IP Library Patent Application 18436510
Patent Application
App. No. 18/436,510

METHOD FOR CONTROLLING AN ENVELOPE SHAPE OF AN OUTPUT SIGNAL OUTPUTTED BY A DRIVER OF A WIRELESS TRANSMITTER, AND CORRESPONDING INTEGRATED CIRCUIT

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Quick Facts
Patent No.
US None
App. No.
18/436,510
Abstract

A method for controlling an envelope shape of an output signal outputted by a driver of a wireless transmitter includes supplying a first voltage level and a second voltage level, generating a filtered envelope reference signal by switching between the first voltage level and the second voltage level, in conjunction with low-pass filtering the transitions between the first voltage level and the second voltage level, generating a driver supply voltage following the filtered envelope reference signal, regulated in a manner adapted to supply the driver, and controlling the envelope shape of the output signal by supplying the driver with the driver supply voltage.

Claims (45)

1 . A method for controlling an envelope shape of an output signal outputted by a driver of a wireless transmitter, the method comprising:

supplying a first voltage level and a second voltage level;

generating a filtered envelope reference signal by switching between the first voltage level and the second voltage level, in conjunction with low-pass filtering transitions between the first voltage level and the second voltage level;

generating a driver supply voltage following the filtered envelope reference signal;

regulating the driver supply voltage; and

controlling the envelope shape of the output signal by supplying the driver with the driver supply voltage.

2 . The method according to claim 1 , wherein the first voltage level sets a level of unmodulated pulses in the output signal, and the second voltage level sets a level of modulated pulses in the output signal.

3 . The method according to claim 1 , wherein the low-pass filtering produces a monotonic variation in the filtered envelope reference signal until reaching a steady state at the first voltage level or at the second voltage level, respectively, for each transition.

4 . The method according to claim 1 , wherein the low-pass filtering is responsive to control settings that control independently a rising time constant and a falling time constant.

5 . The method according to claim 1 , wherein the low-pass filtering is an analog low pass filtering using a rising time constant equal to a falling time constant.

6 . The method according to claim 1 , wherein regulating the driver supply voltage includes an output powering action to drive up and to drive down the driver supply voltage, and an internal mirroring action to reproduce of the output powering action for internal stabilization of the driver supply voltage with a capacitive and resistive feedback looping.

7 . The method according to claim 1 , wherein the driver supply voltage is a sole regulated voltage supplied to the driver.

8 . A wireless transmitter comprising:

supplying circuits configured to supply a first voltage level and a second voltage level;

a pulse shape filter circuit configured to:

switch between the first voltage level and the second voltage level in order to generate a filtered envelope reference signal; and

in conjunction, low-pass filter transitions between the first voltage level and the second voltage level;

a regulator circuit configured to:

generate a driver supply voltage following the filtered envelope reference signal; and supply a driver with the driver supply voltage; and

the driver, configured to:

control an envelope shape of an output signal with the driver supply voltage; and

output the output signal.

9 . The wireless transmitter according to claim 8 , wherein the driver is configured to output unmodulated pulses in the output signal having a level set by the first voltage level, and to output modulated pulses in the output signal having a level set by the second voltage level.

10 . The wireless transmitter according to claim 8 , wherein the pulse shape filter circuit is configured to low-pass filter the filtered envelope reference signal to have a monotonic variation until a steady state at the first voltage level and at the second voltage level, respectively to each transition.

11 . The wireless transmitter according to claim 8 , wherein the pulse shape filter circuit is responsive to control settings that control independently a rising time constant and a falling time constant for the low-pass filter of the transitions.

12 . The wireless transmitter according to claim 8 , wherein the pulse shape filter circuit includes an analog low pass filter having a rising time constant equal to a falling time constant.

13 . The wireless transmitter according to claim 8 , wherein the regulator circuit includes an output power stage configured to drive up and to drive down the driver supply voltage, and an internal stabilizing circuit including a mirror stage configured to mirror the output power stage, and a capacitive and resistive feedback loop.

14 . The wireless transmitter according to claim 8 , wherein the driver supply voltage is generated by only one regulator circuit.

15 . A wireless transmitter comprising:

supplying circuits configured to supply a first voltage level and a second voltage level, respectively;

a pulse shape filter circuit configured to:

switch between the first voltage level and the second voltage level in order to generate a filtered envelope reference signal; and

in conjunction, low-pass filter transitions between the first voltage level and the second voltage level;

a solitary regulator circuit for regulating a driver, and configured to:

generate a driver supply voltage following the filtered envelope reference signal; and

supply the driver with the driver supply voltage; and

the driver, configured to:

receive the driver supply voltage to control an output signal; and

output the output signal with a controlled envelope shape.

wherein the driver supply voltage is generated by only one regulator circuit.

16 . The wireless transmitter according to claim 15 , wherein the driver is configured to output unmodulated pulses in the output signal having a level set by the first voltage level, and to output modulated pulses in the output signal having a level set by the second voltage level.

17 . The wireless transmitter according to claim 15 , wherein the pulse shape filter circuit is configured to low-pass filter the filtered envelope reference signal to have a monotonic variation until a steady state at the first voltage level and at the second voltage level, respectively to each transition.

18 . The wireless transmitter according to claim 15 , wherein the pulse shape filter circuit is responsive to control settings that control independently a rising time constant and a falling time constant for the low-pass filter of the transitions.

19 . The wireless transmitter according to claim 15 , wherein the pulse shape filter circuit includes an analog low pass filter having a rising time constant equal to a falling time constant.

20 . The wireless transmitter according to claim 15 , wherein the regulator circuit includes an output power stage configured to drive up and to drive down the driver supply voltage, and an internal stabilizing circuit including a mirror stage configured to mirror the output power stage, and a capacitive and resistive feedback loop.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 30, 2024
From: STMICROELECTRONICS (GRENOBLE 2) SAS
To: STMICROELECTRONICS INTERNATIONAL N.V.
Reel/Frame 068449/0739 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 18, 2024
From: STMICROELECTRONICS RAZVOJ POLPREVODNIKOV D.O.O.
To: STMICROELECTRONICS INTERNATIONAL N.V.
Reel/Frame 068025/0532 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 11, 2024
From: SVETE, TILEN
To: STMICROELECTRONICS RAZVOJ POLPREVODNIKOV D.O.O.
Reel/Frame 066716/0993 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 11, 2024
From: MONTJAUX, GREGOIRE
To: STMICROELECTRONICS (GRENOBLE 2) SAS
Reel/Frame 066717/0161 →