

Isocom H11AA2X



Manufacturer No:
H11AA2X
Tiny WHSLManufacturer:
Utmel No:
1265-H11AA2X
Package:
-
Description:
H11AA2X datasheet pdf and Sensors, Transducers product details from Isocom stock available at Utmel
Quantity:
Unit Price: $0.111608
Ext Price: $0.11
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In Stock : 315
Minimum: 1 Multiples: 1
Qty
Unit Price
Ext Price
1
$0.111608
$0.11
10
$0.105291
$1.05
100
$0.099331
$9.93
500
$0.093708
$46.85
1000
$0.088404
$88.40
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- TypeParameter
- Operating Temperature ClassificationCommercial
- Package TypePDIP
- Output DeviceTransistor With Base
- Maximum Forward Current50(mA)
- Operating Temp Range-30C to 100C
- Number of Elements1
- Rad HardenedNo
- MountingThrough Hole
- Operating Temperature-Min-30
- Operating Temperature-Max100
- Current Transfer Ratio-Nom10
- Packaging
Semiconductor package is a carrier / shell used to contain and cover one or more semiconductor components or integrated circuits. The material of the shell can be metal, plastic, glass or ceramic.
Box/Carton - Additional Feature
Any Feature, including a modified Existing Feature, that is not an Existing Feature.
UL RECOGNIZED, VDE APPROVED - Pin Count
a count of all of the component leads (or pins)
6 - Output Type
The "Output Type" parameter in electronic components refers to the type of signal or data that is produced by the component as an output. This parameter specifies the nature of the output signal, such as analog or digital, and can also include details about the voltage levels, current levels, frequency, and other characteristics of the output signal. Understanding the output type of a component is crucial for ensuring compatibility with other components in a circuit or system, as well as for determining how the output signal can be utilized or processed further. In summary, the output type parameter provides essential information about the nature of the signal that is generated by the electronic component as its output.
DC - Configuration
The parameter "Configuration" in electronic components refers to the specific arrangement or setup of the components within a circuit or system. It encompasses how individual elements are interconnected and their physical layout. Configuration can affect the functionality, performance, and efficiency of the electronic system, and may influence factors such as signal flow, impedance, and power distribution. Understanding the configuration is essential for design, troubleshooting, and optimizing electronic devices.
SINGLE - Power Dissipation
the process by which an electronic or electrical device produces heat (energy loss or waste) as an undesirable derivative of its primary action.
0.35(W) - Input Type
Input type in electronic components refers to the classification of the signal or data that a component can accept for processing or conversion. It indicates whether the input is analog, digital, or a specific format such as TTL or CMOS. Understanding input type is crucial for ensuring compatibility between different electronic devices and circuits, as it determines how signals are interpreted and interacted with.
AC - Optoelectronic Device Type
Optoelectronic Device Type refers to the classification of electronic components that can both detect and emit light. These devices convert electrical signals into light or vice versa, making them essential for applications such as optical communication, sensing, and display technologies. Common types of optoelectronic devices include light-emitting diodes (LEDs), photodiodes, phototransistors, and laser diodes. Understanding the optoelectronic device type is crucial for selecting the appropriate component for a specific application based on factors such as wavelength, power output, and sensitivity.
AC INPUT-TRANSISTOR OUTPUT OPTOCOUPLER - Forward Current
Current which flows upon application of forward voltage.
100(mA) - Forward Voltage
the amount of voltage needed to get current to flow across a diode.
1.5(V) - Forward Current-Max
Forward Current-Max is a parameter used to specify the maximum amount of current that an electronic component, such as a diode or LED, can safely handle when it is forward-biased. This parameter is crucial for determining the operating limits of the component to prevent damage or failure due to excessive current flow. Exceeding the specified Forward Current-Max can lead to overheating, degradation of the component, or even permanent damage. It is important to carefully consider this parameter when designing circuits to ensure the component operates within its safe limits.
.05 - Isolation Voltage
Isolation voltage refers to a test of the ability of an insulator to minimize the flow of electric current with a high applied voltage.
5300(V) - Isolation Voltage-Max
Isolation Voltage-Max, also known as maximum isolation voltage, is a crucial parameter in electronic components, especially in devices like optocouplers, relays, and transformers. It refers to the maximum voltage that can be applied between two electrically isolated parts of the component without causing a breakdown in the insulation barrier. This specification is essential for ensuring the safety and reliability of the component in high-voltage applications, as exceeding the isolation voltage can lead to electrical arcing, short circuits, and potential damage to the device or even pose a safety hazard. Designers and engineers must carefully consider the Isolation Voltage-Max rating when selecting components for their circuits to prevent electrical failures and ensure proper isolation between different parts of the system.
5300 - Current Transfer Ratio
Current Transfer Ratio (CTR) is the gain of the optocoupler. It is the ratio of the phototransistor collector current to the IRED forward current. CTR = (IC / IF) * 100 It is expressed as a percentage (%).
10(%) - Dark Current-Max
Dark Current-Max refers to the maximum amount of current that flows through a photodetector or similar electronic component in the absence of incident light. It is an important parameter that indicates the level of noise in a sensor and is typically measured in terms of amperes or milliamperes. High dark current values can lead to decreased signal-to-noise ratio, affecting the overall sensitivity and performance of the device in low-light conditions. Understanding this parameter is crucial for applications that require precise light detection and measurement.
100 - Standard
In the context of electronic components, the term "Standard" typically refers to a set of specifications or guidelines that define the characteristics and performance of a particular component. These standards are established by organizations such as the International Electrotechnical Commission (IEC), the Institute of Electrical and Electronics Engineers (IEEE), or the Electronic Industries Alliance (EIA).Standard parameters for electronic components may include electrical characteristics such as voltage ratings, current ratings, frequency response, impedance, and tolerance levels. They may also cover physical attributes like size, shape, material composition, and environmental operating conditions.Adhering to established standards ensures compatibility, reliability, and interoperability of electronic components across different manufacturers and applications. It helps in designing and manufacturing electronic systems that meet industry requirements and quality standards.
CSA/UL/VDE