Portable device for therapy

 

The invention relates to medicine and can be used in magnetic therapy. The device for therapy site contains high voltage and low voltage rectifier, the node forming clock pulses, the node count pulses, the node distribution of the pulses, the node keys and site impact. The site of formation of the clock pulses is made to block the formation of precision high frequency stability. Block the formation precision of the frequency is performed on the basis of the temperature-controlled crystal oscillator. Node counters are made from blocks of binary-decimal decoder. The node distribution of the pulses is made in the form of a chip with the circuit of the demultiplexer. The node keys made on field-effect transistors. Site impact is a generator rotating field containing the magnetic coil, the core, the block adjustment of the pulse duration, the unit changes the amplitude of the field and block the direction of the impact field. The device allows to increase the stability characteristics of the radiation. 21 C.p. f-crystals, 2 Il.

The invention relates to the field of digital electronics and, in particular, to modern the positive point of human mechanisms, such as intensity, gradient, vector fields, frequency and shape of the pulses, and the duration of exposure, including running pulsed field, which is the most effective in the treatment of the person.

Known portable device for therapy, including interconnected and mounted on the base of functional nodes - node power, site stabilization and a host of forming a rotating field with a removable electrode (ADI U. R. Cooperative mechanisms of susceptibility of brain tissue to the external and internal fields. - M.: Physiology, 1975).

Also known portable device for therapy, including interconnected and mounted on the base of functional nodes - node high voltage rectifier low voltage node of the rectifier, the site shaper clock pulses, the node count pulses, the node distribution of the pulses, the node keys and site effects (Patent RF №2151620 from 05.02.99. Berlin Y. C., Konashenkov A. I., Panin N. And. and others).

The disadvantages of the known inventions is the relatively low productivity, large mass and dimensions and, consequently, high energy consumption and low stability characteristics of the field and atsui process, reduced weight and size and, consequently, reducing energy costs and improving the stability characteristics of the field and enabling quick replacement therapy program.

This is achieved by the fact that the site shaper such impulses executed by the processing unit precision high frequency stability; forming unit precision high frequency stability is made on the basis of high-precision temperature-controlled crystal oscillator; node counters made with blocks of binary-decimal decoder, the block program pulse count, error correction, and a connection unit, which are mounted in the form of hybrid sealed chip; a node of the pulse distributor is made in the form connected with the processing unit precision frequency high stability chip demultiplexer, the node keys made in the form of field-effect transistors in key mode; the site of action is made in the form of generator rotating field units: magnetic coils, core, adjust the pulse duration, amplitude and field shaping unit in the direction of the impact beam.

It is advisable to block the formation of precision acromantula with a built-in electrically erasable EEPROM memory with treatment programs.

Useful to block the formation of precision high frequency stability of the site shaper clock was made in the form of a single-chip microcontroller and cards with removable memory chip, each of which recorded the treatment program.

It is advisable to precision oven controlled crystal oscillator unit forming precision frequency increased stability of the site shaper clock was made by the scheme capacitive treatacne.

Useful for high-precision temperature-controlled crystal oscillator unit forming precision frequency increased stability of the site shaper clock was made by the scheme inductive treatacne.

It is advisable to BCD decoder node count pulses was made in the form of chip-decoder with the corresponding decryption algorithm of industrial manufacturing.

Useful to block binary-decimal decoder node count pulses was made in the form of a chip FPGA, for example, the company "Altera".

It is advisable that the block program pulse count node count pulses was performed in the form of a divider for in-circuit generators is Cesare, parsing input signals and calculating the correlation with output characteristics and the adjustment of values, drawn from the field of tolerance, based on the calculated correlation coefficients.

It is advisable to block the coupling node of the pulse counter was made in the form of resistors with resistance of about 100 Ohms, is connected in series to each conductor data cable.

Useful to block the coupling node of the pulse counter was made in the form of diodes with a valid reverse current of 10 μa, connected between each residential information cable and earth.

