IP Library › Granted Patent US 10,962,557
Granted Patent B2
US 10,962,557 · App. 16/021,219 · Granted Mar 30, 2021

Method of operating a laboratory sample distribution system, laboratory sample distribution system and laboratory automation system

Inventor: Falk Hoehnel (Guending, DE)
Assignee: Roche Diagnostics Operations, Inc.
G01N35/0092G01N35/00722G01N35/00732G01N35/00871G01N35/04B65G54/02G01N2035/0096G01N2035/00326G01N2035/00881G01N2035/0406G01N2035/0477G01N2035/0489
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Quick Facts
Patent No.
US 10,962,557
App. No.
16/021,219
Granted
Mar 30, 2021
Kind
B2
Abstract

A method of operating a laboratory sample distribution system is presented. The system comprises container carriers, a gateway having a network interface, and transport modules. Each module comprises a transport surface and are adjacent in a row-direction and column-direction to form a transport surface. The module comprises a driver arranged below the transport surface to move container carriers on the transport surface and left, right, upper and lower network interfaces. The left and right network interfaces connect modules in rows and the upper and lower network interfaces connect modules in columns. The network interface of the gateway is connected to a network interface of a first module. The method comprises sending an explore command from the gateway to the first module, propagating an initialization command from the first module to the remaining modules, storing addresses within the modules, and using the addresses by the gateway to address the modules.

Claims (32)

1. A method of operating a laboratory sample distribution system, wherein the laboratory sample distribution system comprises:

a plurality of sample container carriers,

a gateway having a network interface, and

a plurality of transport modules, wherein each transport module comprises

a transport surface, wherein the transport modules are arrangeable adjacent to one another in a row-direction (x) and in a column-direction (y) such that the transport surfaces of the transport modules together form a common transport surface,

a controllable driver arranged below the transport surface and configured to move sample container carriers on the transport surface,

a left network interface,

a right network interface,

an upper network interface, and

a lower network interface,

wherein the left network interfaces and the right network interfaces are configured to connect transport modules arranged adjacent to one another in the row-direction (x) and the upper network interfaces and the lower network interfaces are configured to connect transport modules arranged adjacent to one another in the column-direction (y) and wherein the network interface of the gateway is connected to a network interface of a first transport module,

the method comprising:

(a) sending an explore command from the gateway to the first transport module, wherein upon receiving the explore command by the first transport module, setting a value of a column counter and value of a row counter to a respective initial value within the first transport module and storing the column counter and the row counter within the first transport module;

(b) sending the initialization command together with the respective values of the column counter and of the row counter from first transport module to a further transport module directly connected to the first transport module;

(c) propagating an initialization command from the first transport module to the remaining transport modules;

(d) storing addresses within the transport modules, wherein a stored address of a respective transport module corresponds to a column (C 0 to C 6 ) and to a row (R 0 to R 8 ) in which the corresponding transport module is positioned; and

using the addresses by the gateway to address the transport modules,

wherein upon receiving the initialization command by the further transport module,

a) incrementing or decrementing the value of the received column counter and storing the incremented or decremented value of the column counter and storing the received value of the row counter within the further transport module, if the initialization command is received by the left network interface or the right network interface of the further transport module, and

b) incrementing or decrementing the value of the received row counter and storing the incremented or decremented value of the row counter and storing the received value of the column counter within the further transport module, if the initialization command is received by the upper network interface or the lower network interface of the further transport module;

repeating steps a) and b) for all further transport modules, until all transport modules have stored the values of their corresponding column counters and row counters; and

using the values of the respective column counters and row counters as the addresses.

2. The method according to claim 1 , wherein during transmission of messages a respective transport module forwards a received message to an adjacent transport module arranged in the same row and/or the same column.

3. The method according to claim 1 , wherein the network interface of the gateway is additionally connected to an interface of a further transport module, and wherein the explore command is additionally sent from the gateway to the further transport module.

4. A laboratory sample distribution system, the laboratory sample distribution system comprising:

a plurality of sample container carriers;

a gateway having a network interface; and

a plurality of transport modules, wherein each transport module comprises,

a transport surface, wherein the transport modules are arrangeable adjacent to one another in a row-direction (x) and in a column-direction (y) such that the transport surfaces of the transport modules together form a common transport surface,

a controllable driver arranged below the transport surface and configured to move sample container carriers on the transport surface,

a left network interface, a right network interface, an upper network interface, and a lower network interface, wherein the left network interfaces and the right network interfaces are configured to connect transport modules arranged adjacent to one another in the row-direction (x) and the upper network interfaces and the lower network interfaces are configured to connect transport modules arranged adjacent to one another in the column-direction (y) and wherein the network interface of the gateway is connected to an interface of a first transport module,

wherein the gateway and the plurality of transport modules are configured to interact such that the method of claim 1 is carried out.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 18, 2019
From: HOEHNEL, FALK
To: ZUEHLKE ENGINEERING GMBH
Reel/Frame 048055/0193 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 18, 2019
From: ZUEHLKE ENGINEERING GMBH
To: ROCHE PVT GMBH
Reel/Frame 048055/0222 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 18, 2019
From: ROCHE PVT GMBH
To: ROCHE DIAGNOSTICS GMBH
Reel/Frame 048055/0264 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 18, 2019
From: ROCHE DIAGNOSTICS GMBH
To: ROCHE DIAGNOSTICS OPERATIONS, INC.
Reel/Frame 048055/0281 →
Priority Claims (1)
EP 17181287 · Jul 13, 2017 · regional
Continuity (1)
Related Publication 20190018027A1 · Jan 17, 2019
Cited By (1)
US 12,565,389