[0001] The invention relates generally to an improved electronic loudspeaker system for
vehicles and other transport means, and more particularly to a kind of longlife and
multifunctional electronic loudspeaker system which can reduce noise pollution and
is beneficial to safe driving.
[0002] The safe driving alarm for the existing transport means are generally a kind of electromagnetic
membrane vibration sounder which comprises an alloy membrane, tungsten contacts, an
electromagnetic coil, a yoke and a steel echo plate. However, the sound level of this
kind of loudspeaker is very high and unadjustable, and the said metallic contacts
have low reliability. Furthermore, the sound of this kind of loudspeaker is very noisy
and irritating, thus, the defects of these loudspeakers are noise pollution and short
operating life.
[0003] Since the said kind of electromagnetic loudspeaker has the above mentioned defects,
it is being replaced by a new kind of electronic loudspeaker in many fields. Up to
now, these are three kinds of electronic loudspeakers. The first kind of which is
composed of an oscillator, a power amplifying circuit, an electromagnetic coil, a
yoke, and a steel echo plate. However, this kind of electronic loudspeaker has such
defects as unadjustable sound level, piercing sound, high power consumption and only
a single function. The second kind is an alarm megaphone used for special-purpose
vehicles, comprises an oscillator, an amplifier and a tweeter (such as the product
made by the Changhong Machinery Works). However, this kind of loudspeaker which can
only be used as an alarm for a police car or an ambulance is not suitable for general
transportation means, and it is also bulky and of high cost. The third kind, which
comprises a counter circuit connected to a single oscillator, is a large-sized two
partial-tone loudspeaker (see Belgium patent application No. 8483l5). The said loudspeaker
sends out a sound at only two alternate frequencies, and the tone of that sound is
similar to that of an alarm, thus, it is not suitable for use as an auto horn.
[0004] To overcome the above-mentioned defects, the present invention provides a new kind
of electronic loudspeaker which is designed on the basis of the principle that the
tonal quality of a sound bases on its frequency and the shape of the envelope curve
of the sound wave amplitude, and made by applying electronic techniques. The sound
of this kind of electronic loudspeaker for safe driving is characterized by a rich
and harmonious timbre and multiple adjustable level. The present invention also provides
this kind of electronic loudspeaker with multi-functions by applying electronic techniques.
Thus, the loudspeaker, in accordance with the present invention, can sound an intermittent
alarm when a vehicle moves backwards or give out a low level sound at different frequencies
to indicate the direction of advance when the vehide turns right or left; and it
can also be used as an alarm for special vehicles (such as a police car) and as a
megaphone and so on. With some modifications on the circuit of the loudspeaker of
the present invention, the loudspeaker can give many instructions in an analogous
human voice during a drive.
[0005] The above description, as well as further objects, features and advantages of the
present invention, will be more fully understandable by reference to the following
description of the present preferred embodiments in accordance with the invention
and the accompanying drawings, wherein:
Fig. l is a block-diagram illustrating the principle of the invention.
Fig. 2 is a schematic diagram illustrating an improved loud speaker according to
the present invention.
Fig. 3 illustrates a circuit used for the preferred embodiments of the invention.
[0006] With reference to Fig. l, the system of the invention comprises: a characteristic
wave shape generator (l); an attenuator (2); an amplifier (3); a loudspeaker (4) and
a controller (5). The said characteristic wave shape generator (l) is used for generating,
on the basis of the driving conditions of the vehicle and its driver, a regular periodic
signal which has various composite frequencies and different shapes of envelope curves,
i.e., different characteristics, in order to generate a sound with a certain tone
or a sound imitating the music of a stringed instrument or an analogous human voice.
These functions can be achieved by using one of the following methodes, one of which
is provided with several independent oscillators, a mixer and a wave amplitude superposed
circuit, wherein some of the said oscillators constitute a tone control oscillation
circuit, the oscillatory frequency and wave shape of which are determined upon the
variation of the tones of a tremolo or various alarms. Besides, some oscillators constitute
reference frequency oscillation circuits, the frequencies of which are modulated by
the output wave regulation of the said tone control oscillation circuit. The said
reference frequency oscillation waves are applied to the said mixer and wave amplitude
superposes circuit for composite. Thus, under the control of the controller (5), signal
waves with different characteristics are generated. In another method, a clock oscillator
is provided for generating a clock signal; and several delay elements, frequency dividers,
mixers and modulators are provided for shifting the phase, dividing the frequency,
mixing the frequencies and modulating the wave amplitude of the said clock signal
respectively. Under the control, being effected through a controller (5), of a driver
switch and a driving state switch, signal waves of various characteristics are generated.
