Make informed decisions about inventory control with unique, dust-penetrating technology for measuring
bulk solids and powders accurately.
Take the guesswork out of measuring the level, volume, and with multiple point measurement.
Operate with minimum maintenance on any material stored in a variety of silos, bins, and warehouses.
Use 3D visualization to determine exactly what is going on inside your vessel.
Page 2
Rosemount 5708 3D Solids Scanner
Rosemount 5708
Rosemount 5708 in a system
Overview
August 2017
Measurement principle
The Rosemount 5708 uses an acoustic phased-array technology.
The Rosemount 5708 delivers accurate volume and level
measurement of bulk solids and powders – regardless of
material type, product characteristics, storage silo type, size, or
harshness of the storage environment.
The device includes an integral array of three antennas that
generate unique dust-penetrating low frequency acoustic waves
and receive echoes from the contents. Using these antennas, the
unit measures not only the time/distance of each echo, but also
its direction.
Collecting multiple echoes from different directions and
distances enables the Rosemount 5708 to accurately calculate
the volume of stored material. It also enables the Rosemount
3DVision/3DMultiVision
visualization of the material.
The acoustic waves combined with self-cleaning capabilities
prevent material from adhering to the internal workings of the
antenna array, ensuring long-term reliable performance with
very low maintenance requirements, regardless of harsh dusty
conditions.
Monitoring vessels across multiple sites and remote geographic
areas is a challenge. You need accurate information that is based
on real-time conditions. Rosemount 3DVision/3DMultiVision
software provides sophisticated analysis of current conditions as
well as historical data that allows you to improve your workflows
while reducing operating costs.
The software enables multiple accesses and is comprised of two
components: a server and a client. The data is stored on the
server computer which generates the reports and transfers the
information to all connected Rosemount 3DVision clients.
Authorized users, connected to the same LAN or via external
connections (WAN), have access to both real-time and historical
data for all Rosemount 5708 connected to the server.
The Rosemount 3DVision Client is a graphical and interactive
program, allowing the user to receive online data from devices,
view a 3D visualization of the material stored in the vessels, add
or remove sites, vessels, and devices and manage alerts and
reports.
Rosemount 5708 3D Solids Scanner
Emerson.com/Rosemount
3
Page 4
Rosemount 5708 3D Solids Scanner
Application examples
The Rosemount 5708 enables efficient process measurement
and true inventory management of bulk solid materials used in a
broad range of industrial applications.
The devices can measure practically any kind of solid material,
stored in a variety of containers, including large bins, bulk solid
storage rooms, and warehouses, loads that randomly form over
time inside silos, and many other challenging applications that
were not possible previously. The Rosemount 5708 can measure
ranges of up to 230 feet (70 m).
Rosemount 5708L
Highly accurate readings of level
Provides the average level of the stored contents and average
distance from the device to the surface of the material
Rosemount 5708V
Highly accurate readings of level and volume
Provides minimum and maximum level/distance
measurements
Appropriate for vessels up to 40 feet (12 m) in diameter
August 2017
Rosemount 5708S
Highly accurate readings of level and volume
Monitors inventory in large vessels
Provides minimum and maximum level/distance
measurements
Unlimited vessel diameter when using Rosemount 5708S in a
system
Generates 3D visualization of the stored contents
4
Emerson.com/Rosemount
Page 5
August 2017
Ordering Information
The Rosemount 5708 incorporate best-in-class solutions for previously inaccessible process
measurement applications in many manufacturing sectors. Characteristics include:
Specifications: see “Functional specifications” on page 11
Certifications: see “Product certifications” on page 17
Dimensional drawings: see “Dimensional drawings” on page 22
Specification and selection of product materials, options, or components must be made by the
purchaser of the equipment. See page 13 for more information on Material Selection.
Rosemount 5708 3D Solids Scanner
Table 1. Rosemount 5708 Ordering Information
The starred offerings (★) represent the most common options and should be selected for best delivery.
The non-starred offerings are subject to additional delivery lead time.
ModelProduct description
57083D Solids Scanner★
Model type
LNNAverage level measurement
VENVolume measurement up to 39.4 feet (12 m) in diameter
SEVVolume measurement with visualization.
