| Опции |
| Специальная версия | Дополнительный идентификационный код -Z с заказным номером и при необходимости простым текстом | |
|---|---|---|
| Стандартная линия (только для двигателей 1LA8) | ||
| Standardline version | B20 |
|
| Защита двигателя | ||
| Защита PTC термисторами с 6 в встроенными сенсорами аварийного сигнала и отключения | A12 |
|
| Определение температуры двигателя встроенным датчиком типа KTY 84-130 | A23 |
|
| Установка 6 термометров сопротивления PT100 в обмотку статора | A61 |
|
| Установка 6 термометров сопротивления PT100 в обмотку статора, 3-wire circuit from auxiliary terminal box (Option M50 or M88) | A64 |
|
| Установка 2 ввинчиваемых теромометров сопротивления PT100 in basic circuit for rolling-contact bearings | A72 |
|
| Установка 2 ввинчиваемых термометров сопротивления PT100 for rolling-contact bearings, in 3-wire circuit from auxiliary terminal box (Option M50 or M88) | A78 |
|
| Установка 2 двойных ввинчиваемых термометров сопротивления PT100 in 3-wire circuit for rollingcontact bearings | A80 | New! |
| 6 x PT100 Smart transmitter –40 to +140 °C Rosemount | M62 |
|
| Подключение двигателя и клеммная коробка | ||
| Two-part plate on connection box | K06 |
|
| Undrilled entry plate | L01 |
|
| Клеммная коробка справа | K09 |
|
| Клеммная коробка слева | K10 |
|
| Cable entry in direction of NDE with rotation of the terminal box console through 180° | N81 | New! |
| Cable entry in direction of DE with rotation of the terminal box console through 180° | N82 | New! |
| Ввод кабеля сверху | N83 | New! |
| Rotation of the terminal box console through 180° | N84 | New! |
| Клеммная коробка со стороны рабочего вала | N85 | New! |
| Клеммная коробка сверху (1XB1634 connection box) | K11 |
|
| DIN 89280 cable gland, maximum configuration | K57 |
|
| Повернутая на 90° клемнная коробка, кабельный ввод со стороны рабочего вала | K83 |
|
| Повернутая на 90° клеммная коробка, кабельный ввод с полевой стороны | K84 |
|
| Повернутая на 180° клеммная коробка | K85 |
|
| Увеличенная клеммная коробка (1XB1621) | M58 |
|
| PE connection without cable lug | Q00 | New! |
| Увеличенная клеммная коробка (1XB1631 connection box) | L00 |
|
| Увеличенная клеммная коробка (1XB9600 connection box) | M63 | New! |
| Subsequently rotatable main connection box | J12 | New! |
| 6 cables protruding, 1.5 m long | L48 |
|
| 6 cables protruding, 3 m long | L49 |
|
| Auxiliary connection box 1XB9016 (cast-iron) | M50 |
|
| Auxiliary connection box 1XB9015 (stainless steel) | M51 |
|
| Flange version A660 instead of standard version | M61 |
|
| Auxiliary connection box 1XB3020 | L97 |
|
| Auxiliary connection box 1XB9014 (aluminum) | M88 |
|
| Connection box on NDE | M64 |
|
| Windings and insulation | ||
| Temperature class 155 (F), used acc. to 155 (F), with service factor (SF) | C11 |
|
| Temperature class 155 (F), used acc. to 155 (F), with increased output | C12 |
|
| Temperature class 155 (F), used acc. to 155 (F), with increased coolant temperature | C13 |
|
| Temperature class 180 (H), utilized to 155 (F), with service factor (SF 1.1) | C14 |
|
| Colors and paint finish | ||
| Standard finish in RAL 7030 stone gray | – |
|
| Standard finish in other colors | Y53 • and standard finish RAL …. |
|
| Special finish in RAL 7030 stone gray | K26 |
|
| Special finish in other colors | Y54 • and special finish RAL …. |
|
| Unpainted (only cast-iron parts primed) | K23 |
|
| Special technology | ||
| Mounting of brake (incl. the brake from Stromag) | H47 |
|
| Mounting of the holding brake SFB 160, 1600 Nm, 230 V, Pintsch-Bubenzer | J48 | New! |
| Mounting of the holding brake SFB 160 SH, 2100 Nm, 230 V, Pintsch-Bubenzer | J49 | New! |
| Mounting of the holding brake SFB 160 H, 2500 Nm, 230 V, Pintsch-Bubenzer | J56 | New! |
| Mounting of the holding brake SFB 250 SH, 3300 Nm, 230 V, Pintsch-Bubenzer | J57 | New! |
| Mounting of the holding brake SFB 250 H, 4000 Nm, 230 V, Pintsch-Bubenzer | J58 | New! |
| Mounting of the holding brake SFB 250 H, 4000 Nm, 400 V, Pintsch-Bubenzer | J59 | New! |
