IP Library › Granted Patent US 11,251,879
Granted Patent B1
US 11,251,879 · App. 17/355,889 · Granted Feb 15, 2022

Mobile terminal testing device and mobile terminal testing method

Inventors: Zhihui Wu (Kanagawa, JP); Takumi Nakamura (Kanagawa, JP)
Assignee: ANRITSU CORPORATION
H04B17/0085H04B17/15H04B17/29
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Quick Facts
Patent No.
US 11,251,879
App. No.
17/355,889
Granted
Feb 15, 2022
Kind
B1
Abstract

In a measurement device, a reception sensitivity test control unit includes drop determination means for determining whether or not a measured throughput is in a dropped state to a preset proportion in a steep drop region in which the throughput drops steeply, and output level setting means 18 e for performing a setting process of setting an output level of the test signal to be different from a previous output level according to a comparison result indicating whether a throughput measurement result exceeds a predetermined threshold value and a determination result indicating whether the measured throughput is in the dropped state by the drop determination means, the setting process including a process of performing level down or level up on the output level of the test signal with respect to the previous output level in units of an error tolerance level EL when it is determined to be the dropped state.

Claims (40)

1. A mobile terminal testing device for testing a mobile terminal, which is a device under test, comprising:

reception sensitivity test execution means for executing a test of calculating reception sensitivity by repeating transmission and reception of a test signal from a signal generator to the device under test, wherein

the reception sensitivity test execution means includes

test condition setting means for setting a predetermined error tolerance level,

throughput measurement means for measuring a throughput related to reception capacity of the mobile terminal for each transmission and reception,

drop determination means for determining whether the measured throughput is in a dropped state to a preset proportion in a steep drop region in which the throughput drops steeply,

output level setting means for performing a setting process of setting an output level of the test signal to be different from a previous output level according to a comparison result indicating whether a throughput measurement result exceeds a predetermined threshold value and a determination result indicating whether the measured throughput is in the dropped state by the drop determination means, the setting process including a process of performing level down or level up on the output level of the test signal with respect to the previous output level in units of the error tolerance level when it is determined to be the dropped state, and

measurement result output means for continuing the transmission and reception in a case where a fluctuation range with respect to the previous output level exceeds the error tolerance level which is set by the test condition setting means, and outputting a test result in a case where the fluctuation range with respect to the previous output level is in a range of the error tolerance level.

2. The mobile terminal testing device according to claim 1 , wherein

the test condition setting means further sets an initial step fluctuation range related to a step fluctuation of the output level,

the drop determination means executes a process of determining whether the measured throughput is in the dropped state when the comparison result indicating that the throughput measurement result exceeds the threshold value is obtained, and

the output level setting means performs a process of performing level down on the output level of the test signal by a value twice the error tolerance level from the previous output level according to the determination result indicating whether the measured throughput is in the dropped state or a process of performing level down on the output level of the test signal by a value corresponding to the initial step fluctuation range from the previous output level in a case where the comparison result indicating that the throughput measurement result exceeds the threshold value is obtained, and performs a process of performing level up on the output level of the test signal by a value of the error tolerance level from the previous output level in a case where the comparison result indicating that the throughput measurement result does not exceed the threshold value is obtained.

3. The mobile terminal testing device according to claim 2 , wherein

the test condition setting means uses a value of the throughput, which is measured by the throughput measurement means in a first transmission and reception, as a reference value, and sets a range of a proportion which exceeds 95% and is equal to or less than 99% with respect to the reference value as a determination condition for determining whether the measured throughput is in the dropped state, and

the drop determination means determines whether the measured throughput is in the dropped state according to whether the measured throughput is in the range of the proportion.

4. The mobile terminal testing device according to claim 3 , further comprising:

a radio anechoic box including an internal space; and

scanning means for driving and scanning the mobile terminal so as to continuously change an orientation of the mobile terminal in the internal space, wherein

the reception sensitivity test is performed in all orientations to be scanned by the scanning means in an over an air (OTA) measurement environment in the internal space.

5. The mobile terminal testing device according to claim 2 , further comprising:

a radio anechoic box including an internal space; and

scanning means for driving and scanning the mobile terminal so as to continuously change an orientation of the mobile terminal in the internal space, wherein

the reception sensitivity test is performed in all orientations to be scanned by the scanning means in an over an air (OTA) measurement environment in the internal space.

6. The mobile terminal testing device according to claim 1 , wherein

the test condition setting means uses a value of the throughput, which is measured by the throughput measurement means in a first transmission and reception, as a reference value, and sets a range of a proportion which exceeds 95% and is equal to or less than 99% with respect to the reference value as a determination condition for determining whether the measured throughput is in the dropped state, and

the drop determination means determines whether the measured throughput is in the dropped state according to whether the measured throughput is in the range of the proportion.

7. The mobile terminal testing device according to claim 6 , further comprising:

a radio anechoic box including an internal space; and

scanning means for driving and scanning the mobile terminal so as to continuously change an orientation of the mobile terminal in the internal space, wherein

the reception sensitivity test is performed in all orientations to be scanned by the scanning means in an over an air (OTA) measurement environment in the internal space.

8. The mobile terminal testing device according to claim 1 , further comprising:

a radio anechoic box including an internal space; and

scanning means for driving and scanning the mobile terminal so as to continuously change an orientation of the mobile terminal in the internal space, wherein

the reception sensitivity test is performed in all orientations to be scanned by the scanning means in an over an air (OTA) measurement environment in the internal space.

9. A mobile terminal testing method for testing a mobile terminal which is a device under test by executing a test of calculating reception sensitivity by repeating transmission and reception of a test signal from a signal generator to the device under test, the mobile terminal testing method comprising:

a test condition setting step of setting a predetermined error tolerance level;

a throughput measurement step of measuring a throughput related to reception capacity of the mobile terminal for each transmission and reception;

a drop determination step of determining whether the measured throughput is in a dropped state to a preset proportion in a steep drop region in which the throughput drops steeply;

an output level setting step of performing a setting process of setting an output level of the test signal to be different from a previous output level according to a comparison result indicating whether a throughput measurement result exceeds a predetermined threshold value and a determination result indicating whether or not the measured throughput is in the dropped state by the drop determination step, the setting process including a process of performing level down or level up on the output level of the test signal with respect to the previous output level in units of the error tolerance level when it is determined to be the dropped state; and

a measurement result output step of continuing the transmission and reception in a case where a fluctuation range with respect to the previous output level exceeds the error tolerance level which is set by the test condition setting step, and outputting a test result in a case where the fluctuation range with respect to the previous output level is in a range of the error tolerance level.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 23, 2021
From: WU, ZHIHUI; NAKAMURA, TAKUMI
To: ANRITSU CORPORATION
Reel/Frame 056640/0820 →
Priority Claims (1)
JP JP2020-161934 · Sep 28, 2020 · national
Cited By (2)
US 12,389,243 US 12,659,057