Transcript
MB86C30-REBFUN-E
MB86C30 Reference board Function Specification
Rev1.6 September 24, 2009 Fujitsu Microelectronics Limited.
MB86C30-REBFUN-E
MB86C30 Reference board Function Specification Rev1.6
Revised History Revision 1.0 1.6
DATE 2009/06/03 2009/09/17
Revised content First created Reflect “MB86C30 Errata Sheet Rev1.3” , etc
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MB86C30 Reference board Function Specification Rev1.6
Contents 1 . INTRODUCTION ......................................................................................................................................... 4 2 . OVERVIEW OF BOARD .............................................................................................................................. 4 2 - 1 . FUNCTION ............................................................................................................................................... 4 2 - 2 . BLOCK DIAGRAM ..................................................................................................................................... 5 2 - 3 . PARTS PLACEMENT .................................................................................................................................. 5 3 . MAIN PARTS LIST ...................................................................................................................................... 6 4 . OVERVIEW OF CIRCUIT ........................................................................................................................... 7 5 . SWITCH,JUMPER,LED FUNCTION TABLE ............................................................................................ 8 5 - 1 . SWITCH ................................................................................................................................................... 8 5 - 2 . JUMPER................................................................................................................................................... 8 5 - 3 . LED ........................................................................................................................................................ 9 6 . CONNECTOR PIN ASSIGNMENT ........................................................................................................... 10 7 . USAGE PRECAUTIONS............................................................................................................................ 12 7-1. 7-2. 7-3. 7-4. 7-5. 7-6.
USB3.0-IF ............................................................................................................................................ 12 USB2.0-IF ............................................................................................................................................ 12 CLOCK................................................................................................................................................... 12 NMSEL ................................................................................................................................................ 12 HDD POWER SUPPLY ............................................................................................................................ 13 DEFAULT SETTING ................................................................................................................................. 13
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MB86C30-REBFUN-E
MB86C30 Reference board Function Specification Rev1.6
1.Introduction This document describes a function specification of the reference board for MB86C30 (USB3.0SATA bridge) developed by Fujitsu Microelectronics Ltd. 【Related documentation】 MB86C30 DATA SHEET MB86C30 User’s Manual Universal Serial Bus 3.0 Specification
Revision1.0
Fujitsu Microelectronics Limited Fujitsu Microelectronics Limited Hewlett-Packard Company, Intel Corporation, Microsoft Corporation, NEC Corporation, ST-NXP Wireless, Texas Instruments
2.Overview of board 2-1.Function MB86C30 Reference board has following functions. z MB86C30 (USB3.0-SATA bridg chip) embedded. z One Standard-B receptacle is embedded for USB3.0 interface. SuperSpeed(5Gbps)/High-Speed(480Mbps) z One COMBO receptacle is embedded for SATAinterface SATA Gen2(3Gbps)/Gen1(1.5Gbps) z SPI-Flash 512Kbit is embedded for external memory. z The power supply supports two ways of supply methods of USB bus power and the self-power. (Peripheral Power Connector) z As for the USB bus power and self-power, achange is possible with a jumper.