It is advisable that sealed hybrid chip was performed using thin-film chip elements.

It is useful to have sealed hybrid chip was performed using thick-film chip elements.

It is advisable that the demultiplexer was designed in the form of chips in the body, ROM, and outputs for end-to-end installation.

Useful to the demultiplexer was designed in the form of chips in the body with a double-row arrangement of the terminals for surface mounting.

It is advisable that the demultiplexer was designed in the form of chips in the body in the form of chips in the body with a four-row arrangement of the terminals for surface mounting.

It is advisable that the demultiplexer was designed in the form of chips in the body with a matrix arrangement of conclusions in the form of a square matrix with the contact balls.

Useful to the demultiplexer was designed in the form of chips in the body with a matrix arrangement of conclusions in the form of a rectangular matrix with the contact balls.

It is advisable that the demultiplexer was designed in the form of planar chips.

It is useful to have as transistors node keys used MOSFET.

It is advisable that as transistors node keys used CMOS transistors.

Useful to block magnetic coils node of an impact was made on the basis of copper wire in the varnish insulation.

It is advisable that the core unit of the node of an impact was made on the basis of permalloy.

Useful to block the formation of the direction of the impact beam site exposure was performed in a grid of magnetic material comb-cell structure.

Portable magnetic therapy meets all requirements of the features of the invention, namely:

- the grounds of novelty, because the host driver such impulses executed by the processing unit is OK for the formation of precision high frequency stability is made on the basis of high-precision temperature-controlled crystal oscillator;

- means of communication between elements, because the host of the pulse counter is made which contains a block of binary-decimal decoder, the block program pulse count, block error correction and interface block (buffer);

- the basis of the relative position of the elements, because the node counter is designed as a hybrid sealed chip containing the above units;

- sign the completion form elements, because the host of the pulse distributor made in the form of chip-demultiplexer;

the characteristic forms of communication between elements, because the site of action is made in the form of generator rotating field, which contains the following blocks: block magnetic coils, the core unit, the unit adjust the pulse duration, the unit changes the amplitude of the field and block the formation of the direction of the impact beam;

the characteristic parameters and their relationship, because the node keys made in the form of field-effect transistors in key mode;

the characteristic of the material from which the element is made, as the core unit of the node the action is made on the basis of permalloy.

In Fig.1 depicts a block diagram of the portable device for therapy;

the other and mounted on the base 1 functional units - the node voltage of the rectifier 2, the low voltage node of the rectifier 3, the site shaper clock pulses 4, the node of the pulse counter 5, the node distribution of the pulses 6, node 7 keys and site impacts 8, with the site shaper such pulses 4 are executed by the processing unit precision frequency high stability 9; block forming precision frequency high stability 9 is made on the basis of high-precision temperature-controlled crystal oscillator 10, the node of the pulse counter 5 is made which contains a block of binary-decimal decoder 11, the block program pulse count 12, block error correction 13 and the connection unit 14; the node of the pulse counter 5 is designed as a hybrid sealed chip containing the above blocks, the node of the pulse distributor 6 made in the form of chip-demultiplexer 15, the node keys made in the form of field-effect transistors in key mode; host impact 8 made in the form of generator rotating field, which contains the following blocks: block magnetic coils 16, the core unit 17, the controller can adjust the pulse duration of 18, a unit change in the amplitude of the field 19 and the block forming direction El of clock pulses 4 made in the form of a single-chip microcontroller 21 with a built-in electrically erasable EEPROM memory 22, which contains programs 23 treatment for various diagnoses, or made in the form of a single-chip microcontroller 24 and 25 cards with removable memory chip 26, each of which recorded program 23 treatment for a particular diagnosis; high-precision temperature-controlled crystal oscillator 10 forming unit precision frequency high stability 9 site shaper clock pulses 4 are made under the scheme capacitive treatacne, or scheme of inductive treatacne; block binary-decimal decoder 11 node of the pulse counter 5 is made in the form of chip-decoder 27 with the corresponding decryption algorithm of industrial manufacturing or made in the form of a chip FPGA, for example, company Altera; block program pulse count 12 node of the pulse counter 5 is made in the form of divider 28 for in-circuit generator 10.

