| PART |
Description |
Maker |
| VBUS54ED-FBL |
4-Line BUS-Port ESD Protection - Flow Through Design
|
Vishay Intertechnology
|
| VBUS052CD-FAH-GS08 |
2-Line BUS-Port ESD-Protection - Flow Through Design
|
Vishay Siliconix
|
| 03-09-1011 03-09-1027 03-09-1041 03-09-1054 03-09- |
Panel Mount Plug and Receptacle, with Extraction Tool and Universal Crimp Tool
|
MolexKits
|
| 17572 17572-G |
HTSNK. B X-FLOW. .9H LOW FLOW. THRU HOLE HTSNKB型X流0.9 低流量。通孔
|
Vicor, Corp. VICOR[Vicor Corporation]
|
| 0638160500 0638160700 |
AIR POWERED TOOL Operating and Maintenance Instructions AIR POWERED TOOL AIR POWERED TOOL
|
Molex Electronics Ltd.
|
| CY7C1475V33-133BGXI CY7C1475V33-133BGI CY7C1475V33 |
72-Mbit (2M x 36/4M x 18/1M x 72) Flow-Through SRAM with NoBLArchitecture 4M X 18 ZBT SRAM, 8.5 ns, PBGA165 72-Mbit (2M x 36/4M x 18/1M x 72) Flow-Through SRAM with NoBLArchitecture 4M X 18 ZBT SRAM, 6.5 ns, PQFP100 72-Mbit (2M x 36/4M x 18/1M x 72) Flow-Through SRAM with NoBL Architecture(带NoBL结构B>72-Mbit (2M x 36/4M x 18/1M x 72) Flow-Through SRAM) 72-Mbit (2M x 36/4M x 18/1M x 72) Flow-Through SRAM with NoBL?/a> Architecture 72-Mbit (2M x 36/4M x 18/1M x 72) Flow-Through SRAM with NoBL垄芒 Architecture
|
Cypress Semiconductor, Corp. Cypress Semiconductor Corp.
|
| AN-9738 |
Design Guideline on 150W Power Supply for LED Street Lighting Design Using FL7930B and FAN7621S
|
Fairchild Semiconductor
|
| AN202-1 AN202 |
Technical Consideration for Migrating CS5460-Based Design to CS5460A-Based Design From old datasheet system
|
Cirrus Logic
|
| 18074 18074-6 |
HTSNK C X-FLOW .4H LOW FLOW THRU HOLE HTSNK, C X-FLOW, .4H LOW FLOW THRU HOLE
|
VICOR[Vicor Corporation]
|
| 18073 18073-5 |
HTSNK B X-FLOW .4H LOW FLOW THRU HOLE HTSNK, B X-FLOW, .4H LOW FLOW THRU HOLE
|
VICOR[Vicor Corporation]
|
| XCV150-5PQG240I XCV150-5PQG240C XCV300-5PQG240I XC |
XCV150-5PQG240I - NOT RECOMMENDED for NEW DESIGN FPGA, 864 CLBS, 164674 GATES, 294 MHz, PQFP240 XCV150-5PQG240C - NOT RECOMMENDED for NEW DESIGN FPGA, 864 CLBS, 164674 GATES, 294 MHz, PQFP240 XCV300-5PQG240I - NOT RECOMMENDED for NEW DESIGN FPGA, 1536 CLBS, 322970 GATES, 294 MHz, PQFP240 XCV50-5PQG240C - NOT RECOMMENDED for NEW DESIGN FPGA, 384 CLBS, 57906 GATES, 294 MHz, PQFP240 XCV200-5PQG240C - NOT RECOMMENDED for NEW DESIGN FPGA, 1176 CLBS, 236666 GATES, 294 MHz, PQFP240 XCV200-5PQG240I - NOT RECOMMENDED for NEW DESIGN FPGA, 1176 CLBS, 236666 GATES, 294 MHz, PQFP240 100,000 System Gate FPGA - NOT RECOMMENDED for NEW DESIGN FPGA, 600 CLBS, 108904 GATES, 294 MHz, PQFP240 XCV50-5PQG240I - NOT RECOMMENDED for NEW DESIGN FPGA, 384 CLBS, 57906 GATES, 294 MHz, PQFP240 XCV300-5PQG240C - NOT RECOMMENDED for NEW DESIGN FPGA, 1536 CLBS, 322970 GATES, 294 MHz, PQFP240 XCV150-5BGG352C - NOT RECOMMENDED for NEW DESIGN FPGA, 864 CLBS, 164674 GATES, 294 MHz, PBGA352 XCV800-5BGG560C - NOT RECOMMENDED for NEW DESIGN FPGA, 4704 CLBS, 888439 GATES, 294 MHz, PBGA560 100,000 System Gate FPGA - NOT RECOMMENDED for NEW DESIGN FPGA, 600 CLBS, 108904 GATES, 250 MHz, PBGA144 100,000 System Gate FPGA - NOT RECOMMENDED for NEW DESIGN FPGA, 600 CLBS, 108904 GATES, 333 MHz, PQFP144 100,000 System Gate FPGA - NOT RECOMMENDED for NEW DESIGN FPGA, 600 CLBS, 108904 GATES, 294 MHz, PBGA144 100,000 System Gate FPGA - NOT RECOMMENDED for NEW DESIGN FPGA, 600 CLBS, 108904 GATES, 250 MHz, PBGA256 100,000 System Gate FPGA - NOT RECOMMENDED for NEW DESIGN FPGA, 600 CLBS, 108904 GATES, 250 MHz, PQFP240 XCV200-6PQG240C - NOT RECOMMENDED for NEW DESIGN FPGA, 1176 CLBS, 236666 GATES, 333 MHz, PQFP240 XCV50-5CSG144C - NOT RECOMMENDED for NEW DESIGN FPGA, 384 CLBS, 57906 GATES, 294 MHz, PBGA144 XCV300-5BGG432C - NOT RECOMMENDED for NEW DESIGN XCV300-5BGG432I - NOT RECOMMENDED for NEW DESIGN XCV300-5BGG352C - NOT RECOMMENDED for NEW DESIGN XCV600-5FGG680I - NOT RECOMMENDED for NEW DESIGN XCV600-5BGG560I - NOT RECOMMENDED for NEW DESIGN XCV150-4BGG352C - NOT RECOMMENDED for NEW DESIGN XCV150-5BGG256C - NOT RECOMMENDED for NEW DESIGN XCV300-4BGG432I - NOT RECOMMENDED for NEW DESIGN
|
Xilinx, Inc. XILINX INC
|
| MT58L64L18F MT58L32L32F MT58L32L36F |
32K x 323.3V I/O, Flow-Through SyncBurst SRAM(1Mb,3.3V输入/输出,流通式同步脉冲静态RAM) 32K x 363.3V I/O, Flow-Through SyncBurst SRAM(1Mb,3.3V输入/输出,流通式同步脉冲静态RAM) 64K x 18, 3.3V I/O, Flow-Through SyncBurst SRAM(1Mb,3.3V输入/输出,流通式同步脉冲静态RAM) 64K的18.3V的I / O的流量通过SyncBurst的SRAM兆,3.3V的输输出,流通式同步脉冲静态内存)
|
Micron Technology, Inc.
|
|