GAS MEASURING APPARATUS WITH A COMPACT DESIGN
20230133140 ยท 2023-05-04
Inventors
Cpc classification
International classification
Abstract
A gas measuring apparatus including at least one measuring channel including at least one sensor unit; and a core body including a first part and a second part, wherein the first part is joined at the second part at a flat or planar interface, and wherein the at least one measuring channel is configured in the fiat or planar interface.
Claims
1. A gas measuring apparatus, comprising: at least one measuring channel including at least one sensor unit; and a core body including a first part and a second part, wherein the first part is joined at the second part at a flat or planar interface, and wherein the at least one measuring channel is configured in the flat or planar interface.
2. The gas measuring apparatus according to claim 1, wherein the core body includes at least one dilution flow channel.
3. The gas measuring apparatus according to claim 1, wherein the second part of the core body is configured as a flat cover sheet, and wherein the first part and the second part of the core body are bonded together.
4. The gas measuring apparatus according to claim 3, wherein a bonded connection at the interface between the first part and the second part is formed by laser welding, and wherein one of the first part and the second part is transparent and another of first part and the second part is non-light permeable.
5. The gas measuring apparatus according to claim 1, wherein the core body supports at least one additional connection element that is connected through at least one connection spout to the measuring channel.
6. The gas measuring apparatus according to claim 5, wherein at least one capillary is arranged in the at least one measuring channel.
7. The gas measuring apparatus according to claim 6, wherein the at least one capillary is configured as an injection molded insert, wherein a sealing wall of the at least one capillary is oriented in a mold extraction direction of the injection molded insert, or wherein the at least one capillary is connected through at least one connection spout and the at least one connection element from an outside back into the at least one measuring channel.
8. The gas measuring apparatus according to claim 1, wherein the at least one measuring channel includes a pump configured to generate a volume flow wherein the volume flow is at least 100 ml per minute.
9. The gas measuring apparatus according to claim 1, wherein the at least one measuring channel includes a damping volume of at least 75 ml or a mass flow measuring device.
10. The gas measuring apparatus according to claim 1, wherein the at least one sensor unit includes a particle precipitator.
11. The gas measuring apparatus according to claim 1, wherein the at least one sensor unit includes an opto-chemical or an opto-electronic sensor.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0021] The invention is subsequently described based on advantageous embodiments, but is not limited to these embodiments. Additional embodiments can be derived from combining features of individual or plural patent claims with one another or with individual or plural features of the embodiments. The advantageous embodiments are described with reference to drawing figures, wherein
[0022]
[0023]
[0024]
[0025]
DETAILED DESCRIPTION OF THE INVENTION
[0026]
[0027]
[0028] The first part 3 and the second part 4 of the core body 2 are joined by atomic or molecular forces so that a bonded connection is created wherein the bonded partners can only be separated by destroying bonding devices.
[0029]
[0030] In order to dilute the gas to be measured and to adjust the gas to be measured to a sensitivity of the sensor at least one channel of a dilution flow 15 is formed in the base body in addition to the at least one measuring channel 14 as shown in
[0031]
[0032] It is furthermore evident from
[0033]
[0034] Thus, the invention provides a gas measuring apparatus 1 including at least one measuring channel 14 including at least one sensor unit 20 wherein the gas measuring apparatus 1 includes a core body 2 including a first part 3 and a second part 4 wherein the first part 3 is assembled at the second part 4 at a flat or planar interface 13 and the at least one measuring channel 14 is configured in the interface 13.
REFERENCE NUMERALS AND DESIGNATIONS
[0035] 1 gas measuring apparatus
[0036] 2 core body
[0037] 3 first part of core body 2
[0038] 4 second part of core body 2
[0039] 5 filter
[0040] 6 pump
[0041] 7 additional pump
[0042] 8 damping volume
[0043] 9 mass flow measuring device
[0044] 10 particle precipitator, impactor
[0045] 11 capillary
[0046] 12 connection element
[0047] 13 interface
[0048] 14 measuring channel
[0049] 15 dilution flow channel
[0050] 16 additional mass flow measuring device
[0051] 17 additional dampening volume
[0052] 18 connection spout
[0053] 19 gasket
[0054] 20 sensor unit