IP Library › Granted Patent US 10,421,552
Granted Patent B2
US 10,421,552 · App. 15/030,533 · Granted Sep 24, 2019

Apparatus and method for rapid deployment of a parachute

Inventors: Amir Tsaliah (Haifa, IL); Ran Krauss (Beer Sheva, IL)
Assignee: PARAZERO LTD.
B64D17/725A62B1/00B64D17/76
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Quick Facts
Patent No.
US 10,421,552
App. No.
15/030,533
Granted
Sep 24, 2019
Kind
B2
Abstract

The present invention relates to a parachute deploying apparatus, comprising: a) a manifold with which is releasably coupled a single vessel within which pressurized gas is generated; b) a gas generator which cooperates with said vessel; c) a plurality of hollow tubes which extend obliquely and upwardly from, and are in communication with, said manifold; and d) a plurality of projectiles, each of which formed with a rod that is receivable in a corresponding tube and to each of which is connected a cord that is also connected to a corresponding portion of an undeployed parachute, wherein the pressurized gas which is generated upon triggering of said gas generator is flowable through each of said tubes to propel said plurality of projectiles in different directions and to cause said parachute to become deployed.

Claims (27)

1. Fast acting deploying apparatus, comprising:

a) a chamber in which an undeployed parachute is retained and attached to an object to be parachuted;

b) a manifold positioned within an interior of, and fixed to, said chamber, with said manifold is releasably coupled a single vessel within which pressurized gas is generated;

c) a gas generator which cooperates with said vessel;

d) a plurality of hollow tubes which extend obliquely and upwardly from, and are in fluid communication with, said manifold; and

e) a plurality of projectiles, each of which formed with a rod that is receivable in a corresponding one of said tubes and to each of which is connected a cord that is also connected to a corresponding portion of said undeployed parachute,

wherein the pressurized gas which is generated upon triggering of said gas generator is flowable through each of said tubes to propel said plurality of projectiles in different directions and to cause said parachute to become deployed,

wherein said apparatus is configured to cause said parachute to achieve a desired canopy diameter simultaneously with ejection of said parachute from said chamber.

2. The apparatus according to claim 1 , wherein each of the projectiles is propelled a predetermined distance by the pressurized gas.

3. The apparatus according to claim 1 , wherein the parachute is fully deployable within less than a second following a gas generator triggering event.

4. The apparatus according to claim 3 , wherein the parachute is fully deployable within less than 0.3 sec following a gas generator triggering event.

5. The apparatus according to claim 1 , wherein each of the projectiles is sealingly engageable with a corresponding tube.

6. The apparatus according to claim 1 , wherein the vessel contains a solid propellant consisting of materials that normally do not chemically react with each other and a pyrotechnic device for initiating a reaction with said propellant.

7. The apparatus according to claim 1 , wherein the generated pressurized gas is dischargeable from an aperture formed in the vessel to an interior of the manifold and is flowable from said manifold interior through of each of the tubes simultaneously.

8. The apparatus according to claim 1 , wherein the vessel contains a compressed or liquid gas and the gas generator is a spring loaded puncturing mechanism for generating pressurized gas upon puncturing the vessel.

9. A method for rapidly deploying a parachute, comprising the steps of:

a) positioning a manifold, from which a plurality of hollow tubes extend obliquely and upwardly, and are in fluid communication therewith, within an interior of a chamber attached to an object to be parachuted, wherein a single vessel within which pressurized gas is generatable is releasably coupled with said manifold;

b) introducing a rod terminating with a projectile of an increased cross sectional area into a corresponding one of said tubes and connecting a cord to said projectile and to a corresponding portion of an undeployed parachute;

c) storing said parachute within said chamber so as to be in a folded condition such that each folded portion of the parachute is separated without contact from another folded portion; and

d) performing a triggering action which causes pressurized gas generated within the vessel to flow through said manifold to each of said plurality of oblique hollow tubes and each of said projectiles to be propelled in different directions for a predetermined distance, whereby said parachute achieves a desired canopy diameter simultaneously with ejection of said parachute from said chamber.

10. The apparatus according to claim 2 , wherein the predetermined distance by which each of the projectiles is propelled is equal to a sum of a length of the cord that is connected to the corresponding portion of said undeployed parachute and a radius of a canopy of a fully deployed parachute.

11. The apparatus according to claim 1 , wherein the chamber has a discontinuous exterior wall configured with a plurality of peripherally spaced U-shaped portions extending vertically along an entire height of the chamber, each of said U-shaped portions extending inwardly from said exterior wall into the chamber interior and spaced from the manifold and having an interior within which a corresponding hollow tube extending obliquely from the manifold and receiving one of the projectile rods is positioned.

12. The apparatus according to claim 11 , wherein each of the U-shaped portions constitutes a barrier between different folded portions of the parachute to facilitate interference-free ejection of each of said folded portions from the chamber with respect to another one of said folded portions as well as simultaneous parachute ejection and deployment.

13. The apparatus according to claim 2 , wherein the object to be parachuted to which the chamber is attached is a rotorcraft.

14. The apparatus according to claim 13 , further comprising drive means for a rotor of the rotorcraft, a controller of the rotor drive means, and a rotor deactivation unit in electrical communication with said controller, wherein deactivation of each rotor of the rotorcraft by said rotor deactivation unit ensures that the parachute that is being expanded following the gas generator triggering event will not become entangled with rotating rotor-associated blades.

15. The method according to claim 9 , wherein the parachute achieves the desired canopy diameter within less than a second following performance of the triggering action.

16. The method according to claim 15 , wherein the parachute achieves the desired canopy diameter within less than 0.3 sec following performance of the triggering action.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 19, 2016
From: TSALIAH, AMIR; KRAUSS, RAN
To: WISEC LTD.
Reel/Frame 038324/0097 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 19, 2016
From: WISEC LTD.
To: PARAZERO LTD.
Reel/Frame 038324/0099 →
Priority Claims (1)
IL 229068 · Oct 24, 2013 · national
Continuity (1)
Related Publication 20160251083A1 · Sep 1, 2016
Cited By (1)
US 12,715,590