

NEC NDL7001
Manufacturer No:
NDL7001
Tiny WHSLManufacturer:
Utmel No:
1712-NDL7001
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NDL7001 datasheet pdf and Integrated Circuits (ICs) product details from NEC stock available at Utmel
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- TypeParameter
- Surface Mount
having leads that are designed to be soldered on the side of a circuit board that the body of the component is mounted on.
NO - Mounting Feature
a process by which the operating system makes files and directories on a storage device (such as hard drive, CD-ROM, or network share) available for users to access via the computer's file system.
THROUGH HOLE MOUNT - Manufacturer Part NumberNDL7001
- Part Life Cycle CodeObsolete
- Ihs ManufacturerNEC ELECTRONICS AMERICA INC
- Risk Rank5.84
- Operating Temperature-Max85 °C
- Operating Temperature-Min-40 °C
- Supply Voltage-Max1.3 V
- Supply Voltage-Nom1.1 V
- Reach Compliance Code
Reach Compliance Code refers to a designation indicating that electronic components meet the requirements set by the Registration, Evaluation, Authorization, and Restriction of Chemicals (REACH) regulation in the European Union. It signifies that the manufacturer has assessed and managed the chemical substances within the components to ensure safety and environmental protection. This code is vital for compliance with regulations aimed at minimizing risks associated with hazardous substances in electronic products.
unknown - Body Length or Diameter
Body length or diameter in electronic components refers to the physical dimensions of a component's housing, typically measured in millimeters or inches. It indicates the size of the component that affects its fit within a circuit board or system. This parameter is crucial for ensuring compatibility with the design and mounting of electronic devices. It can impact heat dissipation, electrical performance, and overall assembly efficiency. Accurate measurement of body length or diameter is essential for proper component selection and placement in electronic applications.
4.8 mm - Fall Time-Max
Fall Time-Max is a parameter used to describe the time it takes for a signal to transition from a high level to a low level in electronic components such as transistors, diodes, and integrated circuits. It is typically measured in nanoseconds or microseconds and is an important characteristic that affects the overall performance of the component. A shorter fall time indicates faster switching speeds and can be crucial in applications where high-speed signal processing is required. Designers often consider the fall time-max specification when selecting components for circuits that require precise timing and fast response times.
0.3 ns - Number of Channels1
- Rise Time
In electronics, when describing a voltage or current step function, rise time is the time taken by a signal to change from a specified low value to a specified high value.
0.2 ns - Fiber Optic Device Type
Fiber Optic Device Type refers to the specific type or category of electronic components that are designed to transmit or receive data using fiber optic technology. Fiber optic devices are used to convert electrical signals into light signals for transmission over optical fibers, which offer high-speed data transfer and long-distance communication capabilities. Common types of fiber optic devices include transceivers, connectors, amplifiers, splitters, and switches, each serving a specific function in a fiber optic network. Understanding the fiber optic device type is crucial for selecting the appropriate components for building or maintaining fiber optic communication systems.
LASER DIODE EMITTER - Operating Wavelength-Nom
The parameter "Operating Wavelength-Nom" in electronic components refers to the nominal or average wavelength at which the component is designed to operate optimally. This parameter is particularly important in components used in optical systems, such as lasers, photodetectors, and optical filters. The operating wavelength is a key characteristic that determines the performance and compatibility of the component within a specific optical system or network. It is crucial for ensuring that the component can effectively transmit, receive, or manipulate light signals at the desired wavelength range. Manufacturers typically specify the operating wavelength range or nominal wavelength to help users select the appropriate components for their optical applications.
1310 nm - Supply Current
Supply current refers to the input current to an LDO regulator at no load, which flows inside the IC in order to operate. The power consumption of an LDO regulator can be calculated as. (Input Voltage) x (Consumption current of IC itself) + (Input Voltage - Output Voltage) x (Load current)
0.6 mA - Operating Wavelength-Max
The parameter "Operating Wavelength-Max" in electronic components refers to the maximum wavelength of light or electromagnetic radiation that the component can effectively operate with. This specification is particularly important for components used in optical systems, such as photodetectors, optical fibers, and lasers. It indicates the range of wavelengths within which the component can function optimally without experiencing performance degradation or damage. Understanding the operating wavelength-max of a component is crucial for ensuring compatibility and reliable operation within a specific wavelength range in optical applications.
1350 nm - Operating Wavelength-Min
The parameter "Operating Wavelength-Min" in electronic components refers to the minimum wavelength of light or electromagnetic radiation at which the component is designed to operate effectively. This specification is particularly important for components used in optical systems, such as photodetectors, optical filters, and fiber optic components. The operating wavelength range determines the specific range of light frequencies that the component can detect, transmit, or manipulate. It is crucial to ensure that the operating wavelength of the component matches the wavelength of the light source or signal being used to achieve optimal performance and reliability in the system.
1270 nm - Spectral Width
Spectral width in electronic components refers to the range of frequencies over which the component can effectively operate or respond. It is a measure of the bandwidth or frequency range within which the component can function optimally without significant loss or distortion. A wider spectral width indicates that the component can handle a broader range of frequencies, making it more versatile in various applications. Spectral width is an important parameter to consider when designing or selecting electronic components for specific tasks, as it directly impacts the component's performance and compatibility with different signal frequencies.
1 nm - Threshold Current-Min
The parameter "Threshold Current-Min" in electronic components refers to the minimum current required for the component to start functioning or operating. It is a critical specification that indicates the point at which the component transitions from an off state to an on state. This threshold current value ensures that the component is activated and able to perform its intended function reliably. It is important to consider this parameter when designing circuits to ensure proper functionality and performance of the electronic component.
30 mA - Body Height
In electronic components, "Body Height" refers to the vertical dimension of the component's physical body or package. It is the measurement from the bottom of the component to the top, excluding any leads or terminals. Body Height is an important parameter to consider when designing circuit boards or enclosures to ensure proper fit and clearance. It is typically specified in datasheets or technical drawings provided by the component manufacturer. Understanding the Body Height of electronic components is crucial for proper placement and integration within a circuit or system.
3.3 mm