No. |
Part Name |
Description |
Manufacturer |
241 |
MCP6549-I/ST |
The MCP6549 is an Open Drain, quad comparator. This single-ended device operates from 1.6V to 5.5V, with typical quiescent current ... |
Microchip |
242 |
MCP6549T-I/SL |
The MCP6549 is an Open Drain, quad comparator. This single-ended device operates from 1.6V to 5.5V, with typical quiescent current ... |
Microchip |
243 |
MCP6549T-I/ST |
The MCP6549 is an Open Drain, quad comparator. This single-ended device operates from 1.6V to 5.5V, with typical quiescent current ... |
Microchip |
244 |
MCU11E9 |
THE TMP68HC11E9 IS AN ADVANCED 8-BIT MICROCONTROLLER (MCU) WITH HIGHLY SOPHISTICATED ON-CHIP PERIPHERAL |
TOSHIBA |
245 |
MPXAZ6115A |
Media Resis and Hi Temp Silicon Pressure Sensor |
Motorola |
246 |
NA82 |
NA82 is an 8-input NAND gate with 2x drive strength. |
Austria Mikro Systems |
247 |
OA-13 |
Current Feedback Amplifier Loop Gain Analysis and Performance Enhancements - Application Note |
Comlinear Corporation |
248 |
OA211 |
OA211 is an OR / AND circuit providing the logical function Q = [ (A+B).C.D ]. |
Austria Mikro Systems |
249 |
ON21 |
ON21 is an OR / NAND circuit providing the logical function Q = NOT ( (A+B) C ) |
Austria Mikro Systems |
250 |
ON22 |
ON22 is an OR / NAND circuit providing the logical function Q = NOT [ (A+B).(C+D) ]. |
Austria Mikro Systems |
251 |
ON222 |
ON222 is an OR / NAND circuit providing the logical function Q = NOT (A+B).(C+D).(E+F) |
Austria Mikro Systems |
252 |
ON322 |
ON322 is an OR / NAND circuit providing the logical function Q = NOT [ (A+B+C).(D+E).(F+G) ] |
Austria Mikro Systems |
253 |
PIC16C73 |
The PIC16C73 is an EPROM-based microcontroller with an integrated Analog-to-Digital Converter. This easy- to- program (only 35 single ... |
Microchip |
254 |
PIC16C73 |
The PIC16C73 is an EPROM-based microcontroller with an integrated Analog-to-Digital Converter. This easy- to- program (only 35 single ... |
Microchip |
255 |
PIC16C74 |
The PIC16C74 is an EPROM-based microcontroller with an integrated Analog-to-Digital Converter. This easy- to- program (only 35 single ... |
Microchip |
256 |
PIC16C74 |
The PIC16C74 is an EPROM-based microcontroller with an integrated Analog-to-Digital Converter. This easy- to- program (only 35 single ... |
Microchip |
257 |
PM-7226 |
QUAD 8-BIT CMOS D/A converter with voltage output, is an improved replacement for the AD7226 |
Precision Monolithics |
258 |
SCAN15MB200 |
Dual 1.5 Gbps 2:1/1:2 LVDS Mux/Buffer with Pre-Emphasis and IEEE 1149.6 |
Texas Instruments |
259 |
SCAN15MB200TSQ/NOPB |
Dual 1.5 Gbps 2:1/1:2 LVDS Mux/Buffer with Pre-Emphasis and IEEE 1149.6 48-WQFN -40 to 85 |
Texas Instruments |
260 |
SCAN15MB200TSQX/NOPB |
Dual 1.5 Gbps 2:1/1:2 LVDS Mux/Buffer with Pre-Emphasis and IEEE 1149.6 48-WQFN -40 to 85 |
Texas Instruments |
261 |
SCAN90CP02 |
1.5 Gbps 2x2 LVDS Crosspoint Switch with Pre-Emphasis and IEEE 1149.6 |
National Semiconductor |
262 |
SCAN90CP02 |
1.5 Gbps 2x2 LVDS Crosspoint Switch with Pre-Emphasis and IEEE 1149.6 |
Texas Instruments |
263 |
SCAN90CP02EVK |
1.5 Gbps 2x2 LVDS Crosspoint Switch with Pre-Emphasis and IEEE 1149.6 |
National Semiconductor |
264 |
SCAN90CP02SP |
1.5 Gbps 2x2 LVDS Crosspoint Switch with Pre-Emphasis and IEEE 1149.6 |
National Semiconductor |
265 |
SCAN90CP02SP/NOPB |
1.5 Gbps 2x2 LVDS Crosspoint Switch with Pre-Emphasis and IEEE 1149.6 28-UQFN -40 to 85 |
Texas Instruments |
266 |
SCAN90CP02SPX |
1.5 Gbps 2x2 LVDS Crosspoint Switch with Pre-Emphasis and IEEE 1149.6 |
National Semiconductor |
267 |
SCAN90CP02VY |
1.5 Gbps 2x2 LVDS Crosspoint Switch with Pre-Emphasis and IEEE 1149.6 |
National Semiconductor |
268 |
SCAN90CP02VY/NOPB |
1.5 Gbps 2x2 LVDS Crosspoint Switch with Pre-Emphasis and IEEE 1149.6 32-LQFP -40 to 85 |
Texas Instruments |
269 |
SCAN90CP02VYX |
1.5 Gbps 2x2 LVDS Crosspoint Switch with Pre-Emphasis and IEEE 1149.6 |
National Semiconductor |
270 |
SM100 |
OEM Version of SYM-1, designed especially for OEM controller or other applications where the microcomputer board is an intergral part of a user's system |
Synertek |
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