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Dimension Weight Power And Packing Data In The Ksp 1525 Stone Crusher Machine

By kingshunsplitters July 22nd, 2026 2 views
Introduction: Specification readers need a conservative way to read KSP-1525 stone crusher machine size, weight, power, and packing data without merging uncertain fields.

A stone crusher machine specification can look simple until two size statements appear in different places and use different figures. For the KSP-1525, the useful reading task is not to force every number into one finished story, but to separate visible facts from fields that need a confirmed measurement basis. That distinction matters for engineers, content editors, and specification learners who are comparing a compact stone crusher machine, reading supplier language, or trying to understand what the stated voltage and packing data actually support.

Readable KSP-1525 Specification Data Begins With Physical and Electrical Fields

The visible KSP-1525 data gives readers several stable reference points: Dimensions are stated as 190X85X145CM, weight as 1.1T, power as 7.5KW, voltage as 380V, frequency as 50Hz, packing size as 200X90X155CM, and gross weight as 1.2T. These fields are useful because they describe different layers of the same equipment record. Dimension and weight describe the machine as a physical object, while packing size and gross weight describe the equipment in a packed condition. Power, voltage, and frequency describe the electrical configuration presented for the model. Read together, these fields help a specification learner understand the KSP-1525 stone crusher machine 380V 50Hz context without drifting into unrelated performance interpretation. The key is to keep each field inside its own meaning boundary. A 1.1T machine weight and 1.2T gross weight should not be treated as duplicate data. Gross weight normally belongs to the packed shipment context, while machine weight belongs to the machine itself. The 200X90X155CM packing size is also not the same type of statement as a machine dimension field, even if both are length, width, and height style figures. For a reader comparing a high efficiency compact stone crusher machine from a small jaw crusher manufacturer or stone crusher machine supplier, these numbers are best used as orientation data, not as a final installation, logistics, or layout plan. This article deliberately stays with physical size, packing, weight, and electrical data. It does not use the KSP-1525 numbers to explain production output, feeding size, output size, aggregate gradation, or crushing performance, because those topics require different evidence and a different reading frame. The point here is more basic and practical: visible specification data can support early understanding, but it cannot resolve every measurement basis by itself.

The Two KSP-1525 Dimension Figures Create a Data Boundary

The most important boundary in this KSP-1525 record is the difference between 215X136X185cm and 190X85X145CM. Both appear in relation to the stone crusher machine, but they do not carry enough surrounding explanation to be merged into one confirmed size. One figure may relate to a display statement, one may relate to a formal dimension field, or they may use another measurement basis that is not visible from the data alone. A careful reader should preserve both figures separately and treat the difference as a confirmation point, not as an error to silently correct.

Conflicting Dimension Statements Should Remain Separate Until The Measurement Basis Is Confirmed

When two dimension statements conflict, the safest interpretation is to keep the exact wording and exact figures intact until the measurement basis is clear. The 215X136X185cm statement should not be rewritten as the machine dimension if the 190X85X145CM field is also present as Dimensions. The reverse is also true: the 190X85X145CM value should not automatically erase the larger figure. This is a specification literacy issue. Readers often want one clean number, but a clean number created by merging uncertain data can become less accurate than the original record. For technical content, the better habit is to state that both figures are visible and that their roles should be confirmed before using either as a final physical envelope.

Packing And Machine Dimensions Describe Different Practical Meanings In Product Data

Packing size adds another reason to avoid over-compression of the data. The KSP-1525 packing size is stated as 200X90X155CM, with gross weight at 1.2T. That does not automatically explain the 215X136X185cm figure, and it does not make the 190X85X145CM value wrong. Packing dimensions can describe the crate, protective packaging, palletized condition, or another packed measurement basis, while machine dimensions usually describe the equipment body. Without a stated basis, readers should not infer that 215X136X185cm is a packing size, transport size, installed size, or operating clearance. The only defensible reading is to keep machine dimensions, packing size, weight, and gross weight as separate fields. This boundary is especially important when the wording “compact and space-saving” appears around the KSP-1525. That advantage can support compact stone crusher machine wording in a general product education context, but it does not prove portability, mobility, or a smaller confirmed footprint than every alternative crusher. “Compact” is a relative product description unless the measurement basis and comparison set are defined. A specification learner can recognize the KSP-1525 as a compact stone crusher machine in the language used for the model, while still refusing to convert that phrase into a portable crusher claim or a fully resolved installation dimension.

