PT91-21C-TR10

Description:

Phototransistor IR Chip Silicon 940nm 2-Pin SMD

Country of Origin:

Taiwan (Province of China)

Introduction date:

Oct 25, 2000

Updated:13-DEC-2024

Overview

Familiarize yourself with the fundamental general information, properties, and characteristics of the component, along with its compliance with industry standards and regulations.

LifeCyclePremium
EU RoHS Yes
RoHS Version2011/65/EU, 2015/863
EAR99
Automotive No
Supplier Cage CodeSK531
8541497040
Schedule B8541409500
PPAP No
AEC Qualified No
Category Path
Optoelectronics, Lighting and Displays > Optoelectronics > Photoelement > Phototransistors

Datasheet

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Datasheet Preview

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Manufacturing

The manufacturing information specifies the technical requirements and specifications for producing and assembling the component. This information is crucial for manufacturers to maintain the quality and reliability of the components, and ensure they are compatible with other devices and components.

Reflow Temp. Source

Parametric

The parametric information displays vital features and performance metrics of the component, which helps engineers and supply chain managers to compare and choose the most appropriate electronic component for their applications and needs.

Product Line
Maximum Storage Temperature
Minimum Intensity
Maximum Intensity
Minimum Spectral Width
Maximum Spectral Width
Minimum Collector Current
Linearity
Response Point List
Minimum Rise Time
Minimum Fall Time
Ambient Light Sensor
Material
Supplier Temperature Grade
Maximum Emitter-Collector Voltage Range
Lens Dimensions
Maximum Forward Current
Process Technology
Minimum Storage Temperature
Phototransistor Type
Type
Polarity
Half Intensity Angle Degrees
Minimum Operating Temperature
Maximum Operating Temperature
Viewing Orientation
Peak Wavelength
Minimum Operating Supply Voltage
Cut-Off Filter
Maximum Light Current
Maximum Operating Supply Voltage
Lens Shape Type
Number of Channels per Chip
Fabrication Technology
Lens Color
Maximum Emitter-Collector Voltage
Maximum Collector-Emitter Voltage
Maximum Dark Current
Maximum Collector Current
Maximum Collector-Emitter Saturation Voltage
Maximum Fall Time
Maximum Power Dissipation
Maximum Rise Time

Crosses

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