IP Library Granted Patent US 11,133,910
Granted Patent B2
US 11,133,910 · App. 16/464,927 · Granted Sep 28, 2021

Methods and arrangements for wide bandwidth communications

Inventors: Rui Huang (Beijing, CN); Yang Tang (San Jose, CA); Jie Cui (Santa Clara, CA)
Assignee: Apple Inc.
H04L5/0092H04L5/0094H04W4/80H04W24/10H04W56/001H04W72/0446H04W76/15H04W76/27
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Quick Facts
Patent No.
US 11,133,910
App. No.
16/464,927
Granted
Sep 28, 2021
Kind
B2
Abstract

Logic may receive an initial communication from a user device, the initial communication comprising capabilities. Logic may determine when the capabilities indicate a requirement for measurement gaps. Logic may determine, when the capabilities for the user device indicate a requirement to implement measurement gaps, a gap pattern to assign to the user device to re-tune one or more radio frequency chains to a wide bandwidth carrier frequency during communications. Logic may transmit information about the gap pattern to the user device. Logic may transmit an initial communication to a base station, the initial communication comprising capabilities. Logic may receive a communication from the base station comprising information about a gap pattern. Logic may receive a synchronization signal to synchronize a wide bandwidth, radio frequency chain. And logic may retune the radio frequency chain during one or more measurement gaps defined by the gap pattern.

Claims (23)

1. An apparatus to perform wide bandwidth communications, comprising:

baseband circuitry; and

an interface coupled with the baseband circuitry, to couple with radio frequency (RF) circuitry to switch a bandwidth operation (BWP) and, during switching of the BWP, to cause up to a maximum interruption in communications with another cell in accordance with an interruption requirement, wherein the interruption requirement allows the maximum interruption of up to a percentage of subframes of a radio frame.

2. The apparatus of claim 1 , further comprising the interface coupled with the baseband circuitry to receive a synchronization signal from a radio resource control (RRC) layer of a base station.

3. The apparatus of claim 1 , further comprising the RF circuitry and one or more antennas coupled with a radio the RF circuitry to communicate with another device.

4. The apparatus of claim 1 , further comprising the interface coupled with the baseband circuitry to synchronize one wide bandwidth RF chain of the BWP, the synchronization to cause up to a maximum interruption in communications with another cell in accordance with an interruption requirement.

5. The apparatus of claim 1 , further comprising the interface coupled with the baseband circuitry to aggregate more than one RF chains with carrier aggregation and to synchronize the more than one RF chains of the BWP, the synchronization to cause up to a maximum interruption in communications with another cell in accordance with an interruption requirement.

6. The apparatus of claim 1 , switching the BWP to involve subcarrier spacing.

7. The apparatus of claim 1 , wherein the apparatus operation is non-standalone, dual connectivity, to switch the BWP from a narrow bandwidth to the wide bandwidth.

8. A method to perform wide bandwidth communications, comprising: aggregating, by baseband circuitry via an interface to couple with radio frequency (RF) circuitry, one or more RF chains to switch a bandwidth operation (BWP);

and during switching of the BWP, causing up to a maximum interruption in communications with another cell in accordance with an interruption requirement, wherein the interruption requirement allows the maximum interruption of up to a percentage of subframes of a radio frame.

9. The method of claim 8 , further comprising receiving a synchronization signal from a radio resource control (RRC) layer of a base station to synchronize the one or more RF chains of the BWP.

10. The method of claim 8 , further comprising synchronizing one wide bandwidth RF chain of the BWP, the synchronization to cause up to a maximum interruption in communications with another cell in accordance with an interruption requirement.

11. The method of claim 8 , further comprising aggregating more than one RF chains with carrier aggregation and synchronizing the more than one RF chains of the BWP, the synchronization to cause up to a maximum interruption in communications with another cell in accordance with an interruption requirement.

12. The method of claim 8 , switching the BWP to involve subcarrier spacing.

13. The method of claim 8 , wherein operation of the baseband circuitry is non-standalone, dual connectivity, to switch the BWP from a narrow bandwidth to the wide bandwidth.

14. A non-transitory machine-readable medium containing instructions, which when executed by a processor, cause the processor to perform operations, the operations comprising: aggregating, via an interface to couple with radio frequency (RF) circuitry, one or more RF chains to switch a bandwidth operation (BWP);

and during switching of the BWP, causing up to a maximum interruption in communications with another cell in accordance with an interruption requirement, wherein the interruption requirement allows the maximum interruption of up to a percentage of subframes of a radio frame.

15. The machine-readable medium of claim 14 , wherein the operations further comprise receiving a synchronization signal from a radio resource control (RRC) layer of a base station to synchronize the more than one RF chains of the BWP.

16. The machine-readable medium of claim 14 , wherein the operations further comprise synchronizing one wide bandwidth RF chain of the BWP, the synchronization to cause up to a maximum interruption in communications with another cell in accordance with an interruption requirement.

17. The machine-readable medium of claim 14 , wherein the operations further comprise aggregating more than one RF chains with carrier aggregation and synchronizing the more than one RF chains of the BWP, the synchronization to cause up to a maximum interruption in communications with another cell in accordance with an interruption requirement.

18. The machine-readable medium of claim 14 , switching the BWP to involve subcarrier spacing.

19. The machine-readable medium of claim 14 , wherein operation of the processor is non-standalone, dual connectivity, to switch the BWP from a narrow bandwidth to the wide bandwidth.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 26, 2020
From: INTEL CORPORATION
To: APPLE INC.
Reel/Frame 053309/0140 →
CONFIRMATORY ASSIGNMENT Recorded Jun 25, 2020
From: INTEL IP CORPORATION
To: INTEL CORPORATION
Reel/Frame 053051/0295 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 29, 2019
From: HUANG, RUI; TANG, YANG; CUI, JIE
To: INTEL IP CORPORATION
Reel/Frame 049307/0668 →