pseudo random noise sequence generator notes
Abstract: program for random number generator pseudo random sequence generator application computer hardware and networking text book
Text: Random Numbers in Data Security Systems Intel Random Number Generator Scott Durrant Intel Platform Security Division Random Numbers in Data Security Systems Information in this document is provided in connection with Intel products. No license, express or implied, by
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gov/fips/fips1401
pseudo random noise sequence generator notes
program for random number generator
pseudo random sequence generator application
computer hardware and networking text book
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640B
Abstract: MAXQ20
Text: 19-5258; Rev 0; 4/10 1-Wire and SPI Authentication Microcontroller The MAXQ1004 is a low-power microcontroller that integrates a 10-bit ADC, 1-WireM slave interface, SPIK, AES encryption, random-number generator RNG , and temperature sensor with a 16-bit MAXQM pipelined CPU.
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MAXQ1004
10-bit
16-bit
300nA
T1644
MAXQ1004
640B
MAXQ20
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MAXQ1004
Abstract: No abstract text available
Text: 19-5258; Rev 0; 4/10 1-Wire and SPI Authentication Microcontroller The MAXQ1004 is a low-power microcontroller that integrates a 10-bit ADC, 1-WireM slave interface, SPIK, AES encryption, random-number generator RNG , and temperature sensor with a 16-bit MAXQM pipelined CPU.
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MAXQ1004
10-bit
16-bit
300nA
T1644
MAXQ1004
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R5H30211
Abstract: R5H302 R5H30 PVQN0020KD-A 417 - 906 REJ03B0259-0110 DDR4 eeprom counter retention
Text: R5H30211 Renesas Microcomputer REJ03B0259-0110 Rev.1.10 Jun. 05, 2009 Overview This LSI is a single-chip microcontroller unit MCU built around the H8/300H CPU. Four I/O ports, ROM, RAM, EEPROM, a random number generator (RNG), a watchdog timer (WDT), a firewall management unit (FMU), interval
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R5H30211
REJ03B0259-0110
H8/300H
10-MHz
R5H30211
R5H302
R5H30
PVQN0020KD-A
417 - 906
REJ03B0259-0110
DDR4
eeprom counter
retention
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Untitled
Abstract: No abstract text available
Text: Hifn HSP Your network security design cycle has just been reduced by _%† Security Platform Compression • LZS • MPPC Encryption • AES • DES • 3DES • ARC4* Authentication • SHA-1 • MD5 Public Key • RSA, DH • Hardware random number generator
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hifn 7951
Abstract: HIFN new 7901 7902PT6 circuit diagram of motherboard 7902Security DES Encryption free circuit diagram of motherboard MPPC modem random number generator
Text: 7902 Broadband Security Bargain– Now With IP Core Licensing Compression Value-Priced Chip Powers High-Speed Small Office VPNs Encryption • DES • Triple-DES • ARC4* Authentication • SHA-1 • MD5 Public Key • RSA, DH • Hardware random number generator
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144-pin
hifn 7951
HIFN
new 7901
7902PT6
circuit diagram of motherboard
7902Security
DES Encryption
free circuit diagram of motherboard
MPPC modem
random number generator
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details for function generator
Abstract: future scope of information security prng sha1 RNG SERIES seed free computer hardware notes "random number" seed to key pseudo-random noise generator
Text: Using RSA BSAFE Crypto-C with the Intel® Random Number Generator An RSA Data Security White Paper RSA Data Security, Inc. 2955 Campus Drive, Suite 400 San Mateo, CA 94403 Phone: 650-295-7600 Fax: 650-295-7700 http://www.rsa.com Security Dynamics Technologies, Inc.
