| Modellum | Unitas | |||||
|
|
| V | H | S | V | H |
| Capacitas | Tonna | 25 | 35 | |||
| Punctum tonnae aestimatae | mm | 3.2 | 1.6 | 3.2 | 3.2 | 1.6 |
| Mutatio celeritatis | Spm | LX-CXL | 130-200 | LX-CXX | 40-120 | 110-180 |
| Velocitas stabilis | Spm | 110 | 110 |
| 85 | |
| Ictus | mm | 70 | 30 | 80 | 70 | 40 |
| Adaptatio altitudines labendi matricis | mm | 195 | 215 | 190 | 220 | 235 |
| Adaptatio labi |
| 50 | 50 | 55 | ||
| Area labendi | mm | 300×230×50 | 360×250×50 | |||
| Area roboranda | mm | 680×300×70 | 800×400×70 | |||
| Foramen cruris | mm | 38.1 | 38.1 | |||
| Motor principalis | Kw.p | 3.7×4 | 3.7×4 | |||
| Instrumentum ad labrum aptandum | HP | Operatio manualis | ||||
| Pressio aeris | Kilogrammata/cm²2 | 6 | 6 | |||
| Prellae praecisionem |
|
|
| |||
| Dimensio prelorum | mm | 1280×850×2200 | 1380×900×2400 | |||
| Pondus premit | Tonna | 2.1 | 3 | |||
| Capacitas pulvini matricis | Tonna | - | 2.3 | |||
| Ictus | mm | - | 50 | |||
| Area effractiva pulvini matricis | mm2 | - | 300×230 | |||
| Modellum | Unitas | |||||
|
|
| V | H | V | H | |
| Capacitas | Tonna | 45 | 60 | |||
| Punctum tonnae aestimatae | mm | 3.2 | 1.6 | 4 | 2 | |
| Mutatio celeritatis | Spm | 40-110 | 110-150 | XXXV-XC | LXXX-CXX | |
| Velocitas stabilis | Spm | 75 | 65 | |||
| Ictus | mm | 80 | 50 | CXX | 60 | |
| Adaptatio altitudines labendi matricis | mm | 250 | 265 | CCCX | 340 | |
| Adaptatio labi |
| 60 | 75 | |||
| Area labendi | mm | 400×300×60 | 500×360×70 | |||
| Area roboranda | mm | 850×440×80 | 900×500×80 | |||
| Foramen cruris | mm | 38.1 | 50 | |||
| Motor principalis | Kw.p | 5.5×4 | 5.5×4 | |||
| Instrumentum ad labrum aptandum | HP | Operatio manualis | ||||
| Pressio aeris | Kilogrammata/cm²2 | 6 | 6 | |||
| Prellae praecisionem |
|
|
| |||
| Dimensio prelorum | mm | 1600×950×2500 | 1600×1000×2800 | |||
| Pondus premit | Tonna | 3.8 | 5.6 | |||
| Capacitas pulvini matricis | Tonna | 2.3 | 3.6 | |||
| Ictus | mm | 50 | 70 | |||
| Area effractiva pulvini matricis | mm2 | 300×230 | 350×300 | |||
| Modellum | Unitas | |||||
|
|
| V | H | V | H | |
| Capacitas | Tonna | 80 | 110 | |||
| Punctum tonnae aestimatae | mm | 4 | 2 | 6 | 3 | |
| Mutatio celeritatis | Spm | XXXV-LXXX | LXXX-CXX | XXX-LX | LX-XC | |
| Velocitas stabilis | Spm | 65 | 50 | |||
| Ictus | mm | CL | 70 | CLXXX | 80 | |
| Adaptatio altitudines labendi matricis | mm | 340 | 380 | 360 | 410 | |
| Adaptatio labi |
| 80 | 80 | |||
| Area labendi | mm | 560×420×70 | 650×470×80 | |||
| Area roboranda | mm | 1000×550×90 | 1150×600×110 | |||
| Foramen cruris | mm | 50 | 50 | |||
| Motor principalis | Kw.p | 7.5×4 | 11×4 | |||
| Instrumentum ad labrum aptandum | HP | Impulsus electricus | ||||
| Pressio aeris | Kilogrammata/cm²2 | 6 | 6 | |||
| Prellae praecisionem |
| GB/JIS classis prima | ||||
| Dimensio prelorum | mm | 1800×1180×2800 | 1900×1300×3200 | |||
| Pondus premit | Tonna | 6.5 | 9.6 | |||
| Capacitas pulvini matricis | Tonna | 3.6 | 6.3 | |||
| Ictus | mm | 70 | 80 | |||
