Data Book
AU9520 USB Smart Card Reader Controller Technical Reference Manual
Product Specification Official Release Revision 1.12 Public
AU9520 USB Smart Card Reader Controller V1.01 Preliminary Release-Public
Aug 2004
Page 1 of 19 AU9520 USB Smart Card Reader Controller V1.01
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 supplementary data may be published later. data;
This data sheet contains final product specifications.
Revision History
Date
Apr 2004 Apr 2004 Jul 2004 Aug 2004
Revision
V1.00/A21 V1.01/A21 V1.02/A21 V1.02/A21 Initial release
Description
To correct product name To modify schematics for WHQL To modify “4.2 schematics”
Page 2 of 19 AU9520 USB Smart Card Reader Controller V1.12 Official Release-Public
Copyright Notice Copyright 1997 - 2004 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/ Product URL: http://www.alcormicro.com/product_AU9520.htm
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 9400 Seventh St., Bldg. A2 Rancho Cucamonga, CA 91730 USA Phone: (909) 483-9900 Fax: (909) 944-0464
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Table of Contents
1 Introduction…………………………………………………………….. 1.1 Description…………………………………………………………………………….. 1.2 Features…………………………………………………………………………………. 2 Application Block Diagram…………………………………………. 3 Pin Assignment………………………………………………………… 4.1 Block Diagram…………………………………………………………………… 5 Electrical Characteristics…………………………………………… 6 6 6 7 8 10 13
4 System Architecture and Reference Design………………….. 10 4.2 Sample schematics………………………………………………………………… 11 5.1 Recommended Operating Conditions………………………………….. 13 5.2 General DC Characteristics…………………………………………………… 13 5.3 DC Electrical Characteristics for 3.3 volts operation…………… 5.4 Crystal Oscillator Circuit Setup for Characterization…………… 13 14
5.5 ESD Test Results……………………………………………………………………. 14 5.6 Latch-Up Test Results……………………………………………………………. 15 6 Mechanical Information……………………………………………… 17 7 Abbreviations…………..………………………………………………. 18
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List of Figures
2.1 Block Diagram…………………………………………………………………………………… 3.1 Pin Assignment Diagram…………………………………………………………………. 4.1 AU9520 USB eToken controller Block Diagram……………………………… 4.2 Sample schematics………………………………………………………………… 7 8 10 11
5.1 Crystal Oscillator Circuit Setup for Characterization……………………… 14 5.2 Latch-Up Test Results Diagram………………………………………………………… 15 6.1 Mechanical Information Diagram……………………………………………………… 17
List of Tables
3.1 Pin Descriptions……………………………………………………………………………….. 5.1 Recommended Operation Condition……………………………………………… 9 13
5.2 General DC Characteristics……………………………………………………………… 13 5.3 DC Electrical Characteristics for 3.3 volts operation………………………. 13 5.4 ESD Data…………………………………………………………………………………………… 14 5.5 Latch-Up Data Table………………………………………………………………………… 16
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1.1.
1.0. Introduction
Description
AU9520 is a highly integrated single chip, USB Smart Card reader controller. Highly integration enables the lowest BOM cost of USB Smart Card reader. The AU9520 supports multiple international standards including ISO7816 for IC card standard, PC/SC 1.0 for windows smart card standard, Microsoft WHQL, EMV for Europay MasterCard Visa standard and USB-IF CCID standard. Manufacturers can easily create a high-security Smart Card reader by deploying Au9520. The application of AU9520 can be generally applied to Smart Card read/write terminal device, such as ATM, POS terminal, Public telephone, E-Commerce, personal consumption on Internet, personal certification, prepay system, loyalty system…etc.
1.2.