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MB86C30 Reference board Function Specification Rev1.6
2-2.Block diagram Reference Board PC
USB3.0 cable
CN
SATA HDD CN CN
MB86C30 TX
RX TX D+/D-
USB3.0
SATA
SATA
RX
HDD Controller
XTAL USB2.0 XTAL
VBUS GPIO
SPI
1.2V 3.3V SPI-FLASH JP
DC-DC
LED
CTL 5V 12V
PWRSW
CN ATX power
2-3.Parts placement JP5
XTAL 48MHz
SPI
SST25VF512A FLASH USB-IF
USB-CN Standard-B
MB86C30 LQFP64 1
JP1
HDD-IF OSC XTAL
GPIO[6] GPIO[7] GPIO[8]
1 CN
PWR SW
PSW1 6
SATA CONNECTOR CENTER
MIC2505-1
1
70
GPIO LED
HDD5V MB39C022
LED LED
LED 15
SON10
30
3.3V 5V
7
ATX 4pin 4
3
2
1
43
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3.Main parts list Item ASSP
Maker FML
MB86C30
DC-DC
FML
MB39C022G
1
Pow 3.3V 1.2V 5V
FLASH ESD
SST MURATA
SST25VF512A-33-4C-SAE LXES4XBAA6-027
1 1
3.3V 5.0V
ESD
MURATA
LXES15AAA1-017
6
---
FL
MURATA
DLP11TB900UL2 for USB3.0
2
---
PWR-SW
MICREL
MIC2505-1YM
1
5.0V
TI
SN74LVC3G14DCU
1
3.3V
TI ----NIHON DENPA NIHON DENPA NIHON DENPA ROHM ALPS
SN74LVC1G08DRL FDV301N BSS84 2725T 50MHz or 25MHz
1 1 1 1
3.3V ----3.3V
NX5032G STD-CKW-3 (50MHz) or STD-CSK-4 (25MHz) NX5032G STD-CSK-4 (48MHz)
1
3.3V
1
3.3V
SML-310MT SKRPABE010
6 1
-----
Connector Connector
FOXCONN FCI
UEB11123-2AK1-4H_327-0000-2014_X1 10034814-001LF
1 1
-----
Connector
MOLEX
15-24-4557
1
---
Connector
MAC8
WL-1-3P
1
---
Connector
MAC8
WL-1-6P
1
---
FOXCONN
USB3.0 Standard-A to Standard-B
--
---
IC IC FET FET OSC Crystal Crystal LED Switch
Cable
Type
Num 1
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Note USB3.0-SATA bridge LQFP64 0.4pitch DC-DC:600mA/LDO:300mA SON10 5V->3.3V/1.2V SPI-FLASH 512kbit SOP8 6line-ESD Protection Array SOP8 0.65pitch 1-line ESD Protection device SMD (1005) USB3.0 common mode choke 1.25x1.0 SMD 1ch/2A switch(Act-High) SOP8 1.27pitch Triple Schmitt-trigger inverter VSSOP8 Single 2-input AND SOT-553 NMOSFET SOT-23 PMOSFET SOT-23 50MHz or 25MHz SMD MB86C30(SYSCLK) 50MHz or 25MHz SMD MB86C30(SYS_XI/XO) 48MHz SMD MB86C30(U2_XI/XO) LED Green SMD Push Switch MB86C30(GPIO[5]) USB3.0 Standard-B right-angle SATA COMBO right angle socket SMT 1.27pitch 4pin x 1 ATX peripheral power 5.08pitch 3pin x 1 straight pin header 2.54pitch Jumper 6pin x 1 straight pin header 2.54pitch GPIO USB3.0 Std-A plug to Std-B plug
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4.Overview of circuit ※When inplement a part, cut wiring between the PAD
USB3.0 Std-B
CN SSRX+ SSRXSSTX+ SSTX-
SS_RXP SS_RXM 0.15uF SS_TXP 0.15uF SS_TXM
VBUS D+ DGND
12kΩ 1% Not Mounted D3.3V OSC STB OUT 25/50MHz VDD GND
ATX 4pin
CN
25MHz or XTAL 50MHz NX5032
1 JP1
2 3
FL
R
1kΩ R R
JP8 1 3 JP7
R 10Ω
0.01uF
FL FL FL FL
CE# SCK SO SI
SCK/GPIO[1]
R
0Ωor220Ω R 8pFor12pF
SST25VF512A
SCEN_X/GPIO[0]
SYSCLK
FL FL
10uF
Jumper
10kΩ R
NMSEL/SD/GPIO[2]
JP5
SYS_XO SYS_XI SOUT/GPIO[3]
