“Where the expert already knows the invention there may yet be value in sequencing the documents that he or she reviews to focus the mind on avoiding hindsight, but the opportunity to give a completely untainted view of the prior art does not exist; the expert has to discipline themself carefully to avoid hindsight. If they do so well then there is no reason why they cannot give cogent evidence on obviousness, but in such a situation I think it must be important for the expert to identify how they knew about the invention and when, and to reflect carefully on how that might influence them.”
“One problem of such a proposed smoking system is that tobacco smoke tends to condense on the internal walls of the system. This is undesirable because condensation build up on the internal walls of the system can lead to reduced performance. Accordingly, it is advantageous to provide an electrically heated smoking system which, in use, minimises the risk of smoke or aerosol condensation on its internal walls.”
“There is provided an electrically heated smoking system for receiving an aerosol-forming substrate, the system comprising a heater for heating the substrate to form the aerosol, the heater comprising a heating element, wherein the electrically heated smoking system and the heating element are arranged such that, when the aerosol-forming substrate is received in the electrically heated smoking system, the heating element extends a distance only partially along the length of the aerosol-forming substrate, and the heating element is positioned towards the downstream end of the aerosol-forming substrate.”
“Positioning the heating element such that it extends only partially along the aerosol-forming substrate’s length reduces the power required to heat the substrate and produce the aerosol.”
“Furthermore, positioning the heating element towards the downstream end of the aerosol-forming substrate also minimises the risk of condensation of the aerosol on the internal walls of the smoking system. This is because the non-heated portion of the aerosol-forming substrate (for example, a tobacco rod) located away from the heating element acts as a filtration zone, thereby minimising the risk of aerosol leaving the upstream end of the aerosol forming substrate. In addition, positioning the heating element towards the downstream end of the aerosol-forming substrate shortens the zone contained between the downstream end of the heating element and the downstream end of the aerosol-forming substrate. This leads to a significant reduction in the energy required to generate an aerosol for the user. This also leads to a reduction in the time to first puff, that is to say, the time between energizing the heating element and providing the aerosol to a user.”
“In addition, the non-heated upstream portion of the aerosol-forming substrate acts as a slow-release aerosol reservoir which may be accessible by thermal conduction through the substrate throughout the smoking experience.”
“In one embodiment of the electrically heated smoking system, in accordance with the invention, the heater further comprises a second heating element arranged, when the aerosol-forming substrate is received in the electrically heated smoking system: to extend a distance y only partially along the length l of the aerosol-forming substrate; and to be upstream of the first heating element. The first heating element, the second heating element or both heating elements may extend substantially partially or fully around the circumference of the aerosol forming substrate.”
“Providing a second heating element upstream of the first heating element allows different parts of the aerosol-forming substrate to be heated at different times. This is also advantageous, since the aerosol-forming substrate does not need to be reheated for example if the user wishes to stop and resume the smoking experience. In addition, providing two separate heating elements provides for more straightforward control of the temperature gradient along the aerosol-forming substrate and hence control of the aerosol generation. Preferably, the heating elements are independently controllable.”
“Preferably, the separation between the first heating element and the second heating element is equal to or greater than approximately 0.5 mm. That is to say preferably, the separation between the upstream end of the first heating element and the downstream end of the second heating element is equal to or greater than approximately 0.5 mm. However, any separation between the first and second heating elements may be used, provided the first and second heating elements are not in electrical contact with each other.”
“Again, the non-heated portion of the aerosol-forming substrate located at the upstream end, that is, between the upstream end of the aerosol-forming substrate and the upstream end of the second heating element, provides an efficient filtration zone. This minimises the risk of aerosol escaping from the upstream end of the aerosol forming substrate in the electrically heated smoking system. This also minimises the risk of condensation of aerosol inside the electrically heated smoking system, which minimises the number of cleaning operations required throughout the electrically heated smoking system’s lifetime. In addition, the non-heated upstream portion of the aerosol-forming substrate acts as a slow-release aerosol reservoir which may be accessible by thermal conduction through the substrate throughout the smoking experience.”
