"RAD" SRAM 16MBIT Search Results
"RAD" SRAM 16MBIT Result Highlights (5)
Part | ECAD Model | Manufacturer | Description | Download | Buy |
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CY7C167A-35PC |
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CY7C167A - CMOS SRAM |
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AM27LS07PC |
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27LS07 - Standard SRAM, 16X4 |
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HM1-6516-9 |
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HM1-6516 - Standard SRAM, 2KX8, 200ns, CMOS |
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HM4-6504B-9 |
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HM4-6504 - Standard SRAM, 4KX1, 220ns, CMOS |
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HM3-6504B-9 |
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HM3-6504 - Standard SRAM, 4KX1, 220ns, CMOS |
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"RAD" SRAM 16MBIT Datasheets Context Search
Catalog Datasheet | Type | Document Tags | |
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UT9Q512K32E
Abstract: WN smd transistor 512K32 CDR32
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UT9Q512K32E 16Mbit) WN smd transistor 512K32 CDR32 | |
WN smd transistor
Abstract: UT9Q512K32E 512K32 CDR32
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UT9Q512K32E 16Mbit) WN smd transistor 512K32 CDR32 | |
UT9Q512K32EContextual Info: Standard Products UT9Q512K32E 16 Megabit Rad SRAM MCM Preliminary Data Sheet January, 2009 INTRODUCTION The UT9Q512K32E RadTol product is a high-performance 2M byte 16Mbit CMOS static RAM multi-chip module (MCM), organized as four individual 524,288 x 8 bit SRAMs with a |
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UT9Q512K32E 68-lead | |
UT9Q512K32E
Abstract: WN smd transistor 512K32E 512K32 CDR32
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UT9Q512K32E 16Mbit) WN smd transistor 512K32E 512K32 CDR32 | |
HLXSR01608Contextual Info: HLXSR01608 HLXSR01608 2M x 8 STATIC RAM 1.5V Core VDD The HLXSR01608 radiation hardened 16Mbit Static proprietary design, layout and process hardening Random Access Memory SRAM is a monolithic techniques. There is no internal EDAC implemented. SRAM fabricated with Honeywell’s 150nm silicon-oninsulator CMOS (S150) technology. The 2M x 8 bit |
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HLXSR01608 HLXSR01608 16Mbit 150nm 110mW 40MHz | |
ARINC 629 sim
Abstract: m38510/55501 AMP ARINC-629 SIM MT72038 smd cmos 4435 CQFP 240 arinc 629 controller P2X smd CERAMIC PIN GRID ARRAY CPGA lead frame arinc 629
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UT69151 800-645-UTMC 800-THE-1553 800-THE-1553 ARINC 629 sim m38510/55501 AMP ARINC-629 SIM MT72038 smd cmos 4435 CQFP 240 arinc 629 controller P2X smd CERAMIC PIN GRID ARRAY CPGA lead frame arinc 629 | |
512k x 8 chip block diagram
Abstract: "rad" sram 16mbit
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UT7Q512K32 16Megabit 110ns 32-bit 30krads 300krads 32E-8 0E14n/cm2 512k x 8 chip block diagram "rad" sram 16mbit | |
Contextual Info: Standard Products UT8Q512K32 16Megabit SRAM MCM Preliminary Data Sheet March 12, 2001 FEATURES q 35ns maximum 3.3 volt supply address access time q MCM contains four (4) 512K x 8 industry-standard asynchronous SRAMs; the control architecture allows operation as 8, 16, 24, or 32-bit data width |
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UT8Q512K32 16Megabit 32-bit 30krads 300krads 8E-11errors/bit-day, 0E14n/cm2 -40oC 125oC) 68-pin | |
Contextual Info: Standard Products UT9Q512K32 16Megabit SRAM MCM Advanced Data Sheet March 12, 2001 FEATURES q 35ns maximum 5 volt supply address access time q Asynchronous operation for compatible with industry standard 512K x 8 SRAMs q TTL compatible inputs and output levels, three-state |
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UT9Q512K32 16Megabit 30krads 300krads 8E-11 0E14n/cm2 68-lead -40oC 125oC) 68-pin | |
UT9Q512
Abstract: 512K32 9Q512K32 UT9Q512K32
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UT9Q512K32 16Megabit 30krads 300krads 16Mbit) 68-lead 10krad 30krad UT9Q512 512K32 9Q512K32 | |
512K32
Abstract: 9Q512K32 UT9Q512 UT9Q512K32
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UT9Q512K32 16Megabit 30krads 300krads 16Mbit) 68-lead 10krad 30krad 512K32 9Q512K32 UT9Q512 | |
Contextual Info: Standard Products QCOTSTM UT8Q512K32 16Megabit SRAM MCM Advanced Data Sheet September 4, 2001 FEATURES q 25ns maximum 3.3 volt supply address access time q MCM contains four (4) 512K x 8 industry-standard asynchronous SRAMs; the control architecture allows |
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UT8Q512K32 16Megabit 32-bit 50krads 1E-10 0E14n/cm2 68-lead 10krad 50krad 30krad | |
