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Data Book
AU9432
Multimedia USB Keyboard Hub Technical Reference Manual
Product Specification Official Release Revision 1.00W Public
Jan 2005
Data sheet status
Objective specification Preliminary specification Product specification This data sheet contains target or goal specifications for product development.
This data sheet contains preliminary data; supplementary data may be published later. This data sheet contains final product specifications.
Revision History
Date Jan 2005 Revision/ Model 1.00W Description Removed the schematics. Please contact our sales if you need it.
Page 2 of 28 AU9432 Multimedia USB Keyboard Hub V1.00W
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Copyright Notice Copyright 1998 - 2005 Alcor Micro Corp. All Rights Reserved. Trademark Acknowledgements The company and product names mentioned in this document may be the trademarks or registered trademarks of their manufacturers. Disclaimer Alcor Micro Corp. reserves the right to change this product without prior notice. Alcor Micro Corp. makes no warranty for the use of its products and bears no responsibility for any error that appear in this document. Specifications are subject to change without prior notice
Contact Information: Web site: http://www.alcormicro.com/
Taiwan Alcor Micro Corp. 4F, No 200 Kang Chien Rd., Nei Hu, Taipei, Taiwan, R.O.C. Phone: 886-2-8751-1984 Fax: 886-2-2659-7723 Santa Clara Office 2901 Tasman Drive, Suite 206 Santa Clara, CA 95054 USA Phone: (408) 845-9300 Fax: (408) 845-9086 Los Angeles Office 9070 Rancho Park Court Rancho Cucamonga, CA.91730 USA Phone: (909) 483-9900 Fax: (909) 944-0464
Page 3 of 28 AU9432 Multimedia USB Keyboard Hub V1.00W
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Table of Contents
1 Introduction....................................................................... 1.1 Description......................................................................................... 1.2 Features.............................................................................................. 2 Application Block Diagram................................................. 3 Pin Assignment.................................................................. 6 6 6 7 8
4 System Architecture and Reference Design....................... 11 4.1 AU9432 Block Diagram................................................................... 11 4.2AU9432 Keyboard Hub EEPROM Sample Value.......................... 12 4.3Sample Key Matrix Layout Table.................................................... 16 5 Electrical Characteristics................................................... 17 5.1 Absolute Maximum Ratings............................................................. 17 5.2 Recommended Operating Conditions........................................... 17 5.3 General DC Characteristics............................................................ 17 5.4 DC Electrical Characteristics for 5 volts operation.................... 18 5.5 DC Electrical Characteristics for 3.3 volts operation................... 18 5.6 Crystal Oscillator Circuit Setup for Characterization................ 19 5.7 USB Transceiver Characteristics.................................................... 19 5.8 ESD Test Results................................................................................ 24 5.9 Latch-Up Test Results....................................................................... 25 6 Mechanical Information...................................................... 27
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List of Figures
2.1 Block Diagram............................................................................................... 3.1 Pin Assignment Diagram............................................................................. 7 8
4.1 AU9432 Block Diagram................................................................................. 11 5.1 Crystal Oscillator Circuit Setup for Characterization............................. 19 5.2 Electrical Characteristics Diagram............................................................. 23 5.3 Latch-Up Test Results Diagram.................................................................. 25 6.1 Mechanical Information Diagram............................................................... 27
List of Tables
3.1 4.1 4.2 5.1 5.2 5.3 5.4 5.5 5.6 5.7 5.8 5.9 Pin Descriptions........................................................................................ 9 AU9432 Keyboard Hub EEPROM Sample Value.................................. 13 Sample Key Matrix Layout Table........................................................... 16 Absolute Maximum Ratings.................................................................... 17 Recommended Operating Conditions.................................................... 17 General DC Characteristics.................................................................... 17 DC Electrical Characteristics for 5 volts operation............................ 18 DC Electrical Characteristics for 3.3 volts operation........................ 18 USB Transceiver Characteristics............................................................ 19 Absolute Maximum Ratings.................................................................... 20 DC Eletrical Characteristics.................................................................... 21 AC Electrical Characteristics................................................................... 22
5.10 ESD Data.................................................................................................... 24 5.11 Latch-Up Data........................................................................................... 26
Page 5 of 28 AU9432 Multimedia USB Keyboard Hub V1.00W
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1.0 Introduction
1.1 Description
The AU9432 R2 is an integrated USB keyboard and 2 port hub controller chip. The AU9432 R2 has a built-in default keyboard matrix, so that it can be directly connected to an 18 x 8 keyboard matrix. The keyboard matrix can be customized via an optional external 1024-byte serial EEPROM. Downstream ports can be used to connect various USB peripheral devices, such as USB printers, modems, scanners, cameras, mice, and joysticks to the system without adding external glue logic. It also supports multimedia volume control, CD/DVD Play/Pause, Stop, Eject, Mute and general purpose shortcut keys such as Internet, email and help. This single chip integration makes the AU9432 R2 the most cost effective hub/keyboard solution available in the market.
