Quantum Instruments Splitter Boxes manual Local bus, bus input, Local bus, bus output

Page 33

Connections (continued)

IP 67 monobloc I/O splitter boxes

 

for fieldbuses

 

AdvantysDistributed I/O, FTB splitter boxes

InterBus bus

Connections to splitter box

Supply to splitter box

1 Supply input

2 Supply output

+ 24 V/L

 

 

 

 

+ 24 V/L

 

 

 

 

+ 24 V/R

 

 

 

 

+ 24 V/R

 

 

 

 

 

 

+ 24 V/IN

 

 

 

 

 

+ 24 V/IN

 

 

 

 

 

 

0/ 24 V

 

 

 

 

 

 

0/ 24 V

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

0/ 24 V

 

 

 

 

 

 

0/ 24 V

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

1

3

Bus input/Bus output

3 Local bus, bus input

2

 

 

Green

Green/Yellow

 

 

/ DO1

Yellow

Blue PE

 

DO1

Pink

Red

0 V

 

/ DI1

Grey

Shielding

+ 24 V

 

DI1

SHD

4

COM

Brown

 

 

 

 

 

 

 

 

 

4 Local bus, bus output

/ DO2

Green

Green/Yellow

PE

Yellow

Blue

DO2

0 V

/ DI2

Pink

Red

+ 24 V

DI2

Grey

Shielding

SHD

COM

Brown

 

RBST

 

 

3 Main bus, bus input

 

 

Supply to

 

 

Green

electronic bus

 

/ DO1

PE

Yellow

 

Blue

DO1

Pink

 

Red

0 V

/ DI1

 

+ 24 V

DI1

Grey

Shielding

SHD

COM

Brown

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

4 Main bus, bus output

/ DO2

Green

PE

Yellow

DO2

0 V

Pink

/ DI2

Shielding + 24 V

Grey

DI2

Brown

SHD

COM

RBST

 

Bridge

Bridge

Presentation, functions:

Description, configuration:

Characteristics:

References:

pages 14 - 17

pages 18 , 21, 24,

pages 26, 27

pages 28 - 30

 

 

 

 

33

Courtesy of Steven Engineering, Inc. ● 230 Ryan Way, South San Francisco, CA 94080-6370 ● General Inquiries: (800) 670-4183 ● www.stevenengineering.com