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M68HC05
Abstract: MSC0406 ISO 7816
Text: 2 Overview The MSC0406 microcontroller MCU is a member of Atmel’s MSC04 family of single chip MCUs, designed specifically for embedded conditional access systems and other security conscious systems. It is based on the industry-standard Motorola M68HC05 low-power HCMOS core and
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MSC0406
MSC04
M68HC05
MSC0406
MSC0406/ACP
ISO 7816
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Mifare plus protocol
Abstract: 88CNF6602PM
Text: Chip Card & Security SLE 88CNF6602PM 32-Bit Security Controller Optimized for Mobile NFC applications with high level of security 256 kBytes ROM 660 kBytes Flexible EEPROM 32 kBytes RAM SWP Interface with Mifare emulation Common Criteria EAL5+ high and EMVCo (targeted)
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88CNF6602PM
32-Bit
8-bit/16-bit
16-bit
32-bit
Mifare plus protocol
88CNF6602PM
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88CNFX6602PM
Abstract: circuit for pseudo random generator ISO7816-3 88CNFX6602P Mifare protocol sim controller swp SLE88CNFX6602PM SLE88
Text: Chip Card & Security SLE 88CF6602P 32-Bit Security Controller Optimized for multi-application cards with high level of security 256 kBytes ROM 660 kBytes Flexible EEPROM 32 kBytes RAM Common Criteria EAL5+ high and EMVCo (targeted) Short Product Information 04.2009
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88CF6602P
32-Bit
8-bit/16-bit
16-bit
32-bit
88CNFX6602PM
circuit for pseudo random generator
ISO7816-3
88CNFX6602P
Mifare protocol
sim controller swp
SLE88CNFX6602PM
SLE88
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Mifare protocol
Abstract: uicc
Text: Chip Card & Security SLE 88CNF6600PM 32-Bit Security Controller Optimized for Mobile NFC applications with high level of security 660 kBytes Flexible EEPROM 32 kBytes RAM SWP Interface with Mifare emulation Common Criteria EAL5+ high and EMVCo (targeted)
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88CNF6600PM
32-Bit
8-bit/16-bit
16-bit
32-bit
Mifare protocol
uicc
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SLE88CFX6602P
Abstract: SLE88CNFX6602PM IFX SLE 78 HBM Memory circuit for pseudo random generator
Text: Chip Card & Security SLE 88CFX6602P 32-Bit Security Controller Optimized for multi-application cards with high level of security 256 kBytes ROM 660 kBytes Flexible EEPROM 32 kBytes RAM Common Criteria EAL5+ high and EMVCo (targeted) Short Product Information 12.2009
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88CFX6602P
32-Bit
8-bit/16-bit
16-bit
32-bit
SLE88CFX6602P
SLE88CNFX6602PM
IFX SLE 78
HBM Memory
circuit for pseudo random generator
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SLE88CNFX6600P
Abstract: PPS97
Text: Chip Card & Security SLE 88CNFX6600P 32-Bit Security Controller Optimized for Mobile NFC applications with high level of security 660 kBytes Flexible EEPROM 32 kBytes RAM SWP Interface Common Criteria EAL5+ high and EMVCo (targeted) Short Product Information 12.2009
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88CNFX6600P
32-Bit
8-bit/16-bit
16-bit
32-bit
SLE88CNFX6600P
PPS97
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SLE 78
Abstract: 88CNF5400P IFX SLE 78
Text: Chip Card & Security SLE 88CNF5400PM 32-Bit Security Controller Optimized for Mobile NFC applications with high level of security 540 kBytes Flexible EEPROM 32 kBytes RAM SWP Interface with Mifare emulation Common Criteria EAL5+ high and EMVCo (targeted)
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88CNF5400PM
32-Bit
8-bit/16-bit
16-bit
32-bit
SLE 78
88CNF5400P
IFX SLE 78
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SLE88CNFX5400P
Abstract: nfc module AES RSA chips 88CNFX5400P "mifare plus" manual
Text: Chip Card & Security SLE 88CNFX5400P 32-Bit Security Controller Optimized for Mobile NFC applications with high level of security 540 kBytes Flexible EEPROM 32 kBytes RAM SWP Interface Common Criteria EAL5+ high and EMVCo (targeted) Short Product Information 12.2009
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88CNFX5400P
32-Bit
8-bit/16-bit
16-bit
32-bit
SLE88CNFX5400P
nfc module
AES RSA chips
88CNFX5400P
"mifare plus" manual
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circuit for pseudo random generator
Abstract: AES RSA chips