UT8Q512K32Contextual Info: Standard Products QCOTSTM UT8Q512K32 16Megabit SRAM MCM Advanced Data Sheet August 6, 2001 FEATURES q 35ns maximum 3.3 volt supply address access time q MCM contains four (4) 512K x 8 industry-standard asynchronous SRAMs; the control architecture allows |
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UT8Q512K32 16Megabit 32-bit 50krads 1E-10 0E14n/cm2 68-lead 10krad 50krad 30krad | |
Contextual Info: Standard Products QCOTSTM UT9Q512K32 16Megabit SRAM MCM Advanced Data Sheet August 6, 2001 FEATURES q 35ns maximum 5 volt supply address access time q Asynchronous operation for compatible with industry standard 512K x 8 SRAMs q TTL compatible inputs and output levels , three-state |
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UT9Q512K32 16Megabit 50krads 1E-10 0E14n/cm2 68-lead 10krad 30krad 50krad | |
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512K32
Abstract: 9Q512K32 UT9Q512 UT9Q512K32
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UT9Q512K32 16Megabit 30krads 300krads 16Mbit) 68-lead 10krad 30krad 512K32 9Q512K32 UT9Q512 | |
512K32
Abstract: 8Q512K32 UT8Q512K32
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UT8Q512K32 16Megabit 32-bit 30krads 300krads 10E-9 8E-11errors/bit-day, 0E14n/cm2 68-lead 10krad 512K32 8Q512K32 | |
512K32
Abstract: 8Q512K32 UT8Q512K32
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UT8Q512K32 16Megabit 32-bit 30krads 300krads 10E-9 8E-11errors/bit-day, 0E14n/cm2 68-lead 10krad 512K32 8Q512K32 | |
Contextual Info: Standard Products QCOTSTM UT9Q512K32 16Megabit SRAM MCM Advanced Data Sheet November 21, 2001 FEATURES q 25ns maximum 5 volt supply address access time q Asynchronous operation for compatible with industry standard 512K x 8 SRAMs q TTL compatible inputs and output levels , three-state |
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UT9Q512K32 16Megabit 50krads 1E-10 0E14n/cm2 68-lead 512K32 10krad | |
Contextual Info: Standard Products QCOTSTM UT8Q512K32 16Megabit SRAM MCM Advanced Data Sheet October 4, 2001 FEATURES q 25ns maximum 3.3 volt supply address access time q MCM contains four (4) 512K x 8 industry-standard asynchronous SRAMs; the control architecture allows |
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UT8Q512K32 16Megabit 32-bit 50krads 1E-10 0E14n/cm2 512K32 68-lead 10krad | |
Contextual Info: Standard Products QCOTSTM UT8Q512K32 16Megabit SRAM MCM Advanced Data Sheet November 21, 2001 FEATURES q 25ns maximum 3.3 volt supply address access time q MCM contains four (4) 512K x 8 industry-standard asynchronous SRAMs; the control architecture allows |
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UT8Q512K32 16Megabit 32-bit 50krads 1E-10 0E14n/cm2 512K32 68-lead 10krad | |
Contextual Info: Standard Products QCOTSTM UT9Q512K32 16Megabit SRAM MCM Advanced Data Sheet August 31, 2001 FEATURES q 25ns maximum 5 volt supply address access time q Asynchronous operation for compatible with industry standard 512K x 8 SRAMs q TTL compatible inputs and output levels , three-state |
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UT9Q512K32 16Megabit 50krads 1E-10 0E14n/cm2 68-lead 10krad 30krad 50krad | |
Contextual Info: Standard Products QCOTSTM UT9Q512K32 16Megabit SRAM MCM Advanced Data Sheet October 4, 2001 FEATURES q 25ns maximum 5 volt supply address access time q Asynchronous operation for compatible with industry standard 512K x 8 SRAMs q TTL compatible inputs and output levels , three-state |
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UT9Q512K32 16Megabit 50krads 1E-10 0E14n/cm2 68-lead 512K32 10krad | |
Contextual Info: Standard Products QCOTSTM UT9Q512K32 16Megabit SRAM MCM Advanced Data Sheet June 20, 2001 FEATURES q 35ns maximum 5 volt supply address access time q Asynchronous operation for compatible with industry standard 512K x 8 SRAMs q TTL compatible inputs and output levels, three-state |
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UT9Q512K32 16Megabit 50krads 300krads 8E-11 0E14n/cm2 68-lead 10krad 50krad | |
GSM module Interface with At89s52
Abstract: ATMEGA 16 AU dc motor control using ir remote by AT89C51 interface gps with AVR atmega128 SAM9733 servo motor atmega 12 volt dc motor speed control base on At89c51 "Radio Controlled Clock Receiver" ac motor AVR c source code for triac sam9793
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U2896B. U6224B. U6239B. U3280M. U3600BM. U6268B. U641B. U3665M. U3666M. U642B. GSM module Interface with At89s52 ATMEGA 16 AU dc motor control using ir remote by AT89C51 interface gps with AVR atmega128 SAM9733 servo motor atmega 12 volt dc motor speed control base on At89c51 "Radio Controlled Clock Receiver" ac motor AVR c source code for triac sam9793 |