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Alberici S.p.A. reserves the right to modify, without prior notice and in any way, any part of this manual and the technical specifications of this product, as part of the continuous pursuit of improvement of its products.
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CONTENTS 1. General description 2. Main Features 3. Electrical Features 4. ccTalk Italy communication protocol STORICO REVISIONI Revisione n° Data Modifica Note Creazione 1.00 21.09.05 Creazione HopperOne Rev. 1.01 16.04.16 Modifica testata e nome S11 Rev. 1.02 30.01.17 Sensori livello ottici...
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1.2 Safety The HopperOne S11 can be connected to and disconnected from its slide connector only when power supply is off. The installation must be carried out as specified in paragraph 2.3. Guarantee shall not apply if such instructions are not complied with.
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2.1 Overall dimensions 2.2 Position of the Chinch connector Reverse version (connector on the same side of the output of the coins) Standard version (connector on the opposite side of the output of the coins)
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2.3 Installation fasten the slide support, slide the hopper in for electrical connections , please see chapter 3 92mm 92mm ø 5.5 mm 68.5mm 118mm 245mm Please use conical head bolts slide hopper in Base fixing plate of the hopper (included with the hopper) ALWAYS CONNECT THIS METAL PLATE TO...
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3. Electrical Features All the signals handled by the hopper are by negative logic: each signal is considered active when its voltage is LOW (GND). 3.1 CINCH connector pin-out The connector can be located on the opposite side (Standard version) of the coins outlet, or on the same side (Reverse version).
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AWP and gaming Industry, but allso in other devices that use those components. cctalk® is an open standard. All documentation is available at web site: www.cctalk.org. The communication protocol of the Alberici ccTalk HopperCD is implemented according to the generic specification 4.2.
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Table 1 Standard address for different types of devices Address for Alberici Hopper is factory set as 3; the user can change the default address by using the MDCES commands Address change or Address random or by setting Hopper dip-switches. For details see cctalk 42- 2.pdf, Address poll.
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Address clash MDCES support 251 FB Address change MDCES support, non volatile 250 FA Address random MDCES support, non volatile 246 F6 Request manufacturer id ’Alberici group’ 245 F5 Request equipment category id ‘Payout’ 244 F4 Request product code ‘HopperTwo ccTalk’ 242 F2 Request serial number From 0 to 16.777.215...
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Hopper answer: [01] [06] [03] [00] ] [50][61][79][6F][75][74] [74] 2.1.4 Command header 244 [hexF4], Request product code Hopper answer with ASCII string of character, representing its factory type. For Alberici Hopper it’s HopperTwo ccTalk. Message format is: Host sends: [Dir] [00] [01] [F4] [Chk] Hopper answer: [01] [10] [Dir] [00] [a1][a2] .
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2.1.7 Command header 192 [hexC0], Request build code Hopper answer with ASCII string of character representing it’s hardware version and revision (usually label printed on electronic circuit board). Last revision of printed circuit board for Hopper is ALH02v00. Message format is: Host sends: [Dir] [00] [01] [C0] [Chk] Hopper answer: [01] [Nr.b] [Dir] [00] [a1] [a2]..
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Host sends: [Dir] [00] [01] [D8] [Chk] Hopper answer: [01] [05] [Dir] [00] [d1][d2][d3][d4][d5] [Chk] Alberici Hopper, at the moment, does not support write or read to memory. Answer to command is always as in example: Host sends: [03] [00] [01] [D8] [24] Hopper answer: [01] [05] [03] [00] [00][00][00][00][00] [F7] 2.2.4 Command header 172 [hexAC], Emergency stop.
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255. Before Dispense hopper coin command, hopper need to be enabled, else dispense action is not performed. Alberici hopper answer correctly to two format of dispense coin command. First message format is Host sends: [Dir] [04] [01] [A7] [sn1] [sn2] [sn3] [N°Coin][Chk]...
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2.2.8 Command header 164 [hexA4], Enable Hopper This command enable hopper before paying out coin. Command format is Host sends: [Dir][01][01] [A4] [d1][Chk] Hopper answer: [01] [00] [Dir] [00] [Chk] ACK d1 must be Hex [A5] in order to enable hopper. Example of message packets for Hopper (address 3) is Host sends: [03][01][01] [A4] [A5][B2] Hopper answer: [01] [00] [03] [00] [FC] ACK...
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2.3.2 Command header 252 [hexFC], Address clash Command Address clash has same answer from Hopper, like address poll command, but host issue this command with specific device address and not using broadcast address. Hopper answer with only one byte (non-standard message format), after a random value of time delay to prevent collision if two devices share same address.
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