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TOY SOLDIER SINGLE TOY CRANE

I7D5 (5/14/04) OPERATION MANUAL

COASTAL AMUSEMENTS, INC. 1935 SWARTHMORE AVE. LAKEWOOD, NJ 08701 TEL: (732) 905-6662 FAX: (732) 905-6815 E-MAIL: [email protected]

WMH-188/288 SERIAL INDEX

GENERAL DESCRIPTION 1

BLOCK DIAGRAM OF MAJOR COMPONENTS 2

PLAY INSTRUCTIONS 3

MAIN PC BOARD WIRING DIAGRAM 4

DIP SWITCH SETTINGS 6

SETTING CLAW STRENGTH 7

BOARD SELECTABLE VALUES OPTIONS 8

TEST MODES & ERROR CODES 9

CLAW CORD WINDING INSTRUCTIONS 11

TROUBLE SHOOTING 12

GANTRY & ASSEMBLY I 15

GANTRY & ASSEMBLY II 16

SCHEMATICS 17

GENERAL DESCRIPTION

Overview:

Your Toy Soldier consists of two main systems the hardware and the firmware.

The firmware is located in U3 a 27C512 EPROM and is processed by U1 a (78C32C-40) 8-BIT micro controller. The voice sound bytes are stored on U8 (API8108A). The games music is controlled by the processor and is generated by U4 (JFC95101) and U5 (YM2413) stores music files. The games main logic board will retain credits accumulated even after power is removed.

The hardware consists of the crane gantry, the control panel, the coin mechanism (and/or bill acceptor), payout sensors and Lighting systems.

The gantry consists of a sturdy metal frame, which rides rails built into the cabinet and is driven by the front/back motor located in the left side of the gantry structure when you are facing the . The up/down and left/right motors are contained in the carriage that rides the gantry’s rails.

The control panel consists of either a joystick and drop button, or control buttons, and the digital display. Joystick control is intuitive, and the button-equipped models are clearly labeled. The display shows at various times, accumulated credits, game time remaining, and diagnostic information.

The coin door can either support two (coin comparator type) coin mechanisms, or one comparator and a bill acceptor. The crane harness has wiring provided to install a bill acceptor, and a plate to neatly cover the area where the coin comparator was removed.

The prize chute is equipped with photoelectric sensors and reflectors to keep a tally of the number of prizes dispensed.

A fluorescent light fixture in the ceiling of the unit provides lighting for the prize floor, and the marquee. lights flash down the two forward corners also drawing the attention of passers by.

Behind the coin door you will find on the left the speaker, a voltmeter, and three adjustment knobs, VR1 VR2 and VOLUME. On the right a brass pendulum senses if the machine is shaken or moved suddenly, causing the main board to give the warning, “Don’t Shake The Machine!”

These components combine to give you a reliable, sturdy, and fun addition to your redemption enterprise, the Toy Soldier.

1

Block Diagram of Major Components

FLUORESCENT AC POWER LIGHTS SWITCH ROPE LIGHT CONTROLLER ROPE LIGHTS

POWER SUPPLY DOOR FLAP VOLUME MAIN PCB CONTROLLER CONTROL

SPEAKER DOOR PUSHER V FLAP PLATE MOTOR & MOTOR & GANTRY SWITCHES SWITCHES

CLAW ACCOUNTING CONTROL POTENTIOMETERS METERS PANEL

2

PLAY INSTRUCTIONS: 1. Open the coin door, on the top of the coin comparator you will see a black module with a blue sticker on the side held by a retaining spring. You have to insert a sample of the coin/token that you are going to use in the slot of this module. After inserting the coin/ token the comparator will accept this type of coin/token.

2. Once the comparator is set up, insert coins, each coin makes the machine give the voice prompt “way to go “ and advances the coin 1 meter one increment. After the proper number of credits is reached (default setting is 2 coins/tokens per play.) The game will enter play mode with the voice prompt “good luck.” The display will show the credits accumulated.

3. The joystick is intuitive, moving the crane gantry and carriage in the direction that it is pushed, once the claw is positioned the drop button allows the claw to lower, the drop button is inactive until the joystick has been used to move the gantry or carriage. If the machine is equipped with buttons they are used as follows: BACK button moves the gantry backward and the RIGHT button moves the carriage to the right for positioning the claw, pushing either button a second time causes the claw to lower or it will lower when game time expires.

4. Once the limit switches in the carriage detect that the claw has reached the bottom of its descent the claw will automatically close and wind up. During this phase the claw strength is determined by the main PCB and the setting of VR1.

5. When the claw returns to the carriage, the second stage of claw power is engaged which is controlled by VR2 and the main PCB. The gantry and carriage then return to the “home” position and release any prize that has been won.

6. If a prize been won, the optical sensors will be triggered, a voice says “congratulations” and the prize meter will register the win. The prize can then be retrieved through the flap door.

3

WMH-188/288 series Main PCB Wiring diagram

1 1 1 1 1 1 1 J10 J11 J8 J7 J2 J3 J1

JP4 RL10 EPROM U3 1 RL9 J12 1 J13 RL8

RL7 DIP SWITCH 2

RL6 DIP SWITCH 1 RL5 J6 J5 JP1 J4 RL4 1 1 1

J7 COLOR CONNECTION J1 COLOR CONNECTION 1 Rd/Wht +12 VDC 1 Black Ground 2 Or/Wht Coin 1 meter 2 Brown Joystick Front SW (N.O.) 3 Ye/Grn Coin 2 Meter 3 Red Joystick Back SW (N.O.) 4 Grn/Wht Prize Meter 4 Orange Joystick Right SW (N.O.) 5 Blu/Wht Ticket Meter 5 Yellow Joystick Left SW (N.O.) 6 Green Descend SW (N.O.) J8 COLOR CONNECTION 7 Blue Running SW (N.O.) 1 Brown Tilt Sw (N.O.) 8 Black Ground 2Purple Pusher Sw (N.O.) 3 Black Ground 9 Grey Descend (RIGHT) Button Light 4 Black Coin Sw. 1 Gnd. 10 White Running (FRONT) Button Light 5Wht/Grn Coin Sw. 1 Sig. 6 Red Coin Sw. 1 +12V J3 COLOR CONNECTION 7 Red Coin Sw. 2 +12V 1 Black 8 Wht/Blu Coin Sw. 2 Sig. 9 Black Coin Sw. 2 Gnd. 2 Green 10 Black Test Coin Sw Com. 3 Yellow 11 Grn/Wht Test Coin Sw. (N.O.) 4 Orange Super Card 12 White NOT USED 5 Red Connections 13 Red NOT USED 6 Brown 14 Red +12 VDC Pusher Motor 15 Grn/Wht Bill Acceptor Inhibit 7 16 Black Ground 8 Blue 17 Coin Inhibit Output Pos. 18 Green Coin Inhibit Output Neg.

