No. |
Part Name |
Description |
Manufacturer |
91 |
KT875L55 |
Slotted optical switch phototransistor output. Opaque polysulpone discrete shells with .02 inches SQ, leads. Electrical parameter A lead spacing .220 inches. Aperture in front of sensor .050 inches. Aperture in front of emitter .050 inches |
Optek Technology |
92 |
KT875N11 |
Slotted optical switch phototransistor output. Opaque polysulpone discrete shells with .02 inches SQ, leads. Electrical parameter A lead spacing .220 inches. Aperture in front of sensor .010 inches. Aperture in front of emitter .010 inches |
Optek Technology |
93 |
KT875N15 |
Slotted optical switch phototransistor output. Opaque polysulpone discrete shells with .02 inches SQ, leads. Electrical parameter A lead spacing .220 inches. Aperture in front of sensor .010 inches. Aperture in front of emitter .050 inches |
Optek Technology |
94 |
KT875N51 |
Slotted optical switch phototransistor output. Opaque polysulpone discrete shells with .02 inches SQ, leads. Electrical parameter A lead spacing .220 inches. Aperture in front of sensor .050 inches. Aperture in front of emitter .010 inches |
Optek Technology |
95 |
KT875N55 |
Slotted optical switch phototransistor output. Opaque polysulpone discrete shells with .02 inches SQ, leads. Electrical parameter A lead spacing .220 inches. Aperture in front of sensor .050 inches. Aperture in front of emitter .050 inches |
Optek Technology |
96 |
KT875P11 |
Slotted optical switch phototransistor output. Opaque polysulpone discrete shells with .02 inches SQ, leads. Electrical parameter A lead spacing .220 inches. Aperture in front of sensor .010 inches. Aperture in front of emitter .010 inches |
Optek Technology |
97 |
KT875P15 |
Slotted optical switch phototransistor output. Opaque polysulpone discrete shells with .02 inches SQ, leads. Electrical parameter A lead spacing .220 inches. Aperture in front of sensor .010 inches. Aperture in front of emitter .050 inches |
Optek Technology |
98 |
KT875P51 |
Slotted optical switch phototransistor output. Opaque polysulpone discrete shells with .02 inches SQ, leads. Electrical parameter A lead spacing .220 inches. Aperture in front of sensor .050 inches. Aperture in front of emitter .010 inches |
Optek Technology |
99 |
KT875P55 |
Slotted optical switch phototransistor output. Opaque polysulpone discrete shells with .02 inches SQ, leads. Electrical parameter A lead spacing .220 inches. Aperture in front of sensor .050 inches. Aperture in front of emitter .050 inches |
Optek Technology |
100 |
KT875T11 |
Slotted optical switch phototransistor output. Opaque polysulpone discrete shells with .02 inches SQ, leads. Electrical parameter A lead spacing .220 inches. Aperture in front of sensor .010 inches. Aperture in front of emitter .010 inches |
Optek Technology |
101 |
KT875T15 |
Slotted optical switch phototransistor output. Opaque polysulpone discrete shells with .02 inches SQ, leads. Electrical parameter A lead spacing .220 inches. Aperture in front of sensor .010 inches. Aperture in front of emitter .050 inches |
Optek Technology |
102 |
KT875T51 |
Slotted optical switch phototransistor output. Opaque polysulpone discrete shells with .02 inches SQ, leads. Electrical parameter A lead spacing .220 inches. Aperture in front of sensor .050 inches. Aperture in front of emitter .010 inches |
Optek Technology |
103 |
KT875T55 |
Slotted optical switch phototransistor output. Opaque polysulpone discrete shells with .02 inches SQ, leads. Electrical parameter A lead spacing .220 inches. Aperture in front of sensor .050 inches. Aperture in front of emitter .050 inches |
Optek Technology |
104 |
MC145053D |
10-Bit A/D Converter a Serial Interface |
Motorola |
105 |
MC145053P |
10-Bit A/D Converter a Serial Interface |
Motorola |
106 |
MCP1612 |
Microchip’s MCP1612 DC-to-DC converter offers the customer a compact and inexpensive method of efficiently converting battery ... |
Microchip |
107 |
SL811HS |
The SL811HS is a single-chip, dual-speed USB Embedded Host controller that can operate as either a USB Host, or USB peripheral device. The SL811HS can interface to devices such as microprocessors, microcontrollers, DSPs or directly to a va |
Cypress |
108 |
TC826 |
In many applications a graphical display is preferred over a digital display. Knowing a process or system operates, for example, within design limits is more valuable than a direct system variable readout. A bar or moving dot display suppl |
Microchip |
109 |
TCN75 |
The TCN75 is a serially programmable temperature sensor that notifies the host controller when ambient temperature exceeds a user-programmed setpoint. Hysteresis is also programmable. The INT/CMPTR output is programmable as either a simple |
Microchip |
| | | |