Arcadyan Technology HT2000W HT2000W wifi module User Manual Front End Module

Arcadyan Technology Corporation HT2000W wifi module Front End Module

Front-End Module User Manual

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Document DescriptionFront-End Module User Manual
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Date Submitted2016-10-10 00:00:00
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PRELIMINARY DATA SHEET
VLIN
PA_EN
SKY85717-21: 5 GHz, 802.11ac Front-End Module
Applications
4B
 802.11ac set-top boxes, networking, and personal computer
systems
 PC cards, PCMCIA cards, mini-cards, and half mini-cards
 WLAN enabled wireless video systems
TX
PA
VDET
ANT
Features
0B
 Integrated high performance 5 GHz PA, LNA with bypass, and
SPDT
 Fully-matched input and output
RX
LNA
 Transmit loopback mode
 Transmit gain: 28 dB
 Receive gain: 12 dB
VC1
LNA_EN
 Integrated, positive slope power detector
S3512
Figure 1. SKY85717-21 Block Diagram
 Output power: +19.5 dBm, MCS7, HT40
 Output power: +18.5 dBm @ 1.8% EVM, MCS9, HT80
Description
1B
 High linearity and high efficiency modes
 Direct connection to battery with 5 V nominal supply voltage
 Small, QFN (16-pin, 2.5 x 2.5 x 0.4 mm) package
(MSL1, 260 C per JEDEC J-STD-020)
LNA_EN
CRX
GND
ANT
Skyworks Pb-free products are compliant with
all applicable legislation. For additional
information, refer to Skyworks Definition of
Lead (Pb)-Free, document number SQ04-0073.
16
15
14
13
11
VCC2
GND
10
VCC1
VDD
VLIN
TX
RX
GND
GND
PA_EN
12
VDET
An enable/disable function is included that allows power savings
during off mode. An integrated power detector with 20 dB of
dynamic range is included to provide closed-loop power control
within the system.
The device is provided in a compact, 16-pin 2.5 x 2.5 x 0.4 mm
Quad Flat No-Lead (QFN) 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.
GND
The SKY85717-21 is a highly-integrated, 5 GHz front-end module
(FEM) incorporating a 5 GHz single-pole, double-throw (SPDT)
transmit/receive (T/R) switch, a 5 GHz low-noise amplifier (LNA)
with bypass, and a 5 GHz power amplifier (PA) intended for
mobile/portable 802.11ac applications and systems.
S3513
Figure 2. SKY85717-21 Pinout – 16-Pin QFN
(Top View)
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PRELIMINARY DATA SHEET • SKY85717-21: FRONT-END MODULE
Technical Description
Package and Handling Information
5B
6B
The SKY85717-21 is comprised of a high performance 5 GHz PA,
5 GHz LNA, and broadband SPDT switch. The device is fullymatched, and requires few external components for optimal
performance, which makes it ideal for small portable/mobile
applications. The FEM provides up to +28 dB of gain over the
frequency band. The LNA supports an enable/disable mode for
power savings when not in receive mode and a bypass function
for increased receive dynamic range. The PA can be shut off
using the PA_EN signal (pin 6).
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.
Electrical and Mechanical Specifications
2B
Signal pin assignments and functional pin descriptions are
described in Table 1. The absolute maximum ratings of the
SKY85717-21 are provided in Table 2. The recommended
operating conditions are specified in Table 3 and electrical
specifications are provided in Tables 4, 5, and 6.
The SKY85717-21 is rated to Moisture Sensitivity Level 1 (MSL1)
at 260 C. It can be used for lead or lead-free soldering. For
additional information, refer to the Skyworks Application Note,
Solder Reflow Information, document number 200164.
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.
The state of the SKY85717-21 is determined by the logic provided
in Table 7.
Table 1. SKY85717-21 Signal Descriptions
Pin
Description
Pin
Name
Description
GND
Ground
VLIN
Transmit linearity mode control
RX
RF receive output
10
VCC1
Supply voltage
GND
Ground
11
VCC2
Supply voltage
VDD
LNA supply voltage and transmit bias
12
GND
Ground
VDET
Detector output voltage
13
ANT
Antenna
PA_EN
PA enable
14
GND
Ground
GND
Ground
15
CRX
Switch control voltage
TX
RF transmit input
16
LNA_EN
LNA enable
Note:
Name
N/C = No connect. Keep pin floating.