4

J11 COLOR CONNECTION JP1 COLOR CONNECTION

1 Black to J 1 Black Ground IN 2 P

Orange 3 2 Black Ground

2 Brown to W 3 Black Ground IN4 9 Red 8 4 Yellow +5 VDC In 3 3

3 Red to 5 Yellow +5 VDC In EO 4 B Brown o 6 Red +12 VDC In a r

4 d 7 Red +12 VDC In 5 Orange EO 5 8 Orange +24 VDC In to Black 9 Orange +24 VDC In 10 Violet +48 VDC In J10 COLOR CONNECTION 1 Blue Prize Sensor Ground J4 COLOR CONNECTION 2 Grey Prize Sensor Signal 1 Brn/Org Front/Back Motor + 3 Brown Prize Sensor +12VDC 2 Rd/Blk Left Right Motor - 3 Org/Blk Up Down Motor - JP4 RESERVED 4 White Claw Coil 5 J12 COLOR CONNECTION 6 Blu/Org Front/back limit sw. 1 7

2 R 8 Vio/Yell Left/Right limit sw. E

3 S OUT 9 Pink Claw up limit sw. E

4 R GROUND 10 Black Claw Down limit sw. 5 V IN 11 E

6 D GROUND 12 7 OUT 13 8 14 Brown Front/Back Motor - 15 Red Left Right Motor + J13 COLOR CONNECTION 16 Orange Up Down Motor + 1 CLOCK RESERVED 17 Yellow Claw Coil 2 GROUND 18 19 Blue Front/back limit sw. Common J6 COLOR CONNECTION 20 Violet Left/Right limit sw. Common 1 White Volume Control Pin 1 21 Grey Claw Up/Dn. Limit sw.’s Common 2 Red Volume Control Pin 2 22 3 Black Volume Control Pin 3 23 4 Black Speaker (-) 24 5 Violet Speaker (+) 25

J5 COLOR CONNECTION 1 Red Pot. VR1 Signal 2 Orange Pot. VR1 Common 3 Yellow Pot. VR2 Signal 4 Green Pot. VR2 Common 5 Pink Claw Voltmeter (+) 6 Black Claw Voltmeter (-)

5

DIP SWITCH SETTINGS DIP SW 1 1 2 3 4 5 6 7 8 NOT USED OFF Lower, Then release ON Claw Drop Position Release at top OFF Installed Super Card Not Installed OFF On ON Catch in Air Off OFF Prize Chute Position Opposite of Home ON Front to Rear Same as Home OFF Highest Power RANDOM ON to Claw FIXED OFF Attract Mode ON Plays every 5min. (claw doesn’t close) ON Demo Game OFF OFF Motorized Exit Installed ON Door Function Not Installed OFF

DIP SW 2 1 2 3 4 5 6 7 8 6 ON ON 4 OFF ON Coins/Tokens Per Play 2 ON OFF 1 OFF OFF 4 ON ON 3 OFF ON Bill Acceptor Pulses per Play 2 ON OFF 1 OFF OFF ON ON Attract Mode Music OFF OFF ON Credit deduction on win* ON Play Until Win Function OFF Credit deduction every game OFF YES ON Editable Menu Settings NO OFF Button ON Control Panel Type Joystick OFF * In order for the play until win function to operate the crane must be equipped with a prize sensor.

Note: HOME and EXIT Positions

LEFT REAR RIGHT REAR

LEFT FRONT RIGHT FRONT

Control Panel 6

SETTING CLAW STRENGTH – The voltage level going to the claw coil can be adjusted with two potentiometers VR1 & VR2. VR1 controls the power going to the claw during the time that the claw is being retracted to the carriage. VR2 controls the power going to the claw as the gantry returns the claw to the “Home” position. Specific claw strength settings are very dependent on the prizes that are stocked in the crane. It is recommended that the claws lifting ability be tested with a variety of the prizes being used.

The Voltage levels being sent to the claw can be easily adjusted using the following procedure:

1 Adjust the switch on the rear of either coin comparator to the NORMALLY CLOSED position. (During normal operation the switch is set to NORMALLY OPEN.) Then power up the crane. The Digital display should show (CO). Reset the switch on the rear of the coin comparator to the NORMALLY OPEN position.

2 Push the joystick BACK and , the voltmeter above VR1 & VR2 will show the voltage that VR1 is currently set to. Turn VR1 potentiometer until the desired voltage is displayed on the voltmeter. The display shows (C1)

3 Move the joystick to the RIGHT and HOLD, the voltmeter above VR1 & VR2 will show the voltage that VR2 is currently set to. Turn VR2 potentiometer until the desired voltage is displayed on the voltmeter. The display shows (C2)

4 Pull the joystick FRONT and HOLD, the voltmeter above VR1 & VR2 will show the maximum voltage that can be sent to the claw. The display shows (C3) *

5 Turn the machine off and then back on to reenter normal operation.

* The Voltmeter supplied in the crane is for reference purposes only, please use calibrated test equipment for troubleshooting.

7

Board Selectable Values Options

With the machine off, switch pole 7 of DIP switch 2 to the ON position. Power up the unit and the displays should show a blinking (00). Your are now ready to proceed with set up. Momentarily moving the joystick to the BACK or LEFT increases the right (one’s) digit by one increment (1,2,3…), moving it momentarily to the RIGHT or FRONT increases the left (ten’s) digit one increment (10,20,30…). When the display matches the option number that you wish to modify press the DESCEND button, the display will stop flashing and show the value that the selected option is presently set to. You may use the joystick as described above to modify the value of the selected option. When you have modified the option to your desired value press DESCEND again, you will hear a double “beep” and the display will return to its flashing mode. You can either modify additional options or shut down the machine and return DIP switch 2 pole 7 to OFF and power up again to return to normal operation.

ITEM* SECTION DEFAULT NOTES VALUE 00 Welcome to set up - 01 Tickets awarded for coin insertion 0 02 Tickets awarded for bill insertion 0 07 Tickets awarded if prize is won 0 08 Mercy Tickets 0 09 The number of games that the machine will treat as Setting a value of “0” sets 10 a “group” for claw strength award purposes. the “group” size to 256 10 Game Play time (Seconds) Inputting a value less than 50 5 will give 5 seconds. * Values other than those shown in this table may be selectable from the set up menu; changing values for items not shown may affect machine reliability and operation. †If a number less than 11 is set for item 15 the following values will result:

Input Actual Value Value 0 100 1 110 2 120 3 130 4 140 5 150 6 160 7 170 8 180 9 190 10 200

8

Test Modes AUTOPLAY- This will put the gantry through its paces assuring the operation of all gantry motors and limit switches. Either push the joystick to the BACK & RIGHT Position or press the BACK & RIGHT buttons and then turn machine on. The crane will automatically proceed through the following steps and repeat the sequence after completion.