In the last method, a syntherized music/human voice integrated circuit is provided
for generating characteristics waves under control of a driver switch and a driving
state switch. For the characteristic waves of an alarm, it requires that every single
frequency of the frequency mixing signal should be stable. Moreover, they are in conformity
with musical theory and the rule of harmony; it should be noted that, during a selection
of the single frequency, the different beating frequencies of the signal of every
single frequency should also conform with the rule of harmony. The shape of the envolope
curve which determines the tonal quality of a sound is selected upon the desired harmony.
The content of a human voice depends on the requirements of the function, where the
frequency of a female voice or a chird's voice is applied. The function of the attenuator
(2) is for achieving adjustable and multiple sound level in the following ways. In
one of them, the said various characteristic signal wave outputs from the said characteristic
wave shape generator are applied to the amplifier (3) through several voltage-dividing
resistors, wherein the attenuation rate of the attenuator is determined by the resistance
of the said voltage-dividing resistors. The attenuation rate of alarming can be controlled
by a driver function switch in order that the sound level can be adjusted, and the
attenuation rate for other functions can be adjusted upon a national standard. In
another way, several voltage-dividing resistors are inserted between the amplifier
(3) and the loudspeaker (4). In a further way, the feedback signal from the amplifier
is controlled, and an attenuator is incorporated in the feedback circuit of the amplifier,
wherein the said amplifier is made of either discrete compounds or an integrated circuit.
The impedance of the voice coil of the loudspeaker (4) is 2-8 Ω , the standard output
power is 5-l2.5W. The choice of the said data is made upon the voltage of the power
supply and the highest sound level of a loudspeaker. It is necessary to use a high
frequency horn loudspeaker, in an environment with a high sound level (about l00-ll0
db), but its structure needs to be improved by the following measures: the length
of the horn loudspeaker should be shortened to ½-¼ the size of a 5W horn loudspeaker
available in the market. The magnetic material and pole shoe are attached to each
other by a non-magnetic metallic or plastic reinforcing clamp ring after being glued
to each other by a strong adhesive originally used, and they can also be supported
by a non-magnetic metallic fastener for a high vibration strength. If only used in
an ordinary enviroment with a sound level of less than 95-l00 db, the loudspeaker
can be either a horn loudspeaker or an improved cone loudspeaker. When the latter,
i.e., an improved cone loudspeaker, is adopted, it should be set in a reflecting cavity
(please refer to Fig. 2 which shows the structure of the reflecting cavity.). With
reference to Fig. 2, the distance between the supporting member (7) of the cone of
the loudspeaker and the bottom of the reflectinf cavity (6) is 6-l0mm, the distance
between the rim of the of the said supporting member and the side wall of the said
cavity is l0-l5mm, and the depth of the said cavity is similar to the axial length
of the loudspeaker therein. The diameter of the said supporting member of the cone
is 60-l00mm, the impedance of the voice coil is 2-8 Ω , the standard output power
of the loudspeaker is 3-l0W. The improvments made in the cone loudspeaker include
that a light-textured and heat-resistant (up to about l20°C) semi-hard plastic membrane
(such as polypropylene) is used for the cone, instead of the original material; and
a rubber-coated fabric is used as a folding material. The controller (5) comprising
several logical circuits and electronic switches for signal distribution is controlled
by a driver operation switch and a driving state switch. The controller, according
to the requirement of various functions, selects a characteristic signal wave output
from the said characteristic wave shape generator (l), and sends it to the amplifier
(3). When a microphone and a preamplifier are connected to the inputs of the said
amplifier, the system of the present invention can be used as a public-addressing
system under the control of the said controller (5). An indicating lamp connected
to the driver operation switch (sound level control switch) will turn on when the
sound level of the loudspeaker is very high. The said indicating lamp may be mounted
on the front of a loudspeaker, so that a policeman can monitor the sound level of
the loudspeaker of a vechical, thus, noice can be controlled easily.
[0007] Comparing with the prior art, the loudspeaker of this present invention, which can
be operated for more than two million times, is power-saving and long-lasting, and
its sound level is adjustable, its tonal quality is harmonious, it also can speak
in a human voice, thus, it can effectively reduce environmental noise pollution.
