SURVIVOR CORE MULTI-SOURCE PORTABLE EMERGENCY POWER AND LIFE UNIT

TR202606333U5Pending Publication Date: 2026-06-22AHMET KILIC
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Patent Information

Authority / Receiving Office
TR · TR
Patent Type
Utility models
Current Assignee / Owner
AHMET KILIC
Filing Date
2026-04-26
Publication Date
2026-06-22

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Abstract

Invention; Mechanical crank system Pressure-based energy generation module Solar panel It is a multi-source energy production device. The energy produced is stored in the battery located inside the device and transferred to external devices in a controlled manner via a voltage regulator circuit.
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Description

2 TARIFF SURVIVOR CORE - MULTI-SOURCE PORTABLE EMERGENCY POWER AND SURVIVAL UNIT 1. Technical Field This invention applies to portable power generation systems, emergency equipment and multimedia. It is related to energy conversion technologies. Especially in situations where there is no access to electricity. 5 It is geared towards compact energy generation and storage devices designed for use. 2. State of the Art: Existing portable power devices generally use a single energy source. It is based on its source. Devices containing solar panels are solely dependent on sunlight. Mechanical (crank) systems produce energy for a limited time. Power banks, on the other hand, only produce energy for a limited period. They are limited by the energy they store. These systems, in their current state, are used in disaster relief, search and rescue, and emergency situations. In these circumstances, it falls short in terms of continuity, efficiency, and reliability. 3. Purpose of the Invention The purpose of this invention is to provide continuous and reliable electricity in environments where there is no electrical infrastructure. Producing uninterrupted power, combining different energy sources in a single compact device, disaster relief. and to provide communication and lighting, which are vital in emergencies, portable, outdoor The goal is to offer a durable and long-lasting solution resistant to various factors. 15 4. Explanation of the Drawings  Figure 1: General view of the portable emergency power generation device.  Figure 2: Cross-sectional view of the device's internal structure.  Figure 3: Detail of the pressure mechanism  Figure 4: Device usage diagram 20  Figure 5: Functional block diagram of the device.  Figure 6: Device dimensions diagram 5. Detailed Description of the Invention The components and mechanisms comprising the invention are numbered in the attached technical drawings, The meanings of these numbers are explained in detail below. 25 5.1 General Structure The device has a cylindrical form that facilitates ergonomic portability. It is portable. On top of it is an upper energy module (solar panel module) (101) and this It has a solar panel (20) located inside. On the side of the device is a foldable panel. Energy generation and integrated within a crank arm (40) and housing (main body) (10) Storage systems are available. There is also a top cover / control 30 on the main body (10). ring (11), upper protective frame (25), outer cover ring (30) and user's device Use components (100) such as non-slip grip surface (34) which facilitates gripping It is receiving. 5.2 Mechanical Energy Generation System (Crankshaft) The system is foldable, providing space savings. It has a crank arm (40) structure. When turned manually by the user, the main 35 This circular mechanical movement drives the gear mechanism (51) inside the housing (10). transmitted through connecting elements (52) to the mini generator system (50) located within the generator system (50). It is converted into electrical energy by means of a generator (56). 3 5.3 Pressure-Based Energy Generation System This system constitutes the original and innovative part of the invention. It consists of a spring system (54), a piezoelectric crystal (55) and a mini There is a generator (56). The system has a working movement / mechanical on the main body (10). It is located in the interaction area (102). According to the working principle; this is done by the user. When a linear pressure is applied to the area, the spring system (54) inside the generator system (50) is compressed. 5 As a result of the mechanical pressure created by the compression of the spring system (54), the piezoelectric crystal (55) It produces electricity. At the same time, this mechanical movement forces the mini generator (56) to rotate. It triggers. Thus, both the piezoelectric crystal and the pressure applied by the user activate from a single pressure movement. (55) and a dual-source hybrid electrical energy is obtained via a mini generator (56). 5.4 Solar Energy System The upper energy module is located at the top of the device. (101) automatically via solar panel (20) when daylight is available. It generates electrical energy and supports the system by charging the internal battery (53). 5.5 Energy Storage System The system includes a lithium-based rechargeable battery (53). Different 15 All electrical energy obtained from energy production sources (crank, pressure, solar) is safe. It is somehow collected and stored in this battery (53). 5.6 Energy Control and Distribution System Manages all electrical flow and functions in the system. A control circuit board (70) is included. On this board there is a voltage regulator and a 20 current regulator. The device includes a charging / regulating circuit (71) and an overcurrent protection circuit. The device can be manually operated. There is an on / off switch (74) that enables it to be turned on and off. This control Thanks to its mechanisms, the energy produced is transmitted externally through the output ports (USB / Type-C) (72). Data is transferred to devices securely and reliably. 5.7 Additional Functions Additional operational components that operate depending on the control circuit board (70) among them; LED lighting (73) unit which provides emergency lighting and SOS light mode, a radio system to support communication in search and rescue operations and a warning system Alarm / siren equipment is included. In addition, the system displays the instantaneous status of the battery (53). There are indicator LEDs (75) showing the situation. 30 6. Advantages of the Invention The invention combines solar, circular mechanical motion and linear pressure motion. It has a multi-energy production system that combines multiple components. This allows for continuous energy supply even under challenging conditions. Production is ensured. Its portable and compact structure, suitability for disaster conditions, and resistance to impact and water. Thanks to its robust design, it offers high reliability. Production, storage and 35 in a single device. It offers all usage functions in one package. 7. Industrial Applicability This invention is suitable for use in disaster management teams, search and rescue units, It can be mass-produced in industry for camping and outdoor sports, as well as for individual emergency use. and is widely applicable. 4 8. REFERENCES  10. Fuselage (Main Fuselage)  11. ​​Top Cover / Inspection Ring  20. Solar Panel  25. Upper Protection Frame 5  30. Outer Sheathing Ring  34. Non-Slip Grip Surface (Grip Panel)  40. Crank Arm  50. Generator System  51. Gear Mechanism 10  52. Fasteners  53. Battery (Lithium)  54. Spring System  55. Piezoelectric Crystal  56. Mini Generator 15  70. Control Circuit Board  71. Charging / Regulating Circuit  72. Output Ports (USB / Type-C)  73. LED Lighting  74. On / Off Switch 20  75. Indicator LEDs  100. Usage Components  101. Upper Energy Module (Solar Panel Module)  102. Usage Movement / Mechanical Interaction Area

