HMC856LC5TR Allicdata Electronics
Allicdata Part #:

1127-1240-2-ND

Manufacturer Part#:

HMC856LC5TR

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Analog Devices Inc.
Short Description: IC DELAY LINE 100PS 32SMT
More Detail: Delay Line IC Programmable 100ps 32-TFCQFN Exposed...
DataSheet: HMC856LC5TR datasheetHMC856LC5TR Datasheet/PDF
Quantity: 1000
Stock 1000Can Ship Immediately
Specifications
Series: --
Packaging: Tape & Reel (TR) 
Part Status: Active
Function: Programmable
Delay to 1st Tap: --
Tap Increment: 3ps
Available Total Delays: 100ps
Number of Independent Delays: 1
Voltage - Supply: -2.9 V ~ -3.7 V
Operating Temperature: -40°C ~ 85°C
Mounting Type: Surface Mount
Package / Case: 32-TFCQFN Exposed Pad
Supplier Device Package: 32-LCC (5x5)
Base Part Number: HMC856
Description

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HMC856LC5TR is a delay line from Hittite Microwave Corporation that is designed to provide low harmonic distortion and low group delay variably. It operates over the frequency range of 4.4 to 6.4GHz with a maximum adjustable delay between 0.5 to 16 nanoseconds (ns). This delay line features a high linearity and low noise with high power output and low power consumption. In addition, HMC856LC5TR has a high level of integration and integrated calibration, which reduces external components, board space and power consumption. As a result, this device is an ideal choice for a wide range of timing and delay applications.

The HMC856LC5TR is a passive device, which means that the input signal is delayed in proportion to the time of day. The output signal is delayed in relation to the clock signal input. The input signal is set to a specific frequency, and the delay is set to reduce any harmonics from the output signal. Additionally, the delay time is proportional to the value of the voltage or current. This device is a single-stage delay line, so the output signal is delayed for a single delay interval.

HMC856LC5TR has been designed for a wide range of applications in industrial, commercial, military, aerospace and telecommunications. In telecommunications, it can be used for signal distribution applications such as multiplexers and analog to digital converters. It can be used in building intrusion alarms and CCTV surveillance monitoring systems. In the industrial sector, HMC856LC5TR can be used as a timing signal generator in PID control loops, signal synchronization in SCADA systems, and synchronization in signal processing. Additionally, it can be used in medical applications such as in MRI scanners and signal conditioning equipment. In addition, it can be used in avionics and aerospace applications, such as in radar, satellite and aircraft navigation systems.

The working principle of HMC856LC5TR is based on a doublet transmission line. The input signal is input at a central point and then propagated in opposite directions along the transmission line. At the end of the transmission line, the input signal is split into two signals with different phase delays. One of the signals is 90° out of phase with the other signal. The different propagation delays create a time delay between the two signals. This time delay is known as “group delay” and is proportional to the length of the transmission line.

The HMC856LC5TR contains several components such as a balun, delay line and amplifier. The input signal is applied to the balun, which provides better impedance matching between the signal source and transmission line. This improves the signal power and minimizes reflections. The signal is then transmitted along the transmission line, where it is split into two signals with different phase delays. The amplified signal is sent to the delay line, where it is amplified and delayed. Finally, the delay line is connected to the output stage, where the delayed signal is output to the receiver.

In summary, HMC856LC5TR is a doublet transmission line that offers high linearity and low group delay variation from 4.4 to 6.4GHz. It contains several components such as a balun, delay line and amplifier which are used to minimize reflections and improve power output. The device is ideal for a wide range of timing and delay applications in industrial, commercial, military, aerospace and telecommunications. It is a passive device, which means that the output signal is delayed in proportion to the value of the voltage or current applied to the input of the device.

The specific data is subject to PDF, and the above content is for reference

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