1.2 Features
* * * * * * * * * * * * * * * Support with the Universal Serial Bus Specification, version 1.1 USB hub design is compliant with Universal Serial Bus Hub Specification, revision 1.1 USB keyboard design is compliant with USB Device Class Definition for Human Interface Devices (HID), Firmware Specification, version 1.1 Single chip integration of USB keyboard, hub, ACPI and multimedia control functions Integrated USB hub supports two bus-powered downstream ports Patent-pending, table-driven SCANTABLE technology for easy customization to different keyboard matrix up to 18x8. Support rotary encoder for multimedia volume control Support CD/DVD Play/Pause, Fast Forward, Rewind, Stop, Eject, Mute (up to 24 keys) Additional general purpose keys for internet, email, help...shortcuts, up to 16 keys. Additional 2 general purpose LEDs Support ACPI compliant suspend/shutdown key Built-in 3.3v voltage regulator allows single +5V operating voltage drawing directly from USB bus. This results in reduced overall system cost. Optional gang-powered control pin for downstream port. Runs at 12Mhz frequency Available in 64-pin LQFP package.
Page 6 of 28 AU9432 Multimedia USB Keyboard Hub V1.00W
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2.0 Application Block Diagram
The AU9432 R2 is a single chip which integrates USB keyboard and hub functionality. The upstream port is connected to the USB system. The downstream ports can be used for a mouse and joystick. The multimedia function keys are designed to support volume control, CD/DVD, Play/Pause, Stop, Eject, Mute and general-purpose shortcut keys for one key internet, email and help. Figure 2.1 Block Diagram
USB oot R Port
USB Downstream Port
PC with USB Host Controller USB Upstream Port
otary encoder, R olume control v
USB Keyboard ub H
USB Mouse
USB Scanner USB Downstream Port
Page 7 of 28 AU9432 Multimedia USB Keyboard Hub V1.00W
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3.0 Pin Assignment
The AU9432 R2 is packed in a 64-pin Quad Flat Package (LQFP). The following figure shows the signal names for each of the pins on the chip of a LQFP package. The table on the following page describes each of the pin signals.
Figure 3.1 Pin Assignment Diagram
SCROLL_LOCK
64
DESCSELET2 MODEKEYN
MUTEKEYN SLEEPKEYN
63 62
USB1_DP USB_DM USB_DP VCCAP GNDAP
57
USB2_DM USB2_DP USB1_DM
XTAL_2 XTAL_1 RSTN
61 60 59
58
56
5
54
53
52
51
50
49 48 47 46
GNDIO VHV V33 WAKUPKYN
3
1 2
4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 2 23 24 25 26 27 28 29 30 31 32 38 37
45 4 43 42 41 40 39
SHUTDKYN SCAN_M2 SCAN_M1 SCAN_M0 SCAN_R18 SCAN_R17 SCAN_R16 SCAN_R15 SCAN_R14 SCAN_R13 SCAN_R12 SCAN_R11
36 35 34 3
DESCSELET1 DESCSELET0 CAPSLOCK NUM_LOCK LED2 LED1 DP1OVCR DP2PWRUP DP2OVRCR GANGPWRN AIN GNDK VCC3K BIN SCAN_R1 SCAN_R2
AU9432 Multimedia USB Keyboard Hub V1.00W
SCAN_R9 SCAN_R10
SCAN_R7 SCAN_R8 SCAN_C1 SCAN_C2 SCAN_C3 SCAN_C4 SCAN_C5 SCAN_C6 SCAN_C7 SCAN_C8
SCAN_R3 SCAN_R4 SCAN_R5 SCAN_R6 Page 8 of 28
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Table 3.1 Pin Descriptions
Pin # 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 Pin Name GNDIO VHV VCC33 WAKUPKYN SHUTDKYN SCAN_M2 SCAN_M1 SCAN_M0 SCAN_R18 SCAN_R17 SCAN_R16 SCAN_R15 SCAN_R14 SCAN_R13 SCAN_R12 SCAN_R11 SCAN_R10 SCAN_R9 SCAN_C8 SCAN_C7 SCAN_C6 SCAN_C5 SCAN_C4 SCAN_C3 SCAN_C2 SCAN_C1 SCAN_R8 SCAN_R7 SCAN_R6 SCAN_R5 SCAN_R4 SCAN_R3 SCAN_R2 SCAN_R1 BIN VCC3K GNDK AIN GANGPWRN DP2OVRCUR DP2PWRUP DP1OVRCUR LED1 LED2 GND 5V Power Supply Regulator 3.3V Output INPUT, PULL UP INPUT, PULL UP INPUT,OUTPUT,PULL DOWN INPUT/OUTPUT,PULL DOWN INPUT/OUTPUT,PULL DOWN INPUT/OUTPUT,PULL DOWN INPUT/OUTPUT,PULL DOWN INPUT/OUTPUT,PULL DOWN INPUT/OUTPUT,PULL DOWN INPUT/OUTPUT,PULL DOWN INPUT/OUTPUT,PULL DOWN INPUT/OUTPUT,PULL DOWN INPUT/OUTPUT,PULL