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1 Introduction... 2 Basic features... 2 The coupling in detail (diagram)... 4 Handling the Coupling TC-H The coupling layout according to NEM NEM-362 (H0-Extract from the Standard)... 6 Aim... 6 Installation... 6 Coupling Heads... 6 Installation of TC-H0 into H0 locomotives (NEM 362)... 7 Check the correct cabling... 9 Adjustment of a vertical height difference of the NEM-362 coupler pocket... 9 Couplings with different cable lengths and colours Manual Uncoupling Removing the Coupling Hints for 3-rail systems Care and maintenance of the Coupling Control of the Coupling Warranty Specifications TC-H Document: HW1 / 05 Page 1 from 13

2 Introduction With the fully automated, remote-controlled H0 coupling TC-H0 (Train Connection-H0) you have purchased a product that enriches the operation of the digitally controlled model railroad with functions that extend the reliability and enthusiasm considerably. In order to enjoy the use of this high-quality product for many years, please read the installation and operations instructions carefully and keep for future reference. Important Notice: This item is not for use by persons under 14 years of age. It must be installed only by competent persons. The couplings can be damaged through improper installation or improper use. Keep away from children under 14 years! Some background information regarding the application of future standards for model trains, can not be covered in this installation and operating manual. For further details, please use the links on our website. T4T accepts no liability for the content in these sites! Copyright by T4T, technoloy for trains, Swistec GmbH. Rights reserved for errors, technical changes and all other rights. All trade names, company names and product names are trademarks or registered trademarks of their respective owners. Basic features The fully automatic, close coupled model train coupling for H0-locomotives with a NEM 362 connection is an integral part of the T4T Train automation TCCS (Train Coupling andcommunication System). The aim of TCCS is the inclusion of all wagons of the entire train in the available remote-control functions provided by the digital DCC protocol. In other words, each wagon coupled to the locomotive can be remotely uncoupled using the DCC protocol function. Key Feature TC-H0: Compatible with NEM362 and suitable for wagons with short coupling mechanisms. All wagons are powered via the 2-pin electrical contact. It is necessary to avoid wheel pickups which can negatively affect the running of the wagons. Maximum power output of TC-H0 is 1Amp. Couplings between two wagons can be activated/deactivated at any point on the track. The force required to couple or uncouple are so low that light wagons are not pushed away when coupled/uncoupled. Document: HW1 / 05 Page 2 from 13

3 The coupling can also be activated when the locomotive is on an incline and the couplings are slightly lower than the train. This is important for humps! Each coupling has a built-in IR-LED which can transmit data in various formats. The type of format (TRAM (T4T), TrainNavigation (Fleischmann), Lissy (Uhlenbrock)) can be set in allt4t decoders (e.g. LD-1L, LD-1M, WD-GWx, WD-PWxxx etc.). The coupling is small in size. The coupling can be coupled by short coupled locomotives on curves. This feature is applicable for radii of 800mm, dependent of the features of the coupled wagon. The ground clearance between the coupling s underside and the track bed is high. In this way the coupling cannot be caught on the track bed or in the points. Slim, unobtrusive appearance. The TC-H0 is smaller than conventional mechanical couplings! The contact zones are made from modern, high quality solid metal alloys, coated with gold plating. This ensures long life and low susceptibility to corrosion. Document: HW1 / 05 Page 3 from 13

4 The coupling in detail (diagram) A. 4 connecting cables model AWG 32 (yellow or white base colour) for connecting the decoder (internal cable channel) B. shaft according to NEM 362 (swallowtail) C. IR-transmitter for data transmission to the track (bottom side) D. metal pin with prominent hook for bend coupling (gold plated) E. interlock hook F. lock-in range for the opposite coupling s hook G. metal pivot (gold plated) Illustration 1: Functional overview TC-H0 Handling the Coupling TC-H0 The coupling should be handled in such a way that only the thumb and index finger hold the coupling by the top and bottom. Should the coupling be held by the side, this can lead to damage of the release hook support, especially then the release hook is in the open position! Before assembly it is advisable to push the metal pivot inwards until the interlock hook is fully in the housing. The coupling layout according to NEM 362 For more than 10 years, all leading manufactures have used a standard coupling layout according to the NEM 362 standard (See and the next pages). This standard allows for an easy way of exchanging or converting to the preferred coupling system, including the installation of the TC-H0 coupling. In order for the TC-H0 to operate correctly, the following measurements should be checked according to the diagram below. Document: HW1 / 05 Page 4 from 13

