Office Action Analysis — App 19458847 (public record)
Full Analysis

Office Action Response Analysis · Non-Final (CTNF)

App. No. 19/458,847

Art Unit
3731
Examiner
MARY C HIBBERT-COPELAND
Mailed
07/29/2026
Response period stated in the OA
“3 months from the mailing date (07/29/2026), with extensions available up to 6 months”
Rejections
§102 ×1§103 ×3
Claims
17 rejected · 2 objected · 1 withdrawn
Generated
Aug 10, 2026

The record shows a mix of a substantive rationale gap (rank 3, the § 2143(B)/2143.01 articulation defect) that survives well but that the examiner can attempt to cure, and several verify-first postures (ranks 2 and 5) that cannot be pressed on the merits until the full Liu passages and the Wells text are obtained and confirmed against the actual office action. Counsel may wish to weigh whether the argue-track (pressing the conclusory-rationale and mischaracterization points, ideally reinforced with a change-in-principle-of-operation / reasonable-expectation-of-success facet) is worth pursuing before verification is complete, versus reserving amendment as the more durable option for the sensing-location and actuator-driven-engagement limitations if the full references undercut the distinctions. Whichever posture is chosen, resolving the unverified primary reference (Wells) is a threshold step that bears on all of the above, and the teaching-away line (rank 4) appears better held in reserve than pressed independently.

Generated on a published USPTO office action — no confidential disclosure involved. First-pass analysis for attorney review — not a drafted response.

1.

Indicated Allowable Subject Matter & Examiner Interview

The examiner has indicated allowable subject matter (MPEP 707.07).

Examiner's indication: Claims 11 and 19 are objected to as being dependent upon a rejected base claim, but would be allowable if rewritten in independent form including all of the limitations of the base claim and any intervening claims. Regarding claims 11 and 19 the prior art alone or in proper combination fail to teach or disclose a set of coupling members, the set of coupling members disposed on at least the actuation box and the interface module, the set of coupling members configured to enable detachable pneumatic coupling of the actuation box and the interface module.

Rewriting objected claims in independent form is the narrowest available concession; weigh it against the arguments below. Any resulting narrowing enters the prosecution history.

Examiner interview (MPEP 713) — a consideration. The strongest candidate arguments below are close calls (see the likely examiner responses in the Argument Bank), so an examiner interview to test the arguments and probe what would put the case in condition for allowance may be worth weighing before filing a written response.

2.

Per-Claim Strategy

An at-a-glance recommendation per rejected claim, composed deterministically from the analysis below. A triage summary for counsel to weigh, not a decision.

ClaimRejectionsRecommended pathBasisFallback amendmentConfidence
Claim 1§102 (anticipation)Obtain reference / verify firstMischaracterized reference (#2)unverified
Claim 2§103 (obviousness)ArgueStrategy check: re-ranked — Owens is relied on only for mounting geometry, which its own reverse-arrangement disclosure (bumper on base, heat strip on lid) arguably supplies, so Rank 1's 'Owens has no actuator' premise is neutralized by the § 2145 attack-the-combination comeback; the conclusory-rationale defect (Rank 3, rated stronger in the stress test) targets the only basis the examiner articulated.Conclusory rationale (#1)moderate
Claim 3§103 (obviousness)ArgueStrategy check: re-ranked — Because Owens is invoked only for geometry (its reverse arrangement supplies the lid/base swap), the Rank 1 mischaracterization is curable by re-explanation, whereas the conclusory-rationale defect requires the examiner to supply new reasoning and is the more consequential, more robust attack.Conclusory rationale (#1)moderate
Claim 4§103 (obviousness)ArgueStrategy check: re-ranked — Even here Owens is used only for geometry (Wells supplies the actuator), so Rank 1's 'Owens has no actuator' is beside the point per the § 2145 comeback; the conclusory-rationale attack targets the sole articulated basis for the added downward-in-inverted-config element.Conclusory rationale (#1)moderate
Claims 5, 6§103 (obviousness)ArgueConclusory rationale (#1)moderate
Claim 7§103 (obviousness)ArgueStrategy check: re-ranked — Rank 3 (conclusory inverted-mounting rationale), currently the top argument mapped to claim 7, is inapposite because claim 7 has no inverted-mounting limitation; the operative vulnerability rides on claim 1, which only the Rank 5 verify/mapping posture touches.Conclusory rationale (#1)moderate
Claim 8§103 (obviousness)ArgueConclusory rationale (#1)moderate
Claims 9, 10§103 (obviousness)Obtain reference / verify firstMischaracterized reference (#2)unverified
Claims 12–16§103 (obviousness)ArgueConclusory rationale (#1)moderate
Claims 17, 18§103 (obviousness)Obtain reference / verify firstMischaracterized reference (#2)unverified
3.

Argument Bank

Candidate arguments for counsel, ranked strongest-first — brainstorming inputs for counsel to evaluate, not a drafted response.

1

'Simple substitution of locations' rationale is conclusory for the inverted-mounting claims

Conclusory rationaleClaim 2Claim 3Claim 4Claim 5Claim 6Claim 7Claim 8Claim 12Claim 13Claim 14Claim 15Claim 16Rebuts: §103 rejection of claims 2, 3, 4, 5, 6, 7, 8, 12, 13, 14, 15, 16

the counterpart ... being mounted inside the cavity of the lower compartment of the vacuum packaging machine, conforms to an inverted mounting configuration of the modular sealing apparatus

For the inverted-mounting configuration the office action supplies only the statement that it 'would have been obvious to one having ordinary skill in the art ... as a simple substitution in locations of the seal assembly and counterpart,' without articulating why a PHOSITA would relocate the counterpart into a lower-compartment cavity of the primary system or what predictable result follows. Under MPEP § 2143(B), a simple-substitution rationale requires that the substituted elements be recognized equivalents yielding a predictable result, supported by articulated reasoning — a bare 'simple substitution' label is not that. Owens' engagement/disengagement principle (magnetic retraction to prevent premature 'pre-seals') differs from the piston-driven engagement the examiner attributes to the primary reference, and the office action does not bridge that difference. Counsel may weigh whether the record lacks the rational underpinning § 2143.01 demands and appears to reason from the claim itself.