Feature
• Support EMV specification. • Support the Universal Serial Bus Specification, version 1.1. • Based on ISO7816 implementation • Support PC Smart Card industry standard – PC/SC 1.0 • Support Microsoft Smart Card for Windows • Meet Microsoft WHQL USB Smart Card Reader requirements • Include WDM driver to work on Windows 98 and Windows 2000 • Support dual slots for higher security application • Support T0, T1 protocol, I2C memory card, SLE4418, SLE4428, SLE4432, SLE4442, AT88SC1608 and AT45D041 card. • Dedicated hardware block implementation for IC and memory card protocols for highest performance • Implemented as an USB full speed device with bulk transfer endpoint • Built-in 3.3V regulator for single 5V operation • Built-in PLL for USB and Smart Card clocks requirement • Support EEPROM for USB descriptors customization, including VID/PID • Available in 48-LQFP Package • Based on USB-CCID class, short APDU level • Compatible with Microsoft USB-CCID driver • Support 3V/5V card
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2.0. Application Block Diagram
AU9520 is a highly integrated single chip, which is used as USB Smart Card reader or in an embedded USB device in the downstream port of an USB hub. Following is the application diagram of a typical card reader product with AU9520. By connecting the card reader to a ATM or E-Commerce…etc.
2.1 Block Diagram
Figure 2.1 Block Diagram
P C w ith U S B H o s t C o n tro lle r
A p p lic a tio n P ro g ra m s C o rp o ra te N e tw o rk A ccess In te rn e t/In tra n e t A ccess E le c tro n ic C a s h C re d it a n d D e b it L o y a lty GSM
U S B K e y b o a rd H u b
USB Dow n s tre a m P o rt
U S B S m a rtC a rd Reader
IS O 7 8 1 6 C o m p lia n t S m a rt C a rd a n d s u p p o rt E M V s p e c ific a tio n
S m a rt C a rd S o lu tio n s
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3.0. Pin Assignment
The AU9520 is packed in 48-LQFP-form factor. The following figure shows signal name for each pin and the table in the following page describes each pin in detail Figure 3.1 Pin Assignment Diagram
ICC0DETN
SC0DATA
SC0CLK
SC1RST
SC1CLK
SC1FCB
SC0FCB
SC0RST
SC0C6
SC1C8
SC1C6
48
VCCA
SC0C8
47
46
45
44
43
42
41
40
39
38
37 36
SCARD1DATA
1
GNDA
2
35
ICC1DETECTN
XTAL1
3
34
NC
XTAL2
4
33
PROM_DATA7
PSWOUTB
5
ALCOR MICRO AU9520 48PIN LQFP
32
PROM_DATA6
PSWOUTA
6
31
PROM_DATA5
VCC5V
7
30
PROM_DATA4
VCC3V
8
29
PROM_DATA3
USB_DP
9
28
PROM_DATA2
USB_DM
10
27
GNDK
GNDIO
11 12 13 14 15 16 17 18 19 20 21 22 23 24
26
VCCK
GPI_0
25
PROM_DATA1
AU9520 USB Smart Card Reader Controller V1.12 Official Release-Public
GPI_1
PORT1_1
PORT1_2
PORT1_6
PORT1_0
PORT1_5
SDA
PORT1_4
SCL
PROM_DATA0
PORT1_3
PORT1_7
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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 45 46 47 48
Pin Name
VCCA GNDA XTAL1 XTAL2 PSWOUTB PSWOUTA VCC5V VCC3V USB_DP USB_DM GNDIO GPI_0 GPI_1 SCL SDA PORT1_0 PORT1_1 PORT1_2 PORT1_3 PORT1_4 PORT1_5 PORT1_6 PORT1_7 PROM_DATA0 PROM_DATA1 VCCK GNDK PROM_DATA2 PROM_DATA3 PROM_DATA4 PROM_DATA5 PROM_DATA6 PROM_DATA7 NC ICC1DETN SC1DATA SC1CLK
SC1RST
I/O
