39
–40
–31
TRX14
2690
–28
–35
–37
–34
–24
–29
–34
–33
–28
–35
–38
–38
–36
–37
–26
Skyworks Solutions, Inc. • Phone [781] 376-3000 • Fax [781] 376-3100 • [email protected] • www.skyworksinc.com
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DATA SHEET • SKY13492-21: SP16T ANTENNA SWITCH WITH MIPI INTERFACE
Table 10. SKY13492-21: Insertion loss and Return loss Matrix (1 of 2)
(VDD = 2.85 V, TOP=+25 °C, Characteristic Impedance [Z0]=50 Ω, Unless Otherwise Noted)
ON_Throw
freq_MHz
IL
RL_Pole
RL_Throw
TXLB
915
–1.4
–13.7
–15.2
TXLB
1910
–23.6
–1.5
–0.2
TXLB
2690
–25.2
–2.2
–0.6
TXHB
915
–0.8
–30.3
–19.1
TXHB
1910
–1.3
–16.7
–17.0
TXHB
2690
–9.2
–3.3
–1.6
TRX1
915
–0.6
–24.3
–22.2
TRX1
1910
–0.7
–20.7
–23.4
TRX1
2690
–0.9
–22.3
–16.8
TRX2
915
–0.6
–22.3
–20.7
TRX2
1910
–0.7
–23.3
–26.9
TRX2
2690
–0.9
–20.5
–16.4
TRX3
915
–0.6
–22.2
–21.1
TRX3
1910
–0.7
–22.6
–24.8
TRX3
2690
–0.9
–22.4
–17.1
TRX4
915
–0.6
–23.3
–22.7
TRX4
1910
–0.7
–20.3
–22.4
TRX4
2690
–0.9
–26.7
–18.7
TRX5
915
–0.6
–26.7
–26.1
TRX5
1910
–0.7
–17.8
–20.1
TRX5
2690
–0.8
–33.9
–22.2
TRX6
915
–0.6
–26.8
–27.5
TRX6
1910
–0.7
–16.0
–17.7
TRX6
2690
–0.9
–22.6
–22.4
TRX7
915
–0.6
–27.3
–26.9
TRX7
1910
–0.8
–13.9
–15.3
TRX7
2690
–1.0
–15.6
–17.0
TRX8
915
–0.6
–27.1
–24.0
TRX8
1910
–0.7
–17.5
–20.0
TRX8
2690
–0.9
–32.8
–22.4
TRX9
915
–0.6
–27.3
–24.3
TRX9
1910
–0.7
–17.3
–19.2
TRX9
2690
–0.9
–30.1
–21.3
TRX10
915
–0.6
–26.8
–24.6
TRX10
1910
–0.7
–17.6
–19.8
TRX10
2690
–0.9
–26.0
–19.8
Skyworks Solutions, Inc. • Phone [781] 376-3000 • Fax [781] 376-3100 • [email protected] • www.skyworksinc.com
202826C • Skyworks Proprietary Information • Products and Product Information are Subject to Change Without Notice • March 13, 2014
11
DATA SHEET • SKY13492-21: SP16T ANTENNA SWITCH WITH MIPI INTERFACE
Table 10. SKY13492-21: Insertion loss and Return loss Matrix (2 of 2)
(VDD = 2.85 V, TOP=+25 °C, Characteristic Impedance [Z0]=50 Ω, Unless Otherwise Noted)
ON_Throw
freq_MHz
IL
RL_Pole
RL_Throw
TRX11
915
–0.6
–26.7
–24.5
TRX11
1910
–0.7
–18.5
–21.1
TRX11
2690
–0.9
–28.1
–20.4
TRX12
915
–0.6
–24.9
–23.2
TRX12
1910
–0.7
–19.8
–22.6
TRX12
2690
–0.9
–24.4
–18.2
TRX13
915
–53.0
–20.7
–6.3
TRX13
1910
–39.9
–24.4
–4.7
TRX13
2690
–36.4
–19.9
–6.1
TRX14
915
–54.1
–20.5
–6.0
TRX14
1910
–44.3
–24.9
–4.6
TRX14
2690
–37.9
–20.0
–5.2
Skyworks Solutions, Inc. • Phone [781] 376-3000 • Fax [781] 376-3100 • [email protected] • www.skyworksinc.com
12
March 13, 2014 • Skyworks Proprietary Information • Products and Product Information are Subject to Change Without Notice • 202826C
DATA SHEET • SKY13492-21: SP16T ANTENNA SWITCH WITH MIPI INTERFACE