DISPLAY ACTION 9 Gantry goes to home position* 2 Gantry Carriage runs to RIGHT limit 3 Gantry Carriage runs to BACK limit 4 Gantry Carriage runs to LEFT limit 5 Gantry Carriage runs to FRONT limit 6 Gantry Centers and Drops Claw, 8 Claw Closes and Lifts *While at the home position the claw will close momentarily.

SYSTEM CHECKS- To perform the following tests first turn the unit off, then set one of the coin comparator switches to normally closed, and the bill acceptor credit signal line must be jumped to ground. CAUTION MUST BE USED COMPLETING THIS STEP, BE SURE THAT THE MACHINE IS UNPLUGGED, PINS 6 AND 4 OF THE BILL ACCEPTOR INTERFACE CONNECTOR CARRY 120VAC, DAMAGE OR INJURY CAN RESULT FROM CONTACT WITH THESE CONNECTIONS. 1) Acceptor Inhibit 6) AC Hot 2) Ground 3 2 1 7) Credit Signal 3) Empty 8) Ground 4) AC Neutral 6 5 4 9) Ground 5) +12 VDC 9 8 7 (Looking into plug) The credit signal line (White/Blue) is pin 7 on the bill acceptor interface connector. Pins 2,8,and 9 are ground. Jump pin 7 to pin 2,8, or 9. After the coin comparator switch is set to normally closed and the jumper has been properly set, plug the unit in and turn the power on. After the machine initializes the display will show (CC) to show that it is in test mode. The coin comparator switch can now be returned to normally open and the jumper CAREFULLY removed from the bill acceptor interface harness. The tests are selected with DIP switch 2 the values covered by the test can be scrolled through with the DESCEND button. After testing is completed be sure to return all switch poles to their operating settings.

DIP Description ITEM SW 2 Both display digits light single segments in step followed by each digit blinking all segments, 1 Display one’s digit first, then ten’s digit. Each pole on each DIP switches light a segment of the digital display, with the eighth pole 2 DIP switches causing all segments of the display to blink. Dip switch 1 is displayed on the right digit and DIP switch 2 on the left digit. 3 NOT USED NOT USED 4 YM2413 Pressing any button steps through the music files. 5 API8108A Pressing any button steps through the voice files 6 JFC95101 Pressing any button steps through the music and sound effects files Digital display shows (CL) pressing any button clears the record of values stored on the 7 CLEAR RECORD board to be reset to zero. Digital display shows (Ld) flashing, when the flashing stops values on the board are stored in 8 ENTER VALUES memory. 9

CLAW STRENGTH

With the unit off set one of the switches on the rear of either coin comparator to normally closed and then power up the unit. The digital display will show (CO). The comparator switch can be returned to normally open. Follow the table below to check voltages going to the claw.

JOYSTICK POSITION ITEM TESTED DIGITAL DISPLAY PUSH BACK VR1 C1 PUSH RIGHT VR2 C2 PULL FRONT CLAW Voltage (MAX) C3

GANTRY The bill acceptor credit signal line must be jumped to ground. CAUTION MUST BE USED COMPLETING THIS STEP, BE SURE THAT THE MACHINE IS UNPLUGGED, PINS 6 AND 4 OF THE BILL ACCEPTOR INTERFACE CONNECTOR CARRY 120VAC, DAMAGE OR INJURY CAN RESULT FROM CONTACT WITH THESE CONNECTIONS. The credit signal line (White/Blue) is pin 7 on the bill acceptor interface connector. Pins 2,8,and 9 are ground. Jump pin 7 to pin 2,8, or 9.

JOYSTICK POSITION ACTION DIGITAL DISPLAY PULL FRONT Claw Lowers a3 PUSH BACK Claw Raises a4 DESCEND BUTTON + Carriage moves right b1 JOYSTICK RIGHT DESCEND BUTTON + Carriage moves left b2 JOYSTICK LEFT DESCEND BUTTON + Gantry moves back b3 JOYSTICK BACK DESCEND BUTTON + Gantry moves forward b4 JOYSTICK FRONT

ERROR CODES

ERROR CODE EXPLANATION E0 CPU bit checksum error E1 Gantry not connected or stop up switch not operational. E6 Flap door motor or control board malfunction E9 Accounting meter malfunction.

10

CLAW CORD WINDING INSTRUCTIONS

CORRECT TO CLAW

INCORRECT

TO CLAW

When the display shows (d) after power up and display test, the claw cord is wound incorrectly. Turn the unit off and jump the bill acceptor credit line to ground pin 7 on the bill acceptor interface harness to either pin 2,8,or 9. CAUTION MUST BE USED COMPLETING THIS STEP, BE SURE THAT THE MACHINE IS UNPLUGGED, PINS 6 AND 4 OF THE BILL ACCEPTOR INTERFACE CONNECTOR CARRY 120VAC, DAMAGE OR INJURY CAN RESULT FROM CONTACT WITH THESE CONNECTIONS Then restore power to the machine the display will now show (a0). Push the joystick back the display will show (a4) and the claw will lower. Lower the claw until all the cord has unwound from the wheel. Return the bill acceptor interface to normal, turn the machine off, and then power up. The cord should wind correctly. NOTE: The cranes software will adjust to allow an incorrectly wound cord to function however this will greatly reduce the lifespan of the claw cord.

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TOY SOLDIER CRANE TROUBLE SHOOTING

1. Upon receipt of your crane all packing materials should be carefully removed. Care should be taken to ensure that ALL ties securing the claw and gantry are removed BEFORE operation is attempted. The unit should be placed on a smooth level surface and the wheel locks engaged to prevent accidental movement or “tilting” during game play.

2. This unit is designed FOR INDOOR USE ONLY exposure to the elements will cause premature failure.

3. Any repairs or maintenance that you Toy Soldier may require should only be carried out by FULLY QUALIFIED PERSONNEL failing to do so may result in unnecessary damage to the machine or injury. Please feel free to contact Coastal Amusements with any concerns that you may have. We may be contacted at:

By Phone: (732)-905-6662 By Fax: (732)-905-6815 Via Email: [email protected] Our Mailing address: Coastal Amusements 1935 Swarthmore Ave. Lakewood NJ 08701 U.S.A.

4. Caution should be taken to observe power supply polarity when repairing this machine, damage to components can occur from improper connections. Precautions should be taken when handling integrated circuits (chips) to avoid static discharge; machine should always be powered off before changing any components.

