Instrumentation · Engineering · Package · PLC
0755-8222 1901 sales@ainstru.com

MAG 3100 P 电磁流量计传感器

MAG 3100 P 电磁流量计传感器

电磁流量计传感器

Siemens MAG
SITRANS F M MAG 3100 P is designed to meet the most common technical specifications in the chemical and process industries.

优势

  • DN 15 … DN 300 (½" … 12")
  • 生产周期短
  • 化学工业和过程工业中最为常用的流量计带有 PTFE/PFA 内衬和哈氏合金电极。
  • 优异的抗化学腐蚀性
  • 用于危险区域中的全部全球认证:
    • ATEX, FM, CSA, IEcEx
    • 24 V 和 115/230 V Ex,一体型和分体型
    • 本安型 ia 模拟量输出
  • 丰富的自诊断功能,出错指示和故障记录
  • 全焊接结构增强了仪表的耐磨性,适用于条件苛刻的应用环境。
  • SENSORPROM 单元自动更新设置参数,易于调试
  • MAG 6000 I,完全符合 NAMUR 要求
    符合 NE 21, NE 32, NE 43, NE 53 和 NE70

应用

SITRANS F M 电磁流量传感器主要应用于以下的领域:

  • 化学工业
  • 过程工业
  • 制浆和造纸
  • 工业废水

设计

  • 可实现紧凑或分体安装
  • 变送器,简便“即插即用”型,应用灵活
  • 高温传感器,应用温度最高可达150 ℃
  • 满足 EEC 标准:PED,EN 1092-1法兰和 CRN 的 97/23/EC 压力指标
  • 嵌入长度符合 ISO 13359 标准
  • 现场升级到标准传感器的IP68/NEMA 6P。

操作模式

流量测量原理基于法拉第电磁感应定律,传感器将流量信号转换成正比于流体流速的电压信号。

集成

完整的流量计由流量传感器和相关 MAG 5000,6000或6000 I变送器组成。

灵活的通讯理念USM II简化了流量计与众多不同总线系统的集成和升级。这些总线系统包括:HART, FOUNDATION Fieldbus H1, DeviceNet, PROFIBUS DP 以及 PA, Modbus RTU/RS 485。

压力 - 温度曲线符合 EN (DIN) 法兰,材质 A 105 碳钢

压力-温度曲线符合 ANSI B16.5 法兰

注:压力 - 温度曲线只用来辅助系统选型。不对信息的状确性负责。关于准确数据,请参见 PED 需求。

技术规范

版本

MAG 3100 P

产品特性

面向化学工业和过程工业(包括在快速转运计划中

公称规格

  • PTFE:DN 15 … 300 (½" … 12")
  • PFA:DN 15 … 150 (½" … 6")

测量原理

电磁感应

励磁频率(电源:50 Hz/60 Hz)

  • DN 15 … 65 (½" … 2½"):12.5 Hz/15 Hz
  • DN 80 … 150 (3" … 6"):6.25 Hz/7.5 Hz
  • DN 200 … 300 (8" … 12"):3.125 Hz/3.75 Hz

过程连接

 

法兰

EN 1092 -1,凸面1)(EN 1092-1, DIN 2501 & BS 4504 具有同样的匹配规格)

  • DN 15 … 50 (½" … 2"):PN 40 (580 psi)
  • DN 65 … 300 (2½" … 12"):PN 16 (232 psi)
  • DN 200 … 300 (8" … 12"):PN 10 (145 psi)

ANSI B16.5 (~BS 1560),凸面

  • ½" … 12":等级 150 (20 bar (290 psi))

额定工作条件

 

环境温度(环境也依赖于线性特征)

 
  • 标准传感器

-40 … +100 °C (-40 … +212 °F)

  • 防爆传感器

-20 … +60 °C (-4 … +140 °F)

  • 紧凑型变送器
 
  • MAG 5000/6000

-20 … +60 °C (-4 … +140 °F)

  • MAG 6000 I

-20 … +60 °C (-4 … +140 °F)

  • MAG 6000 I Ex

-20 … +60 °C (-4 … +140 °F)

工作压力 [abs.bar] (最大工作压力随工作温度的升高和选用不锈钢法兰而降低)

  • PTFE 特氟隆
  • DN 15 … 300 (½" … 12"):0.3 … 40 bar (4 … 580 psi)
  • PFA
  • DN 15 … 150 (½" … 6"):真空 0.02 … 50 bar (0.29 … 725 psi)

外壳压力等级

IP67 符合 EN 60529/NEMA 4X/6 标准 (1 mH2O,30 min)

选项:IP68 ~ EN 60529/NEMA 6P,10 mH2O 连续(非防爆)

3 m/s 时压损

同直管

压力测试

1.5 倍额定压力

机械负载(振动)