“For embodiments of the invention which have two heating elements, the lengths of both the heating elements may be slightly reduced (compared to the length of the heating element in embodiments outside the scope of the invention which only have one heating element) in order to keep a zone upstream of the second heating element which is cooler than the heated portion of the aerosol forming substrate, and a zone downstream of the first heating element which is cooler than the heated portion of the aerosol forming substrate. … Alternatively, the first heating element (downstream) may have substantially the same dimension as the heating element in the smoking system which only has a single heating element, but the second heating element (upstream) may be shorter in length than the first heating element. That is to say, the first heating element has a length which is greater than the length of the second heating element. …”
“The provision of two heating elements in the embodiment of Figure 2 allows the user to stop and resume the smoking experience without needing to reheat any portion of the substrate. One possible method of usage is as follows. Firstly, the first (downstream) heating element 213 is activated at the start of the smoking experience. Then, the heating element 213 is deactivated at one of the following events: 1) the puff count of the first heating element 213 reaches a predetermined limit, 2) the user terminates the smoking experience, or 3) the smoking article 201 is removed from the electrically heated smoking system 203. Then, the second (upstream) heating element 214 may be activated at one of the following events: 1) the user wishes to resume the smoking experience after a short or extended break, or 2) the puff count of the first heating element 213 has reached a predetermined limit so the second heating element 214 needs to be activated in order to begin heating a new portion of the substrate. This method allows a fresh portion of the substrate to be heated for each heating sequence. One or more further heating elements may be provided between the downstream heating element and the upstream heating element.”
“…Preferably, the heater does not include an end portion to heat the upstream end of the aerosol-forming substrate. This provides a non-heated portion of aerosol-forming substrate at the upstream end.”
“56. Turning to intermediate generalisation, this occurs when a feature is taken from a specific embodiment, stripped of its context and then introduced into the claim in circumstances where it would not be apparent to the skilled person that it has any general applicability to the invention. 57. Particular care must be taken when a claim is restricted to some but not all of the features of a preferred embodiment, as the TBA explained in decision T 0025/03 at point 3.3: “According to the established case law of the boards of appeal, if a claim is restricted to a preferred embodiment, it is normally not admissible under Article 123(2) EPC to extract isolated features from a set of features which have originally been disclosed in combination for that embodiment. Such kind of amendment would only be justified in the absence of any clearly recognisable functional or structural relationship among said features (see e.g. T 1067/97, point 2.1.3).” 58. So also, in decision T 0284/94 the TBA explained at points 2.1.3–2.1.5 that a careful examination is necessary to establish whether the incorporation into a claim of isolated technical features, having a literal basis of disclosure but in a specific technical context, results in a combination of technical features which is clearly derivable from the application as filed, and the technical function of which contributes to the solution of a recognisable problem. Moreover, it must be clear beyond doubt that the subject matter of the amended claim provides a complete solution to a technical problem unambiguously recognisable from the application. 59. It follows that it is not permissible to introduce into a claim a feature taken from a specific embodiment unless the skilled person would understand that the other features of the embodiment are not necessary to carry out the claimed invention. Put another way, it must be apparent to the skilled person that the selected feature is generally applicable to the claimed invention absent the other features of that embodiment. 60. Ultimately the key question is once again whether the amendment presents the skilled person with new information about the invention which is not directly and unambiguously apparent from the original disclosure. If it does then the amendment is not permissible.” “According to the established case law of the boards of appeal, if a claim is restricted to a preferred embodiment, it is normally not admissible under Article 123(2) EPC to extract isolated features from a set of features which have originally been disclosed in combination for that embodiment. Such kind of amendment would only be justified in the absence of any clearly recognisable functional or structural relationship among said features (see e.g. T 1067/97, point 2.1.3).”
“There is no doubt that the claims of the patent form part of the disclosure for the purposes of assessing whether there is added matter. However the claims perform a different function from the disclosure in the body of the specification. The primary function of the claims is to delimit the area of the patentee's monopoly.”
“It is clear from these decisions that the law does not prohibit the addition of claim features which state in more general terms that which is described in the specification. What the law prohibits is the disclosure of new information about the invention.”
“Further heating elements may be provided between the first and second heating elements. For example, the heater may comprise three, four, five, six or more heating elements.”
