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 Features
General
* Based on the ARM(R) SC100TM SecureCoreTM 32-bit RISC Processor * Two Instruction Sets * * * * * * * *
- ARM High-performance 32-bit Instruction Set - Thumb(R) High-code-density 16-bit Instruction Set Von Neumann Load/Store Architecture - Single 32-bit Data Bus for Instructions and Data 3-stage Pipeline Architecture - Fetch, Decode, and Execute Stages 8-bit, 16-bit, and 32-bit Data Types On-chip Programmable System Clock up to 50MHz Very Low Power Consumption - Industry Leader in MIPS/Watt - Low power Idle and Power down Modes Bond Pad Locations Confirming to ISO7816-2 ESD Protection to 6000V Operating ranges: 1.62V to 5.5V, PC Industry Compatible, GSM/3G Compliant, EMV
32-bit Secure
Microcontrollers
Memory
* 192K Bytes of Flash Program Memory and 192K Bytes of Eeprom * * * *
- Typically More than 500,000 Write/Erase Cycles at a Temperature of 25oC - 10 Years Data Retention EEPROM Erase Only Mode Write EEPROM With or Without Autoerase 24K Bytes of RAM (2K Bytes shared with AdvX TM crypto processor) 32K Bytes of ROM dedicated to Atmel's crypto Library
AT91SC 192192CT-USB Summary
Peripherals
* USB Interface (5 Endpoints)
- USB V2.0 Full-speed (12Mbps), Suspend/Resume Modes Supported - 4 Configurable Endpoints in Addition to Endpoint EP0 - Dynamic Pull-up Attachment USB_IC (Inter Chip) 0.8e Interface Serial Peripheral Interface (SPI) Controller (up to 20MHz) One ISO 7816 Controller - Up to 625kbps at 5 MHz Interface for External NAND Flash Memory Single Wire Interface (Digital Interface to RF front end chip) Two 16-bit Timers Random Number Generator (RNG) 2-level, 15-vector Interrupt Controller Hardware DES and Triple DES (DPA Resistant) Checksum Accelerator CRC 16/32 Engine 32-bit Cryptographic Accelerator for Public Key Operations - RSA, DSA, ECC, Diffie-Hellman High performance Hardware Java Card Accelerator
* * * * * * * * * * * * *
Security
* * * * *
Dedicated Hardware for Protection Against SPA/DPA Attacks Protection Against Physical Attack Environmental Protection Systems Voltage, Frequency, Light, and Temperature Protection Systems Secure Memory Management/ Access Protection/ MPU
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Note: This is a summary document. A complete document will be available under NDA. For more information, please contact your local Atmel sales office.
Development Tools and Software
* Hardware Development Support on the ATV4-91SC Voyager Emulation Platform * Software Libraries and Bootloader in ATMEL's ROM (Crypto Library and Generic drivers) * Application Notes
Description
The AT91SC192192CT-USB is a low power, high performance, 32-bit RISC microcontroller with Flash/Eeprom program and data memories and cryptographic accelerator, based on the ARM SC100 advanced secure processor. This general purpose 32-bit processor offers high performance, very low power consumption, and additional features to help combat fraud. The AT91SC192192CT-USB features 192K bytes of high performance Flash (fast erase/write time, high endurance). The AT91SC192192CT-USB features 192K bytes of high performance Eeprom (fast erase/write time, high endurance). The AT91SC192192CT-USB also features a USB full speed 2.0 port to allow very high speed transactions with a USB host terminal. USB interface requires the addition of an external 48MHz resonator. The AT91SC192192CT-USB features a SPI (Serial Peripheral Interface) port to provide either high speed interface with external terminal or to connect external NOR Flash memory. It also features an interface for NAND Flash memory. On top of the SC100s MPU, a real hardware firewall can be used to increase the overall security level of the application without intense software development. The cryptographic accelerator featured in the AT91SC series is the AdvXTM, an N-bit multiplier-accumulator dedicated to performing fast encryption and authentication functions. AdvX is based on a custom 32-bit co-processor, thus enabling fast computation and low power operation. The AdvX in conjuction with controlling firmware running within the SC100 core, supports standard finite arithmetic functions (including RSA, DSA, DH and ECC) and GF(2N). Unique hardware features significantly accelerate the execution of Java Card Byte Code by removing the common software bottlenecks encountered during the implementation of a Java Virtual Machine. Additional security features include power and frequency protection logic, logical scrambling on program data and addresses, power analysis countermeasures, and memory access controlled by a supervisor mode.
Pin Configuration
The AT91SC192192CT-USB pinout configuration confirms to the ISO7816-2 interface. Note: By convention, the RST pin corresponds to the RST signal of the ISO7816-3 Protocol, both are active low.)
