IC Haus IC-LF1402 Image Sensor, 256 x 1pixel, 8-Pin OBGA LFL1C
- RS-artikelnummer:
- 288-4582
- Tillv. art.nr:
- IC-LF1402
- Tillverkare / varumärke:
- IC Haus
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217,95 kr
(exkl. moms)
272,44 kr
(inkl. moms)
- RS-artikelnummer:
- 288-4582
- Tillv. art.nr:
- IC-LF1402
- Tillverkare / varumärke:
- IC Haus
Specifikationer
Datablad
Lagstiftning och ursprungsland
Produktdetaljer
Hitta liknande produkter genom att välja ett eller flera attribut.
Välj alla | Attribut | Värde |
|---|---|---|
| Brand | IC Haus | |
| Image Size | 256 x 1pixel | |
| Package Type | OBGA LFL1C | |
| Pin Count | 8 | |
| Välj alla | ||
|---|---|---|
Brand IC Haus | ||
Image Size 256 x 1pixel | ||
Package Type OBGA LFL1C | ||
Pin Count 8 | ||
- COO (Country of Origin):
- TH
The 256x1 linear image sensor that offers high sensitivity and uniformity over wavelength. With a pitch of 63.5 μm (400 DPI) and 256 active photo pixels, it provides a gap and distortion-free optical line sensing solution. The sensor operates at high clock rates of up to 5 MHz, requiring only 256 clocks for readout. It also features a shutter function for flexible integration times. With glitch-free analogue output and a push-pull output amplifier, it ensures reliable performance. It can be powered by a 5V single supply or run off an external bias to reduce power consumption.
256 active photo pixels of 56 μm at a gap and distortion-free pitch of 63.5 μm (400 DPI)
High sensitivity and uniformity over wavelength
High clock rates of up to 5 MHz with only 256 clocks required for readout
Shutter function enables flexible integration times
Glitch-free analogue output and push-pull output amplifier
5V single supply operation with the option to run off external bias for reduced power consumption
High sensitivity and uniformity over wavelength
High clock rates of up to 5 MHz with only 256 clocks required for readout
Shutter function enables flexible integration times
Glitch-free analogue output and push-pull output amplifier
5V single supply operation with the option to run off external bias for reduced power consumption
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