Text: Chip Card & Security SLE 88CNFX6602P 32-Bit Security Controller Optimized for Mobile NFC applications with high level of security 256 kBytes ROM 660 kBytes Flexible EEPROM 32 kBytes RAM SWP Interface Common Criteria EAL5+ high and EMVCo (targeted) Short Product Information 12.2009
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88CNFX6602P
32-Bit
8-bit/16-bit
16-bit
32-bit
circuit for pseudo random generator
AES RSA chips
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93C48
Abstract: 6500-100PH8 2048 16 4 0b00011 burst Microcontroller 6500
Text: DATA SHEET Public Key Processor 6500 Public Key Processor Hi/fn supplies two of the Internet’s most important raw materials: compression and encryption. Hi/fn is also the world’s first company to put both on a single chip, creating a processor that performs compression and encryption at a faster
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DS-0016-01
160-pin
DS-0016-01
93C48
6500-100PH8
2048 16 4
0b00011 burst
Microcontroller 6500
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93C48
Abstract: 6500-100PH8 Microcontroller 6500 PA 0016 6500-100 PH8 6500-100 0X1168 6500
Text: 6500 Public Key Processor Data Sheet 6500 Public Key Processor Data Sheet Hifn supplies the Internet’s most important raw materials for the creation of intelligent and secure networks: compression, encryption, and flow classification. This is central to the growth of the Internet, helping to make
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DS-0016-02
160-pin
DS-0016-02
93C48
6500-100PH8
Microcontroller 6500
PA 0016
6500-100 PH8
6500-100
0X1168
6500
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Untitled
Abstract: No abstract text available
Text: T7001 Random Number Generator Features On-chip or external high-frequency oscillator source option On-chip or external jitter oscillator source option Data ready and alarm output flags readable from the data bus or independent output pins, allowing either processor interrupt or
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T7001
536-bit
D-8000
RS42898
J32562
DS88-43SMOS
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Untitled
Abstract: No abstract text available
Text: T7001 Random Number Generator Features • O n-chip or external high-frequency o scillator source option ■ O n-chip or external jitte r oscillator source option ■ Data ready and alarm o u tp u t flags readable from the data bus or independent output pins, allow ing either processor interrupt or
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T7001
536-bit
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TUNDRA
Abstract: pseudorandom white noise generator circuit for pseudo random generator
Text: RBG 1210 f | TUNDRA • • • • • • • • Operational speeds up to 20,000 bits/second Each value is independent of all other values No seed value required No hardware/software algorithms required Based on Johnson Noise phenomenon Single 12 Volt supply
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circuit for pseudo random generator
Abstract: TUNDRA RBG1210 random pattern generator
Text: RBG 1210 f p "TUNDRA • • • • • • • • Operational speeds up to 20,000 bits/second Each value is independent of all other values No seed value required No hardware/software algorithms required Based on Johnson Noise phenomenon Single 12 Volt supply
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000SSMS
000524b
circuit for pseudo random generator
TUNDRA
RBG1210
random pattern generator
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hear Aid based Circuit Diagram
Abstract: TUNDRA johnson 12v encryption tundra circuit for pseudo random generator
Text: RBG 1210 f p "TUNDRA • • • • • • • • Operational speeds up to 20,000 bits/second Each value is independent of all other values No seed value required No hardware/software algorithms required Based on Johnson Noise phenomenon Single 12 Volt supply
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000SSMS
000524b
hear Aid based Circuit Diagram
TUNDRA
johnson 12v
encryption tundra
circuit for pseudo random generator
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circuit for pseudo random generator
Abstract: newbridge networks
Text: MICROSYSTEMS Operational speeds up to 20,000 bits/second Each value is independent of all other values No seed value required No hardware/software algorithms required Based on Johnson Noise phenomenon Single 12 Volt supply TTL compatible I/O Shielded package
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