  • Office action: obvious 'as a simple substitution in locations of the seal assembly and counterpart.'
  • OA4 combination weaknesses flag: 'conclusory_motivation (moderate); ... hindsight_reconstruction (moderate).'
  • Owens abstract: sealing component 'at least maintained in an unengaged position in which the first component no longer facilitates the formation of the heat seal.'
MPEP § 2143 (rationale (B), simple substitution — predictable result + articulated reasoning); MPEP § 2143.01 (articulated reasoning, no hindsight); MPEP § 2145

Risk The examiner can readily amplify the rationale — both are vacuum sealers, and Owens itself expressly contemplates the reverse (heat sealing strip on/in the lid, bumper on the base), which supports predictability of relocating the seal bar and counterpart. That reverse-arrangement disclosure is the principal counter to this argument, so it may be met rather than defeated.

Likely examiner response survives — strong

An examiner could supplement the record with an articulated § 2143(B)/(F) rationale — relocating a seal assembly and its counterpart between compartments is a predictable rearrangement of known parts yielding the same sealing result (KSR flexibility), and Owens itself expressly contemplates reversing which component sits on the lid versus the base, supplying record support that the two locations are art-recognized alternatives. On that view the 'simple substitution' label is curable by pointing to Owens' own reverse-arrangement disclosure plus a short predictable-result statement, defeating the 'bare conclusion' characterization.

How to adjust This is a legitimate § 2143.01 rational-underpinning gap and holds up well as presently written, but anticipate that the examiner can readily add reasoning in the next action. Strengthen it by folding in the operating-principle point: if the primary reference engages via piston/linear displacement while Owens disengages via magnetic retraction, argue under § 2143.01 that relocating into Owens' framework risks changing the principle of operation or lacks a reasonable expectation of success (§ 2143.02) — a substantive defect that is harder for the examiner to paper over than the conclusory-label point alone. Demand the equivalence-and-predictable-result findings § 2143(B) requires on the record.

2

Verify the primary reference — Wells is unverifiable and underlies every rejection

Mischaracterized referenceClaim 1Claim 2Claim 3Claim 4Claim 5Claim 6Claim 7Claim 8Claim 9Claim 10Claim 12Claim 13Claim 14Claim 15Claim 16Claim 17Claim 18

Strategy check: re-ranked from #4 — Rank 3 (conclusory inverted-mounting rationale), currently the top argument mapped to claim 7, is inapposite because claim 7 has no inverted-mounting limitation; the operative vulnerability rides on claim 1, which only the Rank 5 verify/mapping posture touches.

the interface module defining a modular utility interface configured to provide detachable routing of one or more utilities between the vacuum packaging machine and the actuation box (claim 1) — and every other element of claim 1 mapped solely to Wells

Wells (USPN 5,239,808) is the primary reference for every rejection — the sole § 102 reference for claim 1 and the base reference in each § 103 combination — yet per the reference-grounding record its text was never retrieved and the cited number did not resolve to a document. Because Wells' text is unverifiable, counsel cannot yet confirm that it discloses the elements the examiner maps to it, for example an 'interface module' providing 'detachable routing of one or more utilities,' a 'main controller' communicably coupled to all three modules, or that clips 20 constitute the recited modular utility interface. The prudent first step is to obtain the Wells patent (or the correct patent number) and independently verify each mapped column/line citation before framing any substantive distinction. This is a verify-first posture only — not a conclusion that any limitation is absent from Wells, which cannot be supported on the present record.

  • Reference grounding: 'Wells (USPN5239808): UNVERIFIABLE — reference text was NOT retrieved; the examiner's characterization is the only available account of it — this number did not resolve to a document — verify it.'
  • OA1: claim 1 §102 and all §103 rejections use Wells as the primary/base reference.
MPEP § 2131 (anticipation requires every element in a single reference, arranged as claimed); MPEP § 2143.01 (combination must rest on the references' actual teachings)Evidence needed: Obtain the full Wells patent (confirm USPN 5,239,808 or the correct number) and verify each mapped column/line citation against the actual document.

Risk If Wells is located and reads as the examiner mapped, this posture yields no traversal and must not be presented to the Office as a substantive argument. Confirm the correct patent number and each cited column/line before relying on any distinction; ranked last because a verify-first posture toward an unverifiable reference cannot outrank a fully-grounded argument, even though Wells is practically the linchpin of every rejection.

Likely examiner response survives — moderate

Wells (USPN 5,239,808) is an issued U.S. patent of record; counsel's inability to retrieve its text is not a defect in the office action and is not evidence that any limitation is absent. An examiner could note that the citations to Wells stand as a prima facie showing until rebutted on the merits, and that a 'we could not verify the reference' posture identifies no error in the mapping.

How to adjust This is essential diligence rather than a pressable merits argument — obtaining Wells (or confirming the correct patent number) is a prerequisite to EVERY other argument because Wells is the sole §102 basis for claim 1 and the base of each §103 combination. Do the verification first; if Wells in fact fails to disclose the 'interface module'/'detachable routing of one or more utilities,' the 'main controller' coupling, or the mapping of clips 20, that could become the single most powerful (potentially dispositive under § 2131) line. Until then, frame nothing as an absence; the value is in the verification, not in an assertion counsel cannot yet support.

3

Owens has no actuator/actuation box — the examiner overstates what Owens teaches

Mischaracterized referenceClaim 2Claim 3Claim 4Claim 12Claim 13Rebuts: §103 rejection of claims 2, 3, 4, 5, 6, 7, 8, 12, 13, 14, 15, 16

the actuation box and the cap module are mounted to the lid member ... and the counterpart ... conforms to an inverted mounting configuration; and 'the actuator disposed within the actuation box is configured to generate the linear displacement via the actuation member'

The office action characterizes Owens as teaching 'a vacuum sealer with a seal bar and actuation box mounted to the lid member 202 with actuating seal bar and counterparts inside the lower compartment.' The retrieved Owens text (fully grounded) discloses no actuation box and no actuator that generates linear displacement — Owens transitions its sealing component between engaged and unengaged positions by applying a magnetic field (electro-magnet in the base or lid), a resilient spring, and/or a mechanical retraction structure. Owens' default arrangement places the bumper on the pivoting lid 202 and the heat sealing strip 336, 338 on the base 210, and contemplates the reverse; nowhere does Owens describe an actuator-driven 'actuation box.' Counsel may weigh whether the examiner's attribution of an 'actuation box' and an 'actuating seal bar' to Owens is unsupported by the reference and therefore cannot carry the portion of the claim mapped to it.