fBLK
1760 MHz,
–15 dBm
fFUND
1950 MHz,
+20 dBm
fRX
2140 MHz,
Measure Tone
Circulator
Signal Generator
fFUND = 1950 MHz,
+20 dBm
Coupler to Monitor
Input Power
1950 MHz
Bandpass Filter
Circulator
Duplexer
Phase Shifter
SKY13492
fFUND = +20 dBm
fBLK = –15 dBm
Signal Generator
fBLK = 1760 MHz,
–15 dBm
1760 MHz
Bandpass Filter
Spectrum Analyzer
fRX = 2140 MHz
S3437
rd
Figure 4. 3 Order Intermodulation Test Setup
Table 11. Command Sequence Bit Definitions
Extended Operation
Type
SSC
C11–
C8
C7
C6–C5
C4
C3–C0
Parity
Bits
BPC
DA7(1)–
DA0(1)
Parity
Bits
BPC
DA7(n)–
DA0(n)
Parity
Bits
BPC
Reg0
Write
Y
SA[3:0]
1
Data[6:5]
Data[4]
Data{3:0]
Y
Y
–
–
–
–
–
–
Reg
Write
Y
SA[3:0]
0
10
Addr[4]
Addr[3:0]
Y
–
Data[7:0]
–
–
–
Y
Y
Reg
Read
Y
SA[3:0]
0
11
Addr[4]
Addr[3:0]
Y
Y
Data[7:0]
–
–
–
Y
Y
Legend:
SSC = Sequence start command
C = Command frame bits
DA = Data/address frame bits
BPC = Bus park cycle
BC = Byte count (# of consecutive addresses)
Skyworks Solutions, Inc. • Phone [781] 376-3000 • Fax [781] 376-3100 • [email protected] • www.skyworksinc.com
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13
DATA SHEET • SKY13492-21: SP16T ANTENNA SWITCH WITH MIPI INTERFACE
SCLK
SDATA
SA3
SA2
SA1
0
SA0
SSC
1
0
A4
A3
A2
A1
A0
P
Example Register Write Command Frame
SCLK
P
SDATA
D7
D6
D5
D4
D3
D2
D1
P
D0
Example Data Frame
0
Bus
Park
Signal Driven by Master
Signal Not Driven; Pull-Down Only
For Reference Only
S3101
Figure 5. Register Write Command Timing Diagram
SCLK
SDATA
SA3
SA2
SA1
0
SA0
1
1
A4
A3
A2
A1
A0
P
Example Register Read Command Frame
SSC
SCLK
SDATA
P
0
D7
Bus
Park
D6
D5
D4
D3
D2
D1
Example Data Frame
D0
P
0
Bus
Park
Signal Driven by Master
Signal Not Driven; Pull-Down Only
Signal Driven by Slave
For Reference Only
S3102
Figure 6. Register Read Command Timing Diagram
Skyworks Solutions, Inc. • Phone [781] 376-3000 • Fax [781] 376-3100 • [email protected] • www.skyworksinc.com
14
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DATA SHEET • SKY13492-21: SP16T ANTENNA SWITCH WITH MIPI INTERFACE
Table 12. Register_0 Truth Table
Register_0 Bits
Antenna Path
Bit[7]
Bit[6]
Bit[5]
Bit[4]
Bit[3]
Bit[2]
Bit[1]
Bit[0]
Sleep mode (standby)
X
0
0
0
0
0
0
0
2G transmit low band
X
0
0
0
1
0
1
0
2G transmit high band
X
0
0
0
1
0
0
0
TRX1
X
0
0
0
0
1
0
0
TRX2
X
0
0
0
0
1
0
1
TRX3
X
0
0
0
0
1
1
0
TRX4
X
0
0
0
0
1
1
1
TRX5
X
0
0
0
1
0
0
1
TRX6
X
0
0
0
1
0
1
1
TRX7
X
0
0
0
1
1
0
0
TRX8
X
0
0
0
0
0
0
1
TRX9
X
0
0
0
0
0
1
0
TRX10
X
0
0
0
0
0
1
1
TRX11
X
0
0
0
1
1
0
1
TRX12
X
0
0
0
1
1
1
0
TRX13
X
0
0
1
0
0
0
0
TRX14
X
0
0
1
0
0
0
1
Isolation mode (warm–up)
X
1
1
1
1
1
1
1