[0008] Comparing with the existing electromagnetic viberation loudspeaker used at present,
the loudspeaker of the invention is material-saving and has multiple functions convenient
to a safe driving, and it can operate in a bad air condition, therefore, it is suitable
for use as a safe driving alarm or a warning indicator, for various transport means
it also can be used as alarm indicator in other cases.
[0009] Shown in Fig. 3, it is a preferable embodiment of the present invention. Referring
to Fig. 3, inverters Fl and F2, resistors Rl and R2, and capacitor Cl constitute a
tremolo oscillator with a oscillatory frequency of 8-9Hz. Through an integrating circuit
constituted by a resistor R3 and a capacitor C2, a sawtooth wave output is generated
which has a peak voltage (Vpp) of 0.5-2V. Through an isolation resister R4 (about
lM Ω ), the said sawtooth wave output modulates the oscillated wave in the main oscillation
constituated by inventers F3 and F4, resistors R5 and R6, and a capacitor C4. The
oscillated wave output from the inverter F4, through a first integrating circuit (constituted
by an inverter F5, a resistor R7 and a capacitor C3) and a second integrating circuit
(constituted by an inverter F6, a resistor R8 and a capacitor C5), drives two frequency
dividers respectively. One of the said frequency dividers is constituted by a NAND
gate Yl, an inverter F7, a resistor R9 and a capacitor C6, and divides the frequency
of a input signal by two. The other one is constituted by a NAND gate Y2, an inverter
F8, a resister Rl0 and a capacitor C7, and divides the frequency of a input signal
by three. At the outputs of the inverters F7 and F8, a oscillated wave output with
a frequency of 600Hz and 400Hz are generated respectively. The said outputs are mixed
and amplified through resistors Rll, Rl2 and Rl3, a capacitor C8, resisters Rl4, Rl5
and Rl6, and a transistor GB, so that a frequency mixing wave with a difference frequency
of 200Hz is generated. The shape of the envolope curve of the said frequency mixing
wave can be approproiately adjusted by adjusting the value of R7, R8, Rll, Rl2, C3
and C5, thus, various timbre can be obtained. An oscillator with an oscillation frequency
of 0.5Hz, is constituted by a NAND gate Y3, an inverter F9, resistors R22 and R23,
and a capacitor Cll; and is controlled by a terminal H. The output from the interver
F9 of the said oscillator controls and electronic switch S4 for obtaining an intermittent
signal wave to alarm the moving back of a vehicle. The operating point of a microphone
WD is determined by a resistor R26. Bidirectional electronic switches Sl, S2, S3 and
S5 are controlled, respectively, by input control terminals A, F, E and G which are
connected to four function-selection switches for driving alarm, indicating right
turn, left turn and for public addressing. When any one of the said five terminals
is connected externally to a high level (VDD), the impedance of the corresponding
electronic switch will become low from high state immediately. When the value of the
function, and sound level adjusting resistors Rl7, Rl8, R20, R2l, R24 and R25 are
appropriately adjusted, various levels can be obtained at the input terminal of the
power amplifier FD, wherein the said resistors Rl7 and Rl8 are also connected externally
to the terminals B, C and D. The composition of the short circuit of the said three
terminals results in four different attenuations, so that the sound level can be adjusted.
A voltage regulator comprising a resistor Rl9 and a voltage regulator tube D6 with
an output voltage VDD supplies power to all branch circuits, except the power amplifier
FD, whose power source is supplied by external switches isolated by the corresponding
diodes Dl-D5. The power amplifier FD is a kind of power amplifier intergrated circuit
available in the market. Shown in Fig. 3, C9 is a blocking capacitor, Cl0 is a bypass
capacitor for preventing the power amplifier FD from self excitation, and Cl4, Cl5,
Cl6 and Cl7 are feedback capacitors. Resistors R30, R3l, R32 and R28, and capacitors
Cl2 and Cl3 are used for stablizing the operation point of the circuit. By adjusting
the value of the resistor R6, a satisfactory frequency of the said main oscillation
can be achieved, so as to obtain a satisfying harmonious sound effect. Either one
small-type horn loudspeaker LD or more can be used in the present invention.