  • Office action: 'Owens teaches a vacuum sealer with a seal bar and actuation box mounted to the lid member 202 with actuating seal bar and counterparts inside the lower compartment conforms to an inverted mounting configuration (figs 7-8; par 0054-0056).'
  • Owens claim 1: 'applying a magnetic field in proximity to the first component when the first condition is detected'
  • Owens description: 'the bumper 334 is disposed on the pivoting lid 202 and the heat sealing strip 336 , 338 is disposed on the base 210'
  • Owens description: 'the bumper 334 can alternatively be disposed on/in the base, while the heat sealing strip 336 , 338 is disposed on/in the pivoting lid 202'
  • OA2 reality check: retraction 'accomplished via a magnetic field, a resilient member (spring), and/or a mechanical retraction structure — not via an actuator generating linear displacement.'
MPEP § 2141.02 (reference must be considered in its entirety / for what it actually teaches); MPEP § 2143.01 (combination must rest on the references' actual teachings)

Risk The examiner may respond that Owens is cited only for the mounting geometry (counterpart in the lower compartment) while Wells supplies the actuator, making the 'actuation box' language harmless surplusage. Prosecution-history caution: distinguishing the claimed 'actuator'/'linear displacement' from Owens' magnetic/spring/mechanical retraction may narrow how 'actuator,' 'actuation box,' and 'linear displacement' are later construed in the file wrapper.

Likely examiner response survives — moderate

The rejection is a §103 combination, and under MPEP § 2145 non-obviousness cannot be shown by attacking Owens in isolation. An examiner could respond that Owens is relied on only for the inverted mounting geometry — per OA2, Owens discloses the bumper (334) on the pivoting lid (202) with the heat sealing strip (336, 338) on the base (210) and expressly contemplates the reverse arrangement — while the actuator/linear-displacement function is supplied by the primary reference (OA5 rank 3 itself notes the examiner attributes 'piston-driven engagement' to the primary reference). On that reading, whether Owens itself has an 'actuation box' or 'actuating seal bar' is beside the point, and Owens considered in its entirety (§ 2141.02) supplies exactly the mounting configuration mapped to it.

How to adjust Before pressing, pin down from the actual office-action text WHICH limitations are mapped to Owens versus the primary reference. If the office action maps only mounting geometry to Owens, reframe this not as 'Owens lacks an actuator' (an individual-reference attack vulnerable under § 2145) but as a challenge to whether the combination as a whole reaches the actuator-driven 'actuation box'/linear-displacement limitations — i.e., merge this into the combination/rationale attack (rank 3). Confirm the quoted characterization ('actuation box mounted to the lid member 202 with actuating seal bar') is verbatim in the office action before attributing it to the examiner; if the actuator limitation truly is charted to Owens, the mischaracterization point is strong, so the mapping determination controls how hard to press.

4

Grounded Liu text does not show sensing 'in an upper portion of the cap module'

Mischaracterized referenceClaim 9Claim 10Claim 17Claim 18

an auxiliary controller configured to sense at least one temperature value in an upper portion of the cap module

The office action relies on Liu at 'fig.7; par 0066' and 'sensors (90)' for the temperature-sensing limitation, but OA2 notes those specific passages are not present in the retrieved Liu text. The Liu material that is fully grounded — the claims and abstract — discloses sensing the temperature of 'at least one heat sealing element' and, in Liu claim 11, a 'second sensor' sensing 'a base of the sealing appliance'; neither location is expressly an 'upper portion of the cap module.' Counsel may press that the verifiable Liu disclosure places temperature sensing at the heat sealing element and at the base, not at the recited upper portion of the cap module, so the specific limitation assigned to Liu is not shown in the retrieved text. The Fig. 7 / ¶[0066] / sensor-90 basis should be obtained and confirmed against the full Liu document before it is credited.

  • Liu claim 1: 'sensing with a sensor a first temperature of at least one heat sealing element'
  • Liu claim 11: 'sensing with a second sensor a second temperature of a base of the sealing appliance'
  • OA2 reality check: 'The available text (abstract, claims, and a truncated description) does not include the specific figure and paragraph pin-cites the examiner relies on (Fig. 7, ¶[0066], sensor 90).'
MPEP § 2141.02 / § 2143.01 — the cited teaching must actually appear in the reference and be identified with a rational underpinning

Risk The examiner may supply the specific Liu figure/paragraph showing a sensor positioned at/near the sealing element or lid that is argued to read on 'upper portion of the cap module.' Confirm the ¶[0066]/Fig. 7 pin-cite in the complete Liu document before relying on this gap; the retrieved claims do show real-time temperature sensing of the sealing element, which the examiner can lean on.

Likely examiner response survives — moderate

The absence of Fig. 7, ¶[0066], and sensor 90 from the RETRIEVED Liu excerpt is a retrieval gap, not record absence — those passages presumably exist in the full published Liu document the examiner cited. An examiner could stand on the cited pin-cites and note that the grounded portions already place sensing at the heat sealing element, which may itself sit in the lid/upper region (OA2: 'The heat sealing element may be mounted on the lid or the base'), so under BRI a sensor at a lid-mounted heat sealing element could read on sensing 'in an upper portion of the cap module.' Attorney argument that a passage is 'not present' cannot overcome a citation to text counsel has not yet obtained.

How to adjust Treat this strictly as verify-first: obtain and read the full Liu document (Fig. 7, ¶[0066], sensor 90) before asserting any substantive location distinction — a 'not in the retrieved text' argument is fragile because it rests on counsel's incomplete copy, not on the record. If the full text confirms Liu senses only at the heat sealing element and at the base, the distinction becomes substantive; also test the BRI of 'upper portion of the cap module' against a lid-mounted heat element, because a claim-construction overlap could defeat the distinction. Consider whether an amendment specifying the sensing location relative to the cap module is a cleaner path than arguing the retrieval gap.

5

Owens' purpose is to prevent (not drive) a seal — potential teaching-away (fragile)

Teaching awayClaim 2Claim 3Claim 4Claim 12Claim 13Rebuts: §103 rejection of claims 2, 3, 4, 5, 6, 7, 8, 12, 13, 14, 15, 16

the linear displacement moves the cap module towards the counterpart during a sealing operation

Owens' stated invention is to retract a sealing component into an unengaged position — applying a magnetic field so the component 'no longer facilitates the formation of the heat seal' — to avoid premature pre-seals during repetitive cycles. To the extent the examiner treats Owens as teaching an actuated seal assembly that is driven toward the counterpart, Owens' operating principle runs the opposite way (disengagement rather than driven engagement). Counsel may consider, as a secondary line, that Owens' emphasis on holding the component away from the counterpart does not suggest, and arguably discourages, incorporating Owens into a system whose object is to drive the heated element toward the counterpart. This line is fragile because the examiner borrows only the mounting geometry from Owens, not its retraction mechanism.