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PRELIMINARY DATA SHEET • SKY85717-21: FRONT-END MODULE
Table 2. SKY85717-21 Absolute Maximum Ratings (Note 1)
Parameter
Symbol
Minimum
Maximum
Units
+6
+6
+6.0
Supply voltage (non-operating, no RF)
VCC
VDD
–1
–1
DC input on control pin (PA_EN, LNA_EN,
CRX, VLIN)
VIN
–0.3
Input power (ANT terminated in 50 Ω match)
PIN
+5
dBm
Case operating temperature
TA
–40
+85
C
Storage temperature
TST
–40
+140
C
Electrostatic discharge:
ESD
1000
Human Body Model (HBM), Class 1C
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.
Table 3. SKY85717-21 Recommended Operating Conditions
Minimum
Typical
Maximum
Units
Supply voltage relative to GND = 0 V
Parameter
VCC, VDD
Symbol
3.9
5.0
5.5
Operating temperature
TA
–40
+25
+85
C
Table 4. SKY85717-21 Electrical Specifications: DC Characteristics (Note 1)
(VCC = 5.0 V, PA_EN = 3.3 V, TA = 25 °C, All Unused Ports Terminated with 50 Ω, Unless Otherwise Noted)
Typical
Max
Units
Supply current, high linearity mode
Parameter
ICC-A
Symbol
POUT = +20.5 dBm, VLIN = 3.3 V
Test Condition
Min
230
260
mA
Supply current, high efficiency mode
ICC-A
POUT = +20.5 dBm, VLIN = 0 V
220
240
mA
Supply current
ICC-OFF
No RF applied, PA_EN = CRX =
LNA_EN = 0 V
20
μA
Quiescent current, high efficiency mode
ICQ
No RF
170
mA
LNA supply current
ICC_LNA
LNA_EN = 3.3 V, CRX = 3.3 V
11
mA
LNA bypass supply current
ICC_LNA_BYP
LNA_EN = 0 V, CRX = 3.3 V
200
μA
Note 1: Performance is guaranteed only under the conditions listed in this table.
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PRELIMINARY DATA SHEET • SKY85717-21: FRONT-END MODULE
Table 5. SKY85717-21 Electrical Specifications: General (Note 1)
(VCC = 5.0 V, PA_EN = 3.3 V, LNA_EN = CRX = 0 V, TA = 25 °C, All Unused Ports Terminated with 50 Ω, Unless Otherwise Noted)
Parameter
Symbol
Test Condition
Min
Typical
Max
Units
5850
MHz
3.0
2.0
3.0
2.0
Transmit Characteristics
Frequency range
Error Vector Magnitude, high linearity
mode
EVM
4900
5150 to 5850 MHz, VLIN = 3.3 V:
POUT = +19.5 dBm, MCS7, HT40
POUT = +18.5 dBm, MCS9, HT80
Error Vector Magnitude, high efficiency
mode
EVM
1.8
5150 to 5850 MHz, VLIN = 0 V:
POUT = +19.5 dBm, MCS7, HT40
POUT = +18.5 dBm, MCS9, HT80
1.8
Output power
POUT
MCS0, mask compliance
Small signal gain
S21
5150 to 5850 MHz
Harmonics (2 and 3 )
2fo, 3fo
POUT = +20 dBm, 6 Mbps, 802.11a
–45
Delay and rise/fall time
tDR, tDF
50% of VPA_EN edge and 90/10% of
final output power level
400
nd
rd
+22
Input return loss
S11
@ TX port
Stability
Stab
802.11n, MCS0, HT40, POUT =
+20 dBm, 0.1 GHz to 20 GHz, load
VSWR = 6:1
Ruggedness
+24
dBm
28
dB
dBm/MHz
ns
–12
dB
All non-harmonically related outputs < –43 dBm/MHz
CW, PIN = 0 dBm, 0.1 GHz to
20 GHz, load VSWR = 10:1
No permanent damage or performance degradation
Receive Characteristics
Frequency range
Small signal gain
S21
Noise figure
NF
3rd Order Input Intercept Point
IIP3
Input return loss
S11
Output return loss
S22
Enable time
tEN
4900
5850
MHz
LNA enabled
+12
dB
Bypass mode
–8
dB
2.5
dB
LNA enabled
+5
dBm
Bypass mode
+20
dBm
LNA enabled
–8
dB
Bypass mode
–8
dB
–8
dB
10% to 90% of receive RF power,
from time that LNA_EN is at 50%
400
ns
Power Detector Characteristics
Frequency range
Power detector range, CW
PDR
Output impedance
PDZLOAD
2.2
kΩ
Output voltage
PDVNO_RF
POUT = no RF, measured into 1
MΩ
0.2
PDVP21
POUT = +21 dBm, CW,
into 1 MΩ
0.9
3.6
MHz
Detector bandwidth
Measured @ ANT pin
PDBW
4900
5850
MHz
+23
dBm
measured
Note 1: Performance is guaranteed only under the conditions listed in this table.
