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REC2B48A40GKE
CONTACTORS-ELECTROMECHANICAL 3POLE
⚠️ Reference pricing provided. In case of supply shortages, we will connect you with our trusted procurement partners to ensure your project's continuity.
- Manufacturer: CARLO GAVAZZI / PARTNER STOCK
- Product type:
- SVHC: No SVHC (21-Jan-2025)
- Product Range: REC2B Series
| Delivery and price | |
|---|---|
| Units per pack | 3 |
| Price | 382.36 € |
| Current stock | 10+ |
| Lead time | 30 days |
## **Solid State Motor Contactor 3-Phase Types REC2B, REC3B** - **AC electronic motor contactor** - **Instantaneous Switching** - **Three-pole with two-phase and three phase switching options** - **Control status LED indication** - **Two control input ranges: 15-32 VDC, 90-253 VAC** - **Motor rating up to 4kW / 5.5hp** - **Rated Operational Voltage up to 600 VAC** - **Opto-isolation at 4kVrms** - **Mechanical Contactor resemblance with covered heatsink** - **DIN-rail and panel mounting** ## **Product Descri tion p** |**ProductDescrition**|**tion**|||||||||||| |---|---|---|---|---|---|---|---|---|---|---|---|---| |**Product Description**|**tion**|**Ordering Key**<br>**REC 3 B 48 A 3 **||||||**0 G K E**||||| |REC is an electronic contactor<br>intended to replace the tradi-<br>tional mechanical counterpart<br>used to switch three phase<br>motors. The range includes 2<br>and 3 phase switching ver-<br>sions up to 4kW and 600Vrms.<br>Options with high surge cur-<br>rent and I²t for fusing purposes<br>are also available.<br>The relay switches instanta-|the control voltage to emulate<br>mechanical relay operation. A<br>covered heatsink resolves any<br>issues with regards to cables<br>running close to the heatsink<br>and eliminates the need for<br>protective earth cabling. The<br>product can be mounted on<br>DIN-rail or on a panel. Note:<br>Specifications stated at 25°C<br>unless specified.|**Electronic Contactor**<br>**Number of switched poles**<br>**Switching mode**<br>**Rated Operational Voltage**<br>**Control voltage**<br>**Motor Power rating**<br>**High ITSM option**<br>**Connection type for control**<br>**Connection type for power**<br>**Connection configuration**<br>~~==i~~||||||||||| |neously upon application of||||||||||||| |**Ordering Key**||||||||||||| |**Switching**<br>**Switching**<br>**Rated operational**<br>**Control voltage**||**Motor**<br>**Itsm**<br>**Connection**<br>**Connection**||||||**Configuration**||||| |**poles**<br>**mode**<br>**voltage**||**power rating**<br>**control**<br>**control**||**power**||||||||| |REC2: 2 poles<br>B: Instant ON<br>48: 48-530 VAC|48: 48-530 VAC<br>D: 24 VDC,|2: 2.2kW<br>0: Standard G: Clamp||K: Screws||||E: Contactor||||| |REC3: 3 poles|-15%, + 20%|3: 3.0kW<br>Itsm<br>R: Spring*||||||||||| |60: 48-600 VAC|60: 48-600 VAC<br>A: 90 - 253 VAC|4: 4.0kW<br>1: High Itsm||||||||||| * Available on request ## **Selection Guide** |**Rated Voltage**|**No of Poles**|**Control voltage**|**Power