MSM9026 MOSEL | Alldatasheet

Document overview

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Technical content

Features

To emulate S1207 chip and its derivatives, see data sheet PID 247. Driven by either 1.5 V x 4 battery or 5 - 6 V power supply. A 4x1 jumper header JP1 is provided to accept power source. A pair or strengthen wire (E1 & E2) is provided to accept the power source. 2 push button switches are provided to control the power on/off. Selectable (by JP2) auto power off function (after 60" no operation)is provided. A push button switch is provided to reset this M9026 board. A red LED lamp D3 is provided to indicate the power on or off. A 32-pin textool U3 is provided to store 27C010 EPROM (access time 120 ns or faster). 5 green LED lamps are provided on EAC area. 5 red LED lamps are provided on EAC area. 19 push button switches for triggers are provided on EAC area. A 2x1 jumper header JP4 is provided on EAC area to accept wires to speaker. A 3x1 jumper header JP5 is provided on EAC area to decide source for K1,2,3,4 triggers. A 3x5 jumper header is provided on EAC area to select LED lamps for 5 output pins or not. To be continued on page 3/6.

Description

By storing digitized sound data and options into 27C010 and inserting it onto U3, this MSM9026 board emulates the function of S1207 chip and its derivatives. The file for 27C010 content should be prepared by running program 9026pack.exe. The demanded external components are provided on board in specific EAC (External Application Component) area. Board Layout HI LO AB C AB C RW1 Vdd JP5SEL JP3 Vss RW1 RW2 RW3 RW4 Cout Vdd TGA TGB TGC OS OW OX OY OZ K1 K2 K3 K4 TGA TGB TGC SW4 SW3 SW2 SW1 SW8 SW7 SW6 SW5 SW12 SW11 SW10 SW9 SW16 SW15 SW14 SW13 OKY INT RW4 RW3 RW2 RW1 OS OW OX OY OZ OS OW OX OY OZ TEXTOOL for 27010 U3 U2 MOSEL VITELIC INC., MSM9026 V1M1 1996 (80C31) 9026 F/W 1.00 JP4 SPK SNK DRV (Red) (Green) SN: SW SW ON/OFF D 3 Vcc GND SW RST JP2 Auto Power Off 1.5V JP1

A AB BC C R32 R33 R40R39 R31 R38 HI LO OZ OY OX OW OS OS OW OX OY OZ OS OW OX OY OZ Green SNK DRV Red Block Diagram & Schematics 1 1 1 1 1

TGA,B,C TGA,B,C OS,W,X,Y,Z OS,W,X,Y,Z TGA,B,C TGA,B,C OS,W,X,Y,Z OS,W,X,Y,Z Cout Cout Min 3.15 Vcc-0.1 Typ. 2.2 2.8 Max. 0.9 0.1 Unit V V V V uA uA mA mA mA mA Remark V0=0.4V V0=Vcc-0.8

5 Vdd

6 Vdd

f f f f f f f f Parameter Stop pulse width Trigger pulse width Trigger pulse width Trigger pulse width Trigger pulse width Trigger pulse width Trigger pulse width Trigger pulse width Trigger pulse width Valid OS,W,X,Y,Z TGA,B,C TGA,B,C TGA,B,C TGA,B,C TGA,B,C TGA,B,C TGA,B,C TGA,B,C LED LED LED LED LED LED LED LED Min Typ. Max. Unit ms ms ms ms ms ms ms ms ms f led f led f led f led f led f led f led f led Remark pitch independent pitch = 0, SRI pitch = 1, SRI pitch = 2, SRI pitch = 3, SRI pitch = 4, SRI pitch = 5, SRI pitch = 6, SRI pitch = 7, SRI pitch = 0, SRI pitch = 1, SRI pitch = 2, SRI pitch = 3, SRI pitch = 4, SRI pitch = 5, SRI pitch = 6, SRI pitch = 7, SRI DC Characteristics A 3x6 jumper header is provided on EAC area to select drive circuit for 3 trigger inputs. A transistor 8050 is provided on EAC area to drive the current running through speaker. The board's AC characteristics is not identical to chip's. The DC characteristics of TGs input and outputs are the same as those of 74Cxx series. (continued) The board's DC characteristics is not identical to chip's. The board's behavior is not identical t o chip's. Neither identical to S1207's derivatives. 198% 158% 133% 115% 100% 88% 80% 73% SRI := Sample Rate Independent.