Image 33
Contents Catalog January IP 67 I/O Splitter BoxesPage 0IP 67 I/O Splitter Boxes Type of input/output connectors Type of signalHousing type Fieldbus typeModular I/O splitter boxes Advantys, FTM splitter boxes Presentation IP 67 passive splitter boxesDescription Channel characteristics Environmental characteristicsConnection characteristics Substitution tableReferences AccessoriesSplitter boxes only, M12 Separate componentsConnector connection DimensionsABE 9C124 pL pp 16 I 8 I + 8 diagnostic inputs 16 I/O 8 I/O+ 8 diagnostic I/O+ 8 I/O 8 I + 8 diagnostic I/O FTB 1DNpppP0 FTB 1DNpppM0 FTB 1DPpppP0 FTB 1DPpppM0 FTB 1IB Functions Selection of signal type per channelFTB Pp16E Pp08E08S Pp12E04S Pp16C 1D p08E08C M12Diagnostics per channel Sensor short-circuit DiagnosticsActuator short-circuit Actuator warningCANopen bus presentation CANopen and DeviceNet bus extensionsDeviceNet bus presentation Configuration CANopen bus configurationDeviceNet bus configuration Cabling system Cabling accessoriesProfibus-DP presentation Profibus-DP busAddressing Advantys Distributed I/O, FTB splitter boxes Profibus-DP busProfibus-DP bus connection cables InterBus bus presentation InterBus bus extensonInterBus bus extention InterBus bus extension Fieldbus characteristics Input characteristics Input/output characteristicsOutput characteristics Splitter box typeMonobloc splitter boxes for DeviceNet bus For CANopen/DeviceNet buses Connection accessoriesFor Profibus-DP bus For InterBus busFor all bus types Separate components4 elongated hole FTB 1CNpppP0, FTB 1DNpppP0, FTB 1DPpppP0 FTB 1IBpppP1Sensor/actuator connection Connector connectionCANopen and DeviceNet buses Supply to splitter box Bus input/Bus outputLocal bus, bus output Local bus, bus inputMain bus, bus input Main bus, bus outputDegree of protection Bus connector type Bus modules FTM Industrial fieldbus typeMaximum number of digital I/O per bus module Resolution Connector typeDiagnostics Per channel Splitter boxes FTM Digital inputs/outputsPrinciple Expandable splitter boxes Compact splitter boxesDigital I/O splitter boxes Analog I/O splitter boxesM12 and M8 FTM 1DD FTM 1DEFunctions CANopen bus configuration DeviceNet bus configuration PLC FTM 1DP One bus power supply status LED FTM 1CN/1DN FTM 1DP Internal cabling accessories Cabling accessories for bus modulesFTM 1CN10 FTM 1DN10 FTM 1DP10 Bus module characteristicsDigital input/output splitter box characteristics Analog input/output splitter box characteristicsCharacteristics Bus modules for modular splitter boxes FTM 1CN10FTM 1AE04C12C FTX CBTL12 For internal busCD-ROM FTX ES00Splitter boxes Bus modules FTM 1pp10FTM 1DD16C12 FTM 1DE16C12 FTM 1Dp08C12Auxiliary power supply Input/output connection for analog splitter boxesBus input/Internal bus output of splitter boxes Nominal power Switch mode power supplies ApplicationsSignalling Other characteristics MountingABL 7REQ ABL 7UEQ ABL 7UES ABL 7UPS Modular switch mode power supplies ABL 7RM Phaseo modular regulated power suppliesOperating characteristics Technical characteristicsInput circuit Output circuitSelection Upstream protection of power suppliesSchemes GB2 CB pp GB2 CD pp GB2 DB pp GB2 CS ppPower supply ABL 7RMpppp Modular regulated switch mode power supplies ABL 7RMScheme ABL 7RMppppABL 7 power supplies Phaseo regulated switch mode power suppliesOperating voltage Using c 24ABL 7UPS and ABL 7UES ABL 7REQSelection of power supplies ABL Selection according to application characteristicsABL 7CEM ABL 7RE ABL 7RP Mtbf Derating General rules to be complied withABL 7CEM Load limit Temporary overloadsSeries or parallel connection Type of mains supply ABL 7REQ power supplies protection of the power supply lineABL 7RE single-phase regulated switch mode power supplies ABL 7CEM single-phase regulated switch mode power suppliesABL 7RP single-phase regulated switch mode power supplies ABL 7REQ 2-phase regulated switch mode power suppliesABL 7UEQ24200 ABL 7UPS24200 7UPS24100ABL 7CEM24ppp ABL 7REQ24ppp ABL 7RP1205/2405/4803 ABL 7RE2402/2403 ABL 7RE2405 ABL 7RE2410 ABL 7RP2403ABL 7UEppppp ABL 7UPSppppp and 7UESProduct Reference Index IP 67 I/O Splitter Boxes Page Head office Schneider Electric Schneider Electric

Splitter Boxes specifications

Quantum Instruments Splitter Boxes represent a significant advancement in the realm of optical signal processing and distribution. These sophisticated devices are designed to efficiently split and manage optical signals while ensuring minimal loss and optimal performance. One of the standout features of Quantum Instruments Splitter Boxes is their robust construction, which is designed to withstand harsh environmental conditions, making them suitable for both indoor and outdoor applications.

A key technology utilized in these splitter boxes is the advanced fiber optic splitting technology, which employs high-quality optical fibers to achieve precise signal distribution. This technology allows for uniform splitting ratios, ensuring that each output maintains the integrity of the original signal. Furthermore, Quantum Instruments has integrated low-loss components into their splitter boxes, which contribute to high transmission efficiency and reduced signal attenuation.

In terms of characteristics, Quantum Instruments Splitter Boxes are available in various configurations to meet diverse user needs. They support multiple input and output configurations, ranging from simple one-to-two splits to complex multi-channel setups. This versatility makes them ideal for a wide range of applications, from telecommunications and data centers to broadcasting and surveillance systems.

The boxes also feature user-friendly interfaces for easy installation and maintenance. Their modular design allows for straightforward scaling and customization, enabling users to adapt the system as their requirements evolve. Additionally, the splitter boxes are equipped with advanced diagnostics and monitoring capabilities to ensure optimal performance and quick identification of any potential issues.

Moreover, Quantum Instruments prioritizes energy efficiency in their designs. The splitter boxes are engineered to minimize power consumption while maximizing performance, making them a sustainable choice for modern optical networks.

Quantum Instruments Splitter Boxes not only embody cutting-edge technology but also emphasize reliability and practicality. With a commitment to innovation, they continue to set benchmarks in the industry, making them a preferred choice for professionals looking to enhance their optical signal distribution systems. Their combination of high-quality materials, advanced technology, and user-oriented design ensures that users receive unparalleled performance and value. As the demand for more efficient communication systems grows, Quantum Instruments remains at the forefront, delivering solutions that cater to the evolving needs of the industry.