“In one embodiment of the electrically heated smoking system, in accordance with the invention, the heater further comprises a second heating element arranged, when the aerosol-forming substrate is received in the electrically heated smoking system: to extend a distance y only partially along the length l of the aerosol-forming substrate; and to be upstream of the first heating element. The first heating element, the second heating element or both heating elements may extend substantially partially or fully around the circumference of the aerosol forming substrate.”
“…Preferably, the heater does not include an end portion to heat the upstream end of the aerosol-forming substrate. This provides a non-heated portion of aerosol-forming substrate at the upstream end.”
“This means that substantially equal aerosol yields and time to first puff are provided by the first and second heating elements.”
“Providing a second heating element upstream of the first heating element allows different parts of the aerosol-forming substrate to be heated at different times. This is also advantageous, since the aerosol-forming substrate does not need to be reheated for example if the user wishes to stop and resume the smoking experience. In addition, providing two separate heating elements provides for more straightforward control of the temperature gradient along the aerosol-forming substrate and hence control of the aerosol generation. Preferably, the heating elements are independently controllable.”
“The inventive concept underlying claim 1 of [the 323 patent] is an electrically heated smoking system comprising only two heating elements each of which extend [sic] only partially along the length of the aerosol-forming substrate. Such a system allows different parts of the length of the aerosol-forming substrate to be heated at different times (thereby avoiding reheating, for example in the event of a pause) and provides for more straightforward control of the temperature gradient along the length of the aerosol-forming substrate and hence control of the aerosol generation.”
“Q. In such a case, where you have thermal transfer, for example using one of the set-ups you have just talked about between the heaters, which are very close together or are connected by a housing that conducts thermally, and where you have thermal conduction along the substrate, if you turn one of those heaters on and not the other, you are going to find that the area within the second heater has, to some greater or lesser degree, heated up? A. I agree, but the key qualifier there is to a "greater or lesser degree". Depending on how you configured it, you could have tremendous thermal conduction from one heater element or from one heater element region to the other or depending on how you set it up, in the context of a heat-not-burn product, it would be insignificant. It all depends on how it is constructed and designed and built.”
“the possibility of the one area to give off heat independently of the other area. This is clear from the desired effect to be achieved by the invention, which is for the two heating elements to be able to impact, i.e. heat, the aerosol-forming substrate independently of one another… This presupposes that the protected device provides two heating mechanisms which can each independently give off heat, which is achieved by the two claimed heating elements.”
“What is decisive is that two independent “heating mechanisms” can be distinguished, even if they partly use the same components.”
“the provision of two heating elements according to claim 1 is intended to enable an independent effect on different parts of the aerosol-forming substrate in the sense that heat can be transferred to different parts of the substrate by one of two heating elements in each case.”
“It is an object of the present invention to provide a system for providing an inhalable aerosol, which has a simple basic structure and may serve, in particular, as a smoking article which offers a taste sensation similar to that of conventional cigarettes, but which, when used, does not generate sidestream smoke in the interval between puffs.”
“A system for providing an inhalable aerosol, comprising - a substrate portion having at least one heating resistor and comprising aerosol-forming material inside a sheath, the sheath having an air inlet opening and an aerosol outlet opening, and - an inhaler device comprising a housing, a receiving means for holding the substrate portion, and contacts for supplying electrical power to the at least one heating resistor of the substrate portion, which contacts are connected or connectable to a power source.”
“The system according to the present invention for providing an inhalable aerosol is particularly suitable as a smoking article the operating principle of which is based on heating an aerosol-forming material during puffs. Here, a preferably cylindrical substrate portion, which comprises at least one heating resistor and contains the aerosol-forming material within a sheath, is smoked in a specific inhaler device which is preferably cigarette-shaped or cigar-shaped. As heat resistor, the sheath of the substrate portion is preferably used, which for this purpose is at least partially electrically conductive. In the inhaler device, the substrate portion is heated during puffs by supplying electrical energy to the conductive sheath, so that aerosol forms which may be inhaled by the smoker by drawing air through the air inlet opening of the sheath via the aerosol outlet opening of the sheath. The use of the smoking article prevents the formation of sidestream smoke in the interval between puffs. The basic principle of the invention is thus based on the closest possible spatial arrangement of heat source and aerosol forming agent. This is achieved by that the substrate portion as such comprises the heat resistor (or also a plurality of heat resistors) which is preferably designed as a conductive sheath of the substrate portion and is heated by applying a voltage via the contacts in the inhaler device.”