Housing material
APolyurethane covered aluminum
Signal output
(1)
B
4–20 mA and RS-485 with Modbus
®
★
Conduit/cable threads
1
2M20 x 1.5 thread
1
/2-in. NPT adapter (qty = 2) supplied separately in the box
Hazardous locations certifications
(2)
NA
I1ATEX intrinsic safety
I3NEPSI intrinsic safety
No hazardous locations certifications
★
★
★
★
★
★
★
★
★
Emerson.com/Rosemount
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Rosemount 5708 3D Solids Scanner
Table 1. Rosemount 5708 Ordering Information
The starred offerings (★) represent the most common options and should be selected for best delivery.
The non-starred offerings are subject to additional delivery lead time.
I5cFMus intrinsic safety
I2INMETRO Intrinsic Safety
I7IECEx Intrinsic Safety
IPKOSHA Intrinsic Safety
IMTechnical Regulations Customs Union (EAC) Intrinsic Safety
IWPESO Intrinsic Safety
Process operating temperature
August 2017
★
SStandard temperature –40... +185 °F (–40... +85 °C)
HHigh temperature –40... +356 °F (–40... +180 °C) (no hazardous locations certifications available)
Material of antenna construction
PPolyurethane painted aluminum antenna
8PTFE coated aluminum antenna
HHigh temperature painted aluminum antenna
(3)
I
(4)
J
(3)
K
(3)
L
(5)
M
(3)
O
(3)
R
High temperature painted aluminum antenna supplied with 12-in (30 cm) extended cable
High temperature painted aluminum antenna for angle adapter supplied with 16-in. (40 cm) extended cable
High temperature painted aluminum antenna supplied with 20-in. (50 cm) extended cable
High temperature painted aluminum antenna supplied with 39-in. (100 cm) extended cable
High temperature painted aluminum antenna for ESP supplied with 59-in. (150 cm) extended cable
High temperature painted aluminum antenna supplied with 78-in. (200 cm) extended cable
High temperature painted aluminum antenna supplied with 118-in. (300 cm) extended cable
TA A10-in. (250 mm) - Matches ANSI 10-in., Class 150 connection; painted carbon steel
6
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Page 7
August 2017
Rosemount 5708 3D Solids Scanner
Table 1. Rosemount 5708 Ordering Information
The starred offerings (★) represent the most common options and should be selected for best delivery.
The non-starred offerings are subject to additional delivery lead time.
A000° Steel powder coated mounting assembly (supplied with mounting plate)
A055° Steel powder coated mounting assembly (supplied with mounting plate)
A1010° Steel powder coated mounting assembly (supplied with mounting plate)
A1515° Steel powder coated mounting assembly (supplied with mounting plate)
A2020° Steel powder coated mounting assembly (supplied with mounting plate)
A3030° Steel powder coated mounting assembly (supplied with mounting plate)
B00High temperature 0° steel powder coated mounting assembly (supplied with mounting plate)
B05High temperature 5° steel powder coated mounting assembly (supplied with mounting plate)
B10High temperature 10° steel powder coated mounting assembly (supplied with mounting plate)
B15High temperature 15° steel powder coated mounting assembly (supplied with mounting plate)
B20High temperature 20° steel powder coated mounting assembly (supplied with mounting plate)
B30High temperature 30° steel powder coated mounting assembly (supplied with mounting plate)
Extended product warranty
(6)
WR5
5-year limited warranty
Example model string: 5708-SEV-A-B-2-I1-S-P-Bmeans volume measurement with visualization, ATEX intrinsic
safety, with standard operation temperature antenna and O-ring.
1.The Rosemount 5708 supports communication with the Modbus RTU and provides the holding registers only. It is not used for configuration.
2.Use when ordering high temperature antenna or for non-hazardous locations.
3.Order mechanical parts separately (see Ta ble 2).
4.Angle adapter must be selected separately (see Tab le 2 ).
5.ESP hopper mounting bracket must be selected separately (see Tab le 2).
6.Check with your local Emerson
™
office for a 2-year extended warranty when prepaid startup is ordered with the Rosemount 5708.
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Rosemount 5708 3D Solids Scanner
Accessories
Table 2. Accessories Ordering Information
The starred options (★) represent the most common options and should be selected for best delivery.
The non-starred offerings are subject to additional delivery lead time.