Rating**|||| |---|---|---|---|---|---|---| ||||**2.2kW**|**2.2kW***|**3.0kW**|**4.0kW**| |48-530Vrms|2|24Vdc, -15%, +20%**|REC2B48D20GKE|-|REC2B48D30GKE|REC2B48D40GKE| |||90-253 VAC|REC2B48A20GKE|-|REC2B48A30GKE|REC2B48A40GKE| ||3|24Vdc, -15%, +20%|REC3B48D20GKE|REC3B48D21GKE|REC3B48D30GKE|-| |||90-253 VAC|REC3B48A20GKE|-|REC3B48A30GKE|-| |48-600Vrms|2|24Vdc, -15%, +20%|-|-|REC2B60D30GKE|-| |||90-253 VAC|-|-|REC2B60A30GKE|-| ||3|24Vdc, -15%, +20%|REC3B60D20GKE|-|-|-| |||90-253 VAC|REC3B60A20GKE|-|-|-| - higher ITSM rating - ** according to EN61131-2 **1** Specifications are subject to change without notice (10.11.2011) **REC2B, REC3B** ## **General S ecifications p** |**General Specifications**|||| |---|---|---|---| ||**REC..48…**||**REC..60…**| |Rated Operational voltage|480 VAC||600 VAC| |Operational voltage Range|48-530 VAC +10%, -15%||48-600 VAC +10%, -15%| |Blocking voltage|1200 Vp||1600 Vp| |Operational frequency range|45 - 65 Hz||45 - 65 Hz| |Power factor|>0.5 @ rated voltage||>0.5 @ rated voltage| ## **Control S ecifications p** |**Control Specifications**|||| |---|---|---|---| ||**REC...D..**||**REC...A..**| |Rated Control input voltage|24 VDC||230 VAC| |Control voltage range|15-32 VDC||| ||(according to EN61131-2)||90 - 253 VAC| |Maximum Input current|10 mA||15 mA| |Pick-up voltage|15 VDC||40 VAC| |Maximum Reverse voltage|32 VDC||N/A| |Drop-out voltage|1 VDC||10 VAC| |Response time pick-up|1 ms||1.5 ms| |Response time drop-out|10 ms||45 ms| |Operational frequency range|N/A||45 - 65Hz| |LEDs|Control ON: Green||Control ON: Green| ## **Connection S ecifications p** ## **POWER CONNECTIONS (75°C,Copper Cables)** ## **CONTROL CONNECTIONS (75°C,Copper Cables)** |Connection Type|Screw terminal| |---|---| |Illustration of terminal|| |Rigid|| |(Solid & Stranded)|2 x 1.5..2.5mm² (2 x AWG16..14)| ||2 x 2.5..6mm² (2 x AWG14..10)| |Flexible (Finely stranded|| |with end sleeve<br>Flexible<br>w/o end sleeves|2 x 1..2.5mm² (2 x AWG17..14)<br>2 x 2.5..6mm² (2 x AWG14..10)<br>1 x 10mm² (1 x AWG8)<br>2 x 1.5..2.5mm² (2 x AWG16..14)| ||2 x 2.5..6mm² (2 x AWG14..10)| |Stripping length|10mm| |Tightening torque|2Nm (Pozidriv 2 bit)| |Screw size|M4| |Aperture for|| |termination lug|| |(fork type)|Max 11mm| |Connection Type|Spring loaded*|Captive Clamp| |---|---|---| |Illustration of terminal||| |Type|Pluggable|Pluggable| |Stranded|-|1 x 0.05..1.5mm²| |||( 1 x AWG30..16)| |Solid|1 x 0.05..2.5mm²|1 x 0.05..2.5mm²| ||( 1 x AWG 24..14)|(1 x AWG30..14)| |Stripping length|10mm|6 - 7.5mm| |Tightening torque|N/A|0.5Nm| |||(Philips bit)| |Screw Size|N/A|M3| |Withdrawal Force|1.5N|1.5N| |Insertion Force|3N|3N| |Max Contact||| |Resistance|15mΩ|15mΩ| * Available on request **2** Specifications are subject to change without notice (10.11.2011) **REC2B, REC3B** **Load Specifications (45mm space between adjacent units)** ||**REC2B…..**|**REC2B…..**||||**REC3B…..**|**REC3B…..