5 A. Rail level B. TC-H0 Cable C. Carriage chassis D. Buffer cap Illustration 2: Side face on the carriage end from the left The dimensions are valid for locomotives with a close coupling mechanism and are respected by all manufacturers (except some models by Bachmann UK). For locomotives without a close coupling mechanism the distance between the coupling take up and the buffer (7.5 mm) is reduced by a few mm depending on vehicle design, so that the coupling is further from the front buffer beam. Again, this dimensional change is taken into account by the locomotive manufacturers. Otherwise, the buffers between two locomotives would interfere with each other in curves. Unfortunately, the quality of the coupler pocket suffers with many manufacturers often because the shaft is titled and therefore making the coupling action more difficult or preventing coupling. This quality characteristic should be checked on the acquisition of locomotives regardless of the coupling system. In addition, it is important to check that the return force to the neutral position is sufficient. Only centred couplings can be coupled with minimal force. There is no suitable standard for the regulation of force output. Document: HW1 / 05 Page 5 from 13

6 NEM-362 (H0-Extract from the Standard) Aim The coupling take-up is such that it will accept exchangeable coupling heads, providing they have the corresponding shaped approach. Installation The coupling take-up is installed as follows, either with a kinematic or pivot: Illustration 3: Dimension default for close couplers (H0) according to NMRA 362 A dimension B nominal size H0 SO Rail level Note 1): This measurement is only relevant when the coupling shaft is steered via a closecoupling kinematic. For other types of mounting, an appropriate distance is to be taken into account for the free movement of other vehicles. If there are components on the models which are in front of the buffer level, e.g. rubber bead, then the position of the front surface must be such that these components are taken into account. Coupling Heads The coupling heads generally have a dovetail-shaped approach with the cam behind the inner edge. For larger scales (S, O) an approach locator is necessary. The H0 and S coupling approaches are identical and therefore allow the use of common coupling heads for H0. by MOROP printed copy in part allowed, example to MOROP- General Secretary Document: HW1 / 05 Page 6 from 13

7 Installation of TC-H0 into H0 locomotives (NEM 362) The mechanical coupling, e.g. kaydee or tension lock coupling, can be removed from the locomotive/carriage by gently squeezing the swallowtail (see manufacturer s instructions). The coupling removal process can also be found in the locomotive/carriage instruction manual. Before installing the TC-H0, please check the correct position of the shaft via the TC-H0/NEM362 test block under all circumstances! The NEM-362 tongue (in the front of the picture) has to fit perfectly into the coupler pocket! If the shaft does not fit properly, it may have to be adjusted with a file (see additional equipment). When installing the TC-H0, there may be a difference in vertical height. This difference may be overcome with a strip of card board between shaft and dove-tail. The test block is put into the rail profil. In accordance with NEM-362, it indicates the correct buffer height and shaft height on the one side and the correct TC-H0 height on the other side. An already installed TC-H0 can also be checked with a gauge. With the mechanical coupling removed, all four cables from TC-H0 are set according to NEM 362 sequentially via the 4-edged adapter of the coupling take-up from the outside, i.e. from the buffer side. It is important to ensure that all four cables lie parallel in the hollow of the TC-H0 dovetail and do not cross over! It is preferable that the cables lie next to each other in the shaft from left to right, according to the diagram: Colour sequence with white base colour Colour sequence with yellow base colour White/grey, white/black, white/red, white/pink Yellow/grey, yellow/black, yellow/red, yellow/pink A. Carriage chassis B. Standards of European model railways 362 shafts C. Buffer cap D. cable white/grey resp. yellow/grey E. cable white/black resp. yellow/black F. cable white/pink resp. yellow/pink G. cable white/red resp. yellow/red Illustration 4: Supervision on the vehicle from above / TC- H0 cable order in the standards of European model railways 362 shafts Do not touch the contacts with pliers or any similar tool! Do not bend the contacts on the end of the cables! Document: HW1 / 05 Page 7 from 13