System controller and LinkPro (see page 14)
August 2017
05708-4000-0001Rosemount System controller
05708-5000-0001Rosemount LinkPro
3DMultiVision software upgrade and disk-on-key
05708-8001-0027Rosemount 3DMultiVision software upgrade per server installation
05708-3023-0001Rosemount 5708 software and document disk-on-key
Model type upgrade licenses
05708-8001-0004Upgrade Rosemount 5708LNN to VEN
05708-8001-0006Upgrade Rosemount 5708LNN to SEV
05708-8001-0011Upgrade Rosemount 5708VEN to SEV
Communication modems
05708-8003-0007Converter RS485 to TCP/IP
05708-3022-0001USB to RS485 converter
Antenna neck extensions (see page 23)
05708-8005-000112-in. (30 cm) neck extension with extender cable for standard temperature
05708-8005-000220-in. (50 cm) neck extension with extender cable for standard temperature
05708-8005-001039-in. (100 cm) neck extension with extender cable for standard temperature
★
★
05708-8005-002079-in. (200 cm) neck extension with extender cable for standard temperature
05708-8005-0030118-in. (300 cm) neck extension with extender cable for standard temperature
(1)
05708-3012-0003
05708-3012-0005
05708-3012-0010
05708-3012-0020
05708-3012-0030
12-in. (30 cm) neck extension for high temperature
(1)
20-in. (50 cm) neck extension for high temperature
(1)
39-in. (100 cm) neck extension for high temperature
(1)
79-in. (200 cm) neck extension for high temperature
(1)
118-in. (300 cm) neck extension for high temperature
Antenna cable extensions (see page 25)
05708-3006-000312-in. (30 cm) antenna cable extender for standard temperature only
05708-3006-000520-in. (50 cm) antenna cable extender for standard temperature only
05708-3006-001039-in. (100 cm) antenna cable extender for standard temperature only
8
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Page 9
August 2017
Table 2. Accessories Ordering Information
The starred options (★) represent the most common options and should be selected for best delivery.
The non-starred offerings are subject to additional delivery lead time.
05708-3006-002079-in. (200 cm) antenna cable extender for standard temperature only
05708-3006-0030118-in. (300 cm) antenna cable extender for standard temperature only
Rosemount 5708 3D Solids Scanner
Angle adapters (see page 24)
05708-8006-000110° angle adapter with extender cable for standard temperature
05708-8006-000220° angle adapter with extender cable for standard temperature
05708-3013-0001High temperature mounting adapter 0°
05708-3013-0005High temperature mounting adapter 5°
05708-3013-0010High temperature mounting adapter 10°
05708-3013-0015High temperature mounting adapter 15°
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Rosemount 5708 3D Solids Scanner
Table 2. Accessories Ordering Information
The starred options (★) represent the most common options and should be selected for best delivery.
The non-starred offerings are subject to additional delivery lead time.
05708-3013-0020High temperature mounting adapter 20°
05708-3013-0030High temperature mounting adapter 30°
Mounting accessories (see page 26)
05708-3014-0001
05708-3023-0001Manhole mounting tool kit
1.Specify high temperature antenna cable length as part of the model code.
(1)
ESP hopper mounting bracket
August 2017
10
Emerson.com/Rosemount
Page 11
August 2017
+-
PS OUT
Display
+-
PS OUT
Display
++--
PS IN 4...20mA
+ -
RS-485PS IN 4...20mARS-485
++--+ -
++--
PS IN 4...20mA
+ -
RS-485
++--
PS IN 4...20mA
+ -
RS-485
A
A
ECB
D
Specifications
Rosemount 5708 3D Solids Scanner
Performance specifications
Reference conditions
Temperature 77 °F ±9 °F (25 °C ±5 °C)
Relative humidity 25–75%
Reference accuracy
(1)
Distance ± 0.6-in. (15 mm) at reference conditions
Directional ±2 degrees
Temperature gradient
0.5% per 10.8 °F (6 °C) gradient
Radio approvals
FCC 47 CFR part 15:2007, sub-part B, class A
(2)(3)
Functional specifications
General
Field of application
Bulk solids
Measurement principle
Power supply –4-wire instrument (active)
4–20 mA
Supply voltage
18–32 Vdc
Power consumption
Max. 1.5 W @ 24 Vdc
Output
Output signal
(4)
4–20 mA
and Modbus
Figure 1. Connection Example
(5)
Low frequency acoustic waves
Dead band
19.6-in. (0.5 m) from top of antenna assembly
Measurement range
Up to 230 ft. (70 m)
Minimum bulk density
12.5 lb/ft
3
(200 kg/m3)
Process fitting
Thread, angle adapter
Emitting frequency
2.3–7 kHz
1.Volume accuracy is dependent upon the position of devices in relation to
the product surface. It can be es timated for every installation based upon
mounting position, and vessel size.