DOWN INPUT,PULL UP,PULL DOWN INPUT,PULL UP,PULL DOWN INPUT,PULL UP INPUT,PULL UP INPUT,PULL UP INPUT,PULL UP INPUT,PULL UP INPUT,PULL UP INPUT,PULL UP INPUT,PULL UP INPUT/OUTPUT,PULL DOWN INPUT/OUTPUT,PULL DOWN INPUT/OUTPUT,PULL DOWN INPUT/OUTPUT,PULL DOWN INPUT/OUTPUT,PULL DOWN INPUT/OUTPUT,PULL DOWN INPUT/OUTPUT,PULL DOWN INPUT/OUTPUT,PULL DOWN INPUT Kernel 3.3V Input Kernel Ground INPUT OUTPUT INPUT,PULL UP OUTPUT INPUT,PULL UP OUTPUT OUTPUT 8mA 50KOhm 8mA 50KOhm 8mA 8mA 16mA, 50KOhm 16mA, 50KOhm 16mA, 50KOhm 16mA, 50KOhm ACPI wakeup key ACPI shutdown key Row/Scan Line (dedicated for mm/shortcut keys) Row/Scan Line (dedicated for mm/shortcut keys) Row/Scan Line (dedicated for mm/shortcut keys) Row/Scan Line IO Type Driving Capability Ground 5V input Description
16mA, 50KOhm Row/Scan Line 16mA, 50KOhm Row/Scan Line 16mA, 50KOhm Row/Scan Line 16mA, 50KOhm Row/Scan Line 16mA, 50KOhm Row/Scan Line 16mA, 50KOhm Row/Scan Line 16mA, 50KOhm Row/Scan Line 16mA, 50KOhm Row/Scan Line 16mA, 50KOhm Row/Scan Line 2.5K Ohm 2.5K Ohm 2.5K Ohm 2.5K Ohm 2.5K Ohm 2.5K Ohm 2.5K Ohm 2.5K Ohm Column line Column line Column line Column line Column line Column line Column line Column line
16mA, 50KOhm Row/Scan Line 16mA, 50KOhm Row/Scan Line 16mA, 50KOhm Row/Scan Line 16mA, 50KOhm Row/Scan Line 16mA, 50KOhm Row/Scan Line 16mA, 50KOhm Row/Scan Line 16mA, 50KOhm Row/Scan Line 16mA, 50KOhm Row/Scan Line Rotary encoder input `B' +3V power supply Ground Rotary encoder input `A' Port 1 power/Gang power enable (gang mode) Port 2 over current - low active Downstream port 2 power enable - low active Port 1 over current - low active Additional LED 1 - low active - open drain Additional LED 2 - low active - open drain Page 9 of 28
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45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64
NUM_LOCK CAPSLOCK DESCSELET0 DESCSELET1 DESCSELET2 MODEKEYN USB2_DM USB2_DP USB1_DM USB1_DP USB_DM USB_DP VCCAP GNDAP XTAL_2 XTAL_1 RSTN MUTEKEYN SLEEPKEYN
OUTPUT OUTPUT INPUT INPUT INPUT INPUT INPUT/OUTPUT INPUT/OUTPUT INPUT/OUTPUT INPUT/OUTPUT INPUT/OUTPUT INPUT/OUTPUT Analog 3.3V Input Analog Ground OUTPUT INPUT INPUT INPUT,PULL UP INPUT,PULL UP
16mA 16mA
Num lock LED - low active - open drain Cap Lock LED - low active - open drain
Fn Key 16mA 16mA 16mA 16mA 16mA 16mA USB downstream port 2 DUSB downstream port 2 D+ USB downstream port 1 DUSB downstream port 1 D+ USB upstream DUSB upstream D+ Analog VCC Analog ground) 12MHz crystal output 12MHz Crystal input Reset - low active 50KOhm 50KOhm 16mA Mute key, low active ACPI (Sleep/wakeup/power down) - low active Scroll_lock LED output - low active -open drain
SCROLL_LOCK OUTPUT
Page 10 of 28 AU9432 Multimedia USB Keyboard Hub V1.00W
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4.0 System Architecture and Reference Design
4.1 AU9432 Block Diagram
Figure 4.1 AU9432 Block Diagram
1 2 oot R Port eset R Suspecd, Resume and ram Timer F Keyboard & eypad Scan K and IO FF 8 Column Row
VCR X
USB SIE
Command Processor
Keyboard ed L Control
Mute Led Num Lock Cap ock L Scroll ock L
Hub Repeater
Port Control
Port Control
Port Control
Rotary Encoder, Mute ey, K & ACPI Key Controller and IO FF
16 x 6 5 ROM 16 x 6 5 RAM Prom E Control
Mute ey K AIN IN B ACPI Key
V .3
V .3 Voltage egulator R
XCVR X4PL
XCVR
8 it b EProm
12MHz Port 2 Port 3
Port1 Keyboard
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4.2 AU9432 Keyboard Hub EEPROM Sample Value
Table 4.1 AU9432 Keyboard Hub EEPROM Sample Value
Offset 00 Hex value 00,07 Description Configuration
02
B1,C3
04
1C,35
06
C3,CC
08
CC,DE
0A
35,57
0C
47,50
0E
70,B1
10
60,69
12
54,02
14
02,06
16
06,12
18
12,3A
1A
3A,42
1C
09,02,19,00,01,01,02,E0,32
