No. |
Part Name |
Description |
Manufacturer |
1 |
74AVCH2T45DCTRE4 |
Dual-Bit Dual-Supply Bus Transceiver With Configurable Voltage Translation Aan 3-State Outputs 8-SM8 -40 to 85 |
Texas Instruments |
2 |
74AVCH2T45DCTTE4 |
Dual-Bit Dual-Supply Bus Transceiver With Configurable Voltage Translation Aan 3-State Outputs 8-SM8 -40 to 85 |
Texas Instruments |
3 |
74AVCH2T45DCURG4 |
Dual-Bit Dual-Supply Bus Transceiver With Configurable Voltage Translation Aan 3-State Outputs 8-VSSOP -40 to 85 |
Texas Instruments |
4 |
AN1081 |
MORE THAN 3 PCI MASTERS WITH STPC CLIENT |
SGS Thomson Microelectronics |
5 |
HN29V51211 |
512M AND type Flash Memory More than 32/113-sector (542/581/248-bit) |
Hitachi Semiconductor |
6 |
HN29V51211T-50 |
512M AND type Flash Memory More than 32/113-sector (542/581/248-bit) |
Hitachi Semiconductor |
7 |
MCP6041 |
The MCP6041 operational amplifier (op amp) has a gain bandwidth product of 14 kHz with a low typical operating current of 600 nA and an offset voltage that is less than 3 mV. The MCP6041 uses Microchip's advanced CMOS technology, which pro |
Microchip |
8 |
MCP6042 |
The MCP6042 dual operational amplifier (op amp) has a gain bandwidth product of 14 kHz with a low typical operating current of 600 nA and an offset voltage that is less than 3 mV. The MCP6042 uses Microchip's advanced CMOS technology, whic |
Microchip |
9 |
MCP6043 |
The MCP6043 operational amplifier (op amp) has a gain bandwidth product of 14 kHz with a low typical operating current of 600 nA and an offset voltage that is less than 3 mV. The MCP6043 uses Microchip's advanced CMOS technology, which pro |
Microchip |
10 |
MCP6044 |
The MCP6044 quad operational amplifier (op amp) has a gain bandwidth product of 14 kHz with a low typical operating current of 600 nA and an offset voltage that is less than 3 mV. The MCP6044 uses Microchip's advanced CMOS technology, whic |
Microchip |
11 |
UPD703280 |
100-pin version with on-chip CAN 32-bit single-chip microcontroller (V850ES/SG2) |
NEC |
12 |
UPD703280GC-XXX-8EA |
100-pin version with on-chip CAN 32-bit single-chip microcontroller (V850ES/SG2) |
NEC |
13 |
UPD703280Y |
100-pin version with on-chip CAN 32-bit single-chip microcontroller (V850ES/SG2) |
NEC |
14 |
UPD703280YGC-XXX-8EA |
100-pin version with on-chip CAN 32-bit single-chip microcontroller (V850ES/SG2) |
NEC |
15 |
UPD703281 |
100-pin version with on-chip CAN 32-bit single-chip microcontroller (V850ES/SG2) |
NEC |
16 |
UPD703281GC-XXX-8EA |
100-pin version with on-chip CAN 32-bit single-chip microcontroller (V850ES/SG2) |
NEC |
17 |
UPD703281Y |
100-pin version with on-chip CAN 32-bit single-chip microcontroller (V850ES/SG2) |
NEC |
18 |
UPD703281YGC-XXX-8EA |
100-pin version with on-chip CAN 32-bit single-chip microcontroller (V850ES/SG2) |
NEC |
19 |
XC17S100XLPD8C |
Spartan 3.3V one-time programmable configuration PROM. Configuration bits 781248. |
Xilinx |
20 |
XC17S100XLPD8I |
Spartan 3.3V one-time programmable configuration PROM. Configuration bits 781248. |
Xilinx |
21 |
XC17S100XLSO20C |
Spartan 3.3V one-time programmable configuration PROM. Configuration bits 781248. |
Xilinx |
22 |
XC17S100XLSO20I |
Spartan 3.3V one-time programmable configuration PROM. Configuration bits 781248. |
Xilinx |
23 |
XC17S150XLPD8C |
Spartan 3.3V one-time programmable configuration PROM. Configuration bits 1040128. |
Xilinx |
24 |
XC17S150XLPD8I |
Spartan 3.3V one-time programmable configuration PROM. Configuration bits 1040128. |
Xilinx |
25 |
XC17S150XLSO20C |
Spartan 3.3V one-time programmable configuration PROM. Configuration bits 1040128. |
Xilinx |
26 |
XC17S150XLSO20I |
Spartan 3.3V one-time programmable configuration PROM. Configuration bits 1040128. |
Xilinx |
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