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DATA SHEET • SKY13492-21: SP16T ANTENNA SWITCH WITH MIPI INTERFACE
Table 13. Register Description and Programming (1 of 2)
Register
Name
Address
(Hex)
Register_0
0000
Parameter
Default
(Binary)
Description
MODE_CTRL
Bits[7:0]:
SOFTWARE RESET
Bit[7]:
–
Switch control. See Table 8 for logic
0
Resets all data to default values except for USID, GSID, or the
contents of the PM_TRIG Register.
0 = Normal operation
1 = Software reset
COMMAND_FRAME_PARITY_ERR
Bit[6]:
0
Command sequence received with parity error – discard command.
COMMAND_LENGTH_ERR
Bit[5]:
0
Command length error.
ADDRESS_FRAME_PARITY_ERR
RFFE_STATUS
001A
Bit[4]:
0
Address frame parity error = 1.
DATA_FRAME_PARITY_ERR
Bit[3]:
READ_UNUSED_REG
Bit[2]:
WRITE_UNUSED_REG
Bit[1]:
BID_GID_ERR
Bit[0]:
0
Data frame with parity error.
0
Read command to an invalid address.
0
Write command to an invalid address.
0
Read command with a BROADCAST_ID (refer to the MIPI Alliance
Specification) or GSID.
Reserved
GROUP_SID
001B
GSID
Bits[7:4]: Reserved
0000
Bits[3:0]:
0000
Group slave ID
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DATA SHEET • SKY13492-21: SP16T ANTENNA SWITCH WITH MIPI INTERFACE
Table 13. Register Description and Programming (2 of 2)
Register
Parameter
Address
(Hex)
Name
PWR_MODE
Default
(Binary)
Description
Bits[7:6]:
01
00 = Normal operation (active)
01 = Default settings (startup)
10 = Low power (low power)
11 = Reserved
Trigger_Mask_2
Bit[5]:
0
If this bit is set, trigger 2 is disabled. When all triggers are disabled, if
writing to a register that is associated with trigger 2, the data goes
directly to the destination register.
Trigger_Mask_1
PM_TRIG
(Note 1)
Bit[4]:
0
If this bit is set, trigger 1 is disabled. When all triggers are disabled, if
writing to a register that is associated with trigger 1, the data goes
directly to the destination register.
001C
Trigger_Mask_0
Bit[3]:
0
If this bit is set, trigger 0 is disabled. When all triggers are disabled, if
writing to a register that is associated with trigger 0, the data goes
directly to the destination register.
Trigger_2
Bit[2]:
Trigger_1
Bit[1]:
0
If this bit is set, data is loaded into the trigger 2 registers.
0
If this bit is set, data is loaded into the trigger 1 registers
(unsupported).
Trigger_0
Bit[0]:
0
If this bit is set, data is loaded into the trigger 0 registers
(unsupported).
PRODUCT_ID
001D
PRODUCT_ID
Bits[7:0]:
01011101
This is a read–only register. However, during the programming of the
Unique Slave Identifier (USID), a write command sequence is
performed on this register but the value is not changed.