5. Coin Comparator will not accept coins/tokens.- If coins cannot be inserted into slot check slot for debris or damage. Check that a comparison coin has been inserted in the correct slot in the coin comparator. Ensure that coin comparator is compatible with coin/ tokens being used.

6. Coins/ Tokens are returned after insertion or no credit is given after coin insertion.

a. Check that coins/tokens are not malformed or damaged. b. Check that wiring harness is correctly connected to coin comparator. c. Check that “comparison” coin is of correct type and that it is inserted correctly (not cocked) in slot. d. Check that comparator model is compatible with coins/tokens being used

7. No credit after coin/token insertion-

a. Ensure that coin path is clear and aligned from coin comparator to cash box. b. Check that J8 is connected properly to main logic board.

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8. Crane Claw does not ”drop”-

a. Cord is improperly wound. Hold “stop- down” switch located on gantry (Item 28 Gantry & Assembly II), cycle power taking care that hands and fingers are not in a position to be pinched or otherwise injured, the cord should wind correctly. b. Check that claw cord is not “out of ” if it is, hand wind cord correctly (see cord winding instructions pg. 12 of manual) normal operation should be restored. Note: Front and Top gantry covers must be unscrewed and removed in order to access claw cord. c. Activation of “tilt” due to excess shaking play can cause this error code to appear.

9. If display shows C0 blinking-

a. Coin comparator switch is in wrong (normally closed) position; restoring switch to normally open and cycling power should restore normal operation. b. Attempts to “fool” the coin comparator can also cause the display to blink C0. A shorted or blocked coin comparator can also cause this condition.

10. Gantry does not “home” properly- a. Cycling power should restore normal operation, If it does not then check back or front depending on home position and left stop switches (Gantry &Assembly I items #23, #22 and #21 respectively). b. The main logic board has developed a fault.

11. Gantry does not move front or back with joystick operation-

a. Ensure that the front back switches of the joystick are connected and operating properly. b. Check that J1 is properly connected to main logic board. c. Check front and back stop switches (Gantry assembly I #’s 22 & 23 respectively) for correct operation and harness connection. d. Check front/back motor for proper operation and correct connection to harness. e. Check front/back fuse. f. Ensure that shaft pinion (Gantry assembly I # 13) is properly positioned. g. Check that J4 is properly connected to main logic board and that no pins are damaged or missing. h. Check all connections along gantry harness.

12. Gantry does not move left or right-

a. Ensure that the left right switches of the joystick are connected and operating properly. b. Check that J1 is properly connected to main logic board. c. Check that left stop switch is connected and operating properly. d. Check left/right motor for proper operation and correct connection to harness. e. Check left/right fuse. f. Ensure that shaft pinion (Gantry assembly II # 24) is properly positioned. g. Check that J4 is properly connected to main logic board and that no pins are damaged or missing. h. Check all connections along gantry harness.

13. Claw does not descend upon pushing “drop” button, only when game times out-

a. Check “drop” button for proper operation and connection to harness. b. Check that J1 is properly connected to main logic board.

13

14. Claw does not drop down at all-

a. Check up/down motor for proper operation and correct connection to harness. b. Check up/ down fuse. c. Ensure that shaft pinion (Gantry assembly II # 19) is properly positioned. d. Check that J4 is properly connected to main logic board and that no pins are damaged or missing.

15. Claw does not drop or does not travel a to game floor before stopping-

a. Check for stuck, knotted, or otherwise obstructed claw cord. b. Check stop up (Gantry assembly II # 29) switch for proper function and connections. * Stop up switch is normally closed as opposed to the other stop switches. c. Ensure that claw cord is of proper length.

16. Claw does not release prizes upon returning to “home” position-

a. Depending on home position check either front or back and left stop switch for proper function and connection. (Gantry &Assembly I items #23, #22 and #21 respectively) b. Check that J4 is properly connected to main logic board and that no pins are damaged or missing.

17. Claw does not return to up position, gantry moves to “home” position.

a. Check stop down switch for proper operation and connections.

18. Claw does not return to up position, no gantry movement-

a. Check up down motor for proper function and connections. b. Check up/ down fuse. c. Ensure that shaft pinion (Gantry assembly II # 19) is properly positioned.

19. Claw does not close, gantry returns to home position-

a. Check 48V on power supply. b. Check claw fuse. c. Check coil continuity and connections. d. Ensure VR1 &VR2 are set correctly.

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GANTRY ASSEMBLY DRAWINGS I ITEM # DESCRIPTION COASTAL PART # WU-MAR PART # 1,3,18,20 Front/Back Wheel PE-WHL-FB-002 S002 2,19 Crane Fixing Plate P008 4 Right Plate P015 5 Fixed Bearing S004 6 Rotating Shaft S014 7,8 Fixed Shaft S013 9 Black Cog PE-GEA-SHT-001 S007 10 Bearing mounting Plate P007 11 Bearing PE-BEA-GAN-S001 S001 12 Motor Mounting Bracket P006 13 Motor Shaft Pinion PE-SHT-PIN-S016 S016 14 Front/Back Motor PE-MTR-F/B SE5475M-21145-30Y 15 Stop Left Switch Bracket P004 16 Left Cover Plate P014 21 Stop Left switch 22 Stop Front switch PE-SWI-GA-PL 23 Stop Back switch

15

GANTRY ASSEMBLY DRAWINGS II ITEM # DESCRIPTION COASTAL PART # WU-MAR PART # 1 Carriage Rear Cover P013 2 Rotating Shaft S008 3 Rotating Shaft S009 4,5,21,22 Left/Right Wheel PE-WHL-L/R-006 S006 6 Claw Cord Wheel PE-WOW-S003 S003 7,9 Claw Cord PE-WHL-GAN-3005 S005 8 Claw Pulley Mounting Arm P009 10 Steel Motor mounting Plate P001 11,12 Bearing PE-BEA-GAN-S001 S001 13 Middle Bearing Bracket P003 14,15 Black Cog PE-GEA-SHT-007 S007 16,23 Motor Mounting Bracket P006 17 Conduit S015 18 Up/Down Spring L002 19,24 Motor Shaft Pinion PE-SHT-PIN-S016 S016 20 Up/Down Motor PE-MTR-U/D SE5075M-27095-30Y 25 Left/Right Motor PE-MTR-L/R SE5475M-21145-30Y 26 Carriage Front Cover P012 27 3- Claw Kit (coil included) 28 Stop Down Switch PE-SWI-GA-PL 29 Stop Up Switch PE-SWI-PC-OP29