PWR PWR I O O O PWR PWR I/O I/O PWR I I I/O I/O I I/O O O O I I I I/O I/O PWR PWR I/O I/O I/O I/O I/O I/O I I/O I/O
I/O
Description
Analog 3.3V power supply Analog ground. Crystal Oscillator Input (12MHz). Crystal Oscillator Output (12MHz). Connect to Slot1 Power. - Not support in this version Connect to Slot0 Power. 5V power supply Input 3.3V power supply output USB D+ USB DChip I/O Ground. Reserved(need pull Low) Reserved (need pull down) EEPROM Clock (need pull high) EEPROM Data (need pull high) Reserved (need pull High) General IO 1 Slot1 LED Slot2 LED - Not support in this version Device LED Reserved (need pull High)
Reserved (need pull Low) General Input 7
Rom data 0 Rom data 1 Core power supply 3.3V Core ground Rom data 2 Rom data 3 Rom data 4 Rom data 5 Rom data 6 Rom data 7 Smart card 1 inserted (Low true) (pull high) - Not support in this version Smart card 1 serial data - Not support in this version Smart card 1 clock - Not support in this version Smart card 1 reset - Not support in this version Smart card 1 GPIO_0 - Not support in this version Smart card 1 GPIO_1 - Not support in this version Smart card 1 GPIO_2 - Not support in this version Smart card 0 inserted (Low true)(pull high) Smart card 0 serial data Smart card 0 clock Smart card 0 reset Smart card 0 GPIO_0 Smart card 0 GPIO_1 Smart card 0 GPIO_2
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SC1FCB SC1C6 SC1C8 ICC0DETN SC0DATA SC0CLK SC0RST SC0FCB SC0C6 SC0C8
I/O I/O I/O I I/O I/O I/O I/O I/O I/O
AU9520 USB Smart Card Reader Controller V1.12 Official Release-Public
4.0. System Architecture and Reference Design
4.1. Block Diagram
Figure 4.1 AU9520 USB Dual-Slot USB Smart Card Reader Controller
USB Upstream Port
XCVR
USB SIE
USB FIFO
RAM
Smart Card Control
Card Eject Card Reset Card Insert
Processor
ROM
EEPROM Interface
Smart Card FIFO
Card Data Card Clock
3.3 Card Power
3.3V Voltage Regulator
Optional 256 Bytes EEPROM 12MHz XTAL
Reset
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4.2 Sample Schematics
VCC3.3 1 C1 0.1UF 1 L3 2 BEAD FERRITE L2 2 C12 0.1UF PSWOUTA
BEAD FERRITE R1 BEAD FERRITE/SM VCC3.3 L1 VCC R3 C3 J1 VCC DATADATA+ GND FGND1 1 2 3 4 5 10UF 1.5K R7 R8 39 39 C4 0.1UF SCL SDA PORT1_2 PORT1_3 1 C2 1UF 2 VCC XTAL1 XTAL2 PSWOUTA 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 U1 VCCA GNDA XTAL1 XTAL2 PSWOUTB PSWOUTA VCC5V VCC3V USB_DP USB_DM GNDIO TEST_MODE TEST_PLL SCL SDA PORT1_0 PORT1_1 PORT1_2 PORT1_3 PORT1_4 PORT1_5 PORT1_6 PORT1_7 PROM_DATA0 Au9520 48pin SC0C8 SC0C6 SC0FCB SC0RST SC0CLK SC0DATA ICC0DET SC1C8 SC1C6 SC1FCB SC1RST SC1CLK SC1DATA ICC1DET RESERVED PROM_DATA7 PROM_DATA6 PROM_DATA5 PROM_DATA4 PROM_DATA3 PROM_DATA2 GNDK VCCK PROM_DATA1 48 47 46 45 44 43 42 41 40 39 38 37 36 35 34 33 32 31 30 29 28 27 26 25 1.5K 4.7K 4.7K 4.7K 4.7K 4.7K SC0C8 SC0C6 SC0FCB SC0RST SCCLK SC0DATA ICC0DET C11 47PF R9 47K VCC3.3 R2 R16 R15 R13 R14
R25 R6
470 470
L4 1 C13 0.1UF L5 1 2 BEAD FERRITE VCC3.3 2 C5 0.1UF BEAD FERRITE
VCC3.3 C6 18PF R11 Y1 12MHZ XTAL2 D1 D2 PORT1_2 PORT1_3 XTAL1
C7
18PF
1M
Disclaimer: This schematic is for reference only. 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 notice.