“The electrically conductive sheath 3 may comprise paper or sheet tobacco provided with conductive additives (such as metals or graphite/carbon) or a plastic film also made conductive by additives. A multilayer sheath may also be used, wherein the inner layer may comprise paper or sheet tobacco and the outer layer one of the mentioned conductive materials. It is also possible to initially make the sheath from a non-conductive material and to subsequently, before or after sheathing of the aerosol-forming material, apply a conductive film, for example, by vapor deposition or spraying.”
“The smoking device is now guided to the mouth and the switch 23 is actuated. By closing the circuit, the substrate portion is heated by the current flowing, via the contacts 21 and 22, through the sheath acting as heating resistor, and the resulting aerosol may be drawn through the mouthpiece 10. The switch-off is effected by releasing the switch 23 or by the controller 32. In this way, several puffs may be drawn.”
“In this way, several puffs may be drawn.”
“By sequentially supplying power to one of the zones 13 or 15, a new part can be heated in each case, thereby achieving a more uniform aerosol yield by the puffs. This results in a largely constant taste per puff. This may be controlled, for example, by means of a puff detector which responds to a change in pressure when air is drawn by the user and effects the power supply to one of the zones 13 or 15 via a switching device. During the next puff, the switching device responds again, but an electronic circuit ensures that this time, via the associated contacts, the heating current is applied to another zone 13 or 15 not yet used, etc.”
“was smoked in a smoking device according to Fig. 3 without visible amounts of sidestream smoke being produced. By test persons, the taste was assessed as uniform and equivalent to that of conventional cigarettes.”
“The Skilled Engineer would pursue the single continuous heating resistor arrangement of Fig. 2a of Pienemann first, that being the simplest embodiment. The Skilled Engineer would be encouraged by the results of the Example on page 16 of Pienemann. Utilizing a thin-film heater, the Skilled Engineer could cheaply and easily build a prototype of such a device and test it with the tobacco formulation disclosed by the Example on page 15 of Pienemann….”
“A. Absolutely, and I think for determining whether this particular tobacco blend with those additives and those dimensions and packing density did, replicate as they called it, a uniform or the conventional cigarette, you would not necessarily need to make it with paper and a graphite coating. You could use some other heater, either on the sheath of the article or a permanent heating element. I do not think The sense of his evidence was “I think” rather than “I do not think”. a skilled person looking at this would want to test the tobacco formulation in the geometries and packing density and not be fixated on how to make this conductive sheath. Q. Given that the whole purpose of Pienemann is to improve on the prior art by producing the closest possible spatial relationship and getting the conductive sheath into contact with the tobacco, that is critical, surely, to his conception of why his device works as well as it does; correct? A. I think a skilled person reading this would be interested at this point in the tobacco formulation, the packing density and the additives in this particular geometry and not necessarily in how to implement his electrically conductive sheath. That is a different issue. Q. When you talk about "the additives", are you talking about the additives to the tobacco? A. Yes. The propylene glycol or the glycerins that were added and what content were added. Q. There is no suggestion in this document, is there, that what Pienemann has discovered and is excited about is a particular tobacco formulation? A. I do not know what Pienemann would have been "excited about" but I do know what a skilled person reading this in 2009 would be excited about. When I first read this I was very struck by here is a tobacco formulation which is unusual to see in a patent, with particular additives, densities and geometries that are claimed to replicate that of a conventional cigarette. I think that is what somebody reading Pienemann, in part, would be interested in. Q. I saw you said that, and I am quite puzzled, because you are not a tobacco chemist, are you? A. That might be more reason why I was interested in it, because here it is. Here is the formulation and how you configure it to replicate that of a combustible cigarette, which we have already determined is the Holy Grail. Q. But have you not reason to suppose that this is in any way an unusual striking or particularly attractive formulation of a tobacco mix, have you? You just ---- A. I could not say how unusual it is, no. Q. In the absence of a statement by the author, that this is something special, I just do not understand why you are running off with the idea that the key to this disclosure lies in the tobacco mix. A. Because he claims that. He says that it replicates a uniform and equivalent experience of that of conventional cigarettes. I do not think that he is in