GND Vcc ISO I/O0 ISO CLK ISO RST C6 USB D+ USB DGround (reference voltage) Power Supply Input Input or Output for serial data (ISO7816 Clock signal input to external clock operating circuit Reset signal input, a low state stops the ARM core SWP dedicated pin USB D+ USB DWE ALE CLE CE RE IO0 IO1 IO2 Flash Interface (Write Enable) Flash Interface (Address Latch Enable) Flash Interface (Command Latch Enable) Flash Interface (Chip Enable) Flash Interface (Read Enable) Flash Interface IO0 Flash Interface IO1 Flash Interface IO2
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AT91SC192192CT-USB
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AT91SC192192CT-USB
USB XIN USB XOUT WP USB XIN USB XOUT Flash Interface (Write Protect) IO3 SS/IO4 SCK/IO5 MOSI/IO6 Flash Interface IO3 SPI Slave Select/Flash Interface IO4 SPI Clock/Flash Interface IO5 SPI Master Output-Slave Input/Flash Interface IO6 SPI Master Output-Slave Input/Flash Interface IO7
MISO/IO7
Architectural Overview
The SC100 is a 3 stage pipeline, 32-bit RISC processor. It uses a Von Neumann Load/store architecture, this architecture is characterized by a single data and address bus for instruction data. The SC100 processor employs a unique architectural strategy known as Thumb(R), a super reduced instruction set that is ideally suited for high volume applications with memory restrictions, and applications where code density is an important factor. Essentially, the SC100 processor has two instruction sets: * * The standard ARM instruction set using 32-bit instructions and offering maximum performance The Thumb instruction set using 16-bit instructions and offering maximum code density
Both instruction sets operate on 8-bit, 16-bit and 32-bit data types. The Thumb's 16-bit instruction length allows it to achieve almost twice the density of standard ARM code, whilst retaining most of the ARM performance advantage over a traditional 16-bit processor using 16-bit registers. This is possible because the 16-bit Thumb instructions operate on the same 32-bit register set as the 32-bit ARM instruction set. Thumb code can be up to 35% smaller than the equivalent ARM code, whilst providing 160% of the performance of an equivalent ARM processor connected to a 16-bit memory system.
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Figure 1 shows the block diagram of the AT91SC192192CT-USB device.
8/16/32 OTP EEPR OM User Memory Flash Program Memory 8/16/32
Java Accelerator
AdvX CryptoAccelerator
Secure Control
CLK GND VCC
R NG
Reset Circuit
RST
32
DES/3DES
CR C16&32 E ngine
RAM
32
On-chip security (SP A, A, I/O0 DP ...) Firewall USB I/O0 D+ DXIN XOUT C6
SC100TMCore
MPU 32 32
SWP
Timer
Thumb Instruction decompressor 32
ISO 7816 Controller ISO 7816 I/O Port 0 MISO I/O0 IO 0 IO 1 IO 2 IO 3 SS / IO 4 SCK / IO 5 Rd Wr Addr
FLASH Controller
Pipeline
SPI Controller
MOSI SS SCK
MOSI / IO 6 MISO / IO 7 CLE ALE CE WP WE RE
SMC
Data
Figure 1. AT91SC192192CT-USB Block Diagram
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AT91SC192192CT-USB
Figure 2. AT91SC192192CT-USB Pinout (LQFP64)
NC
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NC USB D+ NC GND ISO CLK WE CE VCC ISO RST CLE ALE RE WP NC VCC NC
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16
INDEX CORNER
49
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NC
48 47 46 45 44 43 42
USB D ISO IO0 MISO / Flash IO7 MOSI / Flash IO6 SCK / Flash IO5 SS / Flash IO4 Flash VDD VCC USB OUT USB XIN Flash IO3 Flash IO2 Flash IO1 Flash IO0 SWP C6 GND
AT91SC192192CT-USB TQFP64
41 40 39 38 37 36 35 34 33
NC 17
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Figure 3. R-LQFP064 Package
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Atmel Corporation
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Literature Requests
www.atmel.com/literature
Disclaimer: The information in this document is provided in connection with Atmel products. No license, express or implied, by estoppel or otherwise, to any intellectual property right is granted by this document or in connection with the sale of Atmel products. EXCEPT AS SET FORTH IN ATMEL'S TERMS AND CONDITIONS OF SALE LOCATED ON ATMEL'S WEB SITE, ATMEL ASSUMES NO LIABILITY WHATSOEVER AND DISCLAIMS ANY EXPRESS, IMPLIED OR STATUTORY WARRANTY RELATING TO ITS PRODUCTS INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTY OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE, OR NON-INFRINGEMENT. IN NO EVENT SHALL ATMEL BE LIABLE FOR ANY DIRECT, INDIRECT, CONSEQUENTIAL, PUNITIVE, SPECIAL OR INCIDENTAL DAMAGES (INCLUDING, WITHOUT LIMITATION, DAMAGES FOR LOSS OF PROFITS, BUSINESS INTERRUPTION, OR LOSS OF INFORMATION) ARISING OUT OF THE USE OR INABILITY TO USE THIS DOCUMENT, EVEN IF ATMEL HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES. Atmel makes no representations or warranties with respect to the accuracy or completeness of the contents of this document and reserves the right to make changes to specifications and product descriptions at any time without notice. Atmel does not make any commitment to update the information contained herein. Atmel's products are not intended, authorized, or warranted for use as components in applications intended to support or sustain life.
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Printed on recycled paper.
6556A-SPIC-16 May 07


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