IP Library Granted Patent US 10,073,124
Granted Patent B2
US 10,073,124 · App. 15/323,381 · Granted Sep 11, 2018

Electronic meter seal arrangement and method

Inventors: Hua Kang (Lafayette, IN); David Schamber (Lafayette, IN)
Assignee: Landis+Gyr, LLC
G01R22/066G01R11/24G01R22/065
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Quick Facts
Patent No.
US 10,073,124
App. No.
15/323,381
Granted
Sep 11, 2018
Kind
B2
Abstract

A method is used in a utility meter having an arm bit and a seal bit. The method includes changing a state of the arm bit to a first state in response to a first set of conditions. The method also includes removing electrical power from the meter. Upon subsequently applying electrical power to the meter, a first signal in a meter processing circuit indicates whether a meter cover is installed or the meter cover is removed. The processing circuit changes the seal bit to a first state responsive to a condition in which the arm bit is in the first state and the first signal indicates that the meter cover is installed. The processing circuit changes the seal bit to a second state responsive to a condition in which the seal bit is in the first state and the first signal indicates that the meter cover is removed.

Claims (39)

1. A method for use in a utility meter, utility meter having a first memory location having an arm bit and a second memory location having a seal bit, comprising:

a) changing a state of the arm bit to a first state in response to a first set of conditions;

b) removing power from the meter;

c) applying electrical power to the meter;

d) upon applying electrical power to the meter, providing a first signal to a processing circuit in the meter indicating whether a meter cover is installed or the meter cover is removed;

e) using the processing circuit to change the state of the seal bit to a first state in response to a condition in which the arm bit is in the first state and the first signal indicates that the meter cover is installed;

f) using the processing circuit to change the state of the seal bit to a second state in response to a condition in which the seal bit is in the first state and the first signal indicates that the meter cover is removed.

2. The method of claim 1 , further comprising:

g) upon applying electrical power to the meter, obtaining in the processing circuit a second signal indicating whether the meter cover was removed after a last time that power was applied to the meter.

3. The method of claim 2 , further comprising, upon applying electrical power to the meter,

using the processing circuit to change the seal bit to the second state in response to a condition in which the seal bit is in the first state and the second signal indicates that the meter cover was removed after the last time that power was applied to the meter.

4. The method of claim 1 , wherein the first set of conditions includes:

the first signal indicates that the cover is removed; and

an arm signal is received via an optical port of the meter.

5. The method of claim 1 , wherein step e) further comprises:

e) changing the arm bit to second state in response to the condition in which the arm bit is in the first state and the first signal indicates that the meter cover is installed.

6. The method of claim 5 , further comprising:

g) retaining the seal bit in the second state in response to a condition in which the arm bit is in the second state and the first signal indicates that the meter cover is installed.

7. The method of claim 2 , wherein the second signal comprises a flag stored in a memory.

8. An arrangement for use in a utility meter, comprising:

a non-volatile memory within a meter housing having at least a first memory location storing an arm bit and a second memory location storing a seal bit;

a processing device within the meter housing, the processing device configured to perform a set of start-up operations upon application of bias power to an input, the processing device further configured by program instructions to

change a state of the arm bit to a first state in response to a first set of conditions;

in performing the start-up operations, obtain a first signal indicating whether a meter cover is installed or the meter cover is removed;

change the state of the seal bit to a first state in response to a condition in which the arm bit is in the first state and the first signal indicates that the meter cover is installed;

change the state of the seal bit to a second state in response to a condition in which the seal bit is in the first state and the first signal indicates that the meter cover is removed.

9. The arrangement of claim 8 , wherein the processing circuit is further configured to:

in performing the start-up operations, obtain a second signal indicating whether the meter cover was removed after a last time that power was applied to the meter.

10. The arrangement of claim 9 , wherein the processing circuit is further configured to, in performing the start-up operations, to change the seal bit to the second state in response to a condition in which the seal bit is in the first state and the second signal indicates that the meter cover was removed after a last time that power was applied to the meter.

11. The arrangement of claim 8 , wherein the first set of conditions includes:

the first signal indicates that the cover is removed; and

an arm signal is received via an optical port of the meter.

12. The arrangement of claim 8 , wherein the processing circuit is further configured to, in performing the start-up operations,

change the arm bit to second state in response to the condition in which the arm bit is in the first state and the first signal indicates that the meter cover is installed.

13. The arrangement of claim 8 , wherein the processing circuit is further configured to retain the seal bit in the second state in response to a condition in which the arm bit is in the second state and the first signal indicates that the meter cover is installed.

14. The arrangement of claim 8 , further comprising a metrology circuit supported by the meter housing, the metrology circuit configured to detect electricity delivered to a load and generate energy consumption related information therefrom.

15. The arrangement of claim 14 , wherein the processing circuit forms a part of the metrology circuit.

16. The arrangement of claim 15 , wherein the metrology circuit further comprises voltage sensors and current sensors operably coupled to the processing circuit.

17. The arrangement of claim 14 , wherein the metrology circuit further comprises voltage sensors and current sensors operably coupled to the processing circuit.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 14, 2018
From: KANG, HUA; SCHAMBER, DAVID
To: LANDIS+GYR LLC
Reel/Frame 045798/0033 →
Continuity (2)
Provisional Application 62020385 · Jul 2, 2014
Related Publication 20180172741A1 · Jun 21, 2018