LED selection by 3X5 Jumper Auto Power off control JP2 open JP2 connected Power always on Auto power off Red LED.S is used for output OS Red LED.W is used for output OW Red LED.X is used for output OX Red LED.Y is used for output OY Red LED.Z is used for output OZ Green LED.Z is used for output OZ Green LED.Y is used for output OY Green LED.X is used for output OX Green LED.W is used for output OW Green LED.S is used for output OS OS OW OX OY OZ OZ OY OX OW OS DRV SNK DRV SNK DRV SNK DRV SNK DRV SNK DRV SNK 1 DRV SNK 1 DRV SNK 1 DRV SNK 1 DRV SNK 1

Trigger Drive Selection by 3X6 Jumper Use Vdd to drive TGA through 10K ohm (R31) and SW-TGA Use Vss to drive TGA through 10K ohm (R38) and SW-TGA Use Vss to drive TGA through SW-TGA Similar operation as TGA's Similar operation as TGA's Use Vdd to drive TGA through SW-TGA R38 TGA TGA R31 TGA TGA HI LO A BC A BC RS SR HI LO A BC A BC RS SR HI LO A BC A BC RS SR HI LO A BC A BC RS SR HI LO A BC A BC RS SR HI LO A BC A BC RS SR

#1, Creation Road I, Science - based Industrial Park, Hsinchu, 30077 Taiwan, ROC "audio_reply@ccmail.mosel.com.tw" TEL: 886-3-5770055 FAX: 886-3-5772788 FAX: 886-3-5784732 Taipei 7F, #102 Sec. 3, Ming Chung E. Road, Taipei,105 Taiwan, ROC TEL: 886-2-5451213 FAX: 886-2-5451214 Hongkong #19 Dai Fu Street, Taipo Industrial Estate, Taipo, N.T. Hongkong TEL: 852-2388-8277(MKO) TEL: 852-2665-4883 FAX: 852-2664-2406 FAX: 852-2770-8011(MKO) U.S.A. #3910 North First Street, San Jose, CA. 65134-1501 U.S.A. TEL: 1-408-433-6000 FAX: 1-408-433-0952 Before Operating 9026 To prepare voice file(s) To prepare up to 32 voice files by MES 2.0 or 3.0. These files must be 8-bit PCM file. To prepare a filled PRF To write down your demand options on PRF (product request form) is strongly recommended before you are running 9026pack.exe. To prepare a source text Using commercial text editor on personal computer, you can set up a source text in the format defined in 9026pack software user's manual (pid 392 10/96). In this source text, you can define the both word sections and sentence tables. This source text must have the file extension .SRC. Most of mask options can be defined on the screen in 9026pack.exe. The entry dependent options could be defined inside source text. To have a compiled binary file Running 9026pack.exe and entering keystrokes as prompt, you can easily define the options and read in the source text. Completing as the screen tells, you can get a compiled binary file in your specified file name. Its file extension is always .BIN. To have 27C010 programmed Programming this .BIN file into an 27C010 chip by commercial EPROM programmer, you have it ready. To insert this 27C010 To insert this EPROM chip into textool U3 of 9026 board in right direction. To set up LED selections To set up LED connection by jumper 3x5 if needed. To set up Trigger Drive To set up trigger drive circuit as your requirement on jumper 3x6. Without the drive source (either high or low, either R or bare wire) the switch keeps floating and never be capable to activate the trigger. Without right polarity of drive source you can neither trigger the sound and you may hurt this 9026 board. To configure demanded wires Ensuring you have both 1.5Vx4 power and speaker well connected, this board are ready to work. There are push-button switches to turn on or off the power. Red LED lamp D3 tells the power on. JP2 enables the auto power off function. Operation Flow Warning Output pin definition restricted: If you select LED dynamic flash, then the M9026 output level will remain the same as the output level of the previous entry. Trigger pin definition restricted: M9026 performs two trigger options only, active high & pull low & low latch as well as active low & pull high & high latch. The M9026 debounce time (min. trigger pulse width) is shown as table in page 3/6, not optional as chip. Misc Fuse : Not Available Power : 1.5V x 4 (battery) or 6 VDC power supply Dimension : (LxWxH) 160x115x20 mm textool included Weight : 150 g Demonstration Kit filled Product Request Form Run 9026PACK.EXE Get Output file filename.BIN and file filename.OPT Go EPROM programmer Get 27C010 programmed Insert onto 9026 board Source Text .SRC Voice files