any way implying, and it would be absurd to imply, that the loading of the graphite in the sheath, when the resultant -- how the temperature was created relates to whether it is equivalent and uniform to a combustible cigarette. It is the tobacco, the formulation, configuration, dimensions and that you heat it and that you heat it uniformly from the outside in a configuration that looks like Figure 3. Q. That is simply not what Pienemann says is his core inventive idea, is it? You have just missed out his core inventive idea in your account ---- A. None the less. Q. --- which you see of significance in this document? A. None the less, I was asked to look at this from the eyes of the skilled person in 2009 and say what you would take away from Pienemann. I think there are other things you would take away from Pienemann, but this is certainly one of the big things that you would take away. You would look at it and go, "Gosh, he claims that it replicates the experience of a conventional cigarette." That is huge and he gives very particular definitions, recipes, if you will, of the tobacco, the additives, the densities. He gives very, as you say, very little detail about how much graphite is added or what voltages are applied, what resistances are, what temperature it is goes to. He is, kind of, lacking completely in that, but what he does give is a lot of detail about how you would achieve this experience of a conventional cigarette and I think somebody would be very interested in that in 2009. Q. Okay. I am going to suggest to you, and then leave it, I am going to suggest to you that this is a pretty eccentric approach for an engineer to adopt who is not a tobacco chemist, given the teaching of this document about what Pienemann regards as his central concept. Do you have a comment to make about that? A. I am going to let that stand. Q. Can we turn to what you say might be done with the Pienemann disclosure from 136 and 137, if you want to just read those quietly to yourself, just to remind yourself of what you say there. A. 136 and 137 on page 35? Q. Yes. A. (Pause for reading) Okay. Q. I think, from our previous discussion, you agree that your decision to implement Pienemann by putting a thin-film heater in the device as opposed to in the disposable is flat contrary to the fundamental concept of Pienemann we looked at on page 6; correct? A. It is contrary to the concept on page 6, yes. Q. It is something that had never been seen before in this art. A. It had never been seen before in the two products that had been on the market at that date; yes. Q. I am going to suggest to you that this whole approach is hindsight driven and certainly would not be the ordinary response of a skilled person to Pienemann in 2009. Do you have a comment on that? A. No comment.”
“Q. Right. I think the phrase has been used in relation to the statements made in this document that, on the face of it, if you take them at face value, they have found the Holy Grail of heat-not-burn; is that right? A. That is right. That is the really interesting comment, and given that the problems with taste and flavour that the previous Eclipse and Accord devices had had, to see the credible, very credible company have come out and said it had the taste equivalent of that of a conventional cigarette, it is a gem. You know, you think that is really interesting. … Q. Presumably, if you had been shown this document at the priority date and you had been very interested in it, you would be very interested because the particular example which they had used had produced the results that they quoted at page 60. I believe this was a reference to page 16. A. Yes. Q. What you would have been interested in doing in the first instance would be to get an engineer to replicate the product that was shown in that example as closely as possible and to see what results you were making? A. Yes, that is right. It is sparse in its details, as I think Mr. Fleischhauer noted in his second document, I think, and so one would have to try multiple temperatures, times ---- Q. Yes. A. --- for sure, but that is not an onerous task. That is easily achieved. In addition to the device which they have described, also the blend is a traditional tobacco blend, whereas the previous Accord and Eclipse devices had used a reconstituted tobacco. No normal cigarette is made all of those tobaccos, because they are generally quite poor in quality. So the other take away is, is that blend the way to go, to actually use a proper cigarette blend to get a proper cigarette taste? So there are a couple of angles where you would want to explore this device. It is interesting, absolutely, I do not want to over-expand it, but it is something that, if I had seen this, I would be saying that is a route to explore. It has a couple of things to it.”
“A. I do not want you to have the impression that what you would do looking at Pienemann is you would go directly to two heater elements, but certainly in the course of evaluating the tobacco formulation in Pienemann, and given the results that you found, you could go to two or more, three or all the way up to nine or some other number that was good for the number of inhalations for a smoking session.”