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    ST16SF48 Search Results

    ST16SF48 Datasheets (4)

    Part ECAD Model Manufacturer Description Curated Type PDF
    ST16SF48 STMicroelectronics SMARTCARD MCU WITH 8176 BYTES EEPROM Original PDF
    ST16SF48 STMicroelectronics Smartcard MCU With 8176 Bytes EEPROM Original PDF
    ST16SF48 STMicroelectronics Smartcard MCU With 8176 Bytes EEPROM Original PDF
    ST16SF48CW40SOM+ STMicroelectronics Smartcard MCU With 8176 Bytes EEPROM Original PDF

    ST16SF48 Datasheets Context Search

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    ST16XY

    Abstract: No abstract text available
    Text: ST16SF48 CMOS MCU BASED SAFEGUARDED SMART CARD IC WITH 8176 Bytes EEPROM BRIEF DATA EXTENDED VOLTAGE OPERATION – Vcc Range : 2.7V to 5.5V • 8 BIT ARCHITECTURE CPU ■ 16 KBytes of USER ROM, SECTOR COMBINATIVE ■ 1.5 KBytes of SYSTEM ROM. ■ 384 Bytes of RAM


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    PDF ST16SF48 ST16XY

    ST16SF48A

    Abstract: ST16 ST16-19HDSE ST16SF48
    Text: ST16SF48 Smartcard MCU With 8176 Bytes EEPROM DATA BRIEFING 1.5 K Byte of SYSTEM ROM • 384 Bytes of RAM ■ 8176 Bytes of EEPROM, SECTOR COMBINATIVE 3 ■ Figure 1. Delivery Form 3 16 K Bytes of USER ROM, SECTOR COMBINATIVE 3 8 BIT ARCHITECTURE CPU ■ 3


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    PDF ST16SF48 102b/DS ST16SF48A ST16 ST16-19HDSE ST16SF48

    ST16

    Abstract: ST16-19HDSE ST16SF48
    Text: ST16SF48 Smartcard MCU With 8176 Bytes EEPROM DATA BRIEF 1.5 K Byte of SYSTEM ROM • 384 Bytes of RAM ■ 8176 Bytes of EEPROM, SECTOR COMBINATIVE 4 ■ Figure 1. Delivery Form 4 16 K Bytes of USER ROM, SECTOR COMBINATIVE 4 8 BIT ARCHITECTURE CPU ■ 4 ■


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    PDF ST16SF48 ST16 ST16-19HDSE ST16SF48

    SMARTCARD

    Abstract: micromodule ST16 ST16-19HDSE ST16SF48
    Text: ST16SF48 Smartcard MCU With 8176 Bytes EEPROM DATA BRIEFING • 1.5 K Byte of SYSTEM ROM ■ 384 Bytes of RAM ■ 8176 Bytes of EEPROM, SECTOR COMBINATIVE 3 16 K Bytes of USER ROM, SECTOR COMBINATIVE 3 ■ Figure 1. Delivery Form 3 8 BIT ARCHITECTURE CPU 3


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    PDF ST16SF48 102b/DS SMARTCARD micromodule ST16 ST16-19HDSE ST16SF48

    ST16

    Abstract: ST16-19HDS ST16SF48
    Text: ST16SF48 Smartcard MCU With 8176 Bytes EEPROM DATA BRIEFING 16 KBytes of USER ROM, SECTOR COMBINATIVE • 1.5 KByte of SYSTEM ROM ■ 384 Bytes of RAM ■ 8176 Bytes of EEPROM, SECTOR COMBINATIVE 2 2 – Highly reliable CMOS EEPROM technology 2 8 BIT ARCHITECTURE CPU


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    PDF ST16SF48 102b/DS ST16 ST16-19HDS ST16SF48

    ST16

    Abstract: ST16SF48
    Text: ST16SF48 CMOS MCU BASED SAFEGUARDED SMART CARD IC WITH 8176 Bytes EEPROM BRIEF DATA • – ■ ■ ■ ■ ■ – – – – – ■ ■ ■ ■ ■ ■ ■ – – ■ EXTENDED VOLTAGE OPERATION Vcc Range: 2.7V to 5.5V 8 BIT ARCHITECTURE CPU 16 KBytes of USER ROM, SECTOR