8 The cables should be pulled one by one for a distance of 20 30mm through a hole of about 2.5mm diameter into the interior of the locomotive/carriage. It may be helpful to pull the cables through some heat shrink (as supplied in the start set). The heat shrink can be used between the dovetail and the entrance hole and inside the locomotive/carriage. This can be useful especially with locomotives, to prevent the cable catching in the motor! Shrink the heat shrink to size. It is essential to ensure that any drilled holes, especially in locomotives with a close-coupling mechanism, do not disable the mechanics! If there is no hole within the distance given above, then the cables need to be brought into the locomotive from the side. Since only 2 cables are introduced per hole, the hole can be reduced to 2mm. In this instance, it is useful to split the cable symmetrical right and left in the pairs gray and black and red and pink. The bending forces of the cable are thus spread symmetrically on both sides. Illustration 5: 2 possibilities to lead the TC-H0 cables in the interior (from above seen) A. Standards of European model railways 362 shafts B. Buffer cap The ends of the cable are then pushed into connector 2 of the LD-1x or WD-xxx decoder (please note the relevant decoder instructions). Please read the decoder instructions in addition to this instruction. The TC-H0 coupling cables have either a yellow or white base colour. Per locomotive/carriage you should have one coupling Document: HW1 / 05 Page 8 from 13

9 with yellow base colour cables and one with white base colour cables. We recommend using the same colour scheme as for front and rear lighting, i.e. front coupling with white cables and rear coupling with yellow. This makes the correct connection of the cable to the decoder easier and prevents swapping the front and rear coupling cables. There are no other distinguishing features between the couplings with yellow or white base colours. If a wagon has TC-H0 installed, then it is best to run with a locomotive weighing 80g or more. Each T4T decoder has its own instruction on connecting the function outputs. Please read these instructions carefully. Incorrect connections can result in the destruction of the decoder and / or the coupling! If the cables (white and yellow wiring harness) of the two couplings are reversed at the decoder, the locomotive identification will not work correctly. This is especially true for locomotives that need to move in the right direction when uncoupling! For wagons/carriages it does not usually matter which base colour is at which end. In general for the lead wagon the yellow coupling is attached to the end with the headlamps! (For more information, please read the chapter dealing with the pin configuration within the Decoder Manual.) Check the correct cabling To prevent damage to the coupling, the correct electrical installation of the coupling should be checked. For this reason, the "Decoder Manager device is available which has an appropriate test system. Further details can be found in the Decoder Manager manual. If you are using Lissy feedback system, before testing the locomotive bus, it is best to drive the locomotive with the coupling over a feedback section. Activate the TC-H0 IR transmitter using the relevant CVs (see the manual for LD-1x or WD-xxx respectively). The Lissy receiver should receive and show the signal. Should you wish to test the coupling function with a decoder, then you will require a multimeter and power supply. The following values should show on the multimeter: Between the white/yellow and black cable and the metal pivot contact: 0 2 Ohm Between the white/yellow and red cable and the metal: 0-2 Ohm Between the white/yellow and pink cable (- pole/ground) and the white/yellow and grey cable (+ pole) apply 3VDC: 30 40mA (maximum 10 seconds) The coupling should not be directly powered by a current source (transformer or power supply)! Adjustment of a vertical height difference of the NEM-362 coupler pocket Although the vertical distance between the rails and the coupler shaft is standardized in accordance with NEM-362, there are rare cases in which the vehicles come with a shaft height deviating from the norm. Document: HW1 / 05 Page 9 from 13