2.The dev ice may not cause harmfu l interference.
3.The dev ice must accept any inter ference received, i ncluding inter ference
that may cause undesired operation.
A. 120 Ω resistor
B. PLC/DCS/Display
C. 24 Vdc power supply
D. RS-485 to USB converter
E. Rosemount 3DVision server
Current resolution
10 μA
Current limitation
22 mA
4.4–20 mA is a 2-wire connection, non-loop powered, and connected to an
active device.
5.The Rosemount 5708 supports communication with the Modbus RTU and
provides the holding registers on ly.
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Rosemount 5708 3D Solids Scanner
August 2017
Maximum load (active output)
400 Ω
Communication
Physical
RS-485
Protocol
Modbus
(1)
Process pressure, temperature, and humidity
Vessel pressure
–0.29... 43.5 PSI (–20 mBar... 3 Bar)
Process temperature measured on the process fitting
Standard temperature: –40... +185 F° (–40... +85 °C)
High temperature: –40... +356 °F (–40... +180 °C)
Process humidity
up to 75% RH
Ambient, storage, and transport temperature
–40... +185 °F (–40... +85 °C)
Ingress protection
IP66, IP67 according to IEC 60529
Display and configuration
Output variables
Rosemount
5708L
Rosemount
5708V
Rosemount
5708S
Level/distance
Minimum and
maximum
N/A
level/distance
Vol umeN/A
Mass
(1)
N/A
SNR
Tem pe ra tu re
at antenna
1.The mass is calculated in a conversion using one of the available methods
within Rosemount 3DVision or independently on the customer's
DCS/PLC/SCADA.
Configuration tools
LCD display with four-button keypad
Rosemount 3DVision software (for single site/vessel)
Rosemount 3DMultiVision software (for multiple
(2)
sites/vessels)
Emerson Wireless THUM™ Adapter
(3)
The THUM Adapter can be connected to the Rosemount 5708 by
mounting it remotely using a remote mount kit.
1.The Rosemount 5708 supports communication with the Modbus RTU and
provides the holding registers only.
3
, lbs/ft3, gr/cm3, kg/m
3
See the Emerson Wireless THUM™ Adapter Product Data Sheet
and Tec hnical Not e.
2.The Rosemount 5708L can be completely configured via the LCD display.
For the Rosemount 5708V and 5708S, the Rosemount
3DVision/3DMultiVision software is required.
3.The Rosemount 5708 with the THUM Adapter enables wireless access to
the following parameters: 4–20mA current, distance, percentage,
temperature and SNR. Diagnostics and configuration are available through
wired connection.
12
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Page 13
August 2017
Rosemount 5708 3D Solids Scanner
Physical specifications
Material selection
Emerson provides a variety of Rosemount products with various
product options and configurations including materials of
construction that can be expected to perform well in a wide
range of applications. The Rosemount product information
presented is intended as a guide for the purchaser to make an
appropriate selection for the application. It is the purchaser’s
sole responsibility to make a careful analysis of all process
parameters (such as all chemical components, temperature,
pressure, flow rate, abrasives, contaminants, etc.), when
specifying product, materials, options and components for the
particular application. Emerson Process Management is not in a
position to evaluate or guarantee the compatibility of the
process material or other process parameters with the product,
options, configuration or materials of construction selected.
Housing and enclosure
Housing
Painted aluminum die casting
Antenna
Painted aluminum die casting (optional PTFE coating available)
Vessel connection
Mounting plate
Minimum distance from filling points
24-in. (600 mm)
Minimum distance from side wall
24-in. (600 mm)
Mounting plate dimensions
According to DIN PN16 or ANSI Class 150 size and holes pattern
1.Mounting plates are available to accommodate 4–10-in. (100–250 mm)
openings. For openings smaller than 8-in. (200 mm), there are antenna
extensions available to allow the antenna to be installed from the inside of
the vessel below the nozzle.