Block error correction 13 node of the pulse counter 5 is made on arithmetic coprocessor 29 which performs analysis of the input signals and calculating the correlation with output characteristics and adjusts the values drawn from the field of tolerance on the basis of the calculated correlation coefficients; the interface block (buffer) 14 node of the pulse counter 5 Vybornova cable, or made in the form of diodes 31 with a valid reverse current of 10 μa, connected between each residential information cable and earth; encapsulated hybrid circuit is implemented using thin-film chip element 31, or thick-film chip elements 32; chip-demultiplexer 15 made in the form of chips in the body with a double-row arrangement of the terminals for through mounting 33, or in the case of two-row arrangement of the terminals for surface mounting 34, or in the case with four outputs location under end-to-end Assembly 35, or in the case of four-row arrangement of the terminals for surface mounting 36, or in the case of a matrix arrangement of conclusions in the form of a square matrix of contact of the balls 37, or in the case of a matrix arrangement of conclusions in the form of a rectangular matrix of the contact balls 38, or made in the form of planar circuits 39; as transistors node keys 7 are MOS transistors 40, or uses CMOS transistors 41; block magnetic coils 16 site impacts 8 is made on the basis of copper wires 42 in the varnish insulation; core block 17 site impacts 8 is made on the basis of permalloy 43; that block the formation of orientation vozdeistviy.

The operation of the device is as follows.

Initially prepared to work interconnected and mounted on the base 1 functional nodes - node high-voltage rectifier 2, the low voltage node of the rectifier 3, the site shaper clock pulses 4, the node of the pulse counter 5, the node distribution of the pulses 6, node 7 keys and site impacts 8, with the site shaper such pulses 4 is performed by the processing unit precision frequency high stability 9; block forming precision frequency high stability 9 performed on the basis of high-precision temperature-controlled crystal oscillator 10, the node of the pulse counter 5 perform a containing block binary-decimal decoder 11, the block program pulse count 12, block error correction 13 and the interface block 14; the node of the pulse counter 5 are in the form of one hybrid sealed chip containing the above blocks, the node of the pulse distributor 6 are in the form of chip-demultiplexer, the node keys 7 are in the form of field-effect transistors in key mode; host impact 8 are in the form of the generator rotating field to the pulses 18, block changes of the amplitude of the field 19 and the block forming the direction of the impact beam 20, and block the formation of precision high frequency stability 9 site shaper clock pulses 4 are in the form of one-chip microcontroller 21 with a built-in electrically erasable EEPROM memory 22, which contains programs 23 treatment for various diagnoses, or perform as a single-chip microcontroller 24 and 25 cards with removable memory chip 26, each of which recorded program 23 treatment for a particular diagnosis; what precision oven controlled crystal oscillator 10 forming unit precision frequency high stability 9 site shaper clock pulses 4 are made under the scheme capacitive treatacne or scheme inductive treatacne; block binary-decimal decoder 11 node of the pulse counter 5 are in the form of chip-decoder 27 with the corresponding decryption algorithm of industrial manufacturing or are in the form of a chip FPGA, for example, firms Altera; block program pulse count 12 node of the pulse counter 5 are in the form of divider 28 for in-circuit generator 10; block error correction 13 node counter them is the correlation with output characteristics and adjusts the values dropped out of the field of tolerance, based on the calculated correlation coefficients; the interface block (buffer) 14 node of the pulse counter 5 are in the form of resistors 30 a resistance of about 100 Ohms, is connected in series to each conductor data cable, or operate as diodes 31 with a valid reverse current of 10 μa, connected between each residential information cable and earth; sealed hybrid chip is carried out using thin-film chip element 31 or thick film chip elements 32; chip-demultiplexer are in the form of chips in the body with a double-row arrangement of the terminals for through mounting 33, or in the case of two-row arrangement of the terminals for surface mounting 34, or in the case with four outputs location under a “pass-through” arrangement 35, or in the case of four-row arrangement of the terminals for surface mounting 36, or in the case of a matrix arrangement of conclusions in the form of a square matrix of contact of the balls 37, or in the case of a matrix arrangement of conclusions in the form of a rectangular matrix of the contact balls 38, or operate in an open-frame chip 39.

