Communication-capable Circuit Breakers

WL Circuit Breaker

Complete List of Datasets

Datasets: addresses, number of registers and read/write access of each.

 

 

Starting

 

 

Padding

Read/

 

 

register

Number

Number of

byte

write

Dataset

Description

address

of registers

data bytes

required

access

0

NST 2000/S7 diagnostic information

0000h

2

4

-

Rd

1

NST 2000/S7 diagnostic information (includes DS0)

0100h

8

16

-

Rd

51

Main overview

3300h

119

238

-

Rd

60

Control waveform

3C00h

28

55

Yes

Rd/Wr

61

Diagnostic waveform

3D00h

27

54

-

Rd

62

Diagnostic waveform data channel A and B

3E00h

120

240

-

Rd

64

Diagnostic harmonics

4000h

66

131

Yes

Rd

68

Modules information overview

4400h

23

45

Yes

Rd/Wr

69

Control modules

4500h

22

43

Yes

Rd

72

Metering data: min./max. current, form factor, crest factor

4800h

118

236

-

Rd

73

Metering data: min./max. voltage

4900h

87

174

-

Rd

74

Metering data: min./max. power

4A00h

68

136

-

Rd

76

Metering data: min./max. frequency and THD

4C00h

46

92

-

Rd

77

Metering data: min./max. temperature

4D00h

29

58

-

Rd

78

Metering data: min./max. current (VL only)

4E00h

52

104

-

Rd

91

Statistic information

5B00h

42

84

-

Rd

92

Diagnostic breaker

5C00h

97

194

-

Rd

93

Control metering/trip unit

5D00h

14

27

Yes

Wr

94

Metering data

5E00h

99

197

Yes

Rd

97

Identification details

6100h

112

223

Yes

Rd

98

HW/SW versions

6200h

47

93

Yes

Rd

100

Identification NST2000

6400h

50

100

-

Rd

128

Metering parameters

8000h

52

103

Yes

Rd/Wr

129

Protective parameters

8100h

70

139

Yes

Rd/Wr

130

Set point parameters

8200h

74

148

-

Rd/Wr

131

Parameters ON/OFF

8300h

35

70

-

Rd/Wr

160

Bus parameters

A000h

39

77

Yes

Rd/Wr

162

Device configuration

A200h

38

75

Yes

Rd/Wr

165

Identification description

A500h

97

194

-

Rd/Wr

NOTE:

1.Each Dataset’s starting address is the Dataset’s number, converted to hex, used as the high byte of the address. Example for Dataset 51:51 decimal equals 33 hex, which gives an address of 3300 hex.

2.Notice that datasets: 60, 64, 68, 69, 93, 94, 97, 98, 128, 129, 160 and 162 have an odd number of data bytes and must be padded with an extra byte at the end of the dataset (set to 00 hex) to create an even number of words (registers).

3.Dataset 98 is for internal use only.

Table 3-8

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WL MODBUS Communication and Electronic Accessories • January 2005

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Siemens UL1066, UL 489 specifications Complete List of Datasets, Data bytes

UL 489, UL1066 specifications

Siemens UL1066 and UL489 are essential components in the landscape of electrical equipment, specifically in circuit protection and control. These standards ensure reliability, safety, and efficiency in various applications, including industrial, commercial, and residential settings.

The Siemens UL1066 is primarily focused on disconnect switches. These devices are designed to isolate electrical circuits, ensuring the safety of both personnel and equipment during maintenance or in case of faults. One of the key features of UL1066 disconnect switches is their high breaking capacity, enabling them to handle significant fault currents without failure. This characteristic is crucial in protecting downstream equipment from damage caused by short circuits. The UL1066 switches are also known for their robust construction, often featuring a metal enclosure that enhances durability and environmental resistance. Additionally, these switches can be operated manually or remotely, offering flexibility in operation and control.

On the other hand, Siemens UL489 circuit breakers provide comprehensive protection against overcurrents and short circuits. These devices not only interrupt fault currents but also protect connected devices from damage due to overload situations. Key features of UL489 circuit breakers include adjustable trip settings, which allow users to customize the response to overcurrent conditions based on specific application requirements. This adaptability makes them suitable for a wide range of environments, from large industrial plants to smaller commercial buildings.

Both UL1066 and UL489 products are constructed with advanced technologies, such as thermal-magnetic or electronic trip mechanisms in UL489 devices, ensuring precise and timely interruption of fault currents. These technologies promote energy efficiency and stability within electrical systems. In addition, many of these devices are equipped with indication features, providing clear visual status cues for quick assessment in emergency situations.

In terms of characteristics, both UL1066 and UL489 devices adhere to rigorous testing and certification processes to meet UL standards. This compliance assures users of their performance and reliability. Furthermore, the devices are designed to accommodate a wide range of operating temperatures and environmental conditions, making them versatile choices for various applications.

In summary, Siemens UL1066 and UL489 devices are paramount in ensuring safety and efficiency in electrical circuits. Their advanced features and robust construction make them indispensable in protecting both personnel and equipment in an array of industrial and commercial applications.