  • Owens abstract: 'whereby the first component is at least maintained in an unengaged position in which the first component no longer facilitates the formation of the heat seal.'
  • Owens description: the retractable component 'eliminate[s] the formation of such pre-seals.'
MPEP § 2145 / § 2141.02 — teaching away undercuts motivation to combine; a reference must be considered as a whole

Risk Weak/fragile: the examiner will note Owens is cited only for lid/base mounting locations, not its magnetic retraction principle, so Owens' anti-pre-seal purpose does not teach away from the geometry actually borrowed. Do not over-invest; raising Owens' 'disengagement' purpose could also narrow how the claimed driven-engagement feature is later construed.

Likely examiner response fragile — the comeback likely defeats it

Teaching away requires that the reference criticize, discredit, or discourage the claimed path (§ 2141.02/§ 2145). Owens' retraction feature addresses avoiding premature 'pre-seals' during repetitive cycles; it does not criticize or discourage driving a heated element toward a counterpart in a different system, and the examiner borrows only Owens' mounting geometry, not its retraction mechanism. A reference is not a teaching-away merely because its own preferred embodiment operates differently from the claim.

How to adjust OA5 already self-identifies this as fragile, and the stress test confirms it — do not press as a standalone teaching-away line. At most preserve it as secondary color supporting the change-in-principle-of-operation / reasonable-expectation-of-success facet of rank 3. If the engagement-versus-disengagement distinction matters to patentability, an amendment tying the claim to the actuator-driven linear-displacement engagement is a more durable path than a teaching-away argument the record will not support.

4.

Examiner's Characterization of the Cited Art

Note

What each cited reference actually discloses, checked against what the examiner said it teaches — limited to the reference text available to the analysis.

Owens

US 2014/0196405Claim text retrieved

Owens (US 2014/0196405, 'Vacuum Sealer with a Retractable Heater Bar') concerns a vacuum packaging appliance in which a component of the sealing mechanism is selectively retracted between an engaged and unengaged position, principally by applying a magnetic field (e.g., an electro-magnet in the base or pivoting lid) so as to prevent premature 'pre-seals' during repetitive vacuum/seal cycles. The available text describes a sealing mechanism comprising a bumper (334) and at least one heat sealing strip (336, 338), with the bumper on the pivoting lid (202) and the heat sealing strip on the base (210) in the default embodiment, and expressly contemplates the reverse arrangement (bumper on base, heat sealing strip on/in the lid). Retraction of the component is accomplished via a magnetic field, a resilient member (spring), and/or a mechanical retraction structure — not via an actuator generating linear displacement.

Claim elementExaminer assertsReference disclosesEvidence
an actuation box (containing the actuator) mounted to the lid memberOwens teaches an actuation box mounted to the lid member 202 with an actuating seal bar (figs 7-8; par 0054-0056).Not found in available textThe available text does not describe an 'actuation box' or an actuator that generates a controlled linear displacement. The mechanism Owens describes for moving the sealing component is a magnetic field ("applying a magnetic field in proximity to the component"), a resilient member/spring, and a "mechanical retraction structure." Whether the truncated portion (including Figs. 7-8) describes anything analogous to an actuation box cannot be determined from the available text and should be checked against the full specification.
the counterpart mounted inside a cavity of a lower compartment / inverted mounting configuration with the seal bar (cap module) on the lid (claims 2, 3, 4, 12, 13)Owens teaches a vacuum sealer with a seal bar mounted to the lid member 202 and the counterpart in the lower compartment, conforming to an inverted mounting configuration (figs 7-8; par 0054-0056).Partially supportedThe available text supports that Owens contemplates the heat sealing strip on the lid: "the bumper 334 can alternatively be disposed on/in the base, while the heat sealing strip 336 , 338 is disposed on/in the pivoting lid 202." However, the DEFAULT/primary embodiment is the opposite ("the bumper 334 is disposed on the pivoting lid 202 and the heat sealing strip 336 , 338 is disposed on the base 210"). The specific phrase 'inside a cavity of a lower compartment' is not expressly used for the counterpart; the base does contain a 'lower vacuum trough 306.' The cited paragraph numbers (0054-0056) cannot be verified — the available excerpt carries no paragraph numbers — and the full specification for Figs. 7-8 is truncated; counsel should verify the fig. content directly.
actuator disposed within the actuation box generating linear displacement to move the cap module downward toward the counterpart during sealing (claim 4, 13 mechanism)Owens teaches the actuating seal bar arrangement that would supply the inverted-configuration downward actuation (figs 7-8; par 0054-0056).Not found in available textThe available text describes retraction/engagement by magnetic force and spring bias to prevent pre-seals ("the first component is at least maintained in an unengaged position"), and notes the component "need(s) only be retracted by a relatively small distance (e.g., <0.5 inches)." It does not, in the available text, describe an actuator-driven linear displacement toward the counterpart to perform the seal. The full specification/figures should be reviewed before relying on absence.

Liu

US 2012/0060447Claim text retrieved

Liu discloses a vacuum and sealing appliance that uses a temperature sensor to sense the real-time temperature of a heat sealing element, and a controller that regulates the sealing operation (energizing/sealing time and dwell/cooling time) based on that sensed temperature, with corresponding values stored in a look-up table. The heat sealing element may be mounted on the lid or the base of the appliance. The stated purpose is to accurately control heat-sealing element temperature so as to avoid ineffective seals and prevent overheating damage. The available text (abstract, claims, and a truncated description) does not include the specific figure and paragraph pin-cites the examiner relies on (Fig. 7, ¶[0066], sensor 90).