Jumper
LED/GPIO[6] LED/48SEL/GPIO[7] LED/IRQ/SYSSEL/GPIO[8]
VBUS SYSRST_X SS_VDP SS_VDN SS_VDU U2_AVDB U2_AVDF1 U2_AVDP U2_AVDF2
LED
6
ST_VDP ST_VDN ST_VDU VDDE PLLVDD VDDI VSS
R 0Ω WP#
FL FL
0Ω R Not Mounted
VSS PSW1 PushSW DRV R LED DRV R LED DRV R LED Jumper D3.3V JP3 4.7kΩ R 1 2 R 100kΩ JP4 100kΩ 3 R
PSW/GPIO[5]
U2_XO U2_XI
D3.3V
VDD HOLD#
6pin Header 1
FETCTL/SI/GPIO[4]
Jumper
D S
A+ AB+ B-
0.01uF 0.01uF 0.01uF 0.01uF
Jumper
R 12kΩ G
U2_HSDP U2_HSDM U2_EXT12K
ST_TXP ST_TXM ST_RXP ST_RXM PTST Open TMODE[2] D3.3V TMODE[1] Open 2 TMODE[0] D3.3V
33kΩ
0Ω R 48MHz Not Mounted 330Ω R XTAL 12pF G S JP9 NX5032 D R 0Ω 10kΩ R R 5.6kΩ Not Mounted
R 1kΩ
CN
LQFP64
LXES15AAA1-017 Not Mounted
4 +5VDC 3 COM 2 COM 1 +12VDC
SATA COMBO
MB86C30
Not Mounted DLP11TB900UL2forUSB3.0
Jumper
JP2
Jumper
D3.3V R
FL
100kΩ
D5.0V DGND D12.0V
MIC2505-1YM SOP8 CTL FLG GND GATE IN OUT Jumper
TH
Not Mounted
5V
JP6 GND
R
MB39C022G
LED
LED
R
12V
SON10 0Ω
R
EN1 EN2 VIN2 GND2 VIN1 GND1
POR 1MΩ R FL
VOUT2 LX
D3.3V
2.2uH L
D1.2V 600kΩ R
22pF
FB 200kΩ R
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5.Switch,Jumper,LED function table 5-1.Switch PSW1:MB86C30 setting (GPIO[5]) Function Reserved
Condition ON(push-down):L OFF :H
Push botton switch
Setting content Function depends on a deployment program to MB86C30 Normal condition
5-2.Jumper Jumper (Pin header)
JP1:Power setting Function Board power supply
Setting SHORT 1-2 SHORT 2-3
Setting content USB VBUS by a board power supply (USB bus power) ATX connector input by a board power supply (Self power)
・The DC12V supply to the SATA HDD becomes it only in an ATX power supply. JP2:HDD-5V Power control setting Function HDD-5V power control
Setting SHORT OPEN
Setting content Control it in GPIO[4] (High:5V-ON Low:5V-OFF) HDD-5V are always ON Jumper (Solder pad)
JP3:System clock setting Function Select system clock frequency
Setting SHORT OPEN
Jumper (Solder pad)
Setting content 50MHz mode (SYSCLK or SYS_XI/XO) 25MHz mode (SYSCLK or SYS_XI/XO)
・When you use SYSCLK, please short2-3 JP7, and please implement an oscillator in U4. ・When you use SYS_XI/XO, please short1-2 JP7, please remove R9, and please implement crystal in X1. Jumper (Solder pad)
JP4:USB2.0 clock setting Function Select USB2.0 clock
Setting SHORT 1-2 SHORT 2-3
Setting content Crystal mode (U2_XI/XO) Internal clock mode (Generates it than system clock)
・When you use U2_XI/XO, please implement 48MHz crystal in X2. Jumper
JP5:MB86C30 boot setting Function Select MB86C30 boot mode
Setting OPEN Short-circuit at power-up (1~2sec)
Setting content Normal condition Maintenance mode
JP6:HDD-5V Power supply setting Function HDD-5Vsupply
Setting OPEN SHORT
Jumper (Solder pad)
Setting content Normal condition Please do not set it
・When you let you short-circuit, please remove U3 (MIC2505-1YM).
