HON HAI PRECISION IND T77H134 WLAN & Bluetooth combo module User Manual UserMan MCLT77H134 revised

HON HAI Precision Ind. Co., Ltd. WLAN & Bluetooth combo module UserMan MCLT77H134 revised

UserMan_MCLT77H134-revised

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Document DescriptionUserMan_MCLT77H134-revised
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Date Submitted2010-01-18 00:00:00
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Document Author: F1317674

WLAN
and
Bluetooth
WLAN
BT
combo
module
MARVELLcombo
88W8688
Mini-Module
module
(IEEE 802.11b/g+BT 2.1 EDR)
Marketing Requirements Specification
T77H134.00
< REV.05>
Prepared by
Plum
Feng
Reviewed by
Robin
.!2!.!
Xu
Approved by
Chang-fu Lin
CONTENTS
0.
REVISION HISTORY..............................................................................................................................................3
1. INTRODUCTION ..........................................................................................................................................................4
1.1 SCOPE ......................................................................................................................................................................4
1.2 FUNCTION .................................................................................................................................................................4
1.3 ENVIRONMENTAL ......................................................................................................................................................4
2 PRODUCT SPECIFICATION ......................................................................................................................................5
2.1 HARDWARE SPECIFICATION .....................................................................................................................................5
3. PRODUCT REQUIREMENTS ....................................................................................................................................6
3.1 HARDWARE REQUIREMENTS ....................................................................................................................................6
3.2 HARDWARE ARCHITECTURE ....................................................................................................................................6
3.3 MECHANICAL OUTLINE DRAWING .............................................................................................................................7
3.4 LAND GRID ARRAY ...................................................................................................................................................8
3.5 SOFTWARE REQUIREMENTS ..................................................................................................................................10
.!3!.!
0. Revision History
Date
Change Note
REV Note
Nov. 11, 2008
Rev.01
Dec. 19, 2008
Rev.02
Update dimension of module
Apr. 28, 2009
Rev.03
Change the pin-define
Oct. 13.2009
Rev.04
Change the height of shielding
Oct. 27.2009
Rev.05
Change the mechanical spec of
shielding
.!4!.!
1. Introduction
Project Name: Mini-Module (802.11b/g + BT Module) based on Marvell IC 88W8688 with TFBGA
package.
This documentation describes the Engineering requirements specification of the WLAN
(802.11b/g) +Bluetooth 2.1 EDR Mini-Module. It is a confidential document of FOXCONN.
1.1 Scope
The Wireless MARVELL 88W8688BFL Mini-Module is designed to support 802.11g data rate of 54,
48, 36, 24, 18, 12, 9, 6Mbps, and as well as 802.11b data rate of 11, 5.5, 2, 1Mbps for WLAN
operation. In addition, this module is Bluetooth 2.1+Enhanced Data Rate (EDR) compliant which
provide 1, 2 and 3Mbps data rate.
1.2 Function
Ɣ Compatible with IEEE 802.11b/g standard and Bluetoothv2.1+EDR standard
Ɣ Ultra low-power dissipation
Ɣ Support external power down mode
Ɣ Support Marvell Wi-Fi/Bluetooth coexistence
Ɣ Support the IEEE 802.11i security standard through implementation of the Advanced Encryption
Standard (AES)/ Counter Mode CBC-Mac Protocol (CCMP) and WEP security mechanisms. Also
supports Internet Protocol Security (IPSce) with DES/3DES/AES encryption and MD5/SHA-1
authentication.
Ɣ Host interface supports for SDIO/ G-SPI, PCM/I2S Codec interface for multimedia application
Ɣ Host interface supports for SDIO/ G-SPI, PCM/I2S Codec interface for multimedia application
1.3 Environmental
Ambient Temperature (operation) = -10 to +75 Degrees Celsius.
Product storage temperature = -40 to +85 Degrees Celsius.
.!5!.!
2 Product Specification
2.1 Hardware Specification
2.1.1 WLAN
Wireless LAN Standards
Operating Frequency
Channel Numbers
WLAN Data Rate
Modulation Schemes
Transmitter Output Power
EVM
Receiver Sensitivity
Media Access Protocol
IEEE 802.11g standard and IEEE 802.11b
2.412~2.484GHz
11 channels for United States and Taiwan.
13 channels for Europe Countries
14 channels for Japan
802.11g: 54Mbps with fall back of 48, 36, 24, 18, 12, 9, 6Mbps.
