Texas Instruments SN76477
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SN76477 " complex sound generator" is a
sound chip A sound chip is an integrated circuit (chip) designed to produce audio signals through digital, analog or mixed-mode electronics. Sound chips are typically fabricated on metal–oxide–semiconductor (MOS) mixed-signal chips that process a ...
produced by
Texas Instruments Texas Instruments Incorporated (TI) is an American multinational semiconductor company headquartered in Dallas, Texas. It is one of the top 10 semiconductor companies worldwide based on sales volume. The company's focus is on developing analog ...
(TI). The chip came to market in 1978, and TI ceased production of the part. A compatible version is identified as ICS76477.BG-Micro lists ICS76477 Sound Generator.
The chip is typically used as a sound effects generator in
arcade game An arcade game or coin-op game is a coin-operated entertainment machine typically installed in public businesses such as restaurants, bars and amusement arcades. Most arcade games are presented as primarily game of skill, games of skill and in ...
s and toys and for hobby projects. The use of the SN76477 in a musical context is limited by the fact that it was difficult to electronically control the pitch of the produced sound.SN-Voice: discussion of the SN Voice synthesiser.


Overview

The following quotation summarizes its facilities: There were two different sizes of the SN76477 available. The SN76477N was in a standard 0.6 in (15.24 mm) width
dual in-line package In microelectronics, a dual in-line package (DIP or DIL) is an Semiconductor package, electronic component package with a rectangular housing and two parallel rows of electrical connecting pins. The package may be through-hole technology, throu ...
(DIP). The SN76477NF was in a less common 0.4 inch (10.16 mm) width DIP. The text below is intended to explain the use of the 76477 in the demo circuit shown at the right. * SW1 is a five position rotary switch that selects which
capacitor In electrical engineering, a capacitor is a device that stores electrical energy by accumulating electric charges on two closely spaced surfaces that are insulated from each other. The capacitor was originally known as the condenser, a term st ...
controls the one-shot circuit that sets the envelope timing. * SW24 (toggle or momentary) is the one-shot trigger switch, closed position is active. * R1 a one megohm linear
potentiometer A potentiometer is a three- terminal resistor with a sliding or rotating contact that forms an adjustable voltage divider. If only two terminals are used, one end and the wiper, it acts as a variable resistor or rheostat. The measuring instrum ...
sets the actual one-shot timing (in series with fixed 27k resistor R2) within the range selected by SW1. * SW2 is a five position rotary switch which selects which capacitor sets the range for the low frequency oscillator (SLF oscillator in future references). * SW3 (toggle or momentary) is the switch used to turn the low frequency oscillator on or off. * R3 a one megaohm linear potentiometer (in series with 27k fixed resistor R4) sets the actual frequency for the SLF oscillator. * SW4 (toggle or momentary) is the switch that takes control of the
voltage-controlled oscillator A voltage-controlled oscillator (VCO) is an electronic oscillator whose oscillation frequency is controlled by a voltage input. The applied input voltage determines the instantaneous oscillation frequency. Consequently, a VCO can be used for fre ...
's (VCO)
duty cycle A duty cycle or power cycle is the fraction of one period in which a signal or system is active. Duty cycle is commonly expressed as a percentage or a ratio. A period is the time it takes for a signal to complete an on-and-off cycle. As a for ...
(called pitch control). If the switch is off the VCO operates at 50% duty cycle by default. * R6 a 50k ohm linear potentiometer is used (in series with a 50k ohm fixed resistor R5) form a voltage divider used to set the VCO duty cycle, the on time vs off time of the waveform (most variable inputs to this chip are looking for a resistance, this input looks for a voltage). The source voltage for this voltage divider (R5 & R6) is the five volt busbar. * SW6 is a four position rotary switch which selects which one of three resistors (or no resistor) sets the range of frequency for the VCO. * SW5 (toggle or momentary) is the switch that turns the VCO on or off. * R8 is a one megohm linear potentiometer (in series with 27k fixed resistor R7) which sets the actual frequency of the VCO (within the range selected by SW6). * SW7 is a six position rotary switch which selects which of six capacitors also sets the VCO frequency range. * SW8 (toggle or momentary) is the switch that selects either an internal voltage control or an external voltage control for the VCO (if set to the external input with no input connected then there is no extra VCO control). * R12 a 50k ohm linear potentiometer is used (in series with a 50k ohm fixed resistor R13) form a voltage divider to set an internal voltage to mimic the action of an external VCO input. The source for this voltage divider is the five volt busbar. * SW9 is a five position rotary switch which selects which resistor to set the audio output level (called out as amplitude control resistor on the chip pinout). * SW10 (toggle or momentary) is the switch that enables attack timing. If this switch is open, there is no attack slope (tone is instant on). If this switch is closed the attack slope is set by R24 (within the range selected by SW11). * R24 is a one megohm linear potentiometer (in series with a 27k fixed resistor R23) which sets the actual attack timing (within the range selected by SW11). * SW11 is a six position rotary switch which selects which of six capacitors also sets the limits of the timing of the attack and decay envelope generator. * SW12 (toggle or momentary) is the switch that enables delay timing. If this switch is open, there is no decay delay slope (tone is instant off). If this switch is closed the decay slope is set by R24 (within the range selected by SW11). * SW13 is a four position rotary switch which selects which one of four capacitors affects the noise filter. * SW14 (toggle or momentary) is the switch that enables the noise filter. * R26 is a one megohm linear potentiometer (in series with the 27k fixed resistor R25) which sets the actual response of the noise filter timing (within the range selected by SW13. * SW15 and SW16 (toggle and momentary in parallel) these two switches are tied to pin 9 of the 76477 sound generator. Most demonstration circuits show these two switches in parallel from pin 9 to ground. Pin 9 is the ‘system enable’ pin for the 76477, if open the sound generator is off. If pin 9 is connected to ground, the sound generator is running. Both switches are included for that reason. * SW17 (toggle or momentary) is the switch that enables the internal noise generator clock. If this switch is closed then the noise generator operates on its internal clock. * R29 A 47k fixed resistor. This resistor is in series with SW17 and is the current reference for the internal noise generator clock. In the 76477 spec sheet this is called out as 47k. This value could be tweaked but straying too far from 47k might make the internal noise clock unstable. To control the clock frequency then the next Item, ‘J1' is a better choice. * J1 External noise clock input. If this input is used SW17 should be open (or off). Waveform can be most any wave shape and most any frequency from a few Hz to about 2 mHz and can range from a half a volt to a maximum of five volts. Some very strange tones can be produced with a rather low frequency input to this jack. * SW18 and SW19 (toggle or momentary) are switches that together control the logic for the envelope generator. If both switches are open then the VCO only is selected. If SW18 is closed and SW19 is open the envelope generator is controlled by the one-shot generator. If SW18 is open and SW19 is closed the mixer only is selected. If both SW18 and SW19 are closed the VCO is selected with alternating polarity. * SW20 – SW21 and SW22 (toggle or momentary) are switches that together control the logic for the mixer; SW20, 21 and 22 open selects the VCO, SW20 on and SW21 and 22 open selects the super low frequency oscillator, with noise filter. SW21 on and SW20 and SW22 off selects the noise generator output only, SW20 and 21 on and SW22 off selects the SLF oscillator and the VCO. SW20 and 21 off and SW22 on selects the SLF oscillator only. SW20 and 22 on and SW21 off selects the SLF and the VCO and the noise generator. SW20 off and SW21 and 22 on selects the VCO and the noise filter. SW20 and 21 and 22 on inhibits the mixer (audio off). * SW23 (toggle or momentary) is the switch that selects what voltage input the VCO will follow. If SW23 is open the VCO will be controlled by the SLF oscillator. If SW23 is closed then the VCO will be modulated by the voltage input to pin 16 (which in this circuit can be selected by SW8 to be the level set by R12 or an external voltage input to J2). * J2 External VCO input voltage (selected or disabled by SW8. It can be most any wave shape and most any frequency from a few Hz to about several kHz and can range from a half a volt to a maximum of five volts. The Texas Instruments SN76488 "complex sound generator" is a sound chip produced by Texas Instruments, similar to the Texas Instruments SN76477 but with internal
audio amplifier An audio power amplifier (or power amp) electronic amplifier, amplifies low-power electronic audio signals, such as the signal from a radio receiver or an electric guitar pickup (music technology), pickup, to a level that is high enough for dr ...
. Redraws of 76477 application circuits; File:76477 Musical Organ.JPG, Musical organ File:76477 Siren-Space War-Phasor Gun.JPG, Siren / phasor File:Bird Chirp - Barking Dog.JPG, Barking dog File:Steam Train - Prop Plane.JPG, Train / prop plane sound File:Steam Train With Whistle.JPG, Steam train with whistle File:76477 Five different output structures commonly used..JPG, Five output structures for the 76477 chip