MANUFACTURER_ID
001E
MANUFACTURER_ID
Bits[7:0]:
10100101
Read–only register
Reserved
Bits[7:6]:
00
Reserved
MAN_USID
001F
MANUFACTURER_ID
Bits[5:4]:
01
Read–only register
USID
Bits[3:0]:
1011
Programmable USID. A write to these bits programs the USID.
Note 1: Unlike the complete independence between triggers 0, 1, and 2, and also between the associated trigger masks 0, 1, and 2, respectively (as described in the MIPI RFFE Specification),
when pin 7 is grounded, this device uses additional interactions between the provided trigger functions.
The delayed application of updated data to all triggerable registers in this device may be accomplished using any of the three triggers (0, 1, or 2), provided that the particular trigger
used is not currently masked off. If multiple triggers are enabled, any or all of those are sufficient to cause the data to be transferred from shadow registers to destination registers for
all triggerable registers in the device.
It is also necessary to disable all three triggers (i.e., set all three trigger masks) to ensure that data written to any triggerable register will immediately be written to the destination
register at the conclusion of the RFFE command sequence where the data is written.
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DATA SHEET • SKY13492-21: SP16T ANTENNA SWITCH WITH MIPI INTERFACE
Evaluation Board Description
Package and Handling Information
The SKY13492-21 Evaluation Board is used to test the
performance of the SKY13492-21 SP16T Switch. An Evaluation
Board schematic diagram is provided in Figure 7. A
recommended ESD protection circuit diagram is provided in
Figure 8. An assembly drawing for the Evaluation Board is shown
in Figure 9.
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.
Package Dimensions
The SKY13492-21 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 and SMT Assembly/Rework Guidelines for MCM–L
Packages, document number 101752.
The PCB layout footprint for the SKY13492-21 is provided in
Figure 10. Typical case markings are shown in Figure 11.
Package dimensions for the 24-pin MCM are shown in Figure 12,
and tape and reel dimensions are provided in Figure 13.
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.
RFC17
RFC16
RFC4
RFC3
RFC13
21
GND
TXLB
20
TRX7
TRX9
3 TRX6
TRX10
4 TRX5
TRX11
5 TRX4
TRX12
19
17
7
TRX2
VDD
9
10
11
12
3
2
TRX14
RFC10
RFC11
16
TRX1 15
TRX13
RFC9
18
6 TRX3
8 MIPI_
SELECT
RFC8
TRX8
SCLIK
RFC5
22
SDATA
RFC6
2
ANT
VIO
RFC7
GND
1
RFC15
23
TXHB
24
Pad
RFC12
RFC1
14
13
RFC2
RFC14
C2
DNP
GND
1
SCLK
4
VIO
5
VDD
MIPI_SEL
6
SDATA
C1
DNP
DCH1 Header
Y0795
Figure 7. SKY13492-21 Evaluation Board Schematic
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DATA SHEET • SKY13492-21: SP16T ANTENNA SWITCH WITH MIPI INTERFACE
4.7 pF
To Application
Antenna
To SKY13492
Antenna (Pin 1)
18 nH
18 nH
ESD Circuit 1
12 pF
To Application
Antenna
To SKY13492
Antenna (Pin 1)
8.2 nH
ESD Circuit 2
S3436
Figure 8. SKY13492-21 Recommended ESD Protection Circuits
Y0792
Figure 9. SKY13492-21 Evaluation Board Assembly Diagram
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DATA SHEET • SKY13492-21: SP16T ANTENNA SWITCH WITH MIPI INTERFACE
2X 0.85
Stencil aperture size for center
ground pad should be 80% to 100%
(by area) of the solder mask opening.
12X 0.5
16X 0.5
20X 0.2
2.8
2X 0.45
0.4 Pitch
Pin 24
Pin 1
Package
Outline
3.6
Pin 1 Indicator
0.30 x 45°
Stencil Aperture
Top View
0.6 Pitch
Thermal Via Array, ø0.3 mm
on 0.6 mm pitch will improve
thermal performance.