13
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Rosemount 5708 3D Solids Scanner
Accessories
August 2017
Rosemount System Controller
General
Construction
Aluminum chassis with fanless design
Power requirements
ATX power mode
DC to DC power design on-board, support from 9–36 Vdc
Optional 19 V, 65 W power adapter
Data storage
(1x) 2.5-in. SATA HDD drive bay
(1x) External CF socket
Physical specifications
Dimensions (H x W x D)
19.7 x 11.8 x 5.9-in. (500 x 300 x 150 mm)
Front viewBack view
Power supply
Vol tage
20–28 Vdc
Power consumption
65 W
I/O Interface
Front
(2x) USB2.0 ports
Rear
9–36 Vdc input
(1x) DB15 VGA port
(1x) speaker out
(2x) USB2.0 ports
(2x) RS-485 with auto-flow control: isolation protection on
COM1 and COM2
Note
When the Rosemount 5708 is connected to the Rosemount
System Controller, the connection is active, not passive.
Therefore, the device is the active module and the Rosemount
System Controller should be the passive module.
Weight
26.9 lb (12.2 kg)
Operating temperature
Ambient with air flow
23 to 122 °F (–5 to 50 °C) indoor installation
Storage temperature
–4 to 176 °F (–20 to 80 °C)
Relative humidity
10–93% (non-condensing)
14
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Page 15
August 2017
Rosemount 5708 3D Solids Scanner
Rosemount LinkPro
Physical specifications
Housing enclosure
Polystyrene
Weight
3.13 lb (1.42 kg)
Dimensions (L x W x H)
10 x 7 x 3.5-in. (255 x 180 x 90 mm) - not including cable glands
Protection
IP66
Voltage supply
Operating voltage
CE Conformity
EMC
Emission EN 301 489-7 V1.3.1:2005 standard harmonized under
R&TTE Directive 1995/5/EC and EMC Directive 2004/108/EC
Article 6(2)
Safety
EN 60950-1:06; EN 60950-22:06
Radio emissions
EN 301 511 V9.0.2
FCC Approval
FCC 47 CFR part:15:2007, subpart B, class A
Cable entry/plug
(2x) cable gland M20 x 1.5 (cable Ø 8–13 mm)
10–30 Vdc (nominal 24 Vdc)
Average power consumption (idle mode)
1.5 W
Peak power consumption (transmit mode)
18 W
Power source limitation
2 A
Ambient temperature
–22 to +158 °F (–30 to +70 °C)
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Rosemount 5708 3D Solids Scanner
Software Installation Requirements
Rosemount 3DVision server
August 2017
Processor
RAM
Hard disk
Graphic card resolution
Interfaces
Operating systems
Rosemount 3DVision client
Processor
RAM
Hard disk
Graphic card resolution
Graphic card memory
Interfaces
Intel™ Dual Core and above
At least 1 GB
At least 1 GB free space per year (2.8 MB per day for log files)
Minimum 1024 x 768
Ethernet NIC card, serial port, USB port
Microsoft® Windows™ XP (SP2), Windows 7, and Windows 10
Intel Dual Core and above
At least 1 GB
At least 1 GB free space on HD
Minimum 1280 x 1024
1 GB
Ethernet NIC card, CD-ROM drive or USB port
Operating systems
Framework
Windows XP (SP2), Windows 7, and Windows 10
Microsoft .NET framework 4.0
16
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Page 17
August 2017
Product certifications
Rosemount 5708 3D Solids Scanner
European Directive Information
A copy of the EC Declaration of Conformity can be found at the
end of the Rosemount 5708 Series Quick Start Guide
.
The most recent revision of the EC Declaration of Conformity
can be found at EmersonProcess.com/Rosemount.
Ordinary Location Certification
As standard, the transmitter has been examined and tested to
determine that the design meets the basic electrical,
mechanical, and fire protection requirements by a nationally
recognized test laboratory (NRTL) as accredited by the Federal
Occupational Safety and Health Administration (OSHA).