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A B C D E

U31F 13 12 R80 74HC04 1M D [0..7] VCC Y1 D[0..7] 4 D0 D0 A0 A0 D0 D0 RP1 4 U1 8052 U2 U3 D1 D1 A1 A1 D1 D1 1 C1 12M C2 EA/VP 31 P0.0 39 D2 D2 3 D0 Q0 2 A2 A2 10 A0 O0 11 D2 D2 2 30P 30P VCC 38 4 5 9 12 P0.1 D3 D3 D1 Q1 A3 A3 A1 O1 D3 D3 3 19 37 7 6 8 13 X1 P0.2 D4 D4 D2 Q2 A4 A4 A2 O2 D4 D4 4 36 8 9 7 15 P0.3 D5 D5 D3 Q3 A5 A5 A3 O3 D5 D5 R155 35 13 12 6 16 5 RES P0.4 D6 D6 D4 Q4 A6 A6 A4 D6 D6 10K 18 34 14 15 5 O4 17 6 X2 P0.5 D7 D7 D5 Q5 A7 A7 A5 D7 D7 33 17 16 4 O5 18 7 U31C 74HC04 P0.6 D6 Q6 A8 A6 O6 8 32 A8 18 D7 Q7 19 A9 3 A7 19 5 6 9 P0.7 25 O7 9 A9 A10 A8 RESET 21 1 24 CWS A10 OC A11 A9 10K P2.0 22 11 21 CWB A11 G A12 A10 12 P2.1 23 23 INT0 P2.2 A12 A13 A11 U42A BCK 13 24 74HC373 2 14 INT1 P2.3 25 A13A [0..15] A14 26 A12 2 1 VT2 A14 A15 A13 3 15 T0 P2.4 26 27 3 BCS T1 P2.5 27 A15 1 A14 74LS04 BCK 1 P2.6 28 A15 BDI 2 P1.0/T2 P2.7 RD R51 10K VCC 20 U42B BCS BDO P1.1/T2X WR CE 3 17 22 OE 4 3 P14 P1.2 RD PSEN 4 WR 16 5 P1.3 29 ALE R52 10K 74LS04 PSEN TX 27C512 U39 VCC BUSY 6 P1.4 30 ALE/P RX U31B ACK 7 P1.5 TXD 11 1 CS VCC 8 BDI STR 8 P1.6 RXD 10 3 4 2 SK NC 7 R111 10K BDO P1.7 3 DI ORG 6 74HC04 4 DO GND 5 VCC U42D 74LS04 R110 10K 93C66 U37 8 9 A12 U32 8 VCC /PBRST 1 A13 1 A Y0 15 EP0 2 7 2 A14 2 B Y1 14 EP1 2 /ST TD Q39 R153 1K 6 3 TX-IN 3 C Y2 13 EP2 /RST TOL A1015 5 4 Y3 12 EP3 RST GND U42F A15 Y4 11 EP4 R154 1K LTC1232 13 12 6 G1 Y5 10 EP5 TX-OUT 4 G2A Y6 9 EP6 U31D 74LS04 5 G2B Y7 7 EP7 9 8 RES1 1 IN1 O1 16 NCWS 74LS138 74HC04 2 IN2 O2 15 CWS1 3 IN3 O3 14 CK U31E U42E U42C 4 IN4 O4 13 CWB 11 10 RES2 5 IN5 O5 12 11 10 5 6 NCWB 6 IN6 O6 11 CDS- 74HC04 RX 74LS04 74LS04 7 IN7 O7 10 8 9 (Coin Inhibit -) R76 10K VCC GND COM 1 U44 2003 1 Title R75 10K Main System Size Document Number Rev 1 2 CDS+ 1 U31A 74HC04 (Coin Inhibit +) W9803D Circuit Diagram Date:Tuesday, March 16, 2004 Sheet 17of A B C D E A B C D E CIRCUIT DIAGRAM 18 D0 U35 74LS273 U23 2003 IM1 17 WIRING D1 3 D1 Q1 2 1 IN1 O1 16 IM2 IM1 J8 16 D2 4 D2 Q2 5 2 IN2 O2 15 OM IM2 15 SSR D3 7 D3 Q3 6 3 IN3 O3 14 HPM OM 14 +12V D4 8 D4 Q4 9 4 IN4 O4 13 HPM 13 Gray D513 12 5 12 4 D5 Q5 IN5 O5 HP 12 4 D614 D6 Q6 15 6 IN6 O6 11SSR SSR 11 + D717 D7 Q7 16 VT1 7 IN7 O7 10 EO5 10 18 D8 Q8 19 VT0 8 GND COM 9 +12V 9 8 11 CLK 7 1 DC CLR 6 U28 74LS273 PIN19 5 RES2 4 - 8 WR 3 10 U29C 74LS02 2 Red / White 9 EP3 C36 1 30P Push-Plate Motor ORIGINAL 3 3

18 Gray NEW 17 J8 16 SSR U23 2003 15 +12V + 1 IN1 O1 16 14 JP1 2 IN2 O2 15 SSR 13 JP2 3 IN3 O3 14 J8 PIN15 12 1 4 IN4 O4 13 11 GND 2 2 DC 5 IN5 O5 12 10 3 1 6 IN6 O6 11 2SB2955 9 HEADER 3 HEADER 2 7 IN7 O7 10 8 - 8 GND COM 9 1K 7 6 Red / White 5 4 2 3 Push-Plate Motor 2 2 1 W021610

Title Push-Plate Control Size Document Number Rev WMH-188C Wiring Diagram 1 Date:Tuesday, March 16, 2004 Sheet 11of 1 1