Electrical Data Describes The Listed Configuration Not Every Site Condition

The electrical fields are clearer than the dimension conflict, but they still have boundaries. The KSP-1525 data states 7.5KW power, 380V voltage, and 50Hz frequency. These values tell the reader what electrical configuration is visible for the machine record. They do not, by themselves, explain site wiring, control cabinet design, starting method, plug type, grounding arrangement, overload protection, or whether another voltage or frequency can be supplied. General machinery electrical standards such as IEC 60204-1 help explain why electrical equipment and connection conditions matter, but they should not be used to claim that the KSP-1525 has a specific certified electrical design unless that is separately documented. For specification learning, 380V 50Hz should be read as an electrical compatibility signal. A reader in a 380V 50Hz industrial environment may recognize that the stated configuration sounds familiar, while a reader in a different power environment should not assume direct compatibility. The presence of 7.5KW also gives a scale reference for the motor or equipment power statement, but it does not support energy consumption calculations, operating cost projections, or assumptions about continuous-duty behavior without more operating conditions. This is also where machine information clarity matters. ISO 12100 frames machinery safety around risk assessment, risk reduction, and information for use, which supports a general principle: readers need clearly identified machine data before they can make sound technical judgments. That principle does not validate the KSP-1525 dimensions or prove any certification status. It simply reinforces the value of keeping power, voltage, frequency, dimensions, packing size, weight, and gross weight distinct. Kingshun Splitters provides the KSP-1525 as a stone crusher machine and jaw crusher reference, and the most useful reading approach is to carry the visible data forward while preserving open questions around measurement basis and site electrical matching.

Conclusion

The KSP-1525 specification data is useful when read with discipline. The visible facts include 190X85X145CM dimensions, 1.1T weight, 7.5KW power, 380V voltage, 50Hz frequency, 200X90X155CM packing size, and 1.2T gross weight, while the separate 215X136X185cm size statement should remain unresolved until its basis is confirmed. That boundary is the core lesson for readers studying a compact stone crusher machine: do not merge unlike fields, do not turn compact wording into a mobile design claim, and do not use 380V 50Hz to infer unlisted customization or installation conditions. The better next step is to keep reading the KSP-1525 data by field type and preserve the questions that the current figures leave open.

FAQ

 Q:Why should the two KSP-1525 dimension figures not be merged into one confirmed size?

A:They should not be merged because 215X136X185cm and 190X85X145CM appear as different dimension statements without a confirmed measurement basis. One cannot be safely treated as the corrected version of the other, and neither should be converted into a final machine, packing, transport, or installation size without clarification. Keeping both figures separate protects the reader from creating false certainty.

 Q:What does 380V 50Hz tell readers about the KSP-1525 stone crusher machine?

A:380V 50Hz tells readers the visible electrical voltage and frequency configuration associated with the KSP-1525 stone crusher machine. It helps frame electrical compatibility at a basic specification level, but it does not confirm wiring details, control configuration, installation conditions, or support for other voltage and frequency options. Those points require separate confirmation.

 Q:Does compact stone crusher machine wording prove a portable or mobile machine design?

A:No. Compact stone crusher machine wording can reflect the “compact and space-saving” advantage language around the KSP-1525, but it does not prove a portable or mobile machine design. Portability and mobility require specific structural evidence such as wheels, tracks, transport configuration, or mobile plant information, which should not be assumed from compact wording alone.

Sources / References

IEC 60204-1:2016 Safety of machinery Electrical equipment of machines

ISO 12100:2010 Safety of machinery General principles for design Risk assessment and risk reduction

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