As transistors node key 8 use MOS transisto what about the wire 42 in the varnish insulation; the core unit 17 site impacts 8 is performed based on the permalloy 43; that block the formation of the direction of the impact beam 20 site impacts 8 are in the form of a grid 44 of magnetic material 45 comb-cell structure, then all nodes serves food, then functional units perform a duty cycle corresponding to the block diagram and connection, then power to stop and then the cycle is repeated.

Claims

1. The device for therapy, including interconnected and mounted on the basis of functional nodes: node high voltage and low voltage rectifier, the node forming clock pulses, the node count pulses, the node distribution of the pulses, the node keys and the site of impact, characterized in that the node pulse shaping performed by the processing unit precision frequency, which is made on the basis of the temperature-controlled crystal oscillator, the node count pulses made in the form of hybrid encapsulated microcircuits, including a block of binary-decimal decoder, the block program pulse count and the interface block, the node of the pulse distributor is made in the form of chip the generator rotating field, contains the unit of the magnetic coils, core, block adjustment of the pulse duration, the unit changes the amplitude of the field and block the direction of the impact of the field.

2. The device under item 1, characterized in that the shaping unit precision frequency made in the form of a single-chip microprocessor with memory EEPROM for treatment programs.

3. The device under item 1, characterized in that the shaping unit precision frequency made in the form of a single-chip microprocessor and cards with removable memory chip for treatment programs.

4. The device under item 1, characterized in that the temperature-controlled crystal oscillator made by the scheme capacitive treatacne.

5. The device under item 1, characterized in that the temperature-controlled crystal oscillator is made for the inductive treatacne.

6. The device under item 1, characterized in that the block of binary-decimal decoder made in the form of chips.

7. The device under item 1, characterized in that the connection unit is made in the form of resistors with resistance of about 100 Ohms, is connected in series to each conductor data cable.

8. The device under item 1, characterized in that the connection unit is made in the form of diodes with a valid reverse current of 10 μa, is connected between the hybrid circuit is implemented using thin-film chip elements.

10. The device under item 1, characterized in that the encapsulated hybrid circuit is implemented using thin-film chip elements.

11. The device under item 1, characterized in that the demultiplexer is made in the form of chips in the body, ROM, and outputs for end-to-end installation.

12. The device under item 1, characterized in that the demultiplexer is made in the form of chips in the body with a double-row arrangement of the terminals for surface mounting.

13. The device under item 1, characterized in that the demultiplexer is made in the form of chips in the housing with four outputs location under end-to-end installation.

14. The device under item 1, characterized in that the demultiplexer is made in the form of chips in the body with a four-row arrangement of the terminals for surface mounting.

15. The device under item 1, characterized in that the demultiplexer is made in the form of chips in the body with a matrix arrangement of conclusions in the form of a square matrix of the contact balls.

16. The device under item 1, characterized in that the demultiplexer is made in the form of chips in the body with a matrix arrangement of conclusions in the form of a rectangular matrix of contact balls.

17. The device under item 1, characterized in that the demultiplexer is made in VI is result MOSFET.

19. The device under item 1, characterized in that as transistors host keys using CMOS transistors.

20. The device under item 1, characterized in that the unit of the magnetic coils of the site of action is made on the basis of copper wire in the varnish insulation.

21. The device under item 1, characterized in that the core node of the impact made on the basis of permalloy.

22. The device under item 1, characterized in that the unit for shaping the direction of the impact field is made in the form of a grid of magnetic material comb-cell structure.



 

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