A B C D E A B C D E

W021610 CIRCUIT DIAGRAM

4 JP1 GND +12V 4 +12V R1 C1 F1 JP2 1 CK 2 1 3 2 D1 K1 100om/0.5W 0.47u/50V 3A FUSE HEADER 3 1N4001 HEADER 2 R2 1K

R3 Q1 LE-12FW 3.3K 2SD669

LED1 3mm LED 3 3 Q2 2SB649

2 2

1 1

Title </p><p>Size Document Number Rev A W021610 1 Date:Tuesday, March 16, 2004 Sheet 11of A B C D E A B C D E</p><p>VCC RP2 D[0..7] D0 RW- U20 74LS244 D1 SFB 1 RW- SFB SLR D2 SLR R99 R100 R102 18 1Y1 1A1 2 2 D316 4 TSEN 1Y2 1A2 3 VCC VCC VCC D414 6 SU 1Y3 1A3 4 1 4 1 4 1 4 D512 1Y4 1A4 8 SD 470 470 470 9 11 5 ISO10 ISO9 ISO7 D6 2Y1 2A1 JOG 6 4 D7 7 13 PC817 PC817 PC817 4 2Y2 2A2 7 5 2Y3 2A3 15 3 17 8 2 3 2 3 2 3 2Y4 2A4 9 WITH RW- SFB SW SLR SW 1 1G TSEN SU SD 19 10K R101 R103 R107 2G RD RSEN VCC VCC VCC U27A C40 1 4 1 4 1 4 RD 1 470 470 470 3 ISO8 ISO4 ISO6 PC817 PC817 PC817 EP2 2 EP3 471P 2 3 74LS32 Turn Sensor 2 3 SU SW 2 3 SD SW VCC RP3 RD D0 U21 74LS244 BF 1 D118 2 BB R104 JOG R105 BF R97 BB D2 1Y1 1A1 BL 2 3 16 4 3 1Y2 1A2 3 VCC VCC VCC D314 6 BR 1 4 5 4 D4 1Y3 1A3 BP 4 1 4 1 4 12 1Y4 1A4 8 470 470 470 D5 BD 5 ISO5 ISO11 ISO14 9 2Y1 2A1 11 D6 7 13 HP-SW6 PC817 PC817 PC817 D7 2Y2 2A2 OSEN 7 5 2Y3 2A3 15 2 3 2 3 3 17 8 2 3 2Y4 2A4 9 JOG SW FRONT SW BACK SW 1 1G U27B 19 10K R108 BL R98 BR R106 BP</p><p>6 74LS32 2G VCC VCC VCC 1 4 1 4 VCC RP4 470 1 4 470 470 C41 D0 U22 74HC244 CIN1 ISO15 ISO12 ISO16 471P 1 PC817 PC817 PC817 D118 1Y1 1A1 2 CIN2 2 16 4 D2 1Y2 1A2 DOOR3 2 3 2 3 14 6 2 3 2 D3 1Y3 1A3 MOVE 4 LEFT SW RIGHT SW PICK UP SW 2 12 8 D4 1Y4 1A4 IN1 5 D5 9 2Y1 2A1 11 IN2 7 13 6 R95 R79 R93 EP4 D6 2Y2 2A2 IN3 7 BD HP-SW OSEN D7 5 2Y3 2A3 15 IN4 VCC VCC VCC 3 17 8 1 4 1 4 10 9 2Y4 2A4 1 4 9 470 470 470 1 C42 ISO13 ISO20 ISO17 1G 19 10K PC817 PC817 PC817 2G 2 3 2 3 471P DOWN SW 2 3 HP SW OUT SEN D15 U27C R78 R77 R74 470 CIN1 CIN2 VCC 8 74LS32 LED VCC VCC 470 1 4 470 1 4 1 DOOR ISO13 ISO20 1 DOOR MOVE PC817 PC817 Title MOVE IN1 IN1 IN2 2 3 2 3 Input System IN2 IN3 COIN1 COIN2 Size Document Number Rev IN3 IN4 1 IN4 W9803D Circuit Diagram Date:Tuesday, March 16, 2004 Sheet 27of A B C D E A B C D E D [0..7]</p><p>D0 IM1 D0 D1 U35 74LS273 U23 2003 IM2 D1 U28 74LS273 U36 2003 D23 D1 Q1 2 1 IN1 O1 16 OM IM1 D2 3 D1 Q1 2 1 IN1 O1 16 LO1 D34 D2 Q2 5 2 IN2 O2 15 HPM IM2 D3 4 D2 Q2 5 2 IN2 O2 15 LO2 D47 D3 Q3 6 3 IN3 O3 14 OM D4 7 D3 Q3 6 3 IN3 O3 14 LO3 4 4 D58 D4 Q4 9 4 IN4 O4 13 HPM D5 8 D4 Q4 9 4 IN4 O4 13 EO1 13D6 D5 Q5 12 5 IN5 O5 12 HP D613 D5 Q5 12 5 IN5 O5 12 14D7 D6 Q6 15 6 IN6 O6 11 SSR D714 D6 Q6 15 6 IN6 O6 11 17 D7 Q7 16 VT1 7 IN7 O7 10 EO5 17 D7 Q7 16 7 IN7 O7 10 EO4 18 D8 Q8 19 VT0 8 GND COM 9 +12V 18 D8 Q8 19 8 GND COM 9 11 11 CLK CLK 1 11 1 CLR WR CLR U29D 13 74LS02 +12V RES2 EP4 12 RES2 C37 8 WR 10 U29C 471P R143 74LS02 Q27 9 EP3 D24 C36 B649 EO5+ 471P 2K2 1N4001 LPD D0 74LS273 U25 2003 3 U34 EO2 3 D1 R63 470 3 D1 Q1 2 1 IN1 O1 16 DPA D2 R64 470 D0 4 D2 Q2 5 2 IN2 O2 15 DPB U45 D3 R65 470 D1 7 D3 Q3 6 3 IN3 O3 14 DPC 3 D0 Q0 2 SD0 D4 R66 470 D2 +12V 8 D4 Q4 9 4 IN4 O4 13 DPD 4 D1 Q1 5 SD1 D5 R67 470 D3 13 D5 Q5 12 5 IN5 O5 12 DPE 6 D2 Q2 7 SD2 D6 R68 470 D4 R142 14 D6 Q6 15 6 IN6 O6 11 DPF 11 D3 Q3 10 SD3 D7 R69 470 D5 Q28 17 16 7 10 DPG 13 12 SD4 D7 Q7 IN7 O7 D4 Q4 B649 18 D8 Q8 19 8 GND COM 9 14 D5 Q5 15 SD5 2K2 11 9 CLK DISPLAY CONTROL CLK LPP 1 1 CLR DP RES2 CLR EO3 VCC 11 WR WR 5 40174 CONTROL SUPER CARD 13 U30D U30B 4 74LS02 12 EP5 EP6 6 74LS02 C39 2 IM1 IN1 OM IN3 2 471P R112 1K R116 1K</p><p>D0 U16 74LS273 U17 2003 R113 1K5 Q19 R117 1K5 Q21 D13 D1 Q1 2 1 IN1 O1 16 DRV-DU A1015 A1015 D24 D2 Q2 5 2 IN2 O2 15 DRV-D D37 D3 Q3 6 3 IN3 O3 14 DRV-RL D48 D4 Q4 9 4 IN4 O4 13 DRV-R 13D5 D5 Q5 12 5 IN5 O5 12 DRV-FB HPM IN2 IM2 IN4 R114 1K R118 1K 14D6 D6 Q6 15 6 IN6 O6 