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    PDF ST16SF48 ST16SF48 AI01341 ST16

    SMARTCARD

    Abstract: e purse ST16 ST16600 ST16601 ST16CF54 ST16SF41 ST16SF42 ST16SF44 ST16SF48
    Text: Banking, Electronic Purse and Loyalty THE FINANCIAL DOMAIN Since the very first roll out of a Smartcard based banking card in France in 1992, Smartcards have rapidly conquered the financial domain. Today countless world wide banking schemes - either established or in a trial phase - as well as big credit card institutions


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    PDF ST19KF16 FLSC9818/0998 ST16RF42 ST16RF58 SMARTCARD e purse ST16 ST16600 ST16601 ST16CF54 ST16SF41 ST16SF42 ST16SF44 ST16SF48

    TSOP40 Flash

    Abstract: m48z32y M27V512 FDIP24W M27128A M2716 M27256 M2732A M27512 M2764A
    Text: MEMORY PRODUCTS SELECTOR GUIDE A C) NMOS UV EPROM, 5V Operation Size 16 Kb 32 Kb 64 Kb 128 Kb 256 Kb 512 Kb Ref M2716 M2732A M2764A M27128A M27256 M27512 Description 16 Kb x8), 350 - 450ns, NMOS 32 Kb (x8), 200 - 450ns, NMOS 64 Kb (x8), 180 - 450ns, NMOS


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    PDF M2716 M2732A M2764A M27128A M27256 M27512 450ns, TSOP40 Flash m48z32y M27V512 FDIP24W M27128A M2716 M27256 M2732A M27512 M2764A

    SMARTCARD micromodule assembly

    Abstract: emv 7816 smartcard
    Text: D3, D4 MICROMODULES Smartcard MCU Modules General Information on D3 and D4 Packaging DATA BRIEFING The manufacturing process of Smartcards involves various components and technologies in order to issue a finished product: – a plastic card into which a cavity is made for micromodule embedding.


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    SMARTCARD micromodule assembly

    Abstract: sgs thomson ST14C04C
    Text: MICROMODULES SMART CARD IC’s EMBEDDING PROCESS BRIEF DATA INTRODUCTION The manufacturing process of Smartcards involves various components and technologies in order to issue a finished product: – a plastic card into which a cavity is made for micromodule embedding.


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    EEPROMs

    Abstract: eeprom RAM memory 64 KB ST1200 ST1305 ST1331 ST1336 ST14C02C st16rf42 ST1335
    Text: MEMORIES and SMARTCARD PRODUCTS SMARTCARD PRODUCTS STANDARD MEMORY Ref ST14C02C M14C04-W M14C16-W M14C32-W M14C64-W M14128-W M14256-W NV Memory Size VCC Range Features Package 2 Kb EEPROM 4 Kb EEPROM 16 Kb EEPROM 32 Kb EEPROM 64 Kb EEPROM 128 Kb EEPROM 256 Kb EEPROM


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    PDF ST14C02C M14C04-W M14C16-W M14C32-W M14C64-W M14128-W M14256-W ST1200 ST1305 ST1331 EEPROMs eeprom RAM memory 64 KB ST1200 ST1305 ST1336 ST14C02C st16rf42 ST1335

    SMARTCARD

    Abstract: ST16CF54B ST16SF44A ST16SF44 ST16SF48 ST16SF4F ST19 ST19CF68 ST19KF16 ST19SF16
    Text: Health and ID SYSTEM SECURITY WITH ST SMARTCARD ICS Security is the hard-and-fast rule for smartcard-based health and ID systems as each country has its own laws regarding privacy and data protection. The best example is the French Health Project which is the world’s


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    PDF ST16CF54B ST19CF68 ST19KF16 ST16RF58 SMARTCARD ST16CF54B ST16SF44A ST16SF44 ST16SF48 ST16SF4F ST19 ST19CF68 ST19KF16 ST19SF16

    ST1335

    Abstract: ST13 ST1333 ST16 ST16SF41 ST16SF42 ST16SF44 ST16SF48 ST16SF4F ST16ST2G
    Text: New System Solution for Telephone Cards ST13 TELEPHONE CARD AND ST16 MCU IC PROVIDE COMPLETE SOLUTION STMicroelectronics pioneered the Telephone Card IC with mass application of the France Telecom Phonecard T1G starting in 1986. This was followed by the Deutsche Telecom Phonecard in 1992.