Claim elementExaminer assertsReference disclosesEvidence
sensing at least one temperature value 'in an upper portion of the cap module'By implication, Liu's temperature sensing supplies the location/arrangement of sensing temperature in the upper portion of the cap module.Not found in available textThe available text describes sensing at the heat sealing element (which "may be mounted on the lid or the base") and, in the Claim 11 embodiment, at "a base of the sealing appliance" — the available text does not contain a teaching of sensing temperature specifically in an 'upper portion' of a lid-mounted cap module; the full specification (Fig. 7 / ¶[0066]) should be checked for the actual sensor location.
the one or more parameters comprise a sealing force, sealing duration, displacement of the cap module, and temperature of the heating wire (claims 10/18)The same motivation applies to the parameters including sealing force, sealing duration, displacement, and temperature (via Liu).Partially supportedLiu supports temperature and sealing duration: Abstract — "the sealing element for a time to heat the sealing element to a pre-determined temperature ... and initiates a dwell time." The available text does not contain any teaching of controlling a 'sealing force' or a 'displacement of the cap module' — those parameters appear tied to actuator/mechanical movement not addressed in Liu's available text (Liu addresses temperature, sealing time, and dwell time).
an auxiliary controller configured to sense at least one temperature value (claims 9/17) — the temperature-sensing capability the examiner concedes Wells lacksLiu teaches a vacuum packaging machine comprising temperature sensors (90) for control of the heat sealing element 420 temperature (fig.7; par 0066).SupportedThe general teaching is supported: Abstract — "a temperature sensor that senses the real-time temperature of the heat sealing element"; Claim 8 — "a temperature sensor for sensing a first temperature of the at least one sealing element." The specific pin-cites, however, are not verifiable in the available text (reference numeral 90 does not appear; Fig. 7 is described only as a "transverse cross-sectional view"; the ¶[0066] numbering is not present in the truncated text) — for counsel to verify against the full specification.
motivation to combine — maintain correct temperature at the sealing line, reduce damage, better formed seal, prevent overheatingIt would have been obvious to modify Wells with Liu's sensors/temperature control to maintain correct temperature, reduce damage, have a better formed seal, and prevent overheating (Liu par 0007-0008).SupportedBackground — "activating the elements without considering real-time temperature may cause damage to the appliance due to element overheating" and sealing before evacuation completes "causes ineffective seals"; the substance matches the examiner's rationale, though the exact ¶[0007]-[0008] numbering is not shown in the available text.
5.

