No. |
Part Name |
Description |
Manufacturer |
1 |
DRV5053PAQDBZR |
2.5 to 38 V Analog Bipolar Hall Effect Sensor 3-SOT-23 -40 to 125 |
Texas Instruments |
2 |
DRV5053PAQDBZRQ1 |
Automotive Analog-Bipolar Hall Effect Sensor 3-SOT-23 -40 to 125 |
Texas Instruments |
3 |
DRV5053PAQDBZT |
2.5 to 38 V Analog Bipolar Hall Effect Sensor 3-SOT-23 -40 to 125 |
Texas Instruments |
4 |
DRV5053PAQDBZTQ1 |
Automotive Analog-Bipolar Hall Effect Sensor 3-SOT-23 -40 to 125 |
Texas Instruments |
5 |
DRV5053PAQLPG |
2.5 to 38 V Analog Bipolar Hall Effect Sensor 3-TO-92 -40 to 125 |
Texas Instruments |
6 |
DRV5053PAQLPGM |
2.5 to 38 V Analog Bipolar Hall Effect Sensor 3-TO-92 -40 to 125 |
Texas Instruments |
7 |
DRV5053PAQLPGMQ1 |
Automotive Analog-Bipolar Hall Effect Sensor 3-TO-92 -40 to 125 |
Texas Instruments |
8 |
DRV5053PAQLPGQ1 |
Automotive Analog-Bipolar Hall Effect Sensor 3-TO-92 -40 to 125 |
Texas Instruments |
9 |
IDTQS34X383 |
QUICKSWITCH PRODUCTS HIGH-SPEED 32-BIT BUS EXCHANGE SWITCH IN MILLIPAQ |
IDT |
10 |
IDTQS34X383Q3 |
QUICKSWITCH PRODUCTS HIGH-SPEED 32-BIT BUS EXCHANGE SWITCH IN MILLIPAQ |
IDT |
11 |
KT840L11 |
Slotted optical switch phototransistor output. Opaque polysulfone discrete shells. Electrical parameter A lead spacing .320 inches. Aperture in front of sensor .010 inches. Aperture in front of emitter .010 inches. |
Optek Technology |
12 |
KT840L15 |
Slotted optical switch phototransistor output. Opaque polysulfone discrete shells. Electrical parameter A lead spacing .320 inches. Aperture in front of sensor .010 inches. Aperture in front of emitter .050 inches. |
Optek Technology |
13 |
KT840L51 |
Slotted optical switch phototransistor output. Opaque polysulfone discrete shells. Electrical parameter A lead spacing .320 inches. Aperture in front of sensor .050 inches. Aperture in front of emitter .010 inches. |
Optek Technology |
14 |
KT840L55 |
Slotted optical switch phototransistor output. Opaque polysulfone discrete shells. Electrical parameter A lead spacing .320 inches. Aperture in front of sensor .050 inches. Aperture in front of emitter .050 inches. |
Optek Technology |
15 |
KT840W11 |
Slotted optical switch phototransistor output. Opaque polysulfone discrete shells. Electrical parameter A lead spacing .320 inches. Aperture in front of sensor .010 inches. Aperture in front of emitter .010 inches. |
Optek Technology |
16 |
KT840W15 |
Slotted optical switch phototransistor output. Opaque polysulfone discrete shells. Electrical parameter A lead spacing .320 inches. Aperture in front of sensor .010 inches. Aperture in front of emitter .050 inches. |
Optek Technology |
17 |
KT840W51 |
Slotted optical switch phototransistor output. Opaque polysulfone discrete shells. Electrical parameter A lead spacing .320 inches. Aperture in front of sensor .050 inches. Aperture in front of emitter .010 inches. |
Optek Technology |
18 |
KT840W55 |
Slotted optical switch phototransistor output. Opaque polysulfone discrete shells. Electrical parameter A lead spacing .320 inches. Aperture in front of sensor .050 inches. Aperture in front of emitter .050 inches. |
Optek Technology |
19 |
KT841L15 |
Slotted optical switch phototransistor output. Opaque polysulfone discrete shells. Electrical parameter B lead spacing .320 inches. Aperture in front of sensor .010 inches. Aperture in front of emitter .050 inches. |
Optek Technology |
20 |
KT841L51 |
Slotted optical switch phototransistor output. Opaque polysulfone discrete shells. Electrical parameter B lead spacing .320 inches. Aperture in front of sensor .050 inches. Aperture in front of emitter .010 inches. |
Optek Technology |
21 |
KT841L55 |
Slotted optical switch phototransistor output. Opaque polysulfone discrete shells. Electrical parameter B lead spacing .320 inches. Aperture in front of sensor .050 inches. Aperture in front of emitter .050 inches. |
Optek Technology |
22 |
KT841W15 |
Slotted optical switch phototransistor output. Opaque polysulfone discrete shells. Electrical parameter B lead spacing .320 inches. Aperture in front of sensor .010 inches. Aperture in front of emitter .050 inches. |
Optek Technology |
23 |
KT841W51 |
Slotted optical switch phototransistor output. Opaque polysulfone discrete shells. Electrical parameter B lead spacing .320 inches. Aperture in front of sensor .050 inches. Aperture in front of emitter .010 inches. |
Optek Technology |
24 |
KT841W55 |
Slotted optical switch phototransistor output. Opaque polysulfone discrete shells. Electrical parameter B lead spacing .320 inches. Aperture in front of sensor .050 inches. Aperture in front of emitter .050 inches. |
Optek Technology |
25 |
KT842L15 |
Slotted optical switch phototransistor output. Opaque polysulfone discrete shells. Electrical parameter C lead spacing .320 inches. Aperture in front of sensor .010 inches. Aperture in front of emitter .050 inches. |
Optek Technology |
26 |
KT842L51 |
Slotted optical switch phototransistor output. Opaque polysulfone discrete shells. Electrical parameter C lead spacing .320 inches. Aperture in front of sensor .050 inches. Aperture in front of emitter .010 inches. |
Optek Technology |
27 |
KT842L55 |
Slotted optical switch phototransistor output. Opaque polysulfone discrete shells. Electrical parameter C lead spacing .320 inches. Aperture in front of sensor .050 inches. Aperture in front of emitter .050 inches. |
Optek Technology |
28 |
KT842W15 |
Slotted optical switch phototransistor output. Opaque polysulfone discrete shells. Electrical parameter C lead spacing .320 inches. Aperture in front of sensor .010 inches. Aperture in front of emitter .050 inches. |
Optek Technology |
29 |
KT842W51 |
Slotted optical switch phototransistor output. Opaque polysulfone discrete shells. Electrical parameter C lead spacing .320 inches. Aperture in front of sensor .050 inches. Aperture in front of emitter .010 inches. |
Optek Technology |
30 |
KT842W55 |
Slotted optical switch phototransistor output. Opaque polysulfone discrete shells. Electrical parameter C lead spacing .320 inches. Aperture in front of sensor .050 inches. Aperture in front of emitter .050 inches. |
Optek Technology |
| | | |