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LTC1968CMS8 PBF RMS-to-DC Converter: CAD Models, Datasheet, Features [Video&FAQ]

  • Contents

Catalog

Product Overview

LTC1968CMS8 PBF Related Video Introduction

LTC1968CMS8 PBF CAD Models

LTC1968CMS8 PBF Pin Configuration

LTC1968CMS8 PBF Equivalent Analog Input Circuit

LTC1968CMS8 PBF Simplified Schematic

LTC1968CMS8 PBF Features

LTC1968CMS8 PBF Applications

LTC1968CMS8 PBF Package Description

LTC1968CMS8 PBF Datasheet

LTC1968CMS8 PBF Specifications

LTC1968CMS8 PBF Manufacturer

Using Warning

LTC1968CMS8 PBF FAQ

 

Product Overview

The LTC®1968 is a true RMS-to-DC converter that uses an innovative delta-sigma computational technique. The benefits of the LTC1968 proprietary architecture, when compared to conventional log-antilog RMS-to-DC converters, are higher linearity and accuracy, bandwidth independent of amplitude and improved temperature behavior. 

 

The LTC1968 operates with single-ended or differential input signals and accurately supports crest factors up to 4. Common mode input range is rail-to-rail. Differential input range is 1VPEAK, and offers unprecedented linearity. The LTC1968 allows hassle-free system calibration at any input voltage.

 

The LTC1968 has a rail-to-rail output with a separate output reference pin providing flexible level shifting; it operates on a single power supply from 4.5V to 5.5V. A low power shutdown mode reduces supply current to 0.1µA.

 

The LTC1968 is packaged in the space-saving MSOP package, which is ideal for portable applications.

 

LTC1968CMS8 PBF Video Description: The video will help you to learn the basics about RMS value.

The RMS value is an important term in electrical engineering. But, what is the exact meaning of RMS value? And why it is so much important? Well, if you have the same questions, you have clicked the right Video. To get the easiest explanation of what is RMS value, watch the video.

 

LTC1968CMS8 PBF CAD Models

LTC1968CMS8 PBF PCB Symbol

Figure: LTC1968CMS8 PBF PCB Symbol

 

 

LTC1968CMS8 PBF Footprint

Figure: LTC1968CMS8 PBF Footprint

 

 

 LTC1968CMS8 PBF 3D Models

Figure: LTC1968CMS8 PBF 3D Models

 

LTC1968CMS8 PBF Pin Configuration

 LTC1968CMS8 PBF Pin Configuration

Figure: LTC1968CMS8 PBF Pin Configuration

Pin Functions

GND (Pin 1): Ground. The power return pin.

IN1 (Pin 2): Differential Input. DC coupled (polarity is irrelevant).

IN2 (Pin 3): Differential Input. DC coupled (polarity is irrelevant).

VOUT (Pin 5): Output Voltage. Pin 5 is high impedance. The RMS averaging is accomplished with a single shunt capacitor from Pin 5 to OUT RTN. The transfer function is given by:

OUT RTN (Pin 6): Output Return. The output voltage is created relative to this pin. The VOUT and OUT RTN pins are not balanced and this pin should be tied to a low impedance, both AC and DC. Although Pin 6 is often tied to GND, it can also be tied to any arbitrary voltage: GND < OUT RTN < (V+ – Max Output)

V+ (Pin 7): Positive Voltage Supply. 4.5V to 5.5V.

ENABLE (Pin 8): An Active-Low Enable Input. LTC1968 is debiased if open circuited or driven to V+. For normal operation, pull to GND.

 

LTC1968CMS8 PBF Equivalent Analog Input Circuit

LTC1968CMS8 PBF Equivalent Analog Input Circuit

Figure: LTC1968CMS8 PBF Equivalent Analog Input Circuit

 

LTC1968CMS8 PBF Simplified Schematic

LTC1968CMS8 PBF Simplified Schematic

Figure: LTC1968CMS8 PBF Simplified Schematic

 

LTC1968CMS8 PBF Features

■ High Linearity:

0.02% Linearity Allows Simple System Calibration

■ Wide Input Bandwidth:

Bandwidth to 1% Additional Gain Error: 500kHz

Bandwidth to 0.1% Additional Gain Error: 150kHz

3dB Bandwidth Independent of Input Voltage

Amplitude

■ No-Hassle Simplicity:

True RMS-DC Conversion with Only One External Capacitor

Delta Sigma Conversion Technology

■ Ultralow Shutdown Current:

0.1µA

■ Flexible Inputs:

Differential or Single Ended

Rail-to-Rail Common Mode Voltage Range

Up to 1VPEAK Differential Voltage

■ Flexible Output:

Rail-to-Rail Output

Separate Output Reference Pin Allows Level Shifting

■ Small Size:

Space Saving 8-Pin MSOP Package

 

LTC1968CMS8 PBF Applications

■ True RMS Digital Multimeters and Panel Meters

■ True RMS AC + DC Measurements

 

Typical Application

Single Supply RMS-to-DC Converter

Figure: Single Supply RMS-to-DC Converter

 

LTC1968CMS8 PBF Package Description

LTC1968CMS8 PBF Package Dimensions

Figure: LTC1968CMS8 PBF Package Dimensions

 

LTC1968CMS8 PBF Datasheet

You can download the datasheet from the link given below:

LTC1968CMS8 PBF Datasheet

 

LTC1968CMS8 PBF Specifications

Product Attribute Attribute Value
Manufacturer: Analog Devices Inc.
Product Category: Power Management Specialized - PMIC 
Series: LTC1968
Type: Converters
Mounting Style: SMD/SMT
Package / Case: MSOP-8
Output Current: 10 mA
Input Voltage Range: 4.5 V to 5.5 V
Output Voltage Range: 0 V to 5.5 V
Operating Temperature: 0~+70
Input Current: 2.4 mA
Packaging: Tube
Brand: Analog Devices
Operating Supply Current: 2.3 mA
Operating Supply Voltage: 4.5 V to 5.5 V
Product: PMIC
Product Type: Power Management Specialized - PMIC 
Factory Pack Quantity: 50
Subcategory: PMIC  - Power Management ICs
Unit Weight: 0.003527 oz

 

LTC1968CMS8 PBF Manufacturer

Analog Devices, Inc. (ADI), also known simply as Analog, is an American multinational semiconductor company specializing in data conversion, signal processing and power management technology, headquartered in Wilmington, Massachusetts. In 2012, Analog Devices led the worldwide data converter market with a 48.5% share, according to analyst firm Databeans.

 

Using Warning

Note: Please check their parameters and pin configuration before replacing them in your circuit.

 

LTC1968CMS8 PBF FAQ

What is an RMS-to-DC Converter?

RMS to DC converters (or RMS converter ICs) are devices that performs an RMS AC voltage signal to DC voltage signal conversion. They are used in applications where precision or low power measurements of AC signal levels are required. A true RMS to DC converter provides a more accurate reading.

 

What is rms value of DC signal?

The RMS value is the effective value of a varying voltage or current. It is the equivalent steady DC (constant) value which gives the same effect. For example, a lamp connected to a 6V RMS AC supply will shine with the same brightness when connected to a steady 6V DC supply.

 

How do you calculate RMS value?

Square each value, add up the squares (which are all positive) and divide by the number of samples to find the average square or mean square. Then take the square root of that. This is the root mean square (rms) average value.

 

PCB Symbol, Footprint & 3D Model

 

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