Size A4 Date:
Document Number Au9520 demostration schematic Tuesday, August 10, 2004 Sheet 1 of 2
Rev
1.10
Page 11 of 19 AU9520 USB Smart Card Reader Controller V1.12 Official Release-Public
VCC PSWOUTA JP1 SC0C6 SC0DATA SC0C8 ICC0DET R10 C9 0.01UF 150K R21 47K VCC3.3 R22 (0) 5 6 7 8 9 1 2 3 4 10 SC0RST SC0CLK SC0FCB 14 R17 0
PSWOUTAA
R18 (0)
R19 1.5k
C8
SCCLK
1 3 R20 2 C14 U2A 74HC08 SO14 39PF 7 100 SC0CLK
0.1UF
SCARD SOCKET
VCC3.3
14
14
R23
R24 4 VCC3.3 U3 8 7 6 5 VCC WP SCL SDA A0 A1 A2 GND 1 2 3 4 5
9 6 10 74HC08 SO14 74HC08 SO14 8
12 11 13 74HC08 SO14
10K SCL SDA
10K
7
7
C10 0.1UF
AT24C08
Disclaimer: This schematic is for reference only. 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 notice.
Size A Date:
Document Number Au9520 demostration schematic Tuesday, August 10, 2004 Sheet 2 of 2
7
14
U2B
U2C
U2D
Rev
1.10
Page 12 of 19 AU9520 USB Smart Card Reader Controller V1.12 Official Release-Public
5.0. Electronic Characteristics
5.1 Recommended Operation Condition
Table 5.1 Recommended Operation Condition SYMBOL VCC VIN TOPR TSTG PARAMETER Power Supply Input Voltage Operating Temperature Storage Temperature MIN 4.75 0 0 -40 TYP 5 MAX 5.25 VCC 85 125 UNITS V V
O O
C C
5.2 General DC Characteristics
Table 5.2 General DC Characteristics SYMBOL IIL IIH IOZ CIN COUT CBID PARAMETER Input low current Input high current Tri-state leakage current Input capacitance Output capacitance Bi-directional buffer capacitance CONDITIONS no pull-up or pull-down no pull-up or pull-down MIN -1 -1 -10 5 5 5 TYP MAX 1 1 10 UNITS µA µA µA ρF ρF ρF
5.3 DC Electrical Characteristics for 3.3 volts operation
Table 5.3 DC Electrical Characteristics for 3.3 volts operation SYMBO VIL VIH VOL VOH RI PARAMETER Input Low Voltage Input Hight Voltage CONDITIONS CMOS CMOS 2.3 0.4 2.4 10K/200K MIN TYP MAX 0.9 UNITS V V V V KΩ
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Output low voltage IOL=4mA, 16mA Output high voltage IOH=4mA,16mA Input Pull-up/down resistance Vil=0V or Vih=VCC
5.4 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
5.5 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 stresses devices by sudden application of a high voltage supplied by a 100pF capacitor through 1.5k-ohm resistance. • Machine-Model stresses devices by sudden application of a high voltage supplied by a 200pF 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 - Criteria: I-V Curve Tracing Table 5.4 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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5.6 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 5Volts and ground respectively. Testing was started at 5.0V (Positive) or 0V (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=00mA, Icc=100mA), then the voltage was increased by 0.1Volts and the pin was tested again. This procedure was recommended by the JEDEC JC-40.2 CMOS Logic standardization committee. Notes: 1. 2. DUT: The device under test. PUT: The pin under test. Figure 5.2 Latch-Up Test Results Diagram
Test Circuit: Positive Input/Output Overvoltage/Overcurrent
Test Circuit: Negative Input/Output Overvoltage/Overcurrent
AU9520 USB Smart Card Reader Controller V1.01 Preliminary Release-Public Page 15 of 19 AU9520 USB Smart Card Reader Controller V1.01
Figure 5.2 Latch-Up Test Results Diagram (continue)
Supply Overvoltage Test
Table 5.5 Latch-Up Data Table
Mode Voltage Current + +
Voltage (V)/Current (mA) 11.0 11.0 200 200 9.0
S/S 5 5 5 5 5
Results Pass Pass Pass Pass Pass
-
Vdd - Vxx
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6.0. Mechanical Information
Figure 7.1 Mechanical Information Diagram
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7.0. Abbreviation
This chapter lists and defines terms and abbreviations used throughout this specification. WHQL Windows Hardware Quality Labs EMV ATM BOM VID PID PLL ESD Europay MasterCard Visa Automatic Teller Machine Bill of Material Vendor ID Product ID Phase Lock Loop Electrostatic Sensitive Device
PC/SC This is association name.( http://www.pcscworkgroup.com/)
GSM ..Globe System for Mobile Communication
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【MEMO】
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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