  • 18 – 1000 Hz 随机,x、y、z 各个方向,2 小时,符合 EN 60068-2-36
  • 传感器:3.17 g RMS
  • 传感器加一体型 MAG 5000/6000 变送器:3.17 g RMS
  • 传感器加一体型 MAG 6000 I/6000 I Ex 变送器:1.14 g RMS

介质温度

  • PTFE -20 … +130 °C (-4 … +266 °F)
  • PFA -20 … +150 °C (-4 … +302 °F)

EMC

2014/30/EU

设计

 

重量

参见外形尺寸图

法兰和外壳材料

碳钢 ASTM A 105,带有抗腐蚀涂层(腐蚀性类别 C4,根据 ISO 12944-2)

电极材质

PTFE:哈氏合金 C276/2.4819

PFA:哈氏合金 C22/2.4602

接地电极材质

PTFE:无接地电极

PFA:哈氏合金

接线盒(分体型)

  • 标准玻璃纤维强化聚酰胺
  • 可选不锈钢 AISI 316/1.4436
  • 防爆传感器:不锈钢 AISI 316/1.4436,

电缆进线口

  • 分体式安装 2 x M20 或 2 x ½" NPT
  • 一体式安装
  • MAG 5000/MAG 6000:4 x M20 或 4 x ½″NPT
  • MAG 6000 I:2 x M25 或 2 x ½" NPT(用于电源/输出)
  • MAG 6000 I Ex de:2 x M25 或 2 x ½" NPT(用于电源/输出)

认证和批准

 

校准

 
  • 标准加工校准

零点,2 x 25 % 和 2 x 90 %

危险区域

 
  • 防爆传感器配有或远程版本 MAG 6000 I Ex 的一体式变送器
  • ATEX, FM, CSA, IECEx, EAC Ex, NEPSI
  • 区域 1 Ex d e ia IIC T6 Gb
  • ATEX, FM, CSA, IECEx
  • 区域 21 Ex tD A21 IP67
  • FM
  • XP IS I 类,1 区,A,B,C,D 组2)
  • DIP II+III 类,1 区,E,F,G 组2)
  • 标准传感器带/不带 MAG 5000/6000/6000 I
  • FM
  • NI I 类,2 区,A,B,C,D 组
  • NI I 类,2 区,IIC 组

压力设备

PED, CRN

其他

  • EAC(俄罗斯、白俄罗斯、哈萨克斯坦)
  • KCC(韩国)


 

1) DN ≤ 600 类型 01 (SORF);DN > 600 类型 11 (WNRF)

2) 仅为紧凑版本

尺寸图

MAG 3100 P 传感器,带一体式或分体式变送器

尺寸单位:[mm]

公制

DN

A1)

A1

A2

B

D1

L2)

TE3)

TF3)

重量 4)

           

EN 1092-1-201

ANSI 16.5

     
           

PN 10

PN 16

PN 40

等级 150

     

[mm]

[mm]

[mm]

[mm]

[mm]

[mm]

[mm]

[mm]

[mm]

[mm]

[mm]

[mm]

[kg]

15

187

341

338

59

104

-

-

200

200

6

2

4

25

187

341

338

59

104

-

-

200

200

6

2

5

40

197

351

348

82

124

-

-

200

200

6

2

8

50

205

359

356

72

139

-

-

200

200

6

2

9

65

212

369

366

72

154

-

200/-

-

200

6

2

11

80

222

376

373

72

174

-

200/-

-

2725)

6

2

12

100

242

396

393

85

214

-

250/-

-

250

6

2

16

125

255

409

406

85

239

-

250/-

-

250

6

2

19

150

276

430

427

85

282

-

300/-

-

300

6

2

27

200

304

458

455

137

338

350

350/-

-

350

8

2

40

250

332

486

483

157

393

450

450/-

-

450

8

2

60

300

357

511

508

157

444

500

500/-

-

500

8

2

80


 

1) 当使用不锈钢接线盒时,长度缩短 14.5 mm(防爆、耐高温版)

2) 使用接地环时,法兰厚度及垫圈厚度要加到嵌入长度上。

3) TE = 接地环类型 E,TF = 接地环,扁环

4) 所指重量是在PN 16 时,不加变送器的重量

5) 不符合标准 ISO 13359

- 表示无此型号

D= 法兰外径,见法兰表

MAG 3100 P 传感器,带一体式或分体式变送器

英制

DN

A1)

A1

A2

B

D1

L2)

TE3)

TF3)

重量 4)

           

EN 1092-1-201

ANSI 16.5

     
           

PN 10

PN 16

PN 40

等级 150

     

[inch]

[inch]

[inch]

[inch]

[inch]

[inch]

[inch]

[inch]

[inch]

[inch]

[inch]

[inch]

[lbs]

½

7.36

13.4

13.34

2.32

4.09

-

-

7.87

7.87

0.24

0.08

9

1

7.36

13.4

13.34

2.32

4.09

-

-

7.87

7.87

0.24

0.08

11

7.76

13.8

13.74

3.23

4.88

-

-

7.87

7.87

0.24

0.08

17

2

8.07

14.1

14.04

2.83

5.47

-

-

7.87

7.87

0.24

0.08

20

8.35

14.4

14.34

2.83

6.06

-

7.87/-

-

7.87

0.24

0.08

24

3

8.74

14.8

14.74

2.83

6.85

-

7.87/-

-

10.715)