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MB86C30 Reference board Function Specification Rev1.6 Jumper (Solder pad)
JP7:System clock setting Function Select System base clock
Setting SHORT 1-2 SHORT 2-3
Setting content Crystal mode (X1:SYS_XI/SYS_XO) Oscillator mode (U4:SYSCLK)
・When you use SYS_XI/SYS_XO, please implement crystal in X1. (NX5032GA 50MHz or 25MHz) ・When you use SYSCLK, please implement oscillator in U4. (2725T 50MHz or 25MHz) Jumper (Solder pad)
JP8:MB86C30 device setting Function Select MB86C30
Setting OPEN SHORT
Setting content Assembly to ES2 and later Assembly to ES1
Jumper (Solder pad)
JP9:MB86C30 device setting Function Select VBUS control
Setting OPEN SHORT
Setting content Assembly to ES1 Assembly to ES2 and later
5-3.LED Part name D1 D2 D3 D4 D5 D6
Function 5V power monitor 3.3V power monitor HDD-5V power monitor GPIO[6] monitor GPIO[7] monitor GPIO[8] monitor
Color Green Green Green Green Green Green
Polarity ---H H H
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Content Lighting 5V power ON Lighting 3.3V power ON Lighting SATA-5V power ON
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6.Connector pin assignment 56 7 89 2 1
3
4
CN3:USB connector (Standard-B) Type USB2.0
No 1 2 3 4
IO -B B --
Signal VBUS U2_HSDM U2_HSDP DGND
VBUS 5.0V USB2.0 DUSB2.0 D+ Ground
USB3.0
5 6 7 8 9
O O -I I
SS_TXM SS_TXP DGND SS_RXM SS_RXP
USB3.0 Super Speed TXUSB3.0 Super Speed TX+ Ground USB3.0 Super Speed RXUSB3.0 Super Speed RX+
15 14 13 12 11 10 9 8 7 6 5 4 3 2 1
Note VBUS DD+ GND SSTXSSTX+ GND SSRXSSRX+
7 6 5 4 3 2 1
CN2:SATA connector (COMBO) Type Signal
Power
No 1 2 3 4 5 6 7
IO -O O -I I --
Signal DGND ST_TXP ST_TXM DGND ST_RXM ST_RXP DGND
Ground SATA HTX+ SATA HTXGround SATA HRXSATA HRX+ Ground
Note
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15
----------------
N.C N.C N.C DGND DGND DGND D5.0V D5.0V D5.0V DGND N.C DGND D12V D12V D12V
DC3.3V DC3.3V DC3.3V Ground Ground Ground DC5.0V DC5.0V DC5.0V Ground Device Activity / Disable Staggered Spin-up Ground DC12V When you connected an ATX power supply. DC12V When you connected an ATX power supply. DC12V When you connected an ATX power supply.
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2nd
2nd
GND A+ AGND BB+ GND
3rd 3rd 2nd 1st 2nd 2nd 2nd 3rd 3rd 2nd 3rd 1st 2nd 3rd 3rd
3.3V 3.3V 3.3V GND GND GND 5V 5V 5V GND LED# GND 12V 12V 12V
2nd
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2
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MB86C30 Reference board Function Specification Rev1.6
4
CN1:ATX power connector No 1 2 3 4
1
2
IO -----
3
4
Signal +12V DGND DGND +5V
5
Note DC12.0V Ground Ground DC5.0V
6
CN4:GPIO connector No 1 2 3 4 5 6
IO * * * * * *
Signal GPIO[3]/SOUT GPIO[4]/SI/FETCTL GPIO[5]/PSW GPIO[6]/LED GPIO[7]/48SEL/LED GPIO[8]/SYSSEL/IRQ/LED
Note 33kΩ Internal pull-down 33kΩ Internal pull-down 33kΩ Internal pull-down 33kΩ Internal pull-down 33kΩ Internal pull-down
Connected to CTL of U3(MIC2505-1) Connected to PSW1(PushSW) Connected to D4(LED) Connected to D5(LED) Connected to D6(LED)
・GPIO[2:0] is used as SPI-FLASH interface. ・GPIO[2,7,8] is shared with a MB86C30 initial setting terminal in the power-up. ・GPIO[3,4] is shared with a UART terminal. (When you use UART, please prepare a RS232 transceiver outside.) ・GPIO[4] is shared with HDD-5V power supply control pin. ・GPIO[6,7,8] is shared with LED. (D4,D5,D6)