| Mounting of the holding brake SFB 400 SH, 5200 Nm, 400 V, Pintsch-Bubenzer | J66 | New! |
| Mounting of the holding brake SFB 400 H, 6300 Nm, 400 V, Pintsch-Bubenzer | J67 | New! |
| Mounting of the holding brake SFB 630 SH, 8000 Nm, 400 V, Pintsch-Bubenzer | J68 | New! |
| Mounting of the holding brake SFB 630 H, 10000 Nm, 400 V, Pintsch-Bubenzer | J69 | New! |
| Prepared for mounting of the holding brake SFB for shaft height 315 | J06 | New! |
| Prepared for mounting of the holding brake SFB for shaft height 355 | J07 | New! |
| Prepared for mounting of the holding brake SFB for shaft height 400 | J08 | New! |
| Prepared for mounting of the holding brake SFB for shaft height 450 | J09 | New! |
| Mounting of LL 861 900 220 rotary pulse encoder | H70 |
|
| Mounting of HOG 10 D 1024 I rotary pulse encoder | H73 |
|
| Prepared for mounting of LL 861 900 220 | H78 |
|
| Prepared for mounting of HOG 10 D 1024 I | H80 |
|
| Mounting of HOG10 DN 2048 incremental encoder | H83 | New! |
| Mounting of HOG11 DN 2048 incremental encoder | H84 | New! |
| Mounting of LL861 incremental encoder (2048 pulses) | H85 | New! |
| Mounting of LL861 900 222 rotary pulse encoder with Advanced Diagnostic System | H16 | New! |
| HOG 11 DN 1024 I rotary pulse encoder (16 mm) with special anti-corrosion protection | H88 | New! |
| Mounting of HOG 10 DN 1024 I rotary pulse encoder + centrifugal switch, (speed .... rpm), terminal box protection against humidity | Y74 • and required speed .... rpm | New! |
| Mounting of HOG 10 DN 1024 I rotary pulse encoder + centrifugal switch, (speed .... rpm), terminal box protection against dust | Y76 • and required speed .... rpm | New! |
| Mounting of HOG 10 D 1024 l with terminal box/protection against dust | N05 | New! |
| Mounting of HOG 10 DN 1024 l with terminal box/protection against dust (zero signal) | N06 | New! |
| Mounting of HOG 10 DN 1024 l with terminal box/protection against humidity (zero signal) | N08 | New! |
| Mounting a special type of rotary pulse encoder | Y70 • and encoder designation |
|
| Mechanical design and degrees of protection | ||
| Low-noise version for 2-pole motors with clockwise direction of rotation | K37 |
|
| Low-noise version for 2-pole motors with counterclockwise direction of rotation | K38 |
|
| IP65 degree of protection | K50 |
|
| IP56 degree of protection (non-heavy-sea) | K52 |
|
| Rust-resistant screws (externally) | M27 |
|
| Coolant temperature and site altitude | ||
| Coolant temperature –50 to +40 °C | D02 | New! |
| Coolant temperature –40 to +40 °C | D03 |
|
| Coolant temperature –30 to +40 °C | D04 |
|
| Coolant temperature 45 °C, derating 4 % | D11 |
|
| Coolant temperature 50 °C, derating 8 % | D12 |
|
| Coolant temperature 55 °C, derating 13 % | D13 |
|
| Coolant temperature 60 °C, derating 18 % | D14 |
|
| Designs in accordance with standards and specifications | ||
| Electrical according to NEMA MG1-12 | D30 |
|
| Design according to UL with "Recognition Mark | D31 |
|
| China Energy Efficiency Label | D34 | New! |
| Ex certification for Russia | D35 | New! |
| Conformity statement in accordance with 94/9/EC (ATEX) of an independent body for Zone 2 motors (Ex nA) | D36 | New! |
| IEC Ex certificate – only in combination with order codes M72 and M73 | D37 | New! |
| Canadian regulations (CSA) | D40 |
|
| Pump drives for sea water desalination plants | ||
| Commissioning of the classification society by Siemens | E88 | New! |
| Commissioning of the classification society by third party | E89 | New! |
| Pump drive for sea water desalination plants certified according to Lloyd's Register | E90 | New! |
| Design for Zones according to ATEX | ||
| Design for Zone 2 for mains-fed operation Ex nA II T3 according to IEC/EN 60079‑15 | M72 |
|
| ADesign for Zone 2 for converter-fed operation, with derating Ex nA II T3 according to IEC/EN 60079‑15 | M73 |
|
| Design for Zone 22 for non-conductive dust (IP55) for mains-fed operation | M35 |
|