**|||| |---|---|---|---|---|---|---|---|---|---|---| ||**@ 40°**|**@ 50° @ 60°**||**Imin**|**Itsm ***|**@ 40° **|**@ **|**50° @ 60°**<br>**Imin**||**Itsm***| |Rated Operational Current AC-53a @ 400Vrms,||||||||||| |to IEC, for trip Classes 10, 20, 30||||||||||| |REC..48..20|6.2A|5.8A|5.3A 150mA||325Ap|5.8A|5.3A||4.3A 150mA|325Ap| |REC..60..20|-|-|-|-|-|5.8A|5.8A||4.9A 250mA|600Ap| |REC…21|-|-|-|-|-|5.8A|5.3A||4.3A 250mA|600Ap| |REC..48..30|7.6A|6.8A|5.8A 250mA||600Ap|7.6A|6.2A||5.3A 400mA|800Ap| |REC..60..30|7.6A|6.8A|6.2A 250mA||600Ap|-||-|-<br>-|-| |REC…40|9.2A|7.6A|6.2A 400mA||800Ap|-||-|-<br>-|-| |No of poles|||2||||||3|| |Maximum On-state voltage drop||||||||||| |@rated current|||1.6 Vrms||||||1.6 Vrms|| |Off-state leakage current||||||||||| |@rated voltage and frequency|||< 3 mArms|||||< 3 mArms||| |Critical dv/dt (@ Tj init = 25˚C)|||1000 V/µs|||||1000 V/µs||| **Load Specifications (0mm space between adjacent units)** ||**REC2B…..**|||**REC3B…..**||| |---|---|---|---|---|---|---| ||**@ 40°**|**@ 50°**|**@ 60°**|**@ 40°**|**@ 50°**|**@ 60°**| |Rated Operational Current AC-53a @ 400Vrms,||||||| |to IEC, for trip Classes 10, 20, 30||||||| |REC..48..20|6.2A|5.8A|5.3A|5.3A|4.9A|4.3A| |REC..60..20|-|-|-|5.8A|4.9A|4.3A| |REC…21|-|-|-|5.3A|4.9A|4.3A| |REC..48..30|6.8A|6.2A|5.3A|6.2A|5.3A|4.3A| |REC..60..30|6.8A|6.2A|5.3A|-|-|-| |REC…40|7.6A|6.2A|5.3A|-|-|-| **Motor Rating (45mm space between adjacent units)** ||**HP @ 40 / 50 / 60°C, accordin**|**HP @ 40 / 50 / 60°C, accordin**|**according to UL508**||||**kW @ 40 / 50 / 60°C, according to IEC60947-4-2**|**kW @ 40 / 50 / 60°C, according to IEC60947-4-2**|**to IEC60947-4-2**|**to IEC60947-4-2**|| |---|---|---|---|---|---|---|---|---|---|---|---| ||**230V**|**400V**|**480V**|**600V**|||**230V**|**400V**|**480V**||**600V**| |REC2…20|1½ / 1 / 1|3 / 2 / 2|3 / 3 / 3||-||1.5 / 1.1 / 1.1|2.2 / 2.2 / 2.2|3.0 / 3.0 / 2.2||-| |REC2..48..30|2 / 2 / 1|3 / 3 / 2|5 / 3 / 3||-||1.5 / 1.5 / 1.1|3.0 / 2. 2 / 2.2|4.0 / 3.0 / 3.0||-| |REC2..60..30|2 / 2 / 1½|3 / 3 / 3|5 / 3 / 3|5 / 5 / 5|5 / 5 / 5||1.5 / 1.5 / 1.5|3.0 / 2. 2 / 2.2|4.0 / 3.0 / 3.0|5.5 / 4.0 / 4.0|5.5 / 4.0 / 4.0| |REC2…40|2 / 2 / 1½|3 / 3 / 3|5 / 5 / 3||-||2.2 / 1.5 / 1.5|4.0 / 3.0 / 2.2|4.0 / 4.0 / 3.0||-| ||**HP @ 40 / 50 / 60°C, accordin**||**according to UL508**||||**kW @ 40 / 50 / 60°C, according to IEC60947-4-2**||**to IEC60947-4-2**||| ||**230V**|**400V**|**480V**|**600V**|||**230V**|**400V**|**480V**||**600V**| |REC3..48..20|1 / 1 / 1|2 / 2 / 2|3 / 3 / 2||-||1.1 / 1.1 / 0.75|2.2 / 2.2 / 1.5|3.0 / 2.2 / 2.2||-| |REC3…21|1 / 1 / 1|2 / 2 / 2|3 / 3 / 2||-||1.1 / 1.1 / 0.75|2.2 / 2.2 / 1.5|3.0 / 2.2 / 2.2||-| |REC3..60..20|1 / 1 / 1|2 / 2 / 2|3 / 3 / 3|3 / 3 / 3|3 / 3 / 3||1.1 / 1.1 / 1.1|2.2 / 2.2 / 1.5|3.0 / 3.0 / 2.2|4.0 / 4.0 / 3.0|4.0 / 4.0 / 3.0| |REC3...30|2 / 1½ / 1|3 / 3 / 2|5 / 3 / 3||-||1.5 / 1.5 / 1.1|3.0 / 2.2 / 2.2|4.0 / 3.0 / 2.2||| **3** Specifications are subject to change without notice (10.11.2011) **REC2B, REC3B** ## **Environmental S ecifications p** |Operating Temperature|-25°C to 60°C| |---|---| |Storage Temperature|-40°C to 100°C| |RoHS compliant|Yes| |Impact resistance|15/11 g/ms| |Vibration resistance|2g| |Relative humidity|< 95% non-condensing@ 40 °C| |Pollution