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    PDF FLSC9810/0998 ST1335 ST13 ST1333 ST16 ST16SF41 ST16SF42 ST16SF44 ST16SF48 ST16SF4F ST16ST2G

    SMARTCARD micromodule assembly

    Abstract: MICROMODULES SMARTCARD ST16CF54 ST16SF42 ST16600 ST16601 ST16SF41 ST16SF44 ST16SF48
    Text: D3, D4 MICROMODULES Smartcard MCU Modules General Information on D3 and D4 Packages DATA BRIEFING The manufacturing process of Smartcards involves various components and technologies in order to issue a finished product: – a plastic card into which a cavity is made for micromodule embedding.


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    PDF

    ST16XY

    Abstract: ST16SF48 ST16ST2G bull thomson ISO STANDARDS
    Text: ST16ST2G CMOS MCU BASED SAFEGUARDED SMART CARD IC WITH 8176 Bytes EEPROM & T2G AUTHENTICATION LIBRARY BRIEF DATA • EXTENDED VOLTAGE OPERATION – VCC Range: 2.7V to 5.5V ■ 8 BIT ARCHITECTURE CPU ■ 15 KBytes of USER ROM ■ 1 KByte of ACF Library ■ 1.5 KBytes of SYSTEM ROM.


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    PDF ST16ST2G ST16XY ST16SF48 ST16ST2G bull thomson ISO STANDARDS

    footprint so44

    Abstract: 9977 IC SOCKET TSOP48 TSOP32 FOOTPRINT ST1355 52 pin plcc socket ST19GF34 PSDSoft ST19AF08 serial flash 256Mb fast erase spi
    Text: MEMORY SELECTOR Leading Edge Memories • 1999 GO Why a Broad Range? Leading Edge Memories OTP and UV EPROMs Flash Memories Serial and Parallel EEPROMs ASM and Memory Card ICs Memory Systems and NVRAMs BROAD RANGE STMicroelectronics is a world leader in non-volatile memories, manufacturing a broad


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    PDF operat911) D-90449 BRMEMSEL/0699 footprint so44 9977 IC SOCKET TSOP48 TSOP32 FOOTPRINT ST1355 52 pin plcc socket ST19GF34 PSDSoft ST19AF08 serial flash 256Mb fast erase spi

    SMARTCARD micromodule assembly

    Abstract: ST14C02 M14C04 M14C16 M14C32 M14C64 ST1200 ST1305B ST1331 ST1333
    Text: SUPER 35 MM MICROMODULES Super 35 mm Micromodules for Smartcards and Memory Cards DATA BRIEFING • Micromodules were developed specifically for embedding in Smartcards and Memory Cards ■ The Micromodule provides: potting side 1 1 1 1 1 1 – Support for the chip


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    SmartCard

    Abstract: smartcard mcu st16 ST16CF54B 1344B ST16600 ST16601 ST16CF54 ST16SF41 ST16SF44
    Text: Secure Smartcard ICs ST16 MCU Family ST16 FAMILY Security in Smartcard systems is clearly the over-riding factor. The ST16 range of Secure MCU and Cryptocomputer Smartcard ICs has obtained world wide recognition for security in major applications, such as GSM telephones, bank cards, electronic purses,


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    PDF FLSC9807/0998 ST16600 ST16601 ST16SF41 1344B ST16SF42 ST16SF44 ST16SF48 ST16SF4F ST16CF54B SmartCard smartcard mcu st16 ST16CF54B 1344B ST16600 ST16601 ST16CF54 ST16SF41 ST16SF44