Byte 1 bit 0 : Individual power. Byte 1 bit 1 : Wakeup on any key. Byte 1 bit 2 : Select SelfPower change by HID feature. Byte 1 bit 3 : Enable disconnect on power change. Byte 1 bit 4 : Disable Hub(keyboard only). Byte 1 bit 5 : Enable Volume Up/Down Keys (Disable rotary encoder). Byte 1 bit 6 : Enable Split Report (16 bits - id3, 8 - id1) Byte 1 bit 7 : Enable Port Error LoByte : Pointer to Hub device descriptor 000h ROM address HiByte : Xfer end address + 1 LoByte : Pointer to Hub configuration descriptor 000h ROM address HiByte : Xfer end address + 1 (config+interface+endpoint) LoByte : Pointer to HUB Class descriptor (0x29) 000h ROM address HiByte : Xfer end address + 1 LoByte : Pointer to Keyboard device descriptor 000h ROM address HiByte : Xfer end address + 1 LoByte : Pointer to Keyboard configuration descriptor HiByte : Xfer end address + 1 000h ROM address (config+interface0+HID0+endpoint1+interface1+HID1+end point2) LoByte : Pointer to Keyboard HID descriptor (0x21) Interface 0 HiByte : Xfer end address + 1 000h ROM address LoByte : Pointer to Keyboard Report descriptor (0x22) Interface 0 HiByte : Xfer end address + 1 000h ROM address LoByte : Pointer to Keyboard HID descriptor (0x21) Interface 1 HiByte : Xfer end address + 1 000h ROM address LoByte : Pointer to Keyboard Report descriptor (0x22) Interface 1 HiByte : Xfer end address + 1 start in 200h ROM address, end in 300h ROM address LoByte : Pointer to string descriptor (index 0) 300h ROM address HiByte : Xfer end address + 1 LoByte : Pointer to string descriptor (index 1) 300h ROM address HiByte : Xfer end address + 1 LoByte : Pointer to string descriptor (index 2) 300h ROM address HiByte : Xfer end address + 1 LoByte : Pointer to string descriptor (index 3) 300h ROM address HiByte : Xfer end address + 1 Config Desc. 1 interface, self powered, remote wakeup, 100 Page 12 of 28
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25 2E 35
09,04,00,00,01,09,00,00,02 07,05,81,03,01,00,FF 09,02,22,00,01,01,02,E0,32
3E 47 50 57 60 69 70
09,04,00,00,01,03,01,01,02 09,21,10,01,00,01,22,41,00 07,05,81,03,08,00,0A 09,04,01,00,01,03,00,00,02 09,21,10,01,00,01,22,AE,00 07,05,82,03,04,00,FF 05,01,09,06,A1,01,05,07, 19,E0,29,E7,15,00,25,01, 75,01,95,08,81,02,95,01, 75,08,81,01,95,05,75,01, 05,08,19,01,29,05,91,02, 95,01,75,03,91,01,95,06, 75,08,15,00,26,FF,00,05, 07,19,00,2A,FF,00,81,00, C0 12,01,10,01,09,00,00,08,8F , 05,13,92,01,00,01,02,00,01
mA Total bytes returned : 0x19 Hub interface descriptor, interface 0. Class code 0x9, Sub Class 02 Hub endpoint descriptor Keybrd Config Desc. 1 interfaces, Self powered, remote wakeup, 100 mA Total bytes returned : 0x22 Keyboard interface descriptor, interface 0. Class code 0x3.Boot subclass Keyboard HID 1.1 descriptor , Country code=00 Keyboard endpoint descriptor Added Key interface descriptor, interface 1. Class code 0x3. subclass 02, (KB 1 interface, Added key Not Used) Added Key HID 1.1 descriptor, Country code=00 Added Key endpoint descriptor Keyboard report descriptor
B1
C3
09,29,03,0C,00,16,64,02,FF
CC
12,01,10,01,00,00,00,08, 8F,05,72,94,01,00,01,02, 00,01
Hub device descriptor, version 1. 1, change VID,PID Device version 1 12 Descriptor length 01 Device Descriptor 10 01 USB Version 1.1 09 Hub class 00 Sub-class 00 Device Protocol 08 Maximum packet size VV VV Vender ID - Hub Vender ID (058F) PP PP Product ID - Hub Product ID (9213) 01 00 Device release number 01 Index of Manufacturer string descriptor 02 Index of Product string descriptor 00 Index of serial number string descriptor - no serial number 01 Number of configuration Hub class descriptor. 09 Descriptor length 29 Hub Descriptor 03 Number of downstream port - one keyboard and 2 external ports 0C 00 Individual Over-current, compound device, gang power switch 16 Power good wait time 16hx2 mS 64 Maximum current required (100 mA) 02 Port 1 is not removable FF Port power control mask Keyboard device descriptor, version 1.1, change VID,PID Device version 1 12 Descriptor length 01 Device Descriptor 10 01 USB Version 1.1 00 Class defined in interface descriptor 00 Sub-class 00 Device Protocol 08 Maximum packet size VV VV Vender ID -Keyboard Vender ID (058F) PP PP Product ID - Keyboard Product ID (9472) 01 00 Device release number 01 Index of Manufacturer string descriptor Page 13 of 28