Uses

Uses of the SN76477 include the following devices: *
Arcade game An arcade game or coin-op game is a coin-operated entertainment machine typically installed in public businesses such as restaurants, bars and amusement arcades. Most arcade games are presented as primarily game of skill, games of skill and in ...
s: **
Space Invaders is a 1978 shoot 'em up video game developed and published by Taito for Arcade video game, arcades. It was released in Japan in April 1978, with the game being released by Midway Manufacturing overseas. ''Space Invaders'' was the first fixed s ...
8080a Simulation: Space Invaders – a report on writing an emulator for Space Invaders.
/ref> ** Stratovox **
Vanguard The vanguard (sometimes abbreviated to van and also called the advance guard) is the leading part of an advancing military formation. It has a number of functions, including seeking out the enemy and securing ground in advance of the main force. ...
** Sheriff/Bandido * Educational toys: ** Gakken EX-System synthesizer ** The
Remco Remco Industries Inc. was an American toy company. Founded in 1949, it is known for toys integrating technology and innovation from their inception. The company's slogan in its early TV commercials was, "Every Boy Wants a Remco Toy...And So Do ...
Electronic Sound FX Machine *
Electronic musical instrument An electronic musical instrument or electrophone is a musical instrument that produces sound using electronics, electronic circuitry. Such an instrument sounds by outputting an electrical, electronic or digital audio signal that ultimately is ...
s: *
Home computer Home computers were a class of microcomputers that entered the market in 1977 and became common during the 1980s. They were marketed to consumers as affordable and accessible computers that, for the first time, were intended for the use of a s ...
s: ** ABC 80 ** Interact Home Computer / Micronique Hector


See also

* Texas Instruments SN76489 - sound chip with 3x square wave and 1x white noise generator


References

{{Reflist, 30em


External links


www.popsci.com article: Complex Sound Generator IC is Back 12.12.2008

SN76477 data sheet

A collection of articles on the chip
* 76477 chips available on eBay in wide and narrow form



Computer-related introductions in 1978 Texas Instruments hardware Sound chips