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PRELIMINARY DATA SHEET • SKY85717-21: FRONT-END MODULE
Table 6. SKY85717-21 Electrical Specifications: Control Logic Characteristics (Note 1)
(VCC = 5.0 V, PA_EN = 3.3 V, LNA_EN = CRX = 0 V, TA = 25 °C, All Unused Ports Terminated with 50 Ω, Unless Otherwise Noted)
Parameter
Symbol
Control voltage:
High
Low
VIH
VIL
Input current, high
IIH
Input current, low
IIL
Test Condition
Min
Typical
1.6
Max
Units
3.6
0.4
μA
120
μA
Note 1: Performance is guaranteed only under the conditions listed in this table.
Table 7. SKY85717-21 Control Logic
Mode
CRX (Pin 15)
LNA_EN (Pin 16)
(Note 1)
PA_EN (Pin 6)
(Note 2)
VLIN (Pin 9)
WLAN receive
WLAN receive bypass mode
WLAN transmit, high linearity mode
WLAN transmit, high efficiency mode
WLAN off
Note 1: LNA is on while LNA_EN is high. LNA is off and in bypass mode when LNA_EN is low.
Note 2: PA_EN controls PA enable and transmit/receive switch logic.
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PRELIMINARY DATA SHEET • SKY85717-21: FRONT-END MODULE
Evaluation Board Description
The SKY85717-21 Evaluation Board is used to test the
performance of the SKY85717-21 FEM. A suggested application
schematic diagram is shown in Figure 3. A photograph of the
Evaluation Board is shown in Figure 4. A Bill of Materials (BOM)
for the Evaluation Board is provided in Table 8.
Evaluation Board Test Procedures
1. Connect the system ground to connector J4, pin 2, of the
Evaluation Board.
2. Apply 5 V to connector J4, pins 1 and 3.
3. Select a path to test according to the modes shown in
Table 7.
4. Connect a multimeter or oscilloscope to connector J5, pin 12,
to monitor the power detector voltage.
5. Apply an RF signal to connector J1 (ANT) to monitor the RX to
ANT performance. Measure the response from the output of
connector J2 (RX).
6. Apply an RF signal to connector J3 (TX) to monitor the ANT to
TX performance. Monitor the output power on connector J1
(ANT). Care should be taken not to overdrive the amplifier by
applying too much RF on the input to the device (–20 dBm
provides a suitable starting input power for the device).
 If the TX port is connected to an external component with
>3 VDC present on it, a 10 pF (component C8) general
purpose blocking capacitor is recommended.
 Capacitors C6 (1 μF) and C7 (100 pF) should be on the
primary side of the Evaluation Board at a minimum
manufacturable distance from the FEM.
 Capacitor C20 (0.3 pF) needs to be as close as possible at
manufacturable distance from the ANT pin of the IC, followed
by L1 (1.0 nH) and C19 (0.3 pF), also at manufacturable
distance from C20 and L1, respectively.
 The ground pad of the SKY85717-21 has special electrical
and thermal grounding requirements. This pad is the main
thermal conduit for heat dissipation. Because 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 wattage produced by
the circuit board. Multiple vias to the grounding layer are
required.
 Evaluation Board trace losses are:
RX = TX = 0.32 dB and ANT = 0.35 dB.