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7.Usage precautions 7-1.USB3.0-IF The reference board implements the following parts on a super-speed differential signal line for EMI/ESD correspondence. But the common mode choke is connected between PAD at a line and examines whether you implement it individually. When you implement a common mode choke, You cut wiring between the PAD and implement a part. ESD protection device:MURATA LXES15AAA1-017 Common mode choke :MURATA DLP11TB900UL2 for USB3.0
T1&T2 pattern (Do not use choke)
T1&T2 pattern (Use choke)
7-2.USB2.0-IF The reference board implements the following parts on a high-speed differential signal line for ESD correspondence. But do not use the common mode choke. ESD protection device :MURATA LXES15AAA1-017
7-3.Clock The reference board makes all part implementation patterns to be able to confirm all clock methods of MB86C30. Please refer to list shown below for each usage. 【System clock】 Mode Crystal
Oscillator
Clock input SYS_XI/XO
SYSCLK
Frequency
JP3
JP7
Parts assembly C25,C26 R36 Y(12pF) Y(220Ω)
R9 N
U4 N
Note
50MHz
SHORT
SHORT 1‐2
X1 Y (50MHz)
25MHz
OPEN
SHORT 1‐2
Y (25MHz)
Y(8pF)
Y(0Ω)
N
N
50MHz 25MHz
SHORT OPEN
SHORT 2‐3 SHORT 2‐3
N N
N N
N N
Y Y
Y (50MHz) Y (25MHz)
NX5032G STD‐CKW‐3 NX5032G STD‐CSK‐4 2725T 2725T
【USB2.0 clock】 Mode External Crystal Internal
Clock input U2_XI/XO ----
Frequency
JP4
Parts assembly X2 R11
48MHz
SHORT 1-2
Y (48MHz)
N
48MHz
SHORT 2-3
N
Y
Note NX5032G STD-CSK-4
7-4.NMSEL When you want to start MB86C30 with a maintenance mode, you make it an opening state after having let JP5 short-circuit at the time of power supply ON for 1 or 2 seconds. Please usually start JP5 as an open state. JP5 is top layer.(L1)
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7-5.HDD Power supply When you want to control 5V supply for HDD to the SATA connector, you let JP2 short-circuit, and please control it by a program from a GPIO[4] terminal of MB86C30. In addition, the board makes JP6 to supply it without U3(MIC2505-1YM) for 5V supply control. DC12V are always supplied at the time of ATX power supply connection. 【DC5V】 5V power Program control Always ON
JP2
JP6
SHORT
OPEN
U3 assembly Y
OPEN
OPEN SHORT
Y N
GPIO[4] IO Condition Output High Low ---------
Output
Note
5V output Stop 5V output 5V output
【DC12V】 12V power Always ON Stop
ATX Power Y N
Output
Note
12V output Stop
7-6.Default setting The reference board is shipped by the following initial setting.
1
2 3 JP4, JP7 pattern
JP2, JP3, JP5, JP6, JP8, JP9 pattern 【Jumper】 Part name JP1 JP2 JP3 JP4 JP5 JP6 JP7 JP8 JP9
Initial setting SHORT 2-3 SHORT SHORT SHORT 1-2 OPEN OPEN SHORT 1-2 SHORT OPEN
Content Self-power mode (ATX power) HDD-5V control it in GPIO[4] System clock is 50MHz mode USB2.0 clock is external crystal Normal boot HDD-5V use the U3 output System clock is crystal mode MB86C30 implement ES1 Use VBUS control circuit
【Parts assembly】 Part name TP1~TP5 C8 C61 D7~D12 T1,T2 R9 R21 R23 R11 U3 U4 X1 X2
Assembly N N N N N N Y N N Y N Y Y
Content Test pin Capacitor for U3(MIC2505-1YM) output delay control Capacitor for 1.2V power ESD diode for USB2.0/USB3.0 Common mode choke for USB3.0 SSRX/SSTX Pull-down resistor for X1 Pull-up resistor for SPI-FLASH WP Pull-down resistor for SPI-FLASH WP Pull-down resistor for X2 5V power switch Oscillator for SYSCLK Crystal for SYS_XI/XO Crystal for U2_XI/XO
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