《電子技術(shù)應用》
您所在的位置:首頁 > 電源技術(shù) > 解決方案 > IDT90E36三相電能表設(shè)計方案

IDT90E36三相電能表設(shè)計方案

2012-04-23
作者:IDT公司

IDT公司的IDT90E32/36三相電能計量芯片,集成了7個單獨的2階sigma-delta ADC,可實現(xiàn)三相四線系統(tǒng)中的三個電壓通路(A,B和C相)和四個電流通路(A,B,C相和中線),和標準IEC62052-11, IEC62053-22 and IEC62053-23, ANSI C12.1與ANSI C12.20兼容,動態(tài)范圍6000:1時的有功功率精度±0.1%,無功功率精度±0.2%,片內(nèi)的基準電壓溫度系數(shù)6 ppm/ ℃,主要用于0.5S 級或1級三相四線(Y0)和三相三線(Y或Δ)電表,數(shù)據(jù)采集終端,電源監(jiān)視儀表等.本文介紹了90E36主要特性,方框圖以及三相四線電流互感器(CT)電表電路圖和材料清單, 三相四線Rogowski線圈電表電路圖和材料清單, 三相三線電表電路圖和材料清單.

The 90E36 is a poly-phase high performance wide-dynamic range metering IC. The 90E36 incorporates 7 independent 2nd order sigma-delta ADCs, which could be employed in three voltage channels (phase A, B and C) and four current channels (phase A, B, C and neutral line) in a typical three-phase four-wire system.

The 90E36 has an embedded DSP which executes calculation of active energy, reactive energy, apparent energy, fundamental and harmonic active energy over ADC signal and on-chip reference voltage.

The DSP also calculates measurement parameters such as voltage and current RMS value as well as mean active/reactive/apparent power.

A four-wire SPI interface is provided between the 90E36 and the external microcontroller. In addition, DMA mode can be used for 7-channel ADC raw data access, offering more flexibility in system application.

The 90E36 is suitable for poly-phase multi-function meters which could measure active/reactive/apparent energy and fundamental/harmonic energy either through four independent energy pulse outputs CF1/CF2/CF3/CF4 or through the corresponding registers.

With the on-chip THD and DFT engine, all phases’ THD and DFT results can be directly accessed through related registers, thus simplifying hardware design in Data Acquisition Terminals.

IDT’s proprietary ADC and auto-temperature compensation technology for reference voltage ensure the 90E36’s long-term stability over variations in grid and ambient environment conditions.

90E36主要特性:

Metering Features

• Metering features fully in compliance with the requirements of IEC62052-11, IEC62053-22 and IEC62053-23, ANSI C12.1 and ANSI C12.20; applicable in class 0.5S or class 1 poly-phase watt-hour meter or class 2 poly-phase var-hour meter.

• Accuracy of ±0.1% for active energy and ±0.2% for reactive energy over the dynamic range of 6000:1.

• Temperature coefficient is 6 ppm/ ℃ (typical) for on-chip reference voltage.

• Single-point calibration on each phase over the whole dynamic ange for active energy; no calibration needed for reactive/ apparent energy.

• ±1 ℃ (typical) temperature sensor accuracy.

• Electrical parameters measurement: less than ±0.5% fiducial error for Vrms, Irms, mean active/ reactive/ apparent power, frequency, power factor and phase angle.

• Active (forward/reverse), reactive (forward/reverse), apparent energy with independent energy registers. Active/ reactive/ apparent energy can be output by pulse or read through energy registers to adapt to different applications.

• Programmable startup and no-load power threshold, special designed of startup and no-load circuits to eliminate crosstalk among phases achieving better accuracy especially at low power conditions.

• Dedicated ADC and different gains for phase A/B/C and Neutral line current sampling circuits. Current sampled over current transformer (CT) or Rogowski coil (di/dt coil); phase A/B/C voltage sampled over resistor divider network or potential transformer (PT).

• Programmable power modes: Normal mode (N mode), Idle mode (I mode), Detection mode (D mode) and Partial Measurement mode (M mode).

• Fundamental (CF3, 0.2%) and harmonic (CF4, 1%) active energy with dedicated energy and power registers.

• Total Harmonic Distortion (THD) and Discrete Fourier Transform (DFT) functions for 2 ~ 32 order harmonic component. THD and DFT results available in SPI accessible registers. Both voltage and current of all phases processed within the same time period.

• Event detection: sag, phase loss, reverse voltage/ current phase sequence, reverse flow, calculated neutral line current INC overcurrent sampled neutral line current INS overcurrent and THD+N over-threshold.

Other Features

• 3.3V single power supply. Operating voltage range: 2.8V~3.6V. Metering accuracy guaranteed within 3.0V~3.6V.

• Four-wire SPI interface with Direct Memory Access (DMA) mode to stream out 7-channel ADC raw data.