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DE
100
190
200
254
00,00, 00,00,00,00,00,00,00,00, 00,00,00,00,00,00,00,00, 00,00,00,00,00,00,00,00, 00,00,00,00,00,00,00,00, 39,2C,4E,3A,3B,3C,3D,3E, 3F,40,41,42,43,53,47,5F, 60,61,56,5C,5D,5E,57,59, 5A,5B,62,63,58,44,45,46, 34,35,4D,31,1D,1B,06,19, 05,11,10,36,37,38,4C,55, 24,25,26,27,2D,2E,2A,2B, 14,1A,08,15,17,1C,18,0C, 12,13,2F,30,28,51,04,16, 07,09,0A,0B,0D,0E,0F,33, 32,4A,52,4B,48,50,4F,49, 00,89,E0,E4,E8,E2,E6,54, 8B,E3,00,00,67,88,00,8A, E1,87,00,00,E5,66,E7,65, 64,29,1E,1F,20,21,22,23, 00,00,00,00,00,00,00,00, 00,00,00,00,00,00,00,00, 00,00,00,00,00,00,00,00, 60,61,56,5C,5D,5E,57,59, 5A,5B,62,63,58,44,45,46, 34,35,4D,31,1D,1B,06,19, 05,11,62,36,63,54,4C,55, 5F,60,61,55,2D,2E,2A,2B, 14,1A,08,15,17,1C,5C,5D, 5E,56,2F,30,58,4E,04,16, 07,09,0A,0B,59,5A,5B,57, 32,4A,4B,4B,48,4A,4D,49, 00,89,E4,E4,E8,E2,E6,54, 8B,E3,00,00,67,88,00,8A, E1,87,00,00,E5,66,E7,65, 64,29,1E,1F,20,21,22,23, 00,00,00,00,00,00,00,00, 00,00,00,00,00,00,00,00, 00,00,00,00,00,00,00,00, 00,00,00,00,00,00,00,00, 00,00,00,00,00,00,00,00, 00,00,00,00,00,00,00,00, 00,00,00,00,00,00,00,00, 00,00,00,00,00,00,00,00, 00,00,00,00,00,00,00,00, 00,00,00,00,00,00,00,00, 00,00,00,00,00,00,00,00, 00,00,00,00, 05,0C,09,01,A1,01,85,01, 09,E0,15,E8,25,18,75,07, 95,01,81,06,15,00,25,01, 75,01,09,E2,81,06,C0,05, 01,09,80,A1,01,85,02,19, 81,29,83,15,00,25,01,75, 01,95,03,81,06,75,05,95, 01,81,01,C0,05,0C,09,01, A1,01,85,03,95,01,75,01, 15,00,25,01,0A,21,02,81, 06,0A,8A,01,81,06,09,B7, 81,06,09,CD,81,06,09,E9, 81,06,09,EA,81,06,0A,92, 01,81,06,0A,24,02,81,06,
02 Index of Product string descriptor 00 Index of serial number string descriptor - no serial number 01 Number of configuration Spare bytes for expanding the Key report descriptor
Keyboard Matrix 8x18
Keyboard Matrix 8x14
Spare bytes for expanding the Added Key report descriptor
Added Key report descriptor (KB 1 interface, Added key Not Used)
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302 306
312
33A 342
0A,8A,01,81,06,0A,23,02, 81,06,0A,21,02,81,06,0A, 26,02,81,06,0A,27,02,81, 06,09,E2,81,06,09,00,81, 06,09,00,81,06,95,01,75, 08,81,01,05,08,09,19,75, 01,91,02,09,2A,91,02,95, 01,75,06,91,01,C0, 04,03,09,04 0C,03, 41,00,4C,00,43,00,4F,00,52 ,00, 28,03, 41,00,55,00,39,00,34,00, 33,00,32,00,20,00,4B,00, 65,00,79,00,62,00,6F,00, 61,00,72,00,64,00,20,00, 48,00,75,00,62,00, 08,03,31,00,32,00,33,00 00,00,00,00,00,00,00,00, 00,00,00,00,00,00,00,00, 00,00,00,00,00,00,00,00, 00,00,00,00,00,00,00,00, 00,00,00,00,00,00,00,00, 00,00,00,00,00,00,00,00, 00,00,00,00,00,00,00,00, 00,00,00,00,00,00,00,00, 00,00,00,00,00,00,00,00, 00,00,00,00,00,00,00,00, 00,00,00,00,00,00,00,00, 00,00,00,00,00,00,00,00, 00,00,00,00,00,00,00,00, 00,00,00,00,00,00,00,00, 00,00,00,00,00,00,00,00, 00,00,00,00,00,00,00,00, 00,00,00,00,00,00,00,00, 00,00,00,00,00,00,00,00, 00,00,00,00,00,00,00,00, 00,00,00,00,00,00,00,00, 00,00,00,00,00,00,00,00, 00,00,00,00,00,00,00,00, 00,00,00,00,00,00,00,00, 00,00,00,00,00,00,
Lang ID array, (index 0), change string Leng,Str_desc, (index 1) Manufacturer, A,L,C,O,R Leng, Str_desc (index 2), change string Product, A,U,9,4,3,2, ,K,e,y,b,o,a,r,d, ,H,u,b
Leng,Str_desc (Serial number, index 3), change string 1,2,3 Spare bytes
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4.3 Sample Key Matrix Layout Table
Table 4.2 Sample Key Matrix Layout Table