North America
I5US and Canada Intrinsic Safety (IS)
Certificate:3052166
Standards: FM Class 3600–2011, FM Class 3610–2010,
Markings: IS CL I, II DIV 1, GP C, D, E, F, G when connected
per Rosemount drawing 05708-1900;
T4(–40 °C <
For electronic modules with serial number 836xxxxxxx:
Supplies-Terminals J5.1 (+), J5.2 (GND)
(Ui) = 30 V, I
V
max
Ci = 8 nF, Li = 0
Interfaces-Terminals J5.4 (4 - 20 mA signal),
J5.3 (GND common with J5.2):
(Ui) = 10.5 V, I
V
max
= 8 nF, Li = 0
C
i
RS-485-Terminals J6.3 (P), J6.4 (N):
(Ui) = 6.51 V, I
V
max
C
= 0, Li = 0
i
Approval valid for HART
Special Conditions for Safe Use (X):
1. The 3D Solids Scanner is only for use with electronics unit
marked with serial number 836xxxxxx, as these units are
for use with the 3D Solids ambient temperature range.
2. Part of the enclosure is constructed of plastic. To prevent
the risk of electrostatic sparking, the plastic surface should
be cleaned with a damp cloth.
Ta < +85 °C); IP 6X
(Ii) = 212 mA, P
max
(Ii) = 106 mA, P
max
(Ii) = 651 mA, P
max
®
and Modbus options.
(Pi) = 1.2 W,
max
(Pi) = 1.1 W,
max
(Pi) = 1.06 W,
max
Europe
I1ATEX Intrinsic Safety
Certificate: BVS14ATEXE060X
Standards: EN60079-0:2012, EN60079-11:2012
Markings: II 2 G Ex ib [ia] IIB T4 Gb (–40 °C <
Ex II 1/2 D Ex ib [ia] IIIC T110°C Da/Db
(–40 °C <
Table 3. Interface Para<meters
Parameter4–20 mARS-485
Voltage Ui/U
Current I
Power P
Capacitance C
Inductance L
Capacitance C
Inductance L
L
o/Ro
CharacteristicsTrapezoidLinear
Ter mi na l s
Table 4. Supply Circuit Parameters
o
i/Io
i/Po
i
i
o
o
ParameterInputOutput
Voltage Ui/U
Current I
Power P
Capacitance C
Inductance Li/L
Lo /Ro ratio
CharacteristicsN/A
TerminalsJ5.1 (+), J5.2 (GND)N/A
i
i/Po
o
i/Co
o
Ta < +85 °C)
10.5 V6.51 V
106 mA2 x 651 mA
1.1 W2 x 1.06 W
8 nF0 nF
0 mH0 mH
16 μF2 x 285 μF
80 μH83.9 μH
17.77 μH/Ω67.12 μH/Ω
J5.3 (4–20 mA),
J5.4 (GND)
24 VN/A
Same values as the
interconnected IS
power supply
3 WN/A
8 nF
0 mH
N/A
J6.3 (+), J6.4 (RTN)
N/A
Same values of the
interconnected IS
power supply
reduced by C
Same values of the
interconnected IS
power supply
reduced by L
Same values of the
interconnected IS
power supply
reduced by L
Same values as the
interconnected IS
power supply
Ta < +85 °C)
i
i
i
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Rosemount 5708 3D Solids Scanner
August 2017
Special Condition for Safe Use (X):
1. Dust application:
The installation of the 3D Solids Scanner or of the Antenna
Unit of models providing head separation in the wall to
areas requiring EPL Da (apparatus category 1D) equipment
shall provide a degree of protection IP6X according to
EN60529 and shall be carried out in such a way, that all
metallic parts are integrated in the local equipotential
bonding.
Manufacturer’s technical information related to use of the
3D Solids Scanner in contact with aggressive/corrosive
media and to avoid any risk of mechanical impact shall be
observed.