NOTE: A poor connection between the ground pad and the
ground increases the junction temperature (TJ), which
reduces the life of the device.
Circuit Design Considerations
9B
The following design considerations are general in nature and
must be followed regardless of final use or configuration:
 Paths to ground should be made as short as possible.
 The RX and ANT ports are AC-coupled and do not require DC
blocking capacitors. There are ESD diodes to ground and a DC
blocking capacitor between the TX port (pin 8) and the die.
Therefore, there is no DC present on this port.
Package Dimensions
The PCB layout footprint for the SKY85717-21 is shown in
Figure 5. Typical part markings are shown in Figure 6. Package
dimensions for the 16-pin QFN are shown in Figure 7, and tape
and reel dimensions are provided in Figure 8.
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PRELIMINARY DATA SHEET • SKY85717-21: FRONT-END MODULE
J1
SMA
C19
0.3 pF
CRX
LEN
L1
1.0 nH
PAD
16 15
GND 12
11
VCC2
VCC1 10
VLIN
GND
RX
3 GND
VDD
J2
SMA
VDET
PA_EN
GND
TX
VDD
J4
R7
14 13
LNA_EN
CRX
GND
ANT
17
C20
0.3 pF
C7
100 pF
C4
1 μF
VCC2
VCC1
0Ω
R8
C6
1 μF
C3
1 μF
TP1
25 Ω
5 6 7 8
VDET
R4
26.1 K
PEN
TP2
VDD
J5
C8
0Ω
LEN
J3
SMA
CRX
J5
VDD
J5
PEN
10
11
12
VDET
Y0585
Figure 3. SKY85717-21 Application Schematic
Y0461
Figure 4. SKY85717-21 Evaluation Board Assembly
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PRELIMINARY DATA SHEET • SKY85717-21: FRONT-END MODULE
Table 8. SKY85717-21 Evaluation Board Bill of Materials (BOM)
Reference
Value
Manufacturer
Mfr Part Number
Package
Description
R7
0Ω
Panasonic
ERJ2GEJ0R0
0402
Thick film chip resistor
L1
1.0 nH
Murata
LQG15HN1N0S02D
0402
High frequency multilayer
R8
24.9 Ω
Panasonic
ERJ2RKF24R9
0402
Thick film chip resistor
R4
26.1K
Panasonic
ERJ2RKF2612
0402
Thick film chip resistor
C7
100 pF
Murata
GRM1555C1H101JZ01
0402
Multilayer ceramic
C19, C20
0.3 pF
Murata
GJM1555C1HR30WB01
0402
RF, High Q, low loss
C8, R3
0Ω
Panasonic
ERJ2GE0R00
0402
Thick film chip resistor
C3, C4, C6
1 uF
TDK Corporation
C1005X5R1A105K
0402
Multilayer ceramic
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16
15
14
2X 0.40
2.90
1.35
2X 0.40
PRELIMINARY DATA SHEET • SKY85717-21: FRONT-END MODULE
13
14
12
11
10
12
2X 0.40
1.35
2.90
2X 0.40
0.475 Typ.
0.500 Typ.
5X ø0.250
0.20 Typ.
Board Metal
Via Pattern
(Note 4)
2.90
0.20 Typ.
3.00
1.25
16
15
52% solder coverage
on center pad
0.45 Typ.
14
13
16
8X
C0.050 X 45°
15
14
13
12
12
11
11
10
10
0.20 Typ.
1.25
3.00
2.90
0.575 Typ.
Package
Outline
Notes:
0.475 Typ.
0.500 Typ.
0.30 Typ.
Solder Mask Pattern
(Note 6)
0.45 Typ.
0.500 Typ.
0.20 Typ.
Stencil Pattern
(Note 5)
1.
2.
3.
4.
All dimensions are in millimeters
Dimensioning and tolerancing according to ASME Y14.5M-1994
Unless specified, dimensions are symmetrical about center lines.
Via hole recommendations: 0.025 mm Cu via wall plating (minimum),
soldermask on the far side should tent or plug via holes.
5. Stencil recommendations: 0.10 mm stencil thickness, laser cut
apertures, trapezoidal walls and rounded corners offer better paste release.