H1 V1 V2 V3 V4 V5 V6 V7 V8 V9 V10 V11 V12 V13 V14 V15 V16 V17 V18 <> Korea-Left Z X F3 Esc M N B V C Page-Up Home Insert Alt-Left
H2
H3
H4 Left
H5
H6
H7
H8
Japan Ctrl-Left Shift-Right A S F5 F4 J H G F D Page-DN End Del Back-Space += Print-Screen F12 7& 8* 9( 0) -_ \(UK) | \| ~ 1! Pause Scroll-Lock 6^ 5% 4$ 3# 2@ Enter ]} F11 F10 U I O P [{ + Caps-Lock Ctrl-Right
Alt-Right r
Japan Korea-Right Japan Shift-Left Tab Q F1 F2 Y T R E W Ins 0 . Del Enter (Pad)
Home 8 F9 F8 K L ;: `" Pg Up 9 * / Num Lock
4 5 F7 F6 ,< .> ?/ Space-Bar 6 Pg Dn 3 2 End 1 Right
Japan
Japan
Rev.Key
Brazil
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5.0
Electrical Characteristics
Table 5.1 Absolute Maximum Ratings
5.1 Absolute Maximum Ratings
SYMBOL VCC VIN VOUT Vcc5 Vin5 VOUT TSTG
PARAMETER Power Supply Input Voltage Output Voltage Power Supply for Dual Oxide Cells Power Supply for Dual Oxide Cells Output Voltage Storage Temperature
RATING -0.3 to 6.0 -0.3 to VCC+0.3 -0.3 to VCC+0.3 -0.6 to 6.0 -0.3 to Vcc5 +0.3 -0.3 to Vcc5 +0.3 -55 to 150
UNITS V V V V V V
O
C
5.2 Recommended Operating Conditions
Table 5.2 Recommended Operating Conditions
SYMBOL VCC VIN VCC5 PARAMETER Power Supply Input Voltage Commercial Power Supply for Dual Oxide Cells Industrial Power Supply for Dual Oxide Cells Input Voltage Commercial Junction Operating Temperature Industrial Junction Operating Temperature MIN 3.0 0 4.75 4.5 0 0 -40 TYP 3.3 5.0 5.0 25 25 MAX 3.6 VCC 5.25 5.5 Vcc5 115 125 UNITS V V
O
C
V V
O
VIN5 Tj
C C
O
5.3 General DC Characteristics
Table 5.3 General DC Characteristics
SYMBOL IIL IOZ CIN3 COUT3 CBID3 CIN5 COUT5 CBID5 PARAMETER Input leakage current Tri-state leakage current 3.3 Input capacitance 3.3 Output capacitance 3.3V Bi-directional buffer capacitance 5V Input capacitance 5V Output capacitance 5V Bi-directional buffer capacitance 2.7 5.6 2.7 2.7 2.7 CONDITIONS no pull-up or pull-down MIN -1 -1 2.8 4.9 4.9 5.6 TYP MAX 1 1 UNITS A A F F F F F F
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5.4 DC Electrical Characteristics for 5 volts operation
Table 5.4 DC Electrical Characteristics for 5 volts operation
(Under SYMBOL VIL VIH VIL VIH VtVt+ VtVt+ VOL VOH RI Recommended PARAMETER Input Low Voltage Input High Voltage Input Low Voltage Input High Voltage Schmitt trigger negative going threshold voltage Schmitt trigger positive going threshold voltage Schmitt trigger negative going threshold voltage Schmitt trigger positive going threshold voltage Output low voltage Output high voltage Input Pull-up/down resistance Operating Conditions and CONDITIONS CMOS CMOS TTL TTL CMOS CMOS TTL TTL IOL=2, 4, 8, 12, 16, 24 mA IOH=2, 4, 8, 12, 16, 24 mA 3.5 VIL=0V or VIH=VCC 50 2.0 1.78 3.20 1.10 1.90 0.4 0.7*VCC 0.8 VCC=4.5v ~ 5.25v , Tj= 0OC MIN TYP to +115OC) MAX 0.3*VCC UNITS V V V V V V V V V V K
5.5 DC Electrical Characteristics for 3.3 volts operation
Table 5.5 DC Electrical Characteristics for 3.3 volts operation
( Under SYMBOL VIL VIH VtVt+ VOL VOH RI Recommended Operating Conditions and VCC=3.0v ~ 3.6v , Tj = 0OC CONDITIONS CMOS CMOS CMOS CMOS IOH=2, 4, 8, 12, 16, 24 mA IOH=2, 4, 8, 12, 16, 24 mA VIL=0V or VIH=VCC 2.4 75 K 0.7*VCC 1.20 2.10 0.4 MIN TYP to +115OC ) UNITS PARAMETER Input Low Voltage Input High Voltage Schmitt trigger negative going threshold voltage Schmitt trigger positive going threshold voltage Output low voltage Output high voltage Input Pull-up/down resistance MAX
0.3*VCC V V V V V V
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5.6 Crystal Oscillator Circuit Setup for Characterization
The following setup was used to measure the open loop voltage gain for crystal oscillator circuits. The feedback resistor serves to bias the circuit at its quiescent operating point and the AC coupling capacitor, Cs, is much larger than C1 and C2.
