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Data sheet DB GB IB IL 24 PWR IN/2-F-D (-PAC)
Contents
1. AA eeraa mne Sener tine eon erent Permissible Total Current in the Potential Jumpers of the Main and Segment Circuit Nominal Current of the Terminal Permissible total current in the potential jumpers 6 3 A Nominal current of the terminal 4 0A Tolerance 10 PHCNIX 6394B CONTACT IB IL 24 PWR IN 2 F D PAC Power Dissipation Formula to Calculate the Power Dissipation of the Electronics Pe 0 180 W IM X Re Where Pe Total power dissipation in the terminal IM Load current in the main circuit Re Resistance of the fuse The resistance of the fuse Rp for a 6 3 AT fuse is approximately 12 mQ The power dissipation of the electronics for a theoretical maximum current of 6 3 A nominal current 4 0 A is calculated as follows Pep 0 18 W 39 69 A x 0 012 Q 0 66 W Power Dissipation of the Housing Pyoy Puou 9 7 W in the entire ambient temperature range Typical Power Dissipation of the Electronics Depending on the Load Current in the Main Circuit P W Power dissipation in W 40 I A Load current in the main 0 9 circuit in A 0 8 The test was carried out with a 6 3 AT fuse 20 4 0 3 0 2 0 1 0 0 1 0 5 1 2 4 6 8 I Al 5569C006 Derating of the Load Current in the Segment Circuit No derating 63948 PHGNIX 9 CONTACT IB IL 24 PWR IN 2 F D PAC Safety Measures circuit 2 LA ana anmam O Surge
2. 25 C to 85 C 13 F to 185 F Permissible humidity operation 75 on average 85 occasionally Permissible air pressure operation 80 kPa to 106 kPa up to 2000 m 6562 ft above sea level Permissible air pressure storage transport 70 kPa to 106 kPa up to 3000 m 9843 ft above sea level Degree of protection IP 20 according to IEC 60529 Class of protection Class 3 according to VDE 0106 IEC 60536 Interface INTERBUS interface Through data routing Power Consumption Communications power UL 7 5 VDC Current consumption at UL 25 mA maximum Power consumption at UL 0 19 W maximum Main voltage Um 24 V DC nominal value Nominal current consumption at Um 4 0 A nominal value 63948 PHGNIX 7 CONTACT IB IL 24 PWR IN 2 F D PAC Supply of the Module Electronics Through the Bus Terminal UL Connection method Through potential routing 24 V I O Supply Main Circuit Uj Connection 24 V Terminal points 1 2 and 2 2 Ground GND Terminal points 1 3 and 2 3 Rated value 24 V DC Tolerance 15 20 AC component 5 Permissible range 19 2 V to 30 V Permissible current 6 3 A maximum Demands on the voltage supply The power terminal must be supplied from a new power supply unit to provide electrical isolation Protect the 24 V area with an external fuse
3. PWRIN 2 F D with appropriate connector Function Identification Black 2 PHCENIX popan CONTACT IB IL 24 PWR IN 2 F D PAC Terminal Assignment Terminal Assignment Point 1 1 2 1 Measuring points for the segment circuit Us 1 2 2 2 Supply points for the main circuit Up 24 V These terminal points are connected with each other and with the potential jumper of the main supply Uy via the fuse The potential jumpers of the main circuit Uj and the segment circuit Us both protected have a combined current carrying capacity of 6 3 A 1 3 2 3 Ground contact GND for main and segment circuit The reference potential is directly routed to the potential jumper and is at the same time ground reference for the main and segment voltage 1 4 2 4 FE connection The contacts are directly connected with the potential jumper and the FE spring on the bottom of the housing The terminal is grounded when it is snapped onto a grounded DIN rail Terminal points 1 2 and 1 3 are connected with a capacitor to FE 6394B PHGNIX 3 CONTACT IB IL 24 PWR IN 2 F D PAC Internal Circuit Diagram Key INTERBU Smm INTERBUS protocol chip bus logic including voltage conditioning LED marked D or E see page 2 H aa Optocoupler Fuse UL Capacitive connection to functional T earth ground FE El