International
I7IECEx Intrinsic Safety
Certificate:IECEx BVS 15.0042X
Standards: IEC 60079-0: 2011, IEC 60079-11: 2011
Markings: Ex ib [ia] IIB T4 Gb (-40 °C <
Ex ib [ia] IIIC T110°C Da/Db
(-40 °C < Ta < +85 °C)
Table 5. Interface Parameters
Parameter4–20 mARS-485
Voltage Ui/U
Current I
Power P
Capacitance C
Inductance L
Capacitance C
Inductance L
L
o/Ro
CharacteristicsTrapezoidLinear
Ter mi na l s
o
i/Io
i/Po
i
i
o
o
10.5 V6.51 V
106 mA2 x 651 mA
1.1 W2 x 1.06 W
8 nF0 nF
0 mH0 mH
16 μF2 x 285 μF
80 μH83.9 μH
17.77 μH/Ω67.12 μH/Ω
J5.3 (4–20 mA),
J5.4 (GND)
Ta < +85 °C)
J6.3 (+), J6.4 (RTN)
Table 6. Supply Circuit Parameters
ParameterInputOutput
Voltage Ui/U
Current I
Power P
Capacitance
C
i/Co
Inductance Li/L
Lo/Ro ratio
CharacteristicsN/A
TerminalsJ5.1 (+), J5.2 (GND)N/A
i
i/Po
o
0
Special Condition for Safe Use (X):
1. Dust application:
The installation of the 3D-Solids Scanner or of the Antenna
Unit of models providing head separation in the wall to
areas requiring EPL Da equipment shall provide a degree of
protection IP6X according to IEC 60529 and shall be
carried out in such a way, that all metallic parts are
integrated in the local equipotential bonding.
Manufacturer's technical information related to use of the
3D Solids Scanner in contact with aggressive/corrosive
media and to avoid any risk of mechanical impact shall be
observed.
26.6 VN/A
Same values as the
interconnected IS
power supply
3 WN/A
8 nF
0 mH
N/A
N/A
Same values of the
interconnected IS
power supply
reduced by C
Same values of the
interconnected IS
power supply
reduced by L
Same values of the
interconnected IS
power supply
reduced by L
Same values of the
interconnected IS
power supply
reduced by C
Same values of the
interconnected IS
power supply
reduced by L
Same values of the
interconnected IS
power supply
reduced by L
Same values as the
interconnected IS
power supply
Special Conditions for Safe Use (X):
1. The installation of the 3D Solids Scanner or of the Antenna
Unit of models providing head separation in the wall to
areas requiring EPL Da (Zone 20) equipment shall provide a
degree of protection IP6X according to ABNT NBR IEC
60529 and shall be carried out in such a way, that all
metallic parts are integrated in the local equipotential
bonding.
2. Manufacturer's technical information related to use of the
3D Solids Scanner in contact with aggressive / corrosive
media and to avoid any risk of mechanical impact shall be
observed.
Markings: Ex ib/ia IIB Gb T4 Ex ibD/iaD 21/20 T110 °C
Table 9. Interface Parameters
Parameter4–20 mARS-485
Voltage Ui/U
Current I
Power P
i
i
i
Capacitance C
Inductance L
Capacitance C
Inductance L
L
o/Ro
CharacteristicsTrapezoidLinear
Ter mi na l s
o
i/Io
i/Po
i
i
o
o
10.5 V6.51 V
106 mA2 x 651 mA
1.1 W2 x 1.06 W
8 nF0 nF
0 mH0 mH
16 μF2 x 285 μF
80 μH83.9 μH
17.77 μH/Ω67.12 μH/Ω
J5.3 (4–20 mA),
J5.4 (GND)
J6.3 (+), J6.4 (RTN)
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Rosemount 5708 3D Solids Scanner
August 2017
Table 10. Supply Circuit Parameters
ParameterInputOutput
Voltage Ui/ U
Current I
Power P
Capacitance C
Inductance Li/L
Lo / Ro ratio
CharacteristicsN/A
TerminalsJ5.1 (+), J5.2 (GND)N/A
i
i/Po
o
i/Co
24 VN/A
Same values as the
interconnected IS
power supply
3 WN/A
8 nF
0 mH
o
N/A
N/A
Same values of the
interconnected IS
power supply
reduced by C
Same values of the
interconnected IS
power supply
reduced by L
Same values of the
interconnected IS
power supply
reduced by L
Same values as the
interconnected IS
power supply
Russia
IM Technical Regulation Customs Union (EAC) Intrinsic Safety
Certificate: RU C-DE.MЮ62.B.01949
T
Markings: 1Ex ib [ia] IIB T4 Gb X (–40 <
Ex ib [ia] IIIC T110 °C Da/Db X
T
(–40 <
amb
< 85 °C)
Table 11. Supply Circuit Parameters
ParameterInputOutput
Voltage Ui/ U
i
i
i
Current I
Power Pi/P
Capacitance Ci/C
Inductance Li/L
Lo / Ro ratio
CharacteristicsN/A
TerminalsJ5.1 (+), J5.2 (GND)J6.1 (+), J5.2 (GND)
1.J5.1, J5.2 directly connected to J6.1, J6.2.
