No. |
Part Name |
Description |
Manufacturer |
91 |
MCP23016-I/SS |
16-bit I/O port expander with interrupt 3 hardware address pins allow user to use up to 8 of these devices on the same I2C/SMBus ... |
Microchip |
92 |
MCP23016T-I/ML |
16-bit I/O port expander with interrupt 3 hardware address pins allow user to use up to 8 of these devices on the same I2C/SMBus ... |
Microchip |
93 |
MCP23016T-I/ML |
16-bit I/O port expander with interrupt 3 hardware address pins allow user to use up to 8 of these devices on the same I2C/SMBus ... |
Microchip |
94 |
MCP23016T-I/SO |
16-bit I/O port expander with interrupt 3 hardware address pins allow user to use up to 8 of these devices on the same I2C/SMBus ... |
Microchip |
95 |
MCP23016T-I/SO |
16-bit I/O port expander with interrupt 3 hardware address pins allow user to use up to 8 of these devices on the same I2C/SMBus ... |
Microchip |
96 |
MCP23016T-I/SS |
16-bit I/O port expander with interrupt 3 hardware address pins allow user to use up to 8 of these devices on the same I2C/SMBus ... |
Microchip |
97 |
MCP23016T-I/SS |
16-bit I/O port expander with interrupt 3 hardware address pins allow user to use up to 8 of these devices on the same I2C/SMBus ... |
Microchip |
98 |
P2750 |
0.2mW; allowable current:6mA; MCT photoconductive detector: non-cooled type and TE-cooled suitable for long, continuous operation |
Hamamatsu Corporation |
99 |
P2750-06 |
0.2mW; allowable current:3mA; MCT photoconductive detector: non-cooled type and TE-cooled suitable for long, continuous operation |
Hamamatsu Corporation |
100 |
P2750-08 |
0.2mW; allowable current:6mA; MCT photoconductive detector: non-cooled type and TE-cooled suitable for long, continuous operation |
Hamamatsu Corporation |
101 |
P3257-30 |
0.2mW; allowable current:50mA; MCT photoconductive detector: non-cooled type and TE-cooled suitable for long, continuous operation |
Hamamatsu Corporation |
102 |
P3257-31 |
0.2mW; allowable current:50mA; MCT photoconductive detector: non-cooled type and TE-cooled suitable for long, continuous operation |
Hamamatsu Corporation |
103 |
P3257-50 |
Allowable current:40mA; MCT photoconductive detector: dewar type detector with high sensitivity and high-speed response in long wavelength range |
Hamamatsu Corporation |
104 |
P3981 |
0.2mW; allowable current:3mA; MCT photoconductive detector: non-cooled type and TE-cooled suitable for long, continuous operation |
Hamamatsu Corporation |
105 |
P3981-01 |
0.2mW; allowable current:3mA; MCT photoconductive detector: non-cooled type and TE-cooled suitable for long, continuous operation |
Hamamatsu Corporation |
106 |
PI3B32X384 |
PI3B32X384 is a 3.3V 20-bit bus switch designed with a low On-Resistance allowing inputs to be connected directly to outputs |
Pericom Technology |
107 |
PI3B32X384B |
PI3B32X384 is a 3.3V 20-bit bus switch designed with a low On-Resistance allowing inputs to be connected directly to outputs |
Pericom Technology |
108 |
PI3B32X384BE |
PI3B32X384 is a 3.3V 20-bit bus switch designed with a low On-Resistance allowing inputs to be connected directly to outputs |
Pericom Technology |
109 |
TC1026 |
The TC1026 is a mixed-function device combining a general-purpose op amp, comparator, and voltage reference in a single 8-Pin package. This increased integration allows the user to replace two or three packages, which saves space, lowers s |
Microchip |
110 |
TC1027 |
The TC1027 is a mixed-function device combining four general purpose comparators and a voltage reference in a single 16-pin package. This increased integration allows the user to replace two packages, which saves space, lowers supply curre |
Microchip |
111 |
TC1041 |
The TC1041 is a mixed-function device combining two comparators and a voltage reference in a single 8-pin package. The inverting inputs of both comparators are internally connected to the reference. This increased integration allows the us |
Microchip |
112 |
TC1043 |
The TC1043 is a mixed-function device combining two general purpose op amps, two general purpose comparators, and a voltage reference in a single 16-Pin package. This increased integration allows the user to replace two or three packages, |
Microchip |
113 |
TC57 |
The TC57 is a low dropout regulator controller that operates with an external PNP pass transistor, allowing the user to tailor the LDO characteristics to suit the application at hand. This results in lower dropout operation (and often lowe |
Microchip |
114 |
TC654 |
The TC654 is a dual PWM mode fan speed controller with FanSense TM technology for use with brush-less DC motors. The device allows temperature proportional speed control and therefore accomplishes lower acoustic fan noise and longer fan li |
Microchip |
115 |
TC655 |
The TC655 is a dual PWM mode fan speed controller with FanSense TM technology for use with brush-less DC motors. The device allows temperature proportional speed control and therefore accomplishes lower acoustic fan noise and longer fan li |
Microchip |
116 |
TC664 |
The TC664 is a single PWM mode fan speed controller with FanSense TM technology for use with brush-less DC motors. The device allows temperature proportional speed control and therefore accomplishes lower acoustic fan noise and longer fan |
Microchip |
117 |
TC665 |
The TC665 is a single PWM mode fan speed controller with FanSense TM technology for use with brush-less DC motors. The device allows temperature proportional speed control and therefore accomplishes lower acoustic fan noise and longer fan |
Microchip |
118 |
TC7106 |
The TC7106A and TC7107A 3-1/2 digit direct-display drive analog-to-digital converters allow existing 7106/7107 based systems to be upgraded. Each device has a precision reference with a 20ppm/°C max temperature coefficient. This repre |
Microchip |
119 |
TC7106A |
The TC7106A and TC7107A 3-1/2 digit direct-display drive analog-to-digital converters allow existing 7106/7107 based systems to be upgraded. Each device has a precision reference with a 20ppm/°C max temperature coefficient. This repre |
Microchip |
120 |
TC7107 |
The TC7106A and TC7107A 3-1/2 digit direct-display drive analog-to-digital converters allow existing 7106/7107 based systems to be upgraded. Each device has a precision reference with a 20ppm/°C max temperature coefficient. This repre |
Microchip |
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