0.24

0.08

26

4

9.53

15.6

15.54

3.35

8.43

-

9.84/-

-

9.84

0.24

0.08

35

5

10.04

16.1

16.04

3.35

9.41

-

9.84/-

-

9.84

0.24

0.08

42

6

10.87

16.9

16.84

3.35

11.10

-

11.81/-

-

11.81

0.24

0.08

60

8

11.97

18.0

17.94

5.39

13.31

13.78

13.78/-

-

13.78

0.31

0.08

88

10

13.07

19.1

19.04

6.18

15.47

17.72

17.72/-

-

17.72

0.31

0.08

132

12

14.05

20.1

20.04

6.18

17.48

19.69

19.69/-

-

19.69

0.31

0.08

176

1) 当使用不锈钢接线盒时,长度缩短 0.571 英尺(防爆、耐高温版)

2) 使用接地环时,法兰厚度及垫圈厚度要加到嵌入长度上。

3) TE = 接地环类型 E,TF = 接地环,扁环

4) 不带变送器时适用于 ANSI 150 的重量。

5) 不符合标准 ISO 13359

D= 法兰外径,见法兰表

来源:西门子网站公开信息

Municipal Wastewater Treatment

Municipal Wastewater Treatment — Wastewater Treatment Plant · Electromagnetic Flow Meter Application Case

Project Background

Municipal Wastewater Treatment customers at the Wastewater Treatment Plant stage have long faced the challenge of insufficient accuracy in effluent quality monitoring and instruments prone to contamination causing data drift, affecting compliance discharge, placing higher demands on the stability and measurement accuracy of Electromagnetic Flow Meter.

Solution

Based on the on-site conditions, the Ainstru technical team selected suitable Electromagnetic Flow Meter for the customer and delivered one-stop service covering selection, installation, commissioning and tuning.

Results

  • Measurement accuracy and response speed significantly improved, with stable and reliable data;
  • Instruments adapt to complex Municipal Wastewater Treatment conditions, greatly reducing maintenance;
  • Helping customers achieve continuous online monitoring and cost reduction, highly recognized by customers.
Food & Beverage

Food & Beverage — Food Production Line · Electromagnetic Flow Meter Application Case

Project Background

Food & Beverage customers at the Food Production Line stage have long faced the challenge of high hygienic measurement requirements, with inline instruments needing to withstand CIP/SIP cleaning while maintaining stable accuracy, placing higher demands on the stability and measurement accuracy of Electromagnetic Flow Meter.

Solution

Based on the on-site conditions, the Ainstru technical team selected suitable Electromagnetic Flow Meter for the customer and delivered one-stop service covering selection, installation, commissioning and tuning.

Results

  • Measurement accuracy and response speed significantly improved, with stable and reliable data;
  • Instruments adapt to complex Food & Beverage conditions, greatly reducing maintenance;
  • Helping customers achieve continuous online monitoring and cost reduction, highly recognized by customers.
Chemical & Pharmaceutical

Chemical & Pharmaceutical — Reactors and Storage Tanks · Electromagnetic Flow Meter Application Case

Project Background

Chemical & Pharmaceutical customers at the Reactors and Storage Tanks stage have long faced the challenge of highly corrosive media and complex conditions, requiring corrosion-resistant and explosion-proof instruments, placing higher demands on the stability and measurement accuracy of Electromagnetic Flow Meter.

Solution

Based on the on-site conditions, the Ainstru technical team selected suitable Electromagnetic Flow Meter for the customer and delivered one-stop service covering selection, installation, commissioning and tuning.

Results

  • Measurement accuracy and response speed significantly improved, with stable and reliable data;
  • Instruments adapt to complex Chemical & Pharmaceutical conditions, greatly reducing maintenance;
  • Helping customers achieve continuous online monitoring and cost reduction, highly recognized by customers.
Power & Energy

Power & Energy — Power Plant Boiler and Turbine · Electromagnetic Flow Meter Application Case

Project Background

Power & Energy customers at the Power Plant Boiler and Turbine stage have long faced the challenge of unstable measurement under high temperature and pressure, with high maintenance and downtime costs, placing higher demands on the stability and measurement accuracy of Electromagnetic Flow Meter.

Solution

Based on the on-site conditions, the Ainstru technical team selected suitable Electromagnetic Flow Meter for the customer and delivered one-stop service covering selection, installation, commissioning and tuning.

Results

  • Measurement accuracy and response speed significantly improved, with stable and reliable data;
  • Instruments adapt to complex Power & Energy conditions, greatly reducing maintenance;
  • Helping customers achieve continuous online monitoring and cost reduction, highly recognized by customers.