2.Same values as of the interconnected IS power supply.
3.Same values as of the interconnected IS power supply reduced by Ci, Li.
o
i
o
o
24 V24 V
(2)(2)
3 W3 W
8 nF
o
negligible
N/A
amb
(3)
(3)
(3)
(2)
< 85 °C)
(1)
(2)
Special Condition for Safe Use (X):
1.The installation of the product shall provide a degree of
protection IP6X according to GB4208-2008, and in such a
way that all metallic parts are integrated in the local
equipotential bonding.
Certificate: 15-KA4BO-0298X - ex
Standards: IEC 60079-0: 2011, IEC 60079-11: 2011
Markings: Ex ib [ia] IIB T4 Gb, Ex ib [ia] IIIC T110C Da/Db
Table 12. Interface Parameters
Parameter4–20 mARS-485
Voltage Ui/U
Current I
Power P
Capacitance C
Inductance L
Capacitance C
Inductance L
L
o/Ro
CharacteristicsTrapezoidLinear
Ter mi na l s
o
i/Io
i/Po
i
i
o
o
10.5 V6.51 V
106 mA2 x 651 mA
1.1 W2 x 1.06 W
8 nFmaлa
0 mH0 mH
16 μF2 x 285 μF
80 μH83.9 μH
17.77 μH/Ω67.12 μH/Ω
J5.3 (4–20 mA),
J5.4 (GND)
J6.3 (+), J6.4 (RTN)
20
Emerson.com/Rosemount
Page 21
August 2017
Special Conditions for Safe Use (X):
1. Levelmeter should be installed and operated in such a way
that no danger of ignition due to electrostatic discharge.
2. The instructions specified in the manual, eliminates the
risk of corrosion and / or mechanical action.
3. When the levelmeter, which provides separation of the
head in areas requiring protection level equipment Da, the
degree necessary to provide protection for at least IP6X in
accordance with GOST 14254-96 and assembly should be
performed so that all metal parts have the same potential.
Gas flow measurement by a Leading gas producer using
Rosemount 1595 Conditioning Orifice Plate reduces operating
and capital costs.
For detailed information on product certificates, refer to the
Rosemount 5708 Reference Manual
A. Antenna adapter
B. Support flange
C. Bracket flange
Dimensions are in inches (millimeters).
Note
Vertical nozzle for connecting to the bracket flange should be supplied by the customer.
26
Emerson.com/Rosemount
Page 27
August 2017
DN200 (8DA, 8DX)
Ø13.38 (340)
12 x Ø
0.86 (22)
equally spaced
Ø2.04 (52)
0.25 (6.4)
Ø11.61 (295)
DN250 (TDA, TDX)
Ø15.94 (405)
12 x Ø
1.02 (26)
equally spaced
0.25 (6.4)
Ø2.04 (52)
Ø13.97 (355)
Figure 11. Accessories - Mounting Plates
Rosemount 5708 3D Solids Scanner
Dimensions are in inches (millimeters).
Note
Several different types of mounting plates are available. For detailed information, see the Rosemount 5708 Reference Manual
Mounting plates are not pressure rated.
Emerson.com/Rosemount
.
27
Page 28
Rosemount 5708 3D Solids Scanner
Ø 13.50 (342.9)
Ø
8.63 (219.1)
23
.
6
2
(
600
)
A°
0.32 (8.2)
3.54 (90)
10.17
(258.3)
Figure 12. Mounting Assembly
August 2017
A. Mounting plate
B. Gasket
C. Adapter tube
D. Adapter plate
Dimensions are in inches (millimeters).
Table 13. Mounting Assembly Option Codes for Different Angles
Standard Terms and Conditions of Sale can be found on the Ter ms a nd
Conditions of Sale page.
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3DMultiVision, THUM, Rosemount and Rosemount logotype are
trademarks of Emerson.
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Rosemount and Rosemount logotype are trademarks of Emerson.
All other marks are the property of their respective owners.