degree|2| |Installation category|III| |Degree of fingerprotection<br>Installation altitude|IP20<br>0- 1000m. Above 1000m<br>derate linearly by 1% of FLC| ||per 100m up to a maximum of| ||2000m| ## **Housin S ecifications g p** |Weight|approx 380g| |---|---| |Housing Material|Nylon PA66| |Flame class|UL94-V0| |Housing Colour|RAL7035| |Dimensions (h x w x d)|| |(without input plug)|105 x 45 x 99.4 mm| ## **Isolation** Dielectric withstand voltage input to output ≥ 4000V AC rms ## **Short Circuit Protection (according to EN/IEC 60947-4-2 and UL508)** |**REC2B48.20**<br>**REC3B…..20**<br>Short Circuit Current Rating<br>5kA|**REC2B...30**<br>**REC3B48...30**|**REC2B48..40**| |---|---|---| ||5kA|5kA| |Type of coordination: 1<br>UL rated short circuit current RK5 fuse<br>12A<br>**REC2B48.20**<br>**REC3B48.20**<br>Type of coordination: 2<br>Rated short circuit Semiconductor fuse<br>J093802<br>6.6 CP URD 22.58 40|15A<br>**REC2B...30**<br>**REC3B60.20**<br>**REC3B48.21**|20A<br>**REC2B....40**<br>**REC3B48.30**| ||Y220913<br>6.9 CP GRC 22.58 50|X220912<br>6.9 CP GRC 22.58 63| **4** Specifications are subject to change without notice (10.11.2011) **REC2B, REC3B** ## **A enc A rovals & EMC g y pp** |**CE marking**|| |---|---| |Low Voltage Directive|IEC / EN 60947-4-2| |EMC Immunity|IEC / EN 61000-6-2| |EMC Emission|IEC / EN 61000-6-4| |**Electrostatic Discharge (ESD)**|| |**Immunity**|IEC / EN 61000-4-2| ||8kV, PC2 Air discharge<br>4kV, PC2 Contact| |**Electrical Fast Transient**|| |**Burst Immunity**|IEC / EN 61000-4-4| |Output: 4kV / 5kHz<br>Output: 4kV / 100kHz<br>Output: 2kV / 100kHz<br>Input: 4kV / 5kHz<br>Input: 2kV / 100kHz<br>Input: 4kV / 100kHz<br>**Voltage Interruptions Immunity**<br>0% for 5000ms|Performance criteria 1<br>Performance criteria 2<br>Performance criteria 1*<br>Performance criteria 1<br>Performance criteria 1<br>Performance criteria 2<br>IEC / EN 61000-4-11<br>Performance criteria 2| |**Radio Interference voltage**|| |**emissions (conducted)**<br>30 -1000MHz|EC / EN 55011<br>Class A (industrial)**| |**UL Approval**|cULus listed (E172877)| |---|---| |**Restrictions of hazardous**|| |**substances**|RoHS| |**Radiated Radio Frequency**|| |**Immunity**|EN 61000-4-3| |10 V/m, 80 - 1000 MHz,|| |1.4 - 2.0 GHz|Performance criteria 1| |1 V/m, 2.0 - 2.7 GHz|Performance criteria 1| |**Electrical Surge Immunity**|IEC / EN 61000-4-5| |Output, line to line|1kV, performance criteria 1| |Output, line to earth|2kV, performance criteria 2| |Input, line to line|1kV, performance criteria 2| |Intput, line to earth|2kV, performance criteria 2| |**Conducted Radio Frequency**|| |**Immunity**|IEC / EN 61000-4-6| |10V/m, 0.15 - 80 MHz|Performance criteria 1| |**Voltage Dips Immunity**|IEC / EN 61000-4-11| |0% for 10ms/20ms,|| |70% for 500ms|Performance criteria 2| |40% for 200ms|Performance criteria 2| |**Radio Interference field**|IEC / EN 55011| |**emissions (radiated)**|Class B (light industry)| - For DC Controlled versions. AC controlled version pass with performance criteria 2 - ** This