NOTE: thermal vias should be
resin filled and capped according
to IPC-4761, Type VII vias.
30-35 μm Cu thickness is
recommended.
2X 0.85
Opening size of
60 to 100% of exposed
center opening shown
12X 0.6
0.25 Typ.
16X 0.6
9X 0.5
20X 0.3
2.9
15X 0.5
2X 0.45
0.4 Pitch
18X 0.2
2.8
0.4 Pitch
Pin 24
3.6
Package
Outline
Package
Outline
Pin 24
Pin 1
Pin 1 Indicator
0.30 x 45°
3.7
Pin 1
Metallization
Top View
Solder Mask Opening
Top View
All dimensions are in millimeters
S3435
Figure 10. SKY13492-21 PCB Layout Footprint
(Top View)
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DATA SHEET • SKY13492-21: SP16T ANTENNA SWITCH WITH MIPI INTERFACE
Pin 1
Indicator
Skyworks Part Number
Lot Code
13492
Date Code:
YY = Calendar Year
WW = Week
XXXXX
YYWW
Y0793
C
4X 1.55
B
3.3
4X 0.6
4X 1
Solder Mask Opening
0.2 A B C
4X 0.2
Figure 11. Typical Part Markings
(Top View)
16X 1.15
Pin 1
Indicator
2.5
4X 0.6
B
4X 0.2
Pin 24
Pin 1 Indicator
See Detail C
Pin 1
0
A
0.80 ± 0.1
0.15
A
24X SMT Pad
0.1
A B C
0
0.1 M A B C
Bottom View
Side View
Top View
1.7
0.25 ± 0.1
0.25 ± 0.1
Metal Pad
Edge
Solder Mask
Edges
(0.1)
0.25 ± 0.1
0.9
0.3 ± 0.05
0.2 ± 0.05
Metal Pad
Edge
(0.1)
(0.1)
0.3 x 0.3
5X R0.05 Max.
Detail A
Detail B
Detail C
Pad
Scale: 2X
4X This Rotation
4X Rotated 180°
6X Rotated 90° CW
6X Rotated 90° CCW
Pad
Scale: 2X
1X This Rotation
1X Rotated 180°
1X Rotated 90° CW
1X Rotated 90° CCW
Pad
Scale: Full
1X This Rotation
All measurements are in millimeters
Dimensioning and tolerancing according to ASME Y14.5M-1994
S3421
Figure 12. SKY13492-21 22-Pin MCM Package Dimensions
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∅1
2.00 ± 0.05
+0
.10
–0
4.00 ± 0.10
B
Pin 1 Indicator
6° Max
1.15 ± 0.05 (Ko)
4.00 ± 0.10
A
8.00 + 0.30
–0.10
.50
3.50 ± 0.05
3.40 ± 0.05 (Bo)
0.25 ± 0.02
1.75 ± 0.10
DATA SHEET • SKY13492-21: SP16T ANTENNA SWITCH WITH MIPI INTERFACE
BA
Section B
∅1.00
+0.25
Notes:
1. Carrier tape: black conductive polycarbonate or polystyrene.
2. Cover tape material: transparent conductive.
3. ESD-surface resistivity shall be ≤ 1 x 1010 Ω/square per EIA,
JEDEC TNR Specification.
4. 10-sprocket hole pitch cumulative tolerance: ±0.20 mm.
5. Ao and Bo measurement point to be 0.30 mm from bottom pocket.
6. All dimensions are in millimeters.
10° M
ax
2.75 ± 0.05 (Ao)
Section A
Figure 13. SKY13492-21 Tape and Reel Dimensions
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Y0794
DATA SHEET • SKY13492-21: SP16T ANTENNA SWITCH WITH MIPI INTERFACE
Ordering Information
Model Name
SKY13492-21: 0.7 to 2.7 GHz SP16T Antenna Switch
with MIPI Interface
Manufacturing Part Number
SKY13492-21
Evaluation Board Part Number
SKY13492-21-EVB
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