• Parameter diagnosis function and programmable interrupt output of the IRQ interrupt signals and the WarnOut signal.

• Programmable voltage sag detection and zero-crossing output.

• CF1/CF2/CF3/CF4 output active/ reactive/ apparent energy pulses and fundamental/ harmonic energy pulses respectively.

• Crystal oscillator frequency: 16.384 MHz. On-chip two capacitors and no need of external capacitors.

• TQFP48 package.

• Operating temperature: -40 ℃ ~ +85 ℃ .

90E36應用:

• Poly-phase energy meters of class 0.5S and class 1 which are used in three-phase four-wire (3P4W, Y0) or three-phase threewire (3P3W, Y or Δ) systems.

• Data Acquisition Terminal.

• Power monitoring instruments which need to measure voltage, current, THD, DFT, mean power, etc.

圖1.90E36方框圖

本文檔介紹了采用IDT90E32/36 三相電能計量芯片設(shè)計三相電能表的應用。

90E32/36 可用于0.5S 級或1 級三相有功電能表和無功電能表的設(shè)計,并可支持三相四線(3P4W) 或三相三線(3P3W)的接線方式,90E36 還可用于諧波表的設(shè)計。

芯片采用3.3V 單一電源供電。在典型的3P4W 設(shè)計中,需要三個獨立的變壓器進行供電。交流電源經(jīng)整流和穩(wěn)壓后輸出3.3V 到芯片數(shù)字電源DVDD,芯片模擬電源AVDD 應直接與DVDD 連接。

芯片內(nèi)部具有上電復位電路,外部RESET 引腳可以接一個10kΩ 電阻到DVDD 和一個0.1μF 電容到GND。芯片具有高穩(wěn)定性的片上基準電源,Vref 引腳需要外接10μF 和0.1μF 兩個電容。

芯片采用16.384MHz 頻率做為系統(tǒng)工作頻率,芯片內(nèi)建了晶體振蕩電路和10pF 的匹配電容,應用時只需要在OSCI 和 OSCO 引腳接一個16.384MHz 晶體。

90E32 芯片提供三路電壓(V1、V2、V3) 和三路電流(I1、I2、I3)的A/D采樣,90E36還額外多提供一路電流采樣(I4)。

電流采樣中的I1 和I3 可以通過設(shè)置進行互換,以適應不同的PCB 設(shè)計。

芯片提供了一個四線的SPI 接口(CS,SCLK,SDI,SDO)與外部MCU 連接,MCU 可通過SPI 接口對芯片進行配置和讀寫寄存器。90E36 還可支持Master 模式的SPI,即DMA 模式。

在DMA 模式下,芯片會以高達1800kbps 的速率將A/D 的原始采樣數(shù)據(jù)通過Master SPI 輸出給外部微處理器進行處理。芯片提供了四個電能脈沖輸出引腳:有功電能脈沖CF1、無功電能脈沖CF2( 也可配置成全波視在電能脈沖輸出)、基波有功電能脈沖CF3、諧波有功電能脈沖CF4,可用于芯片電能計量的校準,同時也可以將脈沖信號連接到MCU 進行電能累計。

芯片提供了三個過零信號輸出引腳ZX0、ZX1、ZX2,可設(shè)置不同的電壓或電流信號做為過零判斷。

芯片提供了IRQ0、IRQ1、WarnOut 輸出引腳,分別輸出不同等級的中斷和報警信號。

三相四線(3P4W) 應用:

圖2.90E36三相四線電流互感器(CT)電表電路圖
三相四線電流互感器(CT)電表材料清單:


圖3.90E36三相四線Rogowski線圈電表電路圖
三相四線Rogowski線圈電表材料清單:


圖4.90E36三相三線電表電路圖
三相三線電表材料清單(BOM):

詳情請見:
http://www.idt.com/sites/default/files/documents/IDT_90E36_DST_20111209.pdf

http://www.idt.com/sites/default/files/documents/IDT_90E3xAN644Chn_APN_20111216_Zh.pdf



本站內(nèi)容除特別聲明的原創(chuàng)文章之外,轉(zhuǎn)載內(nèi)容只為傳遞更多信息,并不代表本網(wǎng)站贊同其觀點。轉(zhuǎn)載的所有的文章、圖片、音/視頻文件等資料的版權(quán)歸版權(quán)所有權(quán)人所有。本站采用的非本站原創(chuàng)文章及圖片等內(nèi)容無法一一聯(lián)系確認版權(quán)者。如涉及作品內(nèi)容、版權(quán)和其它問題,請及時通過電子郵件或電話通知我們,以便迅速采取適當措施,避免給雙方造成不必要的經(jīng)濟損失。聯(lián)系電話:010-82306118;郵箱:aet@chinaaet.com。