product is designed and constructed as an EMC Class A device. The use of this product in residential applications could lead to radio interferences. In such applications, additional external filtering may be required. ## **Dimensions** **==> picture [182 x 192] intentionally omitted <==** **----- Start of picture text -----**<br> 86 ± 0.5 mm<br>ft. a<br>S |<br>|<br>@ o<br>Oe - of<br>82.2 ± 0.5 mm<br>45mm max. 99.4 ± 0.5 mm<br>55.1 ± 0.5mm<br>105 ± 0.5mm<br>**----- End of picture text -----**<br> All dimensions in mm **5** Specifications are subject to change without notice (10.11.2011) **REC2B, REC3B** ## **Connection Dia rams g** **==> picture [60 x 6] intentionally omitted <==** **----- Start of picture text -----**<br> L1 L2 L3<br>**----- End of picture text -----**<br> **==> picture [391 x 243] intentionally omitted <==** **----- Start of picture text -----**<br> L1 L2 L3<br>ok<br>REC2B ... REC3B ...<br>for star (wye) and delta for star (wye) and delta<br>**----- End of picture text -----**<br> ## **Inside Delta Connection** **==> picture [389 x 243] intentionally omitted <==** **----- Start of picture text -----**<br> Going from Inside-Delta connection<br>L1 L2 L3<br>Outside delta Inside-Delta<br>tt Uh<br>motor power (P): 4kW motor power (P): 4kW<br>Line voltage (V):400Vrms Line voltage (V):400Vrms<br>Power factor (cos φ): 0.9 Power factor (cos φ): 0.9<br>Motor efficiency: 0.8 Motor efficiency : 0.8<br>Motor current ( I )<br>Motor current ( I )<br>through REC :<br>through REC:<br>1 P<br>P ×<br>√3 × V × cos φ × motor eff. √3 √3 × V × cos φ × motor eff.<br>= 8.1Arms = 4.7Arms<br>For 4kW, 480V use REC..20 may be used to<br>REC..40 switch the same motor.<br>REC3B ...<br>inside-delta connection<br>**----- End of picture text -----**<br> **6** Specifications are subject to change without notice (10.11.2011) **REC2B, REC3B** ## **Characteristic Curves and O eratin C cles p g y** Maximum allowable number of starts depending on the Tn and Ton **==> picture [93 x 132] intentionally omitted <==** **----- Start of picture text -----**<br> In<br>Ie<br>IL<br>Tn Te Tx<br>TON<br>**----- End of picture text -----**<br> In: Inrush current for direct on line starting Ie: Rated full load current IL: Load Current Tn: Time during inrush current In Te: Time during full load current Ie or IL Tx: Off time TON = Tn + Te Curves: No. of switching cycles per hour versus tON |**Ü~êí=kçK=N=**<br>e<br>n<br>I<br>I<br>Z TKOI=<br>e<br>L<br>I<br>I<br>Z N<br>**kìãÄÉê=çÑ=pïáíÅÜÉë=éÉê=eçìê=**<br>**ílk**<br>**EëF=**<br>qå**Z MKMRë=**<br>qå**Z MKNë=**<br>qå**Z MKOë=**<br>qå**Z MKQë=**<br>qå**Z MKUë=**<br>qå**Z NKSë=**<br>qå**Z PKOë=**<br>MKN=<br>NUMM=<br>VNM=<br>J<br>J<br>J<br>J<br>J<br>N<br>NRMM=<br>UMM=<br>QOM=<br>OOM=<br>NMO=<br>J<br>J<br>NM=<br>OUM=<br>PMM=<br>OR=<br>NSM=<br>VM=<br>QM=<br>NR=<br>NMM=<br>PU=<br>PU=<br>PU=<br>PR=<br>PR=<br>OR=<br>S=<br>NMMM=<br>J<br>J<br>J<br>J<br>J<br>J<br>J<br>~~|~~<br>~~=~~|**Ü~êí=kçK=N=**<br>e<br>n<br>I<br>I<br>Z TKOI=<br>e<br>L<br>I<br>I<br>Z