| Design for Zone 22 for non-conductive dust (IP55) for converter-fed operation, with derating | M39 |
|
| VIK version | K30 |
|
| Ex nA II on VIK rating plate | C27 |
|
| Bearings and lubrication | ||
| Measuring nipple for SPM shock pulse measurement for bearing inspection | G50 |
|
| Shock pulse measurement, fixed sensor and distributor box | H05 | New! |
| Shock pulse measurement, complete alarm box | H07 | New! |
| Automatic re-lubricating device EasyMatic | N30 | New! |
| Automatic re-lubricating device STAR CONTROL TIME M120 | N31 | New! |
| Automatic re-lubricating device STAR CONTROL IMPULSE L250 | N32 | New! |
| Bearing design for increased cantilever forces | K20 |
|
| Balance and vibration quantity | ||
| Vibration quantity level B | K02 |
|
| Full-key balancing | L68 |
|
| Shaft and rotor | ||
| Second standard shaft extension | K16 |
|
| Shaft extension with standard dimensions, without feather keyway | K42 |
|
| Non-standard cylindrical shaft extension | Y55 • and identification code |
|
| Heating and ventilation | ||
| Metal external fan | K35 |
|
| Anti-condensation heating for 230 V | K45 |
|
| Anti-condensation heating for 115 V | K46 |
|
| Anti-condensation heating for 400 V | L08 | New! |
| Anti-condensation heating for 500 V | L09 | New! |
| Sheet metal fan cover | L36 |
|
| Separately driven fan with non-standard voltage and/or frequency | Y81 • and identification code |
|
| Rating plate and extra rating plates | ||
| Second rating plate, loose | K31 |
|
| Extra rating plate or rating plate with deviating rating plate data | Y80 • and identification code |
|
| Extra rating plate with identification codes | Y82 • and identification code |
|
| Extension of liability for defects | ||
| Extension of liability for defects by 12 to 24 months | Q80 | New! |
| Extension of liability for defects by 18 to 30 months | Q81 | New! |
| Extension of liability for defects by 24 to 36 months | Q82 | New! |
| Extension of liability for defects by 30 to 42 months | Q83 | New! |
| Extension of liability for defects by 36 to 48 months | Q84 | New! |
| Extension of liability for defects by 48 to 60 months | Q85 | New! |
| Packaging, safety notes, documentation and test certificates | ||
| Document – Electrical data sheet | B31 |
|
| Document – Order dimension drawing | B32 |
|
| Document – Standard test schedule | B34 | New! |
| Document – Load characteristics | B37 |
|
| Document – Production schedule: Generated once | B43 | New! |
| Document – Production schedule: Updated every two weeks | B44 | New! |
| Document – Production schedule: Updated monthly | B45 | New! |
| Standard test (routine test) with acceptance | F01 |
|
| Visual acceptance and report handover with acceptance | F03 |
|
| Temperature-rise test, without acceptance | F04 |
|
| Temperature-rise test with acceptance | F05 |
|
| Noise measurement in no-load operation, no noise analysis, without acceptance | F28 |
|
| Noise measurement in no-load operation, no noise analysis, with acceptance | F29 |
|
| Noise measurement in no-load operation, with noise analysis, without acceptance | F62 |
|
| Noise measurement in no-load operation, with noise analysis, with acceptance | F63 |
|
| Recording of current and torque curves with torque metering shaft during starting, without acceptance | F34 |
|
| Recording of current and torque curves with torque metering shaft during starting, with acceptance | F35 |
|
| Measurement of locked-rotor torque and current, without acceptance | F52 |
|
| Measurement of locked-rotor torque and current, with acceptance | F53 |
|
| Type test with heat run for horizontal motors, without acceptance | F82 |
|
| Type test with heat run for horizontal motors, with acceptance | F83 |
|
| Type test with heat run for vertical motors, without acceptance | F92 |
|
| Type test with heat run for vertical motors, with acceptance | F93 |
|
| Опции |
Slide rails are used to tension the belt of a machine easily and conveniently when a belt tightener is not available. They are fixed to the base using stone bolts or foundation blocks.