802.11b: 11Mbps with fall back rates of 5.5, 2, and 1Mbps
802.11g:
64QAM (54Mbps, 48Mbps), 16QAM (36Mbps, 24Mbps), QPSK
(18Mbps, 12Mbps), BPSK (9Mbps, 6Mbps)
802.11b:
CCK (11 Mbps, 5.5Mbps), DQPSK (2 Mbps), DBPSK (1 Mbps)
11b
: 22 dBm
Typical
14dBm for 54, 48, 36, 24, 18, 12, 9, 6Mbps
11g
: 25 15dBm
dBm
Typical
for 11, 5.5, 2, 1Mbps
802.11b @11Mbps_14dBm (8%dB@peak)
802.11g @54Mbps_14dBm (-26dB@average)
Typical –72dBm for 54Mbps @ 10% PER
Typical –74dBm for 48Mbps @ 10% PER
Typical –81dBm for 36Mbps @ 10% PER
Typical –83dBm for 24Mbps @ 10% PER
Typical –86dBm for 18Mbps @ 10% PER
Typical –88dBm for 12Mbps @ 10% PER
Typical –88dBm for 9Mbps @ 10% PER
Typical –88dBm for 6Mbps @ 10% PER
Typical –88dBm for 11Mbps @ 8% PER
Typical –90dBm for 5.5Mbps @ 8% PER
Typical –92dBm for 2Mbps @ 8% PER
Typical –93dBm for 1Mbps @ 8% PER
CSMA/CA with ACK
2.1.2 Bluetooth
Radio Technology
Operating Frequency
Channel Numbers
Transmitter Output Power
Receiver Sensitivity
Maximum Receiver Signal
FHSS
2402 ~ 2480MHz ISM band
79 channels with 1MHz BW
-6~ -+4dBm output power for class2
-80dBm @ GFSK 0.1% BER, 1Mbps
-20dBm
.!6!.!
3. Product Requirements
3.1 Hardware Requirements
Form factor
Host Interface
PCB
Antenna port:
LGA
SDIO
6-layer FR4
One BT RF port and One Wi-Fi RF port
3.2 Hardware Architecture
The module design is based on the MARVELL 88W8688BFL single chip which implements
IEEE802.11b/g and Bluetooth 2.1+EDR.
Figure 1 Functional Block Diagram
MARVELL 88W8688BFL is a highly integrated, low-cost, low-power IEEE802.11 b/g MAC
/Baseband / RF WLAN and Bluetooth Baseband/RF. The mini Module apply to WLAN /Bluetooth
cellular handsets ,WLAN/Bluetooth headsets, portable audio/video devices and accessories ,
gaming platforms, and WLAN/Bluetooth enabled digital still cameras and printers.
The single chip MARVELL 88W8688BFL interfaces directly with both the RF and digital signals.
It transmits and receivers RF signals at 2.4GHz to and from the antenna and digital signals to and
from the host interface. A power management (PMU) is placed in the off Board to provide power
for all components in the module and also can save precious board space.
.!7!.!
Federal
Communication
3.3 Mechanical
outline
Drawing Commission Interference Statement
This equipment
has been
and found
to comply
with the
limits
for a Class
digital device,
The MARVELL
8688 tested
Mini-Module
802.11b/g
module
shall
be 6-layer
PCB Bdesign.
pursuant
to
Part
15
of
the
FCC
Rules.
These
limits
are
designed
to
provide
reasonable
protection
Dimension (W×L×H): 10.8mm ×15.8mm ×2.1mm (max.)
against harmful interference in a residential installation. This equipment generates, uses and can
radiate radio frequency energy and, if not installed and used in accordance with the instructions,
may cause harmful interference to radio communications. However, there is no guarantee that
interference will not occur in a particular installation. If this equipment does cause harmful
interference to radio or television reception, which can be determined by turning the equipment off
and on, the user is encouraged to try to correct the interference by one of the following measures:
- Reorient or relocate the receiving antenna.
- Increase the separation between the equipment and receiver.
- Connect the equipment into an outlet on a circuit different from that
to which the receiver is connected.
- Consult the dealer or an experienced radio/TV technician for help.
This device complies with Part 15 of the FCC Rules. Operation is subject to the following two
conditions: (1) This device may not cause harmful interference, and (2) this device must accept
any interference received, including interference that may cause undesired operation.
FCC Caution: Any changes or modifications not expressly approved by the party responsible for
compliance could void the user's authority to operate this equipment.
IMPORTANT NOTE:
FCC Radiation Exposure Statement:
This equipment complies with FCC radiation exposure limits set forth for an uncontrolled
environment. This equipment should be installed and operated with minimum distance 20cm
between the radiator & your body.
This transmitter must not be co-located or operating in conjunction with any other antenna or
transmitter., except tested built-in WLAN-BT collocation.