Figure 5.1 Crystal Oscillator Circuit Setup for Characterization
5.7 USB Transceiver Characteristics
RECOMMENDED OPERATING CONDITIONS Table 5.6 USB Transceiver Characteristics
SYMBOL VCC VI VI/O VO TAMB PARAMETER DC supply voltage DC input voltage range DC input range for I/Os DC output voltage range Operating ambient temperature range in free air See DC and AC characteristics for individual device CONDITIONS LIMITS MIN 3.0 0 0 0 0 MAX 3.6 5.5 VCC VCC 70 V V V V
UNIT
C
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ABSOLUTE MAXIMUM RATINGS (Notes 1 and 2)
In accordance with the Absolute Maximum Rating System, Voltages are referenced to GND (Ground=0v)
Table 5.7 Absolute Maximum Ratings
SYMBOL PARAMETER CONDITIONS LIMITS MIN VCC IIK VI VI/O IOK VO IO IO ICC, IGND TSTO PTOT DC supply voltage DC input diode current DC input voltage DC input voltage range for I/Os DC output diode current DC output voltage DC output source sink current for VP/VM and RCV pins DC output source or sink current for D+/D- pins DC Vcc or GND current Storage temperature range Power dissipation per package -60 Vo> Vcc or Vo<0 Note 3 Vo=0 to Vcc Vo= 0 to Vcc -0.5 Vi<0 Note 3 -0.5 -0.5 -0.5 MAX +6.5 -50 +5.5 Vcc +0.5 +/-50 Vcc +0.5 +/-15 +/-50 +/-100 +150 V mA V V mA V mA mA mA
UNIT
C
mW
NOTES: 1. Stresses beyond those listed may cause permanent damage to the device. These are stress ratings only and functional operation of the device at these or any other conditions beyond those indicated under "Recommended Operating Conditions" is not implied. Exposure to absolute maximum rated conditions for extended periods may affect device reliability. 2. The performance capability of a high performance integrated circuit in conjunction with its thermal environment can create junction temperatures which are detrimental to reliability. The maximum junction temperature of this integrated circuit should not exceed 150C. 3. The input and output voltage ratings may be exceeded if the input and output clamp current ratings are observed.
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DC ELECTRICAL CHARACTERISTICS
Over recommended operating conditions. Voltages are referenced to GND (Ground=0V).. LIMITS -40C to +85C MIN TYP MAX 0.3 0.4 1.5 0.8 28 28 2.2 2.4 2.8 1.1 34 35 2.7 0.3 330 0.7 0.4 0.2 600 70 9 2 +/-0.1 +/-0.5 +/-10 14 43 43 0.5 2.0
Table 5.8 DC Electrical Characteristics
SYMBOL PARAMETER TEST CONDITIONS UNIT
VHYS VIH VIL RoH RoL VOH VOL IQ Isup IFS ILS ILeak IOFF
Hysteresis on inputs HIGH level input LOW level input Output impedance (HIGH state) Output impedance (LOW state) HIGH level output (Note 3) LOW level output (Note 3) Quiescent supply current Supply current in suspend Active supply current (Full Speed) Active supply current (Low Speed) Imput leakage current 3-state output OFF-state current
Vcc=3.0V to 3.6V (Note 3) Vcc=3.0V to 3.6V (Note 3) Vcc=3.0V to 3.6V (Note 3) Note 2 Note 2 Vcc=3.0V Io=6mA Vcc=3.0V Io=4mA Vcc=3.0V Io=100A Vcc=3.0V Io=6mA Vcc=3.0V Io=4mA Vcc=3.0V Io=100A Vcc=3.6V VI=Vcc or GND Io=0 Vcc=3.6V VI=Vcc or GND Io=0 Vcc=3.3V Vcc=3.3V Vcc=3.6V VI=5.5V or GND, not for I/O Pins Vi=Vih or ViL; Vo=Vcc or GND
V V V ohm ohm V V A A mA mA A A
NOTES: 1. All typical values are at Vcc=3.3V and Tamb=25C 2. This value includes an external resistor of 24 ohm +/-1%. D-" diagram for testing details. 3. All signals except D+ and D-.