Claims

1 REQUESTS 1. The invention is a portable power generation device designed for use in emergency situations. (SURVIVOR CORE) is characterized by its ability to harness mechanical energy, compressive energy, and It has a multi-source hybrid energy production structure that uses solar energy together. That is. 5 2. A portable emergency power generation device according to claim 1, and its feature is; main body (10) When external pressure is applied to the mechanical interaction area (102) on a through the spring system (54) inside the generator system (50) both a piezoelectric producing electrical energy simultaneously via a crystal (55) and a mini generator (56). It includes a hybrid system. 10 3. A portable emergency power generation device according to Claim 1, characterized by its use of hybrid sources. an internal battery (53) that stores the electrical energy produced by the device inside the device It includes.

4. A portable emergency power generation device according to Claim 1, whose characteristic is that the stored energy a charge / regulator circuit (71) 15 that regulates its output during transfer to external devices It contains a control circuit board (70).

5. According to Claim 1, it is a portable emergency power generation device, the characteristic of which is; by the user when turned manually, a gear mechanism located inside (51) It includes a foldable crank arm (40) that generates mechanical energy by moving it.

6. A portable emergency power generation device according to Claim 1, characterized by its ability to operate at 20°C in daylight. a solar panel that supports the battery (53) by automatically generating electrical energy (20) contains the upper energy module (101).

7. A portable emergency power generation device according to Claim 1, whose characteristic is; the energy in question all production, storage and control systems within a single main body (10) It is a compact structure where they are combined. 25 8. According to Claim 1, it is a portable emergency power generation device, characterized by its ability to be mounted externally. a water and impact resistant outer coating ring (30) structure that protects against the elements It is having.