[0010] It will be more clearly appreciated that numerous other embodiments, variations and
alterations in the present invention can be made without departing from the spirit
and the scope of the invention as herein described and illustrated. Consequently,
it is the objective of the following claims to encompass all such modifications and
variations as fall within the true scope of the invention whether or not such variations
or modifications have been specifically described in conjunction with the above illustrative
embodiments.
1. An electronic loudspeaker system, which is mounted on transport means for a safe
driving, characterized by comprising:
a characteristic wave shape generator (l);
an amplifier (3);
an attenuator (2);
a loudspeaker (4); and
a controller (5);
wherein the said characteristic wave shape generator (l) is connected to the amplifier
(3); and the attenuator (2) drives the loudspeaker (4) under the control of the controller
(5), the said loudspeaker has multiple functions and a harmonious sound, and its sound
level is adjustable.
2. An electronic loudspeaker system, according to the claim l, characterized in that
the said characteristic wave shape generator (l) comprises several independent oscillators,
a mixer and a wave amplitude superposed circuit, wherein some of the said oscillators
constitute a tone control oscillation circuit; the other oscillators constitute reference
frequency oscillation circuits; the said tone control oscillation circuit modulates
the frequency of the reference frequency oscillation circuits; and through composite
by the mixer and the wave amplitude superposed circuit, generate various characteristic
signal waves under the control of the controller (5).
3. An electronic loudspeaker, according to claim l, characterized in that the said
characteristic wave shape generator (l) comprises a clock oscillator and several delay
circuits, frequency dividers, mixers and modulators for shifting the phase, dividing
the frequency, mixing the frequencies and modulating the wave amplitude of the clock
oscillation wave from the said clock oscillator; and under the control of a driver
operation switch and a driving state switch, being effected through the controller
(5), generates various characteristic signal waves respectively.
4. An electronic loudspeaker system, according to claim l, characterized in that the
said characteristic wave shape generator (l) comprises a synthesis music/language
integrated circuit, and generates various characteristic signal waves under the control
of a driver operation switch and a driving state switch.
5. An electronic loudspeaker system, according to claim l, characterized in that the
various characteristic signal waves from the said characteristic wave shape generator
(l) are applied to the input of the amplifier (3) through several voltage-dividing
resistors, wherein the attenuation rate is determined by the specific value of the
said voltage-dividing resistors.
6. An electronic loudspeaker, according to claim l, characterized in that several
voltage-dividing resistors are inserted between the amplifier (3) and the loudspeaker
(4).
7. An electronic loudspeaker, according to claim l, characterized in that the feedback
of the amplifier (3) is controlled; the attenuator (2) is incorperated in the feedback
circuit.
8. An electronic loudspeaker, according to claim l, characterized in that the loudspeaker
(4) is a horn loudspeaker.
9. An electronic loudspeaker, according to claim 8, characterized in that the inpedance
of the voice coil of the loudspeaker (4) is 2-8 Ω , the standard output power is 5-l2.5W,
the length of the horn loudspeaker is about ½-¼ of that of a 5W horn loudspeaker available
in the market, the magnetic material and pole shoe are attached to each other by a
non-magnetic metallic or plastic reinforcing clamp ring after being glued to each
other by a strong adhesive originally used.
l0. An electronic loudspeaker, according to claim l, characterized in that the loudspeaker
(4) is an improved cone loudspeaker.
11. An electronic loudspeaker, according to claim l0, characterized in that a light-textured
and heat-resistant (up to about l20°C) plastic membrane is used for the cone, instead
of the original material, and a rubber-coated fabric is used as a folding material,
the inpedance of the voice coil is 2-8 Ω , the diameter of the supporting member of
the cone of the loudspeaker is 60-l00mm, the standard output power of the loudspeaker
is 3-l0W.
12. An electronic loudspeaker, according to claim ll, characterized in that the improved
cone loudspeaker is set in a reflecting cavity (6), the distance between the supporting
member (7) of the said cone of the cone loudspeaker and the bottom of the reflecting
cavity is 6-l0mm, and the distance between the rim of the said supporting member and
the side wall of the said cavity is l0-l5mm, and the depth of the said cavity is similar
to the axial length of the loudspeaker therein.
13. An electronic loudspeaker, according to claim l, characterized in that an indicating
lamp is connected to the driver operation switch (sound level control switch), and
the said indicating lamp which is mounted on the front of the loudspeaker will turn
on when the sound level of the loudspeaker is very high.