IP Library Granted Patent US 12,393,932
Granted Patent B2
US 12,393,932 · App. 17/305,154 · Granted Aug 19, 2025

Distribution of collateral token rewards

Inventors: Zachary Kilgore (Brooklyn, NY); Tyler Robert Spalding (New York, NY); Trevor Filter (New York, NY)
Assignee: Flexa Inc.
G06Q20/381G06Q20/0655G06Q20/223G06Q20/3678G06Q20/389G06Q40/04G06Q20/10G06Q2220/00
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Quick Facts
Patent No.
US 12,393,932
App. No.
17/305,154
Granted
Aug 19, 2025
Kind
B2
Abstract

A method includes initiating, by a user computing device, a payment with a merchant computing device. The method further includes determining, by a network computing device, an amount of collateral tokens required to back the payment. The method further includes depositing, by the user computing device, the amount of the collateral tokens in a smart contract. The amount of collateral tokens is locked in the smart contract to back the payment. The method further includes sending, by the network computing device, an amount of a desired currency to the merchant computing device to complete the payment. The method further includes sending, by the merchant computing device, a fee to the network computing device for facilitating the payment. The method further includes converting, by the network computing device, the fee to collateral tokens, and depositing the collateral tokens in one or more smart contracts as rewards.

Claims (64)

1. A method comprising:

depositing, by one or more of a user computing device and a staking user computing device of a cryptocurrency collateral system, collateral tokens in a stake pool of the cryptocurrency collateral system, wherein the staking user computing device deposits the collateral tokens for purposes of earning rewards;

initiating, by the user computing device, a payment with a merchant computing device of the cryptocurrency collateral system via a network computing device of the cryptocurrency collateral system, wherein the merchant computing device accepts a desired currency;

determining, by the network computing device, an amount of collateral tokens required to back the payment;

locking, by the network computing device, the amount of the collateral tokens in the stake pool to back the payment;

sending, by the network computing device, an amount of the desired currency to the merchant computing device to complete the payment;

sending, by the merchant computing device, a fee to the network computing device for facilitating the payment, wherein the fee is a second amount of the desired currency;

converting, by the network computing device, the fee from the second amount of the desired currency to a second amount of collateral tokens; and

depositing, by the network computing device, the second amount of the collateral tokens in the stake pool as rewards by:

determining, by the network computing device, percentages of the rewards corresponding to one or more smart contracts of the stake pool associated with the one or more of the user computing device and the staking user computing device; and

depositing, by the network computing device, the percentages of the rewards in the one or more smart contracts.

2. The method of claim 1 , wherein the user computing device is associated with the network computing device via a cryptocurrency wallet.

3. The method of claim 1 further comprises:

when funds to cover the payment are obtained from the user computing device:

releasing, by the network computing device, the amount of the collateral tokens.

4. The method of claim 1 further comprises:

when the funds to cover the payment are not obtained from the user computing device: consuming, by the network computing device, the amount of the collateral tokens to cover the payment.

5. The method of claim 1 , wherein the determining the amount of collateral tokens required to back the payment is based on one or more of:

characteristics of the payment;

characteristics of the user computing device;

characteristics of the merchant computing device; and

characteristics of the stake pool.

6. The method of claim 1 , wherein the desired currency includes one of:

fiat currency; and

a cryptocurrency recognized by the merchant computing device.

7. The method of claim 1 , wherein the percentages are based on one or more of:

characteristics of the one or more smart contracts; and

characteristics of the one or more of the user computing device and the staking user computing device.

8. A non-transitory computer readable memory comprises:

a first memory element that stores operational instructions that, when executed by of one or more of a user computing device and a staking user computing device of a cryptocurrency collateral system, causes the one or more of the user computing device and the staking user computing device to:

deposit collateral tokens in a stake pool of the cryptocurrency collateral system, wherein the staking user computing device deposits the collateral tokens for purposes of earning rewards; and

a second memory element that stores operational instructions that, when executed by the user computing device, causes the user computing device to:

initiate a payment with a merchant computing device of the cryptocurrency collateral system via a network computing device of the cryptocurrency collateral system, wherein the merchant computing device accepts a desired currency;

a third memory element that stores operational instructions that, when executed by the network computing device, causes the network computing device to:

determine an amount of collateral tokens required to back the payment;

lock the amount of collateral tokens in the stake pool to back the payment; and

send the amount of the desired currency to the merchant computing device to complete the payment;

a fourth memory element that stores operational instructions that, when executed by the merchant computing device, causes the merchant computing device to:

send a fee to the network computing device for facilitating the payment, wherein the fee is a second amount of the desired currency; and

a fifth memory element that stores operational instructions that, when executed by the network computing device, causes the network computing device to:

convert the fee from the second amount of the desired currency to a second amount of collateral tokens; and

deposit the second amount of the collateral tokens in the stake pool as rewards by:

determining percentages of the rewards corresponding to one or more smart contracts of the stake pool associated with the one or more of the user computing device and the staking user computing device; and

depositing the percentages of the rewards in the one or more smart contracts.

9. The non-transitory computer readable memory of claim 8 , wherein the user computing device is associated with the network computing device via a cryptocurrency wallet.

10. The non-transitory computer readable memory of claim 8 further comprises:

a sixth-fifth memory element that stores operational instructions that, when executed by the network computing device, causes the network computing device to:

when funds to cover the payment are obtained from the user computing device:

release the amount of the collateral tokens.

11. The non-transitory computer readable memory of claim 8 further comprises:

a sixth memory element that stores operational instructions that, when executed by the-network computing device, causes the network computing device to:

when the funds to cover the payment are not obtained from the user computing device:

consume the amount of the collateral tokens to cover the payment.

12. The non-transitory computer readable memory of claim 8 , wherein the third memory element further stores operational instructions that, when executed by the network computing device, causes the network computing device to determine the amount of collateral tokens required to back the payment based on one or more of:

characteristics of the payment;

characteristics of the user computing device;

characteristics of the merchant computing device; and

characteristics of the stake pool.

13. The non-transitory computer readable memory of claim 8 , wherein the desired currency includes one of:

fiat currency; and

a cryptocurrency recognized by the merchant computing device.

14. The non-transitory computer readable memory of claim 8 , wherein the percentages are based on one or more of:

characteristics of the one or more smart contracts; and

characteristics of the one or more of the user computing device and the staking user computing device.

Assignments (2)
CHANGE OF NAME Recorded Jul 12, 2023
From: FLEXA NETWORK INC.
To: FLEXA INC.
Reel/Frame 064256/0585 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 2, 2021
From: SPALDING, TYLER ROBERT; FILTER, TREVOR; KILGORE, ZACHARY
To: FLEXA NETWORK INC.
Reel/Frame 056756/0873 →
Continuity (2)
Continuation 16695459 · Nov 26, 2019
Related Publication 20210326982A1 · Oct 21, 2021
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