IEEE 802.11b or 802.11g operation of this product in the U.S.A. is firmware-limited to channels 1
through 11.
This device is intended only for OEM integrators under the following conditions:
This
is intended
only forsuch
OEMthat
integrators
under the following
conditions:
1)
Thedevice
antenna
must be installed
20 cm is maintained
between the
antenna and users,
1)
The
antenna
must
be
installed
such
that
20
cm
is
maintained
between
the
antenna and users,
and
and
2)
The transmitter module may not be co-located with any other transmitter or antenna, except tested
2)
TheWLAN-BT
transmitter
module may not be co-located with any other transmitter or antenna,
built-in
collocation.
3)
For
all
products
market in
in US,
US, OEM
OEM has
has to
to limit
limit the
the operation
operation channels
channels in
in CH1
CH1 to
to CH11
CH11 for
for 2.4G
2.4G
3) For all products market
band by
by supplied
supplied firmware
firmware programming
programming tool.
tool. OEM
OEM shall
shall not
not supply
supply any
any tool
tool or
or info
info to
to the
the end-user
end-user
band
regarding
to
Regulatory
Domain
change.
regarding to Regulatory Domain change.
As long
long as
as 33 conditions
conditions above
above are
are met,
met, further
further transmitter
transmitter test
test will
will not
not be
be required.
required. However,
However, the
the
As
OEM integrator
integrator is
is still
still responsible
responsible for
for testing
testing their
their end-product
end-product for
for any
any additional
additional compliance
compliance
OEM
requirements
required
with
this
module
installed
(for
example,
digital
device
emissions,
PC peripheral
requirements required with this module installed (for example, digital device emissions, PC
peripheral requirements,
etc.).
requirements,
etc.).
(Bottom view)
.!8!.!
3.4 Land Grid Array
3.4.1 LGA assignment and location˄
˄top view˅
˅
IMPORTANT NOTE: In the event that these conditions can not be met (for example certain
laptop configurations or co-location with another transmitter), then the FCC authorization is no
longer considered valid and the FCC ID can not be used on the final product. In these
circumstances, the OEM integrator will be responsible for re-evaluating the end product
(including the transmitter) and obtaining a separate FCC authorization.
End Product Labeling
This transmitter module is authorized only for use in device where the antenna may be installed
such that 20 cm may be maintained between the antenna and users. The final end product must
be labeled in a visible area with the following: “Contains FCC ID:MCLT77H134”.
Manual Information To the End User
The OEM integrator has to be aware not to provide information to the end user regarding how to
install or remove this RF module in the user's manual of the end product which integrates this
module.
The end user manual shall include all required regulatory information/warning as show in this
manual.
.!9!.!
3.4.2 Pin definition
Pin name
PIN#
Function
NCC
ᤞ፿
TCK
C2
JTAG test clock input
TDI
F4
JTAG test data input
ᆖী‫ڤ‬ᎁᢞ‫ٽ‬௑հ‫פ܅‬෷୴᙮ሽᖲΔॺᆖ๺‫ױ‬Δֆ‫׹‬Ε೸ᇆࢨࠌ‫݁ृش‬լ൓ᖐ۞᧢‫ޓ‬᙮෷Ε‫!!!ף‬
TDO
E3
JTAG test data output
Օ‫פ‬෷ࢨ᧢‫଺ޓ‬๻ૠհ௽ࢤ֗‫פ‬౨Ζ
TMS2
D4
JTAG test mode select. Selects the system JTAG controller
TRSTn
C4
JTAG test reset(active low)
JTAG test mode select. Selects the internal CPU JTAG
‫פ܅‬෷୴᙮ሽᖲհࠌ‫ش‬լ൓ᐙ᥼ଆ౰‫ڜ‬٤֗եឫ‫ٽ‬ऄຏॾΙᆖ࿇෼‫ڶ‬եឫ෼ွழΔᚨ‫ܛم‬ೖ‫ش‬Δࠀ
controller
TMS
E4
‫ޏ‬࿳۟ྤեឫழֱ൓ᤉᥛࠌ‫ش‬Ζছႈ‫ٽ‬ऄຏॾΔਐࠉሽॾऄ๵ࡳ‫܂‬ᄐհྤᒵሽຏॾΖ‫פ܅‬෷୴᙮ሽ
BT-PCM-DOUT
E5
PCM data output signal
ᖲႊ‫ٽ࠹ݴ‬ऄຏॾࢨՠᄐΕઝᖂ֗᠔᛭‫ش‬ሽंᘿ୴ࢤሽᖲ๻ໂհեឫΖ!