The assignment of slide rails to motor size can be found in DIN 42923. For motors of frame sizes 355 to 450, there are no standardized slide rails (please inquire).
Source of supply:
Lütgert & Co. GmbH Postfach 42 51 33276 Gütersloh, Germany Tel. +49 (0)5241-74 07-0Fax +49 (0)5241-74 07-90
http://www.luetgert-antriebe.de E-mail: info@luetgert-antriebe.de
The foundation blocks are inserted into the stone foundation and embedded in concrete. They are used for fixing machines of medium size, slide rails, pedestal bearings, baseframes, etc. After the fixing bolts have been unscrewed, the machine can be dragged without it having to be lifted.
When the machine is initially installed, the foundation block that is bolted to the machine (without washers) and fitted with tapered pins is not embedded with concrete until the machine has been fully aligned. The machine is set 2 to 3 mm deeper in this case. The difference in shaft height is compensated by inserting shims on final installation. The tapered pins safeguard the exact position of the machine when it is repeatedly removed and replaced without the need for realignment.
Source of supply:
Lütgert & Co. GmbH Postfach 42 51 33276 Gütersloh, GermanyTel. +49 (0)5241-74 07-0Fax +49 (0)5241-74 07-90
http://www.luetgert-antriebe.de E-mail: info@luetgert-antriebe.de
Taper pins are used for components that are repeatedly removed. The drilled hole is ground conical using a conical reamer until the pin can be pushed in by hand until the cone shoulder lies approx. 3 to 4 mm above the rim of the hole.
It can then be driven in using a hammer until it is correctly seated. The pin is removed from the drilled hole by screwing on the nut and tightening it.
Standardized taper pins are available from general engineering suppliers.
Source of supply, for example:
Otto Roth GmbH & Co. KG Rutesheimer Straße 22 70499 Stuttgart, Germany Tel. +49 (0)711-13 88-0Fax. +49 (0)711-13 88-233
http://www.ottoroth.de E-mail: info@ottoroth.de
The motor from Siemens is connected to the machine or gear unit through a coupling. Siemens is an important coupling manufacturer with a wide range of products.
For standard applications, Siemens recommends that elastic couplings of types N-EUPEX and RUPEX or torsionally rigid couplings of types ARPEX and ZAPEX are used. For special applications, FLUDEX and ELPEX-S couplings are recommended.
Source of supply:
Siemens contact partner - ordering from Catalog Siemens MD 10.1 "FLENDER Standard Couplings"
or
SIEMENS AG Kupplungswerk Mussum Industriepark Bocholt Schlavenhorst 100 46395 Bocholt, GermanyTel. +49 (0)2871-92 21 85Fax +49 (0)2871-92 25 79
http://www.siemens.com E-mail: flendercouplings@siemens.com
| Опции |
Example for ordering a fan cover 1LA8, frame size 315, 4-pole:
Fan cover No. 12.01, 1LA8315‑4AB60, factory No. J1172515010001
You will find telephone numbers for other countries on our Internet site: http://www.siemens.com/automation/service&support