4. voltage Overload short circuit in the main and segment Fuse 5 x 20 with 6 3 A slow blow b diode for voltage limitation between terminal points 1 1 and 1 3 and terminal points 1 2 and 1 3 Polarity reversal Yes diode connected in parallel as protection against polarity reversal A reece empe aew oupa ine cee me namataan ne Electrical Isolation A Common Potentials The 24 V main voltage 24 V segment voltage and GND have the same potential FE is a separate potential area Separate Potentials in the System Consisting of Bus Terminal Power Terminal and I O Terminal Test Distance Test Voltage 5 V supply incoming remote bus 7 5 V supply bus logic 500 V AC 50 Hz 1 min 5 V supply outgoing remote bus 7 5 V supply bus logic 500 V AC 50 Hz 1 min 7 5 V supply bus logic 24 V supply I O 500 V AC 50 Hz 1 min 24 V supply I O functional earth ground 500 V AC 50 Hz 1 min 10 PHGNIX 6394B CONTACT IB IL 24 PWR IN 2 F D PAC Error Messages to the Higher Level Control or Computer System I O error message if fuse blown or missing I O error message if supply voltage Up is not present Ordering Data Description Order Designation Order No Power terminal with fuse and diagnostics IB IL 24 PWR IN 2 F D PAC 28 62 152 including connectors and labeling field Power terminal with fuse and diagnostics I
5. B IL 24 PWR IN 2 F D 28 60 28 0 Connector for power supply IB IL SCN PWR IN CP 27 27 637 black with color print pack of 10 pieces Connector for power supply IB IL SCN PWR IN 27 27 462 black w o color print pack of 10 pieces Fuse SI 5 x20 6 300 A T 50 30 51 2 Configuring and Installing the INTERBUS Inline IB IL SYS PRO UME 27 43 048 Product Range User Manual 63948 PHGNIX 11 CONTACT IB IL 24 PWR IN 2 F D PAC Phoenix Contact GmbH amp Co KG Flachsmarktstr 8 32825 Blomberg Germany 49 52 35 300 49 52 35 34 12 00 www phoenixcontact com Worldwide Locations www phoenixcontact com salesnetwork 9 i amp amp t2 PH NIX CONTACT 6394B Phoenix Contact 08 2002 Technical modifications reserved TNR 90 08 18 1
6. IB IL 24 PWR IN 2 F D IB IL 24 PWR IN 2 F D PAC Inline Power Terminal With Fuse and Diagnostics Data Sheet 6394B 12 2002 6394A001 Is Function The terminal is designed for use within an Inline station The terminal supplies 24 V supply voltage to the main circuit U and automatically provides the 24 V supply voltage to the segment circuit Us The terminal has protection against polarity reversal and surge voltage The internal fuse protects the main and segment circuit This terminal has an LED for bus diagnostics and occupies two input data bits which are used to indicate the presence of the supply voltage and the status of the fuse Features Supply of the 24 V main voltage Um Provision of the 24 V segment voltage Us Main and segment circuit protected by an internal fuse LED diagnostic indicators 6394B PHCENIX CONTACT IB IL 24 PWR IN 2 F D PAC Local LED Diagnostic Indicators Des Color Meaning D Green Bus diagnostics ON INTERBUS is active Flashing 0 5 Hz Communications power is present INTERBUS is not active 2 Hz Communications power is present supply voltage Uj is not present 4Hz Communications power is present local bus error OFF Communications power is not present INTERBUS is not active E Red Fuse OFF Fuse is OK 6394A003 ON Fuse has blown Figure1 IB IL 24
7. ectrically isolated area A Figure 2 Internal wiring of the terminal points 6394A004 4 PHGNIX 63948 CONTACT IB IL 24 PWR IN 2 F D PAC Connection Example N 6394A005 Figure 3 Typical connection of the supply voltage Um A i PH NIX 2 CONTACT IB IL 24 PWR I N 2 F D PAC Programming Data ID code BEnex 190 dec Length code C2hex Process data channel 2 bits Input address area 2 bits Output address area 0 bits Parameter channel PCP 0 bits Register length bus 2 bits INTERBUS Process Data Assignment of IN Process Data Ie Byte bit view 0 1 0 0 Assignment Main voltage Un is present 1 1 fuse is OK Main voltage Up is present 1 0 fuse has blown or is missing Main voltage Ur is not present 0 0 fuse has blown or is missing R PH NIX 6394B CONTACT IB IL 24 PWR IN 2 F D PAC Technical Data General Data Order Designation Order No IB IL 24 PWR IN 2 F D IB IL 24 PWR IN 2 F D PAC 28 60 28 0 28 62 15 2 Housing dimensions width x height x depth 12 2 mm x 120 mm x 71 5 mm 0 480 x 4 724 x 2 815 in Weight 44 g without connectors Operating mode Process data mode with 2 bits Transmission speed 500 kbps Permissible temperature operation 25 C to 55 C 13 F to 131 F Permissible temperature storage transport
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