PCM clock signal (optional) Optional clock used for some
codecs. Derived from PCM_CLK
BT-PCM-MCLK
E6
‫ء‬ᑓิ࣍࠷൓ᎁᢞ৵ലࠉ๵ࡳ࣍ᑓิ‫᧯ء‬ᑑ‫ق‬ᐉ‫ٽ‬௑᧘Δࠀ૞‫؀ؓޣ‬Ղᑑ‫ق‬ψ‫ء‬ข঴փܶ୴᙮ᑓ
BT-PCM-CLK
C8
PCM Clock Signal output if PCM master. Input if PCM slave
ิΚIDᒳᇆω!
BT-PCM-DIN
D6
PCM data input signal
BT-PCM-SYNC
WLAN-LED
D5
D1
GPIO17
B2
WLAN
BT-OUT
EXT-SLEEP-CLK
VDD33
VDD30
VIO_X1
VIO_X2
SD-D3/SPI_CLK_REQ
SD-D2/SPI_SINTn
SD-D1/ SPI_SDO
SD-D0/SPI_SCSn
SD-CMD/ SPI_SDI
SD-CLK/SPI_CLK
F8
F1
D8
B7
C7
A2
D3
C1
A3
B3
C3
A4
B4
CF-INPACK-N
B6
WLAN-MAC-WAKE
VDD18D
VDD18_LDO
B1
C5 C6
B5
RESETn
D7
PDn
D2
GPIO0
PCM Sync Pulse Signal
LED for WLAN indicator light
GPIO17 for BT LED(Wi-Fi IRQ)
GPIO17 default high for SDIO interface, pull low for G-SPI
interface
Wi-Fi RF Signal
BT RF Signal
clock input for external 32.768KHz sleep clock
3.3V voltage ,add at least 1uF cap bypass
3.0V voltage ,add at least 1uF cap bypass
1.8V or 3.3V voltage, add at least 1uF cap bypass
1.8V or 3.3V voltage, add at least 1uF cap bypass
SDIO data interface/G-SPI interface
SDIO data interface/G-SPI interface
SDIO data interface/G-SPI interface
SDIO data interface/G-SPI interface
SDIO command/G-SPI interface
SDIO clock/G-SPI Clock
PC card I/O mode input Acknowledge. Used by the card to
indicate to the host that the card is selected and is
responding to a read cycle.
Host to indicate to the card is selected
1.8V voltage, add at least 1uF cap bypass
1.8V voltage, add at least 1uF cap bypass
Reset pin ,need external 100K res connected to 3.3 voltage
to pull high
Full power down (active low).Have 100K res to pull this pin
high for normal operation in the module. No need external
pull-up for this pin
NC for Reserve
A7
A1 A5 A6 A8
A9 B8 B9 C9
D9 E1 E2 E7 GND
E8 E9 F2 F3
F5 F6 F7 F9
GND
.!:!.!
3.5 Software Requirements
The software includes firmware, driver and configuration utility for Wireless WLAN 802.11 b/g +
Bluetooth Module based on Marvell 88w8688BFL chip.
3.5.1 Software setup
The software components required for operations will be packed into one installation program,
thus user and customer can setup and upgrade software simply by running the setup program
(ex. Setup.exe) without any obstacles.
3.5.2 Operating System Support
All software components, including the installer will work on Microsoft Windows XP SP2.
Driver for some common Linux systems is also supported, such as Fedora 8. Other Operate
Systems (such as Microsoft Windows Vista RTM) will be supported if required by customer.
3.5.3 Software Functions
For WLAN part, the WLAN configuration utility will include the Link Statistics Software, thus
customers can evaluate various PHY performance parameters independent of system
performance. This utility can also be used to change various WLAN parameters, such as SSID,
Band, channel, Data rate, etc. The firmware and driver will fully compliance to the 802.11
published PHY and MAC specifications. It can support the following functions:
Scan for Wireless Networks
Connect to a Wireless Network
Change Profiles
Support security standards such as, WEP, WPA, WPA2, WPA-PSK, and WPA2-PSK.
Support ASPM
Support Marvell Bluetooth coexistence
For Bluetooth part, a fully working Configuration Utility is supplied. It is:
Fully compliant with Bluetooth 2.1 +EDR(Enhanced Data Rate) specifications up to HCI (Host
Controller Interface) layer
Support all standard operations: Inquiry scan, page scan, paring, authentication, link key,
and encryption
Support many approved features of Bluetooth 2.1 release (Link Supervision Timeout,
Encryption Pause/Resume, Extended Inquiry Response, Sniff Sub Rating)
Support all Bluetooth low power operation modes. (ie, hold, sniff, and park with configurable
intervals).
Support sleep and standby modes for ultra low-power operation.
.!21!.!

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