Element-by-Element Claim Chart

Claim 1 — §102 (Wells)
Status glyphClaim elementStatusDisclosure / notesLocation
a cap module comprising a central portion on which a heating wire is located, the heating wire being configured to heat based on receipt of an electrical powerWellsDisclosedGROUNDING GATE: Wells is UNVERIFIABLE (the cited number did not resolve to any retrieved document). The examiner's characterization is TAKEN AS GIVEN and marked 'taught' on that basis only. For counsel to weigh: obtain and verify the Wells text confirming a heating wire on a central portion of the seal-bar module before relying on or contesting this mapping. This is a verify-first posture, not an independent confirmation.Wells (as characterized in OA), seal bar assembly 18, figs 2-7; heating wire 30, fig.2, col.3 ll.3-10, 34-52; col.4 l.61-col.5 l.2
an actuation box detachably coupled to the cap module, the actuation box comprising an actuator disposed in the actuation boxWellsDisclosedWells UNVERIFIABLE — characterization taken as given. For counsel: verify that Wells actually discloses the actuator housed within the 'actuation box' AND that that box is 'detachably coupled' to the cap module, as distinct from the seal bar simply being removable from the body. Verify-first.Wells (as characterized in OA), body 10; pistons 50, col.4 ll.3-45; col.5 ll.14-23 (seal bar assembly 18 removable from body)
an interface module configured to detachably couple the actuation box to a lid member of a vacuum packaging machine, the interface module defining a modular utility interface configured to provide detachable routing of one or more utilities between the vacuum packaging machine and the actuation boxWellsDisclosedWells UNVERIFIABLE — taken as given, cannot conclude mischaracterization. Verify-first flag for counsel: on the face of the office action the mapping equates 'clips 20 [that] may be removed... to permit access' with a 'modular utility interface... [providing] detachable routing of one or more utilities.' Whether removable clips constitute a utility-routing interface reads as conclusory in the OA; the underlying Wells text should be obtained and scrutinized before either relying on or challenging this element. This is potentially the most contestable limitation of claim 1 pending verification, but it must rank below any argument resting on a fully-grounded reference.Wells (as characterized in OA), clips 20; col.5 ll.3-45
a main controller communicably coupled to the actuation box, the interface module, and the cap module, configured to transmit a control signal to the actuator to operate an actuation assembly to generate a linear displacement of an actuation member, wherein the linear displacement moves the cap module towards a counterpart during a sealing operationWellsDisclosedWells UNVERIFIABLE — taken as given. Verify-first for counsel: confirm Wells discloses a 'main controller' communicably coupled to all three recited modules (as opposed to manual control switches), and confirm the 'linear displacement of an actuation member' language maps to the pistons. Cannot be independently confirmed from the record.Wells (as characterized in OA), control switches on body 10; pistons 50 / rods 66 / compression spring 68, col.4 ll.3-45; counterpart 82; fig.4; col.3 ll.3-16
Claim 2 — §103 (Wells in view of Owens)
Status glyphClaim elementStatusDisclosure / notesLocation
the actuation box and the cap module are mounted to the lid member of the vacuum packaging machineWells, OwensTaughtWells portion UNVERIFIABLE — taken as given. For the lid-mounting concept Owens is FULLY GROUNDED; the retrieved Owens text does describe components of the sealing mechanism carried by the pivoting lid 202. Verify-first as to the Wells mapping.Wells (as characterized in OA), figs 1-2, col.5 ll.14-23; Owens, lid member 202 (per OA figs 7-8, par 0054-0056)
the counterpart is mounted inside a cavity of a lower compartment of the vacuum packaging machineOwensArguably taughtExaminer's own rejection admits Wells fails to teach this limitation, so Owens (FULLY GROUNDED) is the sole asserted supplier. OA2 confirms Owens contemplates the reversed arrangement (strip in lid, bumper/counterpart on base), which supports the location aspect. TWO caveats for counsel to weigh: (1) the retrieved Owens text describes the counterpart on the base but does not clearly disclose it 'inside a CAVITY' of a lower compartment — the 'cavity' specificity is not confirmed in the grounded text; (2) the examiner's specific pin-cite (figs 7-8, par 0054-0056) was not independently confirmed against the grounded Owens text. Also note Owens' component is transitioned by a magnetic field / resilient member / mechanical retraction, not by an actuator — relevant if counsel challenges whether Owens' teaching is properly transferable as a 'simple substitution.'Owens, description: default bumper 334 on pivoting lid 202 and heat sealing strip 336/338 on base 210, with the reverse arrangement (heat sealing strip on/in lid, bumper on base) 'expressly contemplated'
Claim 4 — §103 (Wells in view of Owens)
Status glyphClaim elementStatusDisclosure / notesLocation
in the inverted mounting configuration, the actuator disposed within the actuation box is configured to generate the linear displacement via the actuation member to operate the cap module downward toward the counterpart during the sealing operationWells, OwensArguably taughtThis limitation is supplied by the COMBINATION: the actuator/linear-displacement from Wells (UNVERIFIABLE) plus the inverted location from Owens (FULLY GROUNDED). For counsel to weigh: OA2 confirms Owens' component is moved between positions by a magnetic field, a resilient spring, and/or a mechanical retraction structure — NOT by an actuator generating linear displacement. So the fully-grounded Owens reference does not itself teach actuator-driven downward displacement; the examiner relies on Owens only for LOCATION and on Wells for the actuator. Whether combining Owens' inverted location with Wells' actuator is truly a 'simple substitution,' given Owens' fundamentally different (magnetic/spring) retraction principle, is a combination/motivation question for counsel. Verify-first as to the Wells actuator.Wells (as characterized in OA), pistons 50, col.4 ll.3-45 (actuator/linear displacement); Owens (inverted location per OA figs 7-8, par 0054-0056)
Claim 6 — §103 (Wells in view of Owens)
Status glyphClaim elementStatusDisclosure / notesLocation
electrical power to the heating wire is routed through a conduit extending through a hinge of the lid memberWellsTaughtWells UNVERIFIABLE — taken as given. Verify-first flag for counsel: the office action supports this element with a passage characterized only as describing that the wire is heated 'by the flow of electricity by a conventional power source,' which on the face of the OA does not obviously address 'a conduit extending through a hinge of the lid member.' Because Wells is unverifiable I cannot conclude the reference fails, but this element warrants close examination of the actual Wells text before counsel relies on or contests it.Wells (as characterized in OA), col.4 l.61-col.5 l.2 ('the sealing wire 30 is heated by the flow of electricity by a conventional power source')
Claim 7 — §103 (Wells in view of Owens)
Status glyphClaim elementStatusDisclosure / notesLocation
the actuator is selected from a group consisting of a pneumatic actuator, an electronic actuator, and an electromechanical actuatorWellsTaughtWells UNVERIFIABLE — taken as given. For counsel: verify that the Wells piston/rod/spring arrangement is properly characterized as one of the recited actuator types (the OA's mapping to a Markush-style group should be checked against the actual disclosure). Verify-first.Wells (as characterized in OA), pistons 50, elongated rods 66, compression spring 68, col.4 ll.3-45
Claim 9 — §103 (Wells in view of Liu)
Status glyphClaim elementStatusDisclosure / notesLocation
an auxiliary controller communicably coupled to the main controller, the main controller configured to operate the auxiliary controller to control one or more parameters for operating the cap module towards the counterpart during the sealing operationWells, LiuArguably taughtLiu is FULLY GROUNDED and does teach a temperature-sensing controller that regulates the sealing operation. TWO points for counsel to weigh: (1) The examiner's stated gap for claim 9 is 'an auxiliary controller configured to sense at least one temperature value in an upper portion of the cap module,' but that 'sense temperature in an upper portion of the cap module' language does NOT appear in claim 9 as filed (claim 9 recites only an auxiliary controller controlling 'one or more parameters'); the examiner appears to be importing a limitation from the specification — counsel should confirm the actual claim scope being examined. (2) The examiner's specific Liu pin-cites (Fig.7, ¶[0066], sensor 90) are NOT present in the retrieved Liu text per OA2 — the temperature-sensing concept is grounded generally, but those exact pin-cites could not be confirmed. Wells portion (the 'auxiliary controller' itself) is unverifiable — verify-first.Wells (as characterized in OA) for base apparatus/auxiliary controller (UNVERIFIABLE); Liu, abstract & claims 1, 8, 11 (temperature sensor senses real-time temperature of heat sealing element; controller regulates sealing time and dwell time based on sensed temperature; look-up table)
Claim 10 — §103 (Wells in view of Liu)
Status glyphClaim elementStatusDisclosure / notesLocation
the one or more parameters comprise a sealing duration and temperature of the heating wireWells, LiuArguably taughtFor the 'sealing duration' and 'temperature' parameters, Liu (FULLY GROUNDED) does disclose regulating sealing/dwell time and heat-element temperature. Arguably taught as to these two parameters.Liu, abstract & claims 1, 8 (sealing time / dwell time and real-time temperature of the heat sealing element, stored in a look-up table)
the one or more parameters comprise a sealing force and displacement of the cap moduleWells, LiuArguably taughtClaim 10 recites four parameters conjunctively (sealing force, sealing duration, displacement, temperature). Liu (FULLY GROUNDED) discloses ONLY sealing duration and temperature — the grounded Liu text does NOT disclose 'sealing force' or 'displacement of the cap module.' The examiner relies on Wells for the mechanical/actuation aspects. Because Wells is UNVERIFIABLE (its pistons/spring might be argued to supply displacement and force), the record does not permit a firm 'missing' conclusion, and this cannot be recorded as a prima-facie missing-element finding under the grounding gate. Verify-first for counsel: obtain the Wells text and determine whether it actually discloses control of a 'sealing force' and of 'displacement of the cap module' — if it does not, and Liu (grounded) does not, the 'sealing force' parameter in particular may be unsupported. This is provisional and ranks below any fully-grounded argument.Wells (as characterized in OA) pistons 50 / compression spring 68, col.4 ll.3-45 (displacement/force, UNVERIFIABLE)
Claim 12 — §103 (Wells in view of Owens)
Status glyphClaim elementStatusDisclosure / notesLocation
a cap module with a central portion carrying a heating wire heated by electrical power; an actuation box detachably coupled to the cap module and containing an actuator; both mounted to a lid member of the vacuum packaging machineWells, OwensTaughtMirrors claim 1 elements plus lid mounting; Wells UNVERIFIABLE, taken as given, verify-first (see claim 1 notes). OMISSION NOTE (per 8-claim cap): claims 3, 5, 8, 13, 14, 15, 16, 17, and 18 were not separately charted. Claim 3 and 13 track the inverted-configuration limitations charted at claims 2/4/12; claims 5/14 (lid cavity for actuation box), 8 (piston-and-cylinder assembly), 15 (conduit through hinge) and 16 (actuator type) rest on the same Wells mappings charted at claims 6/7 and are all UNVERIFIABLE/verify-first; claims 17/18 track the Liu-based auxiliary-controller/parameter limitations charted at claims 9/10.Wells (as characterized in OA), seal bar assembly 18, heating wire 30, body 10, pistons 50; col.3 ll.3-10/34-52, col.4 ll.3-45, col.5 ll.14-23; Owens, lid-mounted sealing components (per OA)
an interface module detachably coupling the actuation box to the lid member and defining a modular utility interface for detachable routing of one or more utilities; and a main controller communicably coupled to the actuation box, interface module, and cap module, transmitting a control signal to generate linear displacement moving the cap module toward the counterpart during sealingWellsTaughtSame Wells mappings as charted in claim 1 (interface module / clips 20 and main controller). Wells UNVERIFIABLE — verify-first; the clips-as-utility-interface mapping and the 'main controller communicably coupled to all three modules' mapping are the elements most in need of confirmation against the actual Wells text.Wells (as characterized in OA), clips 20, control switches on body 10, pistons 50, counterpart 82; col.4 ll.3-45, col.5 ll.3-45
the counterpart mounted inside a cavity of the lower compartment, conforming to an inverted mounting configuration of the modular sealing apparatusOwensArguably taughtSame posture as claim 2: examiner admits Wells fails to teach this; Owens (FULLY GROUNDED) is the sole asserted supplier and does contemplate the reversed strip-in-lid / counterpart-on-base arrangement. Caveats for counsel: (1) 'inside a CAVITY' of the lower compartment is not clearly confirmed by the grounded Owens text; (2) Owens moves its component by magnetic field / spring / mechanical retraction rather than by an actuator, raising a combination/'simple substitution' question; (3) the examiner's par 0054-0056 pin-cite was not independently confirmed in the grounded text.Owens, description: default bumper 334 on lid / heat sealing strip on base 210, with reverse arrangement expressly contemplated
6.