    ST13

    Abstract: ST1333 ST1335 ST16 ST16601 ST16SF42 ST16SF44 ST16SF48 ST16ST2G
    Text: A New System Solution for Telephone Cards ST13 TELEPHONE CARD IC and ST16 MCU IC PROVIDE COMPLETE SYSTEM SGS-THOMSON pioneered the Telephone Card IC with mass application of the France Telecom Phonecard T1G starting in 1986. This was followed by the Deutsche Telecom Phonecard in 1992. ST has now developed, in partnership


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    PDF FLSC9710/1097 ST13 ST1333 ST1335 ST16 ST16601 ST16SF42 ST16SF44 ST16SF48 ST16ST2G

    SMARTCARD

    Abstract: ST16 ST16600 ST16601 ST16CF54 ST16SF48 ST19 ST19SF08 st16sf42 "electronic purse"
    Text: Banking, Electronic Purse and Loyalty THE FINANCIAL DOMAIN Since the very first roll out of a Smartcard-based banking card in France in 1992, Smartcards have rapidly conquered the financial domain. Today countless world wide banking schemes - either established or in a


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    PDF ST19KF16 FLSC0018/0400 SMARTCARD ST16 ST16600 ST16601 ST16CF54 ST16SF48 ST19 ST19SF08 st16sf42 "electronic purse"

    ST16SF48A

    Abstract: ST Micro EEPROM ST16xyz
    Text: Æ T SGS-THOMSON ST16SF48 CMOS MCU BASED SAFEGUARDED SMARTCARD IC WITH 8K EEPROM ADVANCE DATA • ■ ■ ■ 8 BIT ARCHITECTURE CPU 16K BYTES of ROM, SECTORS COMBINATIVE 288 BYTES of RAM 8176 BYTES of EEPROM, SECTORS COMBI­ NATIVE - Highly reliable CMOS EEPROM Technology


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    PDF ST16SF48 16XYZ ST16XYZ-EMU ST16SF48 ST16SF48A ST Micro EEPROM ST16xyz

    Untitled

    Abstract: No abstract text available
    Text: SGS-THOMSON ST16SF48 m CMOS MCU BASED SAFEGUARDED SMART CARD IC WITH 8176 Bytes EEPROM BRIEF DATA • EXTENDED VOLTAGE OPERATION Figure 1 Delivery forms - Vcc Range : 2.7V to 5.5V ■ 8 BIT ARCHITECTURE CPU ■ 16 KBytes of USER ROM, SECTOR COMBINATIVE ■ 1.5 KBytes of SYSTEM ROM.


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    PDF ST16SF48

    TDA0161 equivalent

    Abstract: 1N3393 BDX54F equivalent byt301000 bux transient voltage suppressor ST90R9 ua776mh sgs 2n3055 Transistor morocco mje13007 inmos transputer reference manual
    Text: SHORTFORM 1995 NOVEMBER 1994 USE IN LIFE SUPPORT DEVICES OR SYSTEMS MUST BE EXPRESSLY AUTHORIZED SGS-THOMSON PRODUCTS ARE NOT AUTHORIZED FOR USE AS CRITICAL COMPONENTS IN LIFE SUPPORT DEVICES OR SYSTEMS WITHOUT THE EXPRESS WRITTEN APPROVAL OF SGS-THOMSON Microelectronics. As used herein:


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    MK45H14

    Abstract: AN-211 mk48c02 M48Z09 M48Z19 ST16XY ST16xyz M48Z32Y MK45h04 M/MCMA140P1600TA
    Text: GENERAL INDEX C M O S UV EPR O M & OTP M EM O R IE S . M27C64A C M O S 64K 8K x 8 UV E P R O M . 57 55 M27C256B C M O S 256K (32K x 8) UV EPRO M & OTP R O M .


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    PDF M27C64A M27C256B M87C257 M27C512 M27V512 M27C1001 M27V101 M27C1024 M27C2001 M27V201 MK45H14 AN-211 mk48c02 M48Z09 M48Z19 ST16XY ST16xyz M48Z32Y MK45h04 M/MCMA140P1600TA