11 DRV-F D[0..7] 17D7 D7 Q7 16 7 IN7 O7 10 18 19 8 9 R115 1K5 Q20 R119 1K5 Q22 D8 Q8 GND COM A1015 A1015 11 CLK 1 RES2 CLR MOTOR CONTROL ARM0 1 1 2 EP2 ARM1 1 U30A Title 74LS02 3 WR C38 Output System 471P Size Document Number Rev W9803D Circuit Diagram 1 Date:Tuesday, March 16, 2004 Sheet 37of A B C D E A B C D E</p><p>U6 D [0..7] OUT 3 VO+ 2 R4 1K G VO+ VO+ 1 IN +12V 4 7805 4</p><p>D0 21 RO 16 D0 D0 D1 U5 U24 D1 D1 U4 D222 D0 RO 19 15 RO D0 17 D2 37D2 D0 CH1 4 R1 1K D323 D1 D1 18 D3 VCC VCC 36D3 D1 CH2 3 R2 1K D4 2 D2 D2 2 D4 R3 1K 35D4 D2 CH3 38 D5 3 D3 MO 18Pin D3 3 D5 S1 34D5 D3 D6 4 D4 D4 4 D6 33D6 D4 IOA0 21 1 16 D7 6 D5 MO 18 14 MO D5 5 D7 32D7 D5 IOA1 20 2 15 7 D6 D6 6 D[0..7] 31 D6 IOA2 19 3 14 8 D7 D7 7 XO 30 D7 IOA3 18 4 13 RES 16 13 RES 17 5 12 10 15 12 9 IOA4 XOUT CE CE XOUT XI RES1 23 RES IOA5 16 6 11 WR 14 11 WR 15 7 10 11 13 10 8 IOA6 GND A0 A0 GND XOY2 XI XIN XIN ALE 22 CLK IOA7 14 8 9 3567 A0 2413 3 27 S2 1 1 3 BDIR WR 29 13 1 16 3.579M EP0 BC1 IOB0 C3 C4 MO A0 28 12 2 15 RES1 BC2 IOB1 11 3 14 30P 30P 24 IOB2 10 4 13 25 A9 IOB3 9 5 12 R7 4K7 R6 2K2 A8 IOB4 C5 RO VO+ 40 8 6 11 VCC IOB5 7 7 10 104P 1 IOB6 6 8 9 GND IOB7 R8 4K7 R5 2K2 SW DIP-8 Q1 8910 C1815 VO+ 2 RD 1 U29A R9 R12 C8 R11 R10 C7 74LS02 3</p><p>2 1 470 10u/16V 330 220K 1u/50V 2 C10 C11 5 EP1 SP- U29B 4 SP+ 74LS02 C12 6 WR 470u/25V 10u/16V 8 1 U33 U8 VCC 104P U7 C33 VOL2 2 + Q0 3 10 TG1 VDD 12 R15 6 Q1 14 11 TG2 ROSC 8 VO+ VOL1 3 - Q2 2 13 TG3 COM 3 C9 LM380 104P R13 1K VT0 10 A Q3 15 14 TG4 VO1 6 1M C47 5 14 VT1 13 B Q4 1 15 SBT VO2 5 104P VT2 12 C Q5 6 16 1 1u/50V VOL3 +12V IRP BLK R16 11 D Q6 7 9 NC STP 2 4 4 7 1 Q7 GND COUT C14 Q8 9 5 API8001 R17 1 1 Q9 R14 1K 1 Title 4028 1u/50V Sound System C13 103P Size Document Number Rev W9803D Circuit Diagram 1 Date:Tuesday, March 16, 2004 Sheet 47of A B C D E A B C D E</p><p>ZR4 ZR5 2 2 1 ..2 1 ..2 R44 R46 14D220K 14D220K ZR15 ZR2 .. P6KE30CA 10/1W 2 .. +24V 4 P6KE30CA 10/1W 4 UD+ 1 1 FB+ 1 1 1 ZR12 RL6 +24V .. RL10 RL9 14D220K UD- 2 FB- 2 2 1 RELAY DPDT RELAY DPDT R21 R24 R25 +24V RELAY DPDT +24V +24V 1N4001 Q13 R87 2K2 1N4001 1N4001 DRV-DU Q17 R91 2K2 R92 2K2 Q18 A1015 DRV-FB DRV-F A1015 A1015</p><p>1 DOWN & UP 3 FRONT & BACK ZR1 ZR6 FRONT 3 . ZR13 1 2 1 2 +24V .. .. P6KE30CA P6KE30CA 14D220K . ZR16</p><p>2 1 2 +24V .. +24V 14D220K 2</p><p>ZR8 ZR7 1 2 1 2 1 2 ZR14 .. .. +24V .. R45 RL5 14D220K 14D220K 14D220K 2</p><p>ZR18 1 2 .. +24V P6KE30CA 2 10/1W 2 2 RL+ 1 1 1 ZR11 R20</p><p>+24V .. RL8 RL7 14D220K RELAY DPDT +24V ZR9 .. 1 1N4001 14D220K RL- 2 2 1 R88 2K2 Q14 DRV-D 1</p><p>. A1015 RELAY DPDT ZR10 DOWN R23 R22 14D220K</p><p>RELAY DPDT . +24V +24V</p><p>1N4001 1N4001 2 Q15 R89 2K2 R90 2K2 Q16 DRV-RL DRV-R A1015 A1015</p><p>1 RIGHT & LEFT ZR17 ZR3 RIGHT 1 Title 1 ..2 1 ..2 +24V P6KE30CA 14D220K Motor Control Size Document Number Rev W9803D Circuit Diagram 1 Date:Tuesday, March 16, 2004 Sheet 57of A B C D E A B C D E</p><p>VR12</p><p>VR22 CW1 CW4 R147 68K Q36 R146 68K Q37 CWS1 200/50W NCWS 200/50W 4 B649 B649 4 VRCOM VR11</p><p>VR21</p><p>RL4 N.C.</p><p>CW+ U43 Q3 VM+ 3 ISENSE V+ 5 2SC5200 ZR19 R152 1K 2 ILIM D2 13 4 1 2 COMP V- +48V .. 1N5626 6 VREF C45 VCC 12 V14K CW- 101P 10 VO VC 11 3 7 VM- 3 R150 VEE 1K RL1 LM723CN (MC1723C) 1 NO1 NO2 2 10K 3 COM1 COM2 4 TO KEEP ACCOUNT 5 NC1 NC2 6 DRVC3 (W9803D5) C46 103P R? 7 8 +24V CL CL Q? EO1 (U36 PIN13) D18 RELAY OMI 24V A1015 DRVC3 +24V D23 1K 1N4001 RL4 1N4001 R151 Q38 2 NCWB 2 C1815 +48V 1K DRVC3 R? NORMAL Q? TX-OUT (U44 PIN13) RELAY SPDT 16A 1C C1815 1K</p><p>C? R?