6. Solder mask recommendations: contact board fabricator for recommended
solder mask offset and tolerance.
S2655
Figure 5. SKY85717-21 PCB Layout Footprint
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PRELIMINARY DATA SHEET • SKY85717-21: FRONT-END MODULE
Pin1
Indicator
SKY21
85717
XXXXX
Skyworks
Part Number
Y0460
Lot Number
Figure 6. Typical Part Markings
(Top View)
2.50
0.40 Max
0.05 C
0.127 Ref
4X ø0.15, Internal
Support Only. Do Not
Solder or Route Under
1.35 ± 0.05
0.02 + 0.03
–0.02
Pin 1
Indicator
Pin 1
Indicator
O.30 x 45°
16X 0.30 Min
Exposed Pad
1.35 ± 0.05
2.50
R0.075, Typ
0.500
8X 0.15
2X
0.05 C
2X
8X 0.12 Min
0.05 C
21X
See Detail A
0.05 C
Seating
Plane
Top View
Side View
Bottom View
Notes:
1. All measurements are in millimeters.
2. Dimensions and tolerances according to ASME Y14.5M-1994.
3. Unless otherwise specified the following values apply:
Decimal Tolerance:
Angular Tolerance:
X.X (1 place) ± 0.1 mm
± 0.5°
X.XX (2 places) ± 0.05 mm
X.XXX (3 places) ± 0.025 mm
4. Coplanarity applies to the terminals as well as all other bottom
surface metallization.
5. Dimension applies to metallized terminal. If terminal tip has a
radius, dimension should not be measured in that radius area.
6. Unless specified, dimensions are symmetrical about center lines.
2X 0.075
0.225 ± 0.05
0.20 ± 0.05
Detail A
Scale 2X
16 Places
0.10 M C A B
Figure 7. SKY85717-21 16-Pin QFN Package Dimensions
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Y1253
PRELIMINARY DATA SHEET • SKY85717-21: FRONT-END MODULE
2.00 ± 0.05)
(See Note 1)
∅1.00 Min.
4.00 ± 0.1
(See Note 2)
∅1.55 ± 0.05
1.75 ± 0.1
2.75 ± 0.05
3.50 ± 0.10
(See Note 1)
0.70 ± 0.10
R0.1 Typ.
4.00 ± 0.10
8.00 + 0.30/– 0.10
0.25 ± 0.05
Pin 1
Indicator
2.75 ± 0.05
Notes:
1. Measured from centerline of sprocket hole to centerline of pocket.
2. Cumulative tolerance of 10 sprocket holes: ±0.02 mm.
3. All measurements are in millimeters.
S2678a
Figure 8. SKY85717-21 Tape and Reel Dimensions
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11
PRELIMINARY DATA SHEET • SKY85717-21: FRONT-END MODULE
Ordering Information
8B
Model Name
SKY85717-21: 5 GHz, 802.11ac Front-End Module
Manufacturing Part Number
SKY85717-21
Evaluation Board Part Number
SKY85717-21-EVB
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Skyworks as a service to its customers and may be used for informational purposes only by the customer. Skyworks assumes no responsibility for errors or omissions in these materials or the
information contained herein. Skyworks may change its documentation, products, services, specifications or product descriptions at any time, without notice. Skyworks makes no commitment to
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Customers are responsible for their products and applications using Skyworks products, which may deviate from published specifications as a result of design defects, errors, or operation of
products outside of published parameters or design specifications. Customers should include design and operating safeguards to minimize these and other risks. Skyworks assumes no liability for
applications assistance, customer product design, or damage to any equipment resulting from the use of Skyworks products outside of stated published specifications or parameters.
Skyworks and the Skyworks symbol are trademarks or registered trademarks of Skyworks Solutions, Inc., in the United States and other countries. Third-party brands and names are for
identification purposes only, and are the property of their respective owners. Additional information, including relevant terms and conditions, posted at www.skyworksinc.com, are incorporated by
reference.
Skyworks Solutions, Inc. • Phone [781] 376-3000 • Fax [781] 376-3100 • sales@skyworksinc.com • www.skyworksinc.com
12
August 18, 2014 • Skyworks Proprietary Information • Products and Product Information are Subject to Change Without Notice • 203068E

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