10 Generally speaking, the easiest work-around to achieve the correct NEM-362 required shaft height, is to exchange the wheels. Many manufacturers, such as Liliput and NPE, offer sets of wheels with various diameters. If the coupling is 1 mm too high when using wheels with 10,8 mm in diameter, these wheels should be exchanged for wheels with a diameter of about 9 mm. Exchanging the wheels is by far easier than manipulating the coupler pocket. In case of locomotives, this option is not given due to gearing mechanisms blocking the way. Document: HW1 / 05 Page 10 from 13

11 Couplings with different cable lengths and colours As the cable length required between the coupling and the decoder can differ from locomotive to locomotive, T4T offers each coupling with 4 different cable lengths - 50mm, 100mm, 150mm and 250mm. It is advisable to order the couplings with the required cable lengths rather than modifying them by attaching further cable (loss of warranty!). The cable length is measured from the crimp to the solder pad on the coupling! If the cable length is measured from the internal rear end of the coupling, then you will need to take off about 10mm from the nominal length, i.e. a cable with a nominal length of 50mm will measure about 40mm from the end of the dovetail! As the cable is very fine (0.5mm diameter), it is often very tricky to have a clear destinction of the marking. For this reason the white/black and yellow/black cables have an additional black mark on the end. For the white/red and yellow/red cables there is an additional red mark on the end! Manual Uncoupling Should it be necessary to uncouple two waggons from each other, please proceed in the following way: slightly pull the two waggons apart using two fingers. Unlock one of the two interlock hooks of the TC-H0 at the tip of the interlock hook using a fine tool, e.g. a small screw driver. The slight pull, generated with the two fingers, prevents that the unlocked coupling hook reverts to the coupling position. Then unlock the other coupling hook in the same way. Thereafter, the couplings will slide apart. Removing the Coupling In principle, removing the coupling is the reverse order of the installation instructions. However, it is imperative not to grip and pull the coupling by the coupling head, but to push the coupling out from the dovetail end! Hints for 3-rail systems The electronic components underneath the TC-H0 may under no circumstances touch the track system. The contact of the neutral conductor of a 3-wire track can damage the decoder. Care and maintenance of the Coupling The coupling is made from high quality materials. Much attention has been paid in particular to ensuring that the contact zones, which are also subject to a mechanical load, are maintenance free. All contact areas are gold plated to a high quality! Document: HW1 / 05 Page 11 from 13

12 We must emphasise that the coupling does not require contact with any cleaning material or oil. Application of any of these substances will lead to an impairment of the coupling, destruction of the coupling and loss of warranty! Control of the Coupling The electrical properties of the TC-H0 coupling have been set for the control via T4T decoders. Control via other products, which do not fall under the T4T seal of approval - "T4T TCCS compatible", is strongly discouraged. The control of the TC-H0 couplings using anything other than T4T or TCCS compatible decoders will lead to loss of warranty. Warranty If the coupling does not work properly, it can be returned to T4T. Please do not send the decoder. The warranty is void if there is physical damage, improper installation or improper use. The warranty period is 2 years from date of purchase. Document: HW1 / 05 Page 12 from 13

13 Specifications TC-H0 Technical Data Load max. 0.5 A continuous (according to decoder type) / 1 A stall (dependent on decoder output) Cable contact resistance max. 1.5 Ohm between 2 wagons Coupling strength approx. 40 mn Holding force between 2 wagons 10 N / short-term 20 N IR-Diode 850nm Peak Wave length Plug receptacle NEM 362 for H0 models; close-coupling capable Supply voltage actuator ~20 Volt PWM- controlled Contact surface PIM-copper /gold plated Connectors Type: JST SSH-003T-P0.2 Cable 4 x AWG 32 Dimension (L x W x H) approx (without coupling pins) x 6.5 x 4.7 mm Specifications are subject to change. All specifications are approx. values that may change without notice! Document: HW1 / 05 Page 13 from 13

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