Rejection Map

§102Anticipation — claims 1

WellsUSPN 5,239,808

Wells anticipates claim 1 by disclosing: a cap module (seal bar assembly 18) with a heating wire (30) configured to heat via electrical power; an actuation box (body 10) detachably coupled to the cap module (col.5 lines 14-23); an interface module (clips 20) configured to detachably couple the actuation box to a lid member providing detachable routing of utilities (col.5 lines 3-45); and a main controller (control switches on body 10) communicably coupled to the actuation box, interface module, and cap module, configured to transmit a control signal to the actuator (pistons 50) to generate linear displacement of an actuation member, moving the cap module (18) towards a counterpart (82) during a sealing operation (col.4 lines 3-45).

§103Obviousness — claims 2, 3, 4, 5, 6, 7, 8, 12, 13, 14, 15, 16MPEP §2143(B)

WellsUSPN 5,239,808OwensUS 2014/0196405

Wells discloses the modular sealing apparatus but fails to explicitly teach the counterpart mounted inside a cavity of a lower compartment of the vacuum packaging machine (the inverted mounting configuration). Owens teaches a vacuum sealer with a seal bar and actuation box mounted to the lid member 202 with actuating seal bar and counterparts in the lower compartment (figs 7-8; par 0054-0056). The examiner concluded it would have been obvious as a simple substitution in locations of the seal assembly and counterpart. For claims 5/14, Wells further discloses the lid member configured with cavities for receiving the actuation box. For claims 6/15, Wells teaches electrical power routed through a conduit extending through a hinge. For claims 7/16, Wells teaches the actuator selected from pneumatic/electronic/electromechanical actuators (pistons 50, rods 66, compression spring 68). For claim 8, Wells teaches a piston and cylinder assembly.

§103Obviousness — claims 9, 10MPEP §2143(G)

WellsUSPN 5,239,808LiuUS 2012/0060447

Wells discloses the apparatus of claim 1 but fails to teach an auxiliary controller configured to sense at least one temperature value in an upper portion of the cap module. Liu teaches a vacuum packaging machine comprising temperature sensors (90) for control of the heat sealing element 420 temperature (fig.7; par 0066). The examiner found it would have been obvious to modify Wells with the sensors and temperature control taught by Liu in order to maintain the correct temperature at the sealing line to reduce damage and have a better formed seal, and prevent overheating of the device (Liu par 0007-0008). For claim 10, the same motivation applies to the parameters including sealing force, sealing duration, displacement, and temperature.

§103Obviousness — claims 17, 18MPEP §2143(G)

WellsUSPN 5,239,808OwensUS 2014/0196405LiuUS 2012/0060447

Wells as modified by Owens discloses the apparatus of claim 12 but fails to teach an auxiliary controller configured to sense at least one temperature value in an upper portion of the cap module. Liu teaches temperature sensors (90) for control of heat sealing element 420 temperature (fig.7; par 0066). The examiner found it would have been obvious to modify Wells with the sensors and temperature control taught by Liu in order to maintain the correct temperature at the sealing line to reduce damage, have a better formed seal, and prevent overheating (Liu par 0007-0008). For claim 18, the same reasoning applies to the recited parameters.

7.

Record & Grounding

Grounding Summary

Note

How each cited reference was grounded. A reference the analysis could only read through the office action’s characterization is flagged — its findings are limited to what the examiner said, not the reference itself.

WellsUSPN5239808
Not retrieved — analysis limited to the OA's characterizationthis number did not resolve to a document — verify it
Vacuum Sealer with a Retractable Heater BarUS20140196405
Claim text retrieved
HEAT SEALER WITH ALGORITHM FOR REGULATING SEALING TEMPERATUREUS20120060447
Claim text retrieved

Data Egress Log

Note

Your uploads stay in-boundary. External retrieval was limited to public patent-number lookups: 2 fetches. No claim text, no client material left the environment.

Patents fetched by number
US20140196405US20120060447
Documents processed
  • c5eb963e-5590-4f96-83fb-cd326eeaa801.pdfoffice action
  • f3104d56-e9fc-4e0d-9868-ab15cd61e681.pdfclaims
Processed in-boundary — never transmitted externally.

Automated consistency checks

Deterministic checks run over the analysis before assembly — automated heuristics, not legal conclusions.

  • Reference-attack argument (mischaracterized_reference) "Verify the primary reference — Wells is unverifiable and underlies every rejection" relies on reference USPN5239808, whose text was never retrieved (source: oa_text_only) — the attack rests on the office action's own summary, not the reference's actual disclosure.

Obviousness Framework

Field of endeavor
Vacuum packaging appliances, and more specifically the heat-sealing subsystem of such machines — a modular sealing assembly in which a heating-wire-bearing 'cap module,' an actuator-containing 'actuation box,' and a utility-routing interface are mounted on/in a lid or base and driven to press a heated element against a counterpart to seal a container.
PHOSITA
As a reasonable construction FOR ARGUMENT PURPOSES (not a factual finding, for counsel to adopt or adjust): a mechanical or electromechanical engineer (or technologist) with a few years of experience designing consumer or commercial vacuum-packaging / heat-sealing appliances, familiar with heat-sealing elements and their power/temperature control, with linear actuators (pneumatic pistons, electromechanical drives), with lid/base mounting geometries and hinges, and with basic control electronics for sequencing seal/vacuum operations.A construction for argument — not asserted as fact.
ReferenceAnalogous artRationale
Wells (USPN 5,239,808)AnalogousSame field of endeavor — the office action maps Wells as a vacuum sealer with a seal bar assembly (18), body (10), pistons (50), and counterpart (82), i.e., the same heat-sealing subsystem of a vacuum packaging machine the claims address (prong 1 of MPEP § 2141.01(a)).
Owens (US 2014/0196405)AnalogousSame field of endeavor — Owens is expressly a 'Vacuum Sealer with a Retractable Heater Bar' directed to the sealing mechanism (bumper 334, heat sealing strips 336/338) of a vacuum packaging appliance. Analogous under prong 1; counsel may note that the specific teaching the examiner borrows (component LOCATION) is distinct from Owens' own inventive concern (retracting a component via a magnetic field to avoid pre-seals), which bears on motivation rather than on analogous-art status.
Liu (US 2012/0060447)AnalogousSame field of endeavor — Liu is a vacuum and sealing appliance addressing accurate temperature control of the heat-sealing element (avoiding ineffective seals and overheating). Analogous under prong 1 and reasonably pertinent to the problem of controlling seal quality/temperature (prong 2).

