No. |
Part Name |
Description |
Manufacturer |
61 |
AM82325-040 |
High power silicon NPN bipolar device optimized for specialized pulsed applications in the 2.3-2.5GHz |
SGS Thomson Microelectronics |
62 |
AM82327-004 |
Common base, silicon NPN bipolar transistor optimized for high gain and eficiency in the 2.3-2.7GHz |
SGS Thomson Microelectronics |
63 |
AM82327-006 |
Common base, silicon NPN bipolar transistor optimized for high gain and eficiency in the 2.3-2.7GHz |
SGS Thomson Microelectronics |
64 |
AM82327-010 |
Silicon NPN bipolar transistor optimized for high gain and eficiency in the 2.3-2.7GHz |
SGS Thomson Microelectronics |
65 |
AM82327-015 |
Common base, silicon NPN bipolar transistor optimized for high gain and eficiency in the 2.3-2.7GHz |
SGS Thomson Microelectronics |
66 |
AMD ATHLON |
AMD Athlon Processor x86 Code Optimization Guide |
Advanced Micro Devices |
67 |
AMD64 |
Software Optimization Guide for AMD Athlon 64 and AMD Opteron Processors |
Advanced Micro Devices |
68 |
AN1064 |
ST7 - WRITING OPTIMIZED HIWARE C LANGUAGE FOR ST7 |
SGS Thomson Microelectronics |
69 |
AN1152 |
ST9 - OPTIMIZING THE USAGE OF THE ST92F120 EEPROM |
SGS Thomson Microelectronics |
70 |
AN1352 |
A LNA OPTIMIZED FOR HIGH IP3OUT AT 1.9GHZ USING THE NPN SI START420 TRANSISTOR |
SGS Thomson Microelectronics |
71 |
AN1438 |
LOW NOISE AMPLIFIER OPTIMIZED FOR MINIMUM NOISE FIGURE AT 1.9GHZ USING START420 |
SGS Thomson Microelectronics |
72 |
AN1465 |
A LNA OPTIMIZED FOR HIGH IP3OUT AT 1.9GHZ USING THE NPN SI START540 TRANSISTOR |
SGS Thomson Microelectronics |
73 |
AN1510 |
ST VIDEO KIT FOR CRT MONITOR: OPTIMIZATION OF VIDEO PERFORMANCES WITH INPUT NETWORKS |
SGS Thomson Microelectronics |
74 |
AN159 |
PLL Filter Optimization for the CS8415A, CS8420, and CS8427 |
Cirrus Logic |
75 |
AN203 |
Silicon-Gate Switching Functions Optimize Data Acquisition Front End |
Vishay |
76 |
AN206 |
DG406 Multiplexer Optimizes Medical Simulator |
Vishay |
77 |
AN250 |
A SECOND GENERATION IC SWITCH MODE CONTROLLER OPTIMIZED FOR HIGH FREQUENCY |
SGS Thomson Microelectronics |
78 |
AN576 |
PCB LAYOUT OPTIMISATION |
SGS Thomson Microelectronics |
79 |
AN672 |
ST6 - OPTIMIZING THE ST6 A/D CONVERTER ACCURACY |
SGS Thomson Microelectronics |
80 |
AN805 |
Power MOSFETs Optimized for Low-Voltage DC/DC Conversion |
Vishay |
81 |
APP NOTE |
Application Note - Techniques for Obtaining Optimum Performance from Ring Emitter Transistors |
Fujitsu Microelectronics |
82 |
APPLICATION-NOTE |
Optimum method of use of low frequency low noise transistors |
NEC |
83 |
AS80M2516A |
3.3 V, generater an EMI optimizer clocking signal at output |
Alliance Semiconductor |
84 |
AT40K05 |
5K Gate FPGA with DSP Optimized Core Cell and Distributed FreeRam (5V) |
Atmel |
85 |
AT40K05AL |
5K Gate FPGA with DSP Optimized Core Cell and Distributed FreeRam. Enhanced performance improvement and bi-directional I/Os (3.3V) |
Atmel |
86 |
AT40K05LV |
5K - 50K Gate FPGA with DSP Optimized Core Cell and Distributed FreeRam. |
Atmel |
87 |
AT40K10 |
10K Gate FPGA with DSP Optimized Core Cell and Distributed FreeRam (5V) |
Atmel |
88 |
AT40K10AL |
10K Gate FPGA with DSP Optimized Core Cell and Distributed FreeRam. Enhanced performance improvement and bi-directional I/Os (3.3V) |
Atmel |
89 |
AT40K10LV |
10K Gate FPGA with DSP Optimized Core Cell and Distributed FreeRam (3.3V) |
Atmel |
90 |
AT40K20 |
20K Gate FPGA with DSP Optimized Core Cell and Distributed FreeRam (5V) |
Atmel |
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