N<br>**kìãÄÉê=çÑ=pïáíÅÜÉë=éÉê=eçìê=**<br>**ílk**<br>**EëF=**<br>qå**Z MKMRë=**<br>qå**Z MKNë=**<br>qå**Z MKOë=**<br>qå**Z MKQë=**<br>qå**Z MKUë=**<br>qå**Z NKSë=**<br>qå**Z PKOë=**<br>MKN=<br>NUMM=<br>VNM=<br>J<br>J<br>J<br>J<br>J<br>N<br>NRMM=<br>UMM=<br>QOM=<br>OOM=<br>NMO=<br>J<br>J<br>NM=<br>OUM=<br>PMM=<br>OR=<br>NSM=<br>VM=<br>QM=<br>NR=<br>NMM=<br>PU=<br>PU=<br>PU=<br>PR=<br>PR=<br>OR=<br>S=<br>NMMM=<br>J<br>J<br>J<br>J<br>J<br>J<br>J<br>~~|~~<br>~~=~~| |---|---| |**Ü~êí=kçK=O=**<br>e<br>n<br>I<br>I<br>Z TKOI=<br>e<br>L<br>I<br>I<br>Z MKS=<br>**kìãÄÉê=çÑ=pïáíÅÜÉë=éÉê=eçìê=**<br>**ílk**<br>**EëF=**<br>qå**Z MKMRë=**<br>qå**Z MKNë=**<br>qå**Z MKOë=**<br>qå**Z MKQë=**<br>qå**Z MKUë=**<br>qå**Z NKSë=**<br>qå**Z PKOë=**<br>MKN=<br>NVMM=<br>VMM=<br>J<br>J<br>J<br>J<br>J<br>N<br>NUMM=<br>URM=<br>QQM=<br>NOM=<br>NNM=<br>J<br>J<br>NM=<br>PVM=<br>PVM=<br>PRM=<br>NVM=<br>NMM=<br>RM=<br>OR=<br>NMM=<br>PU=<br>PU=<br>PU=<br>PU=<br>OR=<br>OR=<br>OM=<br>NMMM=<br>J<br>J<br>J<br>J<br>J<br>J<br>J<br>**Ü~êí=kçK=P=**<br>e<br>n<br>I<br>I<br>Z QI=<br>e<br>L<br>I<br>I<br>Z N<br>**kìãÄÉê=çÑ=pïáíÅÜÉë=éÉê=eçìê=**<br>**ílk=**<br>**EëF=**<br>qå**Z MKMRë=**<br>qå**Z MKNë=**<br>qå**Z MKOë=**<br>qå**Z MKQë=**<br>qå**Z MKUë=**<br>qå**Z NKSë=**<br>qå**Z PKOë=**<br>MKN=<br>RNMM=<br>OUMM=<br>J<br>J<br>J<br>J<br>J<br>N<br>OTMM=<br>NVMM=<br>NNMM=<br>SRM=<br>PRM=<br>J<br>J<br>NM=<br>ORM=<br>ORM=<br>ORM=<br>OVM=<br>OMM=<br>NQM=<br>TR=<br>NMM=<br>PS=<br>PS=<br>PS=<br>PS=<br>PS=<br>PS=<br>PM=<br>NMMM=<br>J<br>J<br>J<br>J<br>J<br>J<br>J<br>~~So~~<br>~~S=======~~<br>~~|~~<br>~~==~~|| |**Ü~êí=kçK=Q=**|e<br>n<br>I<br>I<br>Z QI=<br>e<br>L<br>I<br>I<br>Z MKS=| |**ílk=**|**kìãÄÉê=çÑ=pïáíÅÜÉë=éÉê=eçìê=**| |**EëF=**<br>qå**Z MKMRë=**|qå**Z MKNë=**<br>qå**Z MKOë=**<br>qå**Z MKQë=**<br>qå**Z MKUë=**<br>qå**Z NKSë=**<br>qå**Z PKOë=**| |MKN=<br>RRMM=|OVMM=<br>J<br>J<br>J<br>J<br>J| |N<br>PQMM=|OPMM=<br>NQMM=<br>TMM=<br>PRM=<br>J<br>J| |NM=<br>PRM=|PRM=<br>PRM=<br>PRM=<br>OUM=<br>NTM=<br>UM=| |NMM=<br>PS=|PS=<br>PS=<br>PS=<br>PS=<br>PS=<br>PS=| |NMMM=<br>J|J<br>J<br>J<br>J<br>J<br>J| **7** Specifications are subject to change without notice (10.11.2011) **REC2B, REC3B** ## **Accessories** ~~en~~ Motor overload Relay adapter*. Part Number: REC3ADAPTOR Pack qty: 5pcs Compatible with: **Manufacturer Series Example** ABB TA TA25DU-8.5 Siemens 3RU11 3RU1126-1FB0 - 1 adaptor is shipped with every REC unit. **8** Specifications are subject to change without notice (10.11.2011)
Updated at June 10, 2026
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When a component is unavailable, discontinued or has an unacceptable lead time, we tap into our network of vetted European and Asian distributors to source what you need — without compromising on quality or traceability.
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We identify pin-to-pin, electrically equivalent substitutes that meet the same certifications (RoHS, AEC-Q100, REACH) as your original specification — validated against datasheets, not just part numbers. Often at a lower cost.
BOM Analysis service →