</p><p>105K/250V 4.7/2W</p><p>1 1 Title 3-Claws Control Size Document Number Rev W9803D Circuit Diagram 1 Date:Tuesday, March 16, 2004 Sheet 67of A B C D E A B C D E</p><p>R127 10/1W 4 4</p><p>RL3 RL4 1 NO1 NO2 2 1 NO1 NO2 2 J1 3 COM1 COM2 4 3 COM1 COM2 4 ARM- 1 +24V 2 5 NC1 NC2 6 5 NC1 NC2 6 3 +12V ARM+ CW- JUMPER 7 8 7 8 CL CL CL CL RL2 +12V RELAY OMI 24V RELAY OMI 24V 1 NO1 NO2 2 D19 D18 CLAW'S MOTOR CONNECT WITH +12V +24V +24V 3 COM1 COM2 4 (PIN2 & 3 SHORT) R137 10/1W 3 1N4001 1N4001 5 NC1 NC2 6 3 R126 2K2 Q24 R125 2K2 Q23 C1815 C1815 7 8 D17 D16 CL CL R124 1K R123 1K R139 ARM0 ARM1 RELAY OMI 24V D21 R136 1N4001 1N4001 CLAW ARM'S MOTOR +24V CW+ WITH RW- 1N4001 IF RL2 OUT OF ORDER Q26 EO3 THEN R136 TO SHORT. A1015</p><p>D1 R62 470 RSEN VCC 2 2 LED SN1</p><p>SEN1 R61 2K2 VCC RECEIVE SEN Q12 R138 1K C1815 C43</p><p>100P</p><p>D20 VCC R129 R128 TURN SEN LED 1K 56K 1 Q25 1 C1815 Title Q25 DON'T TAKE IN Q25 B & C SHORT. 2-Claws Control Size Document Number Rev W9803D Circuit Diagram 1 Date:Tuesday, March 16, 2004 Sheet 67of A B C D E A B C D D [0..7] E J4 JP1 13 +12V MD0 D0 D0 POWER U40 1 25 EO1 MD1 D1 D1 VCC +12V +24V MD2 D2 D2 2 12 LO2 2 1A1 1Y1 18 D0 24 MD3 4 16 D3 D3 3 LO3 1A2 1Y2 D1 VCC 11 RECEIVE SEN MD4 6 1A3 1Y3 14 D4 D4 D2 4 C34 C35 C43 23 JOG SW MD5 8 1A4 1Y4 12 D5 D5 D3 5 470u/25V 470u/25V 10 11 9 6 +12V 470u/35V SD SW MD6 2A1 2Y1 D6 D6 D4 4 22 MD7 13 7 D7 D7 4 7 2A2 2Y2 D5 +24V 9 SU SW 15 2A3 2Y3 5 D6 8 21 17 3 9 2A4 2Y4 D7 +48V 8 SLR SW 10 J11 20 1 1G 7 19 3.96" <a href="/tags/Japan/" rel="tag">JAPAN</a> 1 IN2 TURN SEN 2G 2 IN4 19 J5 6 3 EO4 SFB SW 74LS244 18 1 VR11 4 EO5 ARM+ MD0 D0 5 U41 2 VR12 TO VR1 5 EO5+ ARM- MD1 D1 17 2 3 3 VR21 CW- MD2 Q0 D0 D2 2.54" 4 5 4 4 VR22 TO VR2 TO W9833 CW+ MD3 Q1 D1 D3 16 6 7 5 VM+ Door Control Board UD+ MD4 Q2 D2 D4 VM- TO Voltmeter 3 UD- 9 Q3 D3 8 6 15 J2 MD5 12 13 D5 RL+ MD6 Q4 D4 D6 2.54" 2 RL- DP 15 14 J6 1 MD7 Q5 D5 D7 3 14 FB+ 2 DPA 16 Q6 D6 17 3 1 19 18 1 VOL1 TO VOLUME VR (1K) FB- 3 DPB Q7 D7 2 VOL2 4 SPC 1 3 VOL3 CONNECTOR DB25 5 DPD OC RX SP- DPE 11 4 J8 6 CLK 5 SP+ 7 DPF TO SPEAKER 1 MOVE 8 DPG 74LS374 2.54" 2 DOOR +12V 9 12 3 LO1 RD J13 10 11 U27D 4 11 LO2 CK COIN1 LO3 74LS32 13 WR 8 1 5 12 U30C 2 TO AD LAMP BOARD +12V EO1 10 6 13 9 74LS02 7 EP7 2.54" COIN2 2.54" TO DISPLAY BOARD J12 8 JP4 MD7 9 J1 8 1 VCC 10 2 2 BCS HP SW 1 15 MD6 2 11 7 3 P14 HP 2 FRONT SW 12 14 MD5 4 13 +12V 3 BACK SW BDI RIGHT SW 6 5 14 4 BDO SSR LEFT SW 13 MD4 VCC 6 15 5 5 7 TX 6 DOWN SW BCS 16 CDS+ PICK UP SW 12 MD3 8 17 7 4 CDS- 8 2.54" 18 LPD 11 MD2 BUSY J10 9 3 2.54" 10 LPP +12V 10 ACK 1 +12V WITH OUTPUT SENSOR J7 MD1 2 OUT SEN 2.54" 2 J3 9 3 GND 1 +12V MD0 RX 2 IM1 1 1 2.54" 3 HPM 2 SD0 STR (ORIGINAL) OM SD1 3*5 J10-1 4 3 TO METERIM2 SD2 1 +12V 5 4 1 1 5 SD3 2.54" Title 2 GND OUT SEN 6 SD4 SD5 3 TO+5V AD CONTROL BOARD POWER 7 Connector 4 VCC 8 TO SUPERVCC CARD Size Document Number Rev 2.54" 2.54" W9803D Circuit Diagram 1 Date:Tuesday, March 16, 2004 Sheet 77of A B C D E</p> </div> </div> </div> </div> </div> </div> </div> <script src="https://cdnjs.cloudflare.com/ajax/libs/jquery/3.6.1/jquery.min.js" integrity="sha512-aVKKRRi/Q/YV+4mjoKBsE4x3H+BkegoM/em46NNlCqNTmUYADjBbeNefNxYV7giUp0VxICtqdrbqU7iVaeZNXA==" crossorigin="anonymous" referrerpolicy="no-referrer"></script> <script src="/js/details118.16.js"></script> <script> var sc_project = 11552861; var sc_invisible = 1; var sc_security = "b956b151"; </script> <script src="https://www.statcounter.com/counter/counter.js" async></script> <noscript><div class="statcounter"><a title="Web Analytics" href="http://statcounter.com/" target="_blank"><img class="statcounter" src="//c.statcounter.com/11552861/0/b956b151/1/" alt="Web Analytics"></a></div></noscript> </body> </html><script data-cfasync="false" src="/cdn-cgi/scripts/5c5dd728/cloudflare-static/email-decode.min.js"></script>