| Area effractiva pulvini matricis | mm2 | 450×310 | 500×350 | |||
| Modellum | Unitas | ZYA-200 | ||||
|
|
| V | H | V | H | |
| Capacitas | Tonna | CLX | ducenti | |||
| Punctum tonnae aestimatae | mm | 6 | 3 | 6 | 3 | |
| Mutatio celeritatis | Spm | XX-L | XL-LXX | XX-L | 50-70 | |
| Velocitas stabilis | Spm | 35 | 35 | |||
| Ictus | mm | ducenti | 90 | ducenti | centum | |
| Adaptatio altitudines labendi matricis | mm | 460 | 510 | 460 | 510 | |
| Adaptatio labi |
| centum | 110 | |||
| Area labendi | mm | 700×550×90 | 850×630×90 | |||
| Area roboranda | mm | 1250×800×140 | 1400×820×160 | |||
| Foramen cruris | mm | 65 | 65 | |||
| Motor principalis | Kw.p | 15×4 | 18.5×4 | |||
| Instrumentum ad labrum aptandum | HP | Impulsus electricus | ||||
| Pressio aeris | Kilogrammata/cm²2 | 6 | 6 | |||
| Prellae praecisionem |
| GB/JIS classis prima | ||||
| Dimensio prelorum | mm | 2300×1400×3800 | 2615×1690×4075 | |||
| Pondus premit | Tonna | 16 | 23 | |||
| Capacitas pulvini matricis | Tonna | 10 | 14 | |||
| Ictus | mm | 80 | centum | |||
| Area effractiva pulvini matricis | mm2 | 650×420 | 710×480 | |||
| Modellum | Unitas | ZYA-260 | ZYA-315 | |||
|
|
| V | H | V | H | |
| Capacitas | Tonna | 260 | CCCXV | |||
| Punctum tonnae aestimatae | mm | 7 | 3.5 | 8 | 4 | |
| Mutatio celeritatis | Spm | XX-XL | Quadraginta-quinquaginta | XX-XL | Triginta ad quinquaginta | |
| Velocitas stabilis | Spm | 30 | 30 | |||
| Ictus | mm | 250 | CL | 250 | CL | |
| Adaptatio altitudines labendi matricis | mm | quingenti | 550 | quingenti | 550 | |
| Adaptatio labi |
| CXX | CXX | |||
| Area labendi | mm | 950×700×100 | 1250×750×100 | |||
| Area roboranda | mm | 1500×840×180 | 1600×860×190 | |||
| Foramen cruris | mm | 65 | 65 | |||
| Motor principalis | Kw.p | 22×4 | 30×4 | |||
| Instrumentum ad labrum aptandum | HP | Impulsus electricus | ||||
| Pressio aeris | Kilogrammata/cm²2 | 6 | 6 | |||
| Prellae praecisionem |
| GB/JIS classis prima | ||||
| Dimensio prelorum | mm | 2780×1850×4470 | 2910×1950×4500 | |||
| Pondus premit | Tonna | 32 | 35 | |||
| Capacitas pulvini matricis | Tonna | 14 | 14 | |||
| Ictus | mm | centum | centum | |||
| Area effractiva pulvini matricis | mm2 | 710×480 | 710×480 | |||
| Modellum | Unitas | ZYA-400 | |
|
|
| V | H |
| Capacitas | Tonna | quadringenti | |
| Punctum tonnae aestimatae | mm | 8 | 4 |
| Mutatio celeritatis | Spm | XX-XL | Triginta ad quinquaginta |
| Velocitas stabilis | Spm | 30 | |
| Ictus | mm | 250 | CL |
| Adaptatio altitudines labendi matricis | mm | 550 | DC |
| Adaptatio labi |
| CXX | |
| Area labendi | mm | 1350×800×100 | |
| Area roboranda | mm | 1650×900×200 | |
| Foramen cruris | mm | 65 | |
| Motor principalis | Kw.p | 37×4 | |
| Instrumentum ad labrum aptandum | HP |
| |
| Pressio aeris | Kilogrammata/cm²2 | 6 | |
| Prellae praecisionem |
|
| |
| Dimensio prelorum | mm | 3180×2150×5025 | |
| Pondus premit | Tonna | 40 | |
| Capacitas pulvini matricis | Tonna | 14 | |
| Ictus | mm | centum | |
| Area effractiva pulvini matricis | mm2 |
| |