§103 rejection of claims 2-8 and 12-16 over Wells in view of Owens. Theory: Wells discloses the modular sealing apparatus but not the counterpart 'mounted inside a cavity of a lower compartment' (the 'inverted mounting configuration'); Owens supplies a seal-bar/counterpart arrangement in the lid/lower compartment, and the relocation is characterized as a simple substitution of locations.

Wells + Owens

Motivation asserted It would have been obvious as 'a simple substitution in locations of the seal assembly and counterpart' (KSR rationale B), pointing to Owens figs 7-8 / ¶¶0054-0056 as teaching a seal bar and actuation box on the lid with counterparts in the lower compartment.

  • Conclusory motivationmoderate

    The examiner's rationale is stated as a bare 'simple substitution in locations' without an articulated reason, resting on a rational underpinning, why a PHOSITA would move the counterpart from its Wells position to a lower-compartment cavity and expect predictable results (MPEP § 2143(B), § 2143.01). For counsel to weigh whether the record supplies the required articulated reasoning rather than a conclusion that the rearrangement 'would have been obvious.'

  • Othermoderate

    The office action's mapping of Wells' own geometry appears internally inconsistent: the claim-2/3/12 discussion treats the actuation box (10) and cap module (18) as mounted to lid (16), while the claim-7 mapping describes the spring biasing the seal bar 'towards and away from counterpart 82 on the lid 16' — placing the counterpart itself on the lid. For counsel to verify against Wells' actual disclosure what is mounted where, since the 'inverted' limitation depends on that starting geometry (the available Wells text is not reproduced in the record).

  • Hindsight reconstructionmoderate

    Per the OA2 reality check, Owens' DEFAULT embodiment places the bumper on the pivoting lid and the heat sealing strip on the base — the opposite of the claimed 'cap module (heating wire) in the lid, counterpart in the lower compartment.' Owens only mentions the reversed arrangement in passing. For counsel to weigh whether selecting Owens' passing-mention reverse embodiment specifically to match the applicant's inverted configuration reflects hindsight drawn from the applicant's disclosure rather than a teaching Owens itself promotes (MPEP § 2143.01).

  • Othermoderate

    Per OA2, Owens accomplishes movement of the sealing component by a magnetic field, a resilient spring, and/or a mechanical retraction structure — not by an actuator generating linear displacement. Owens therefore does not itself supply the actuator-driven downward linear displacement recited in claims 4/13; that element is drawn from Wells. For counsel to weigh whether the examiner has articulated how Wells' actuator and Owens' relocation operate together in the inverted configuration, or whether the combination merely aggregates location from one and actuation from the other without articulated integration.

§103 rejection of claims 9-10 over Wells in view of Liu. Theory: Wells lacks an auxiliary controller that senses at least one temperature value in an upper portion of the cap module; Liu supplies temperature sensing/control of the heat-sealing element.

Wells + Liu

Motivation asserted Modify Wells with Liu's sensors and temperature control 'to maintain the correct temperature at the sealing line to reduce damage and have a better formed seal, and prevent overheating of the device' (citing Liu ¶¶0007-0008).

  • Othermoderate

    Per OA2, the specific Liu pin-cites the examiner relies on (Fig. 7, ¶[0066], sensor 90) are NOT present in the available Liu text; the available text (abstract/claims/truncated description) shows temperature sensing of the heat-sealing element generally, but not the figure/paragraph the examiner invokes. For counsel to verify whether Liu actually discloses sensing a temperature value 'in an upper portion of the cap module' as claimed before relying on the mapping.

  • Othermoderate

    Claim 10 recites parameters comprising sealing force, sealing duration, displacement of the cap module, AND temperature of the heating wire. Liu's available text supports sealing time, dwell/cooling time, and temperature, but the record does not show Liu teaching control of sealing FORCE or DISPLACEMENT of the cap module; the examiner's motivation is directed to temperature control and does not articulate a teaching reaching all recited parameters. For counsel to weigh whether the combination as articulated accounts for every parameter of claim 10.

  • Conclusory motivationmoderate

    The claim recites sensing temperature 'in an upper portion of the cap module,' whereas Liu (per the available text) senses the heat-sealing element temperature and expressly allows the element to be mounted on either lid or base. For counsel to weigh whether the examiner articulated why the sensing would specifically be located in the 'upper portion of the cap module' as claimed, or whether that specific placement is supplied only by the claim language itself.

§103 rejection of claims 17-18 over Wells in view of Owens, further in view of Liu. Theory: Wells-as-modified-by-Owens (the inverted-mounting apparatus of claim 12) lacks the temperature-sensing auxiliary controller; Liu supplies it.

Wells + Owens + Liu

Motivation asserted Same temperature-control motivation as the Wells+Liu rejection (maintain correct sealing-line temperature, reduce damage, better seal, prevent overheating — Liu ¶¶0007-0008), applied to the Wells+Owens base combination.

  • Othermoderate

    This rejection inherits the base Wells+Owens combination issues (conclusory 'simple substitution' of location, the internal inconsistency in Wells' mapped geometry, and the hindsight concern regarding Owens' passing-mention reverse embodiment). If the underlying Wells+Owens modification for claim 12 is not adequately supported, the additional Liu overlay for claims 17-18 rests on that same foundation. For counsel to weigh cumulatively (MPEP § 2143.01).

  • Othermoderate

    As with claims 9-10, the specific Liu pin-cites (Fig. 7, ¶[0066], sensor 90) are not in the available record, and claim 18 recites sealing force, sealing duration, displacement of the cap module, and temperature — parameters that the available Liu text does not fully support (force and displacement not shown). For counsel to verify Liu's actual disclosure and to weigh whether all recited parameters are accounted for.

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