See "Load D+ and
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AC ELECTRICAL CHARACTERISTICS
GND=0V, tR = tF =3.0 ns; CL =50 pF; RL=500 Ohms
Table 5.9 AC Electrical Characteristics
SYMBOL PARAMETER WAVEFORM LIMITS (TAMB) 0C to +25C 0C to +70C MIN TYP MAX MIN MAX 0 0 4 4 9 9 12 12 20 20 0 0 4 4 14 14 20 20 UNIT
tpLH tpHL trise tfall tRFM
VMO/VPO to D+/DFull Speed Rise and Fall Times Full Speed Rise and Fall Time Matching Full Speed VMO/VPO to D+/DLow Speed Rise and Fall Times Low Speed Rise and Fall Time Matching Low Speed D+/D- to RCV
1
ns
2
ns
90
110
90
110
%
tpLH tpHL trise tfall tRFM
1
120 120 75 75
300 300 300 200 75 75
300 300 300 200
ns
2
ns
70
130
70
130
%
tpLH tpHL tpLH tpHL tpHZ tpZH tpLZ tpZL tsu
3
9 9 4 4
16 16 8 8 12 12 10 10
16 16 8 8 12 12 10 10
ns
D+/D- to VP/VM
1
ns
OE# to D+/D- RL = 500ohm Setup for SPEED
4
ns
5
0
ns
Vcr
Crossover point1
3
1.3
2.0
1.3
2.0
V
NOTES: 1. The crossover point is in the range of 1.3V to 2.5V for the low speed mode with a 5Cpf capacitance.
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Figure 5.2 Electrical Characteristics Diagram
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5.8 ESD Test Results
Test Description : ESD Testing was performed on a Zapmaster system using the Human-Body -Model (HBM) and Machine-Model (MM), according to MIL_STD 883 and EIAJ IC_121 respectively. Human-Body-Model stress devices by sudden application of a high voltage supplied by a 100 PF capacitor through 1.5 Kohm resistance. Machine-Model stresses devices by sudden application of a high voltage supplied by a 200 PF capacitor through very low (0 ohm) resistance
Test circuit & condition Zap Interval : 1 second Number of Zaps : 3 positive and 3 negative at room temperature Critera : I-V Curve Tracing
Table 5.10 ESD Data ESD Data
Model HBM MM Mode Vdd, Vss, I/C Vdd, Vss, I/C S/S 15 15 Target 6000V 200V Results Pass Pass
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5.9 Latch-Up Test Results
Test Description: Latch-Up testing was performed at room ambient using an IMCS-4600 system which applies a stepped voltage to one pin per device with all other pins open except Vdd and Vss which were biased to 5 Volts and ground respectively. Testing was started at 5.0 V (Postive) or 0 V(Negative), and the DUT was biased for 0.5 seconds. If neither the PUT current supply nor the device current supply reached the predefined limit (DUT=0 mA , Icc=100 mA), then the voltage was increased by 0.1 Volts and the pin was tested again. This procedure was recommended by the JEDEC JC-40.2 CMOS Logic standardization committee.
Notes: 1. DUT: Device Under Test. 2. PUT: Pin Under Test.
Figure 5.3 Latch-Up Test Results Diagram
Icc Measurement
m
V Supply
A
1 Source
Untested Input Tied to V supply
Vcc Pin under test
DUT
GND
Untested Output Open Circuit
+
+
Trigger Source
Test Circuit: Positive Input/Output Overvoltage/Overcurrent
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Icc M easurem ent
mA 1 Source
V Supply
V cc Pin under test
+
U ntested Input Tied to V supply Trigger Source
DUT
GND
U ntested O utput O pen C ircuit
+
Test Circuit: Negative Input/Output Overvoltage/Overcurrent
Icc Measurement mA V Supply Untested Output Open Circuit
Vcc All Input Tied to V supply
+
DUT
GND
Supply Overvoltage Test
Table 5.11 Latch-Up Data
Model Voltage Current Vdd-Vxx Model + + Voltage (V)/Current (mA) 11.0 11.0 200 200 9.0 S/S 5 5 5 Pass Results Pass
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6.0 Mechanical Information
Figure 6.1 Mechanical Information Diagram
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i MEMOj
About Alcor Micro, Corp Alcor Micro, Corp. designs, develops and markets highly integrated and advanced peripheral semiconductor, and software driver solutions for the personal computer and consumer electronics markets worldwide. We specialize in USB solutions and focus on emerging technology such as USB and IEEE 1394. The company offers a range of semiconductors including controllers for USB hub, integrated keyboard/USB hub and USB Flash memory card reader...etc. Alcor Micro, Corp. is based in Taipei, Taiwan, with sales offices in Taipei, Japan, Korea and California. Alcor Micro is distinguished by its ability to provide innovative solutions for spec-driven products. Innovations like single chip solutions for traditional multiple chip products and on-board voltage regulators enable the company to provide cost-efficiency solutions for the computer peripheral device OEM customers worldwide.
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