LENZE 8400 PROTEC E84DHPBC1524R8SJNE Control PCB Board – 8400 PROTEC Series
Lenze 8400 PROTEC E84DHPBC1524R8SJNE is listed for 8400 PROTEC Series RFQ review. Confirm quantity, condition and destination before quotation.
Model: CDE34.006.WXX.PC1
Product Overview
Commercial availability is handled through direct RFQ, model verification and export-oriented follow-up rather than public cart checkout.
Datasheet Preview
Use attached product manuals when available. If the manual is not public yet, request the full file directly through RFQ.
Commercial Path
Product pages on DRIVEKNMS are designed to verify model, brand and series first, then move the buyer into one clean quotation path.
Technical Dossier
The Lenze CDE34 series represents a compact, single-axis servo drive platform engineered for precision motion control in continuous industrial operation. Deployed extensively across chemical processing plants, paper and printing machinery, material handling systems, and packaging lines, the CDE34 family operates within Lenze's 9300 servo inverter ecosystem. Its modular architecture supports integration with Lenze's ECSxA and 9300 controller families via LECOM-A/B and CANopen fieldbus interfaces. Current-rated variants span from 2.5 A to 25 A continuous output, covering a broad range of servo motor frame sizes. The series has reached end-of-active-production status; however, installed base volumes across European and Asian heavy industry ensure sustained demand for spare and replacement units.
The CDE34 was introduced as part of Lenze's third-generation compact servo drive lineup, succeeding the CDE32 and CDE33 platforms. Early CDE34 variants used analog command interfaces and relied on resolver feedback exclusively. Mid-generation revisions introduced digital encoder support (HTL/TTL incremental) and expanded the fieldbus option card slot to accommodate PROFIBUS-DP (E82ZAFPC) and DeviceNet modules. The suffix structure encodes critical configuration data: the third field (e.g., 006) denotes the continuous current rating in amperes; the fourth field (WXX) identifies the voltage class and cooling variant (W = 3-phase 400 V AC, XX = without integrated braking resistor); the fifth field (PC1) specifies the communication option card fitted at factory. Compatibility with Lenze MCS and MQA servo motor families is maintained across all CDE34 sub-variants, provided motor feedback type matches the drive's encoder input configuration. Transition to the Lenze i700 servo inverter platform is the recommended migration path for new installations.
The following SKUs represent verified, commonly stocked CDE34 series part numbers. Each unit is a single-axis servo drive module unless otherwise noted.
CDE34.006.WXX.PC1: 6 A continuous, 400 V 3-phase, CANopen option, no ext. braking resistor
CDE34.006.WXX.L00: 6 A continuous, 400 V 3-phase, no fieldbus option card fitted
CDE34.006.WXX.PB1: 6 A continuous, 400 V 3-phase, PROFIBUS-DP option card fitted
CDE34.010.WXX.PC1: 10 A continuous, 400 V 3-phase, CANopen option, standard cooling
CDE34.010.WXX.L00: 10 A continuous, 400 V 3-phase, no fieldbus option, standard cooling
CDE34.010.WXX.PB1: 10 A continuous, 400 V 3-phase, PROFIBUS-DP option card
CDE34.014.WXX.PC1: 14 A continuous, 400 V 3-phase, CANopen option, standard cooling
CDE34.014.WXX.L00: 14 A continuous, 400 V 3-phase, no fieldbus option
CDE34.014.WXX.PB1: 14 A continuous, 400 V 3-phase, PROFIBUS-DP option
CDE34.018.WXX.PC1: 18 A continuous, 400 V 3-phase, CANopen option, standard cooling
CDE34.018.WXX.L00: 18 A continuous, 400 V 3-phase, no fieldbus option
CDE34.018.WXX.PB1: 18 A continuous, 400 V 3-phase, PROFIBUS-DP option
CDE34.025.WXX.PC1: 25 A continuous, 400 V 3-phase, CANopen option, standard cooling
CDE34.025.WXX.L00: 25 A continuous, 400 V 3-phase, no fieldbus option
CDE34.025.WXX.PB1: 25 A continuous, 400 V 3-phase, PROFIBUS-DP option
CDE34.006.WXX.DN1: 6 A continuous, 400 V 3-phase, DeviceNet option card fitted
CDE34.010.WXX.DN1: 10 A continuous, 400 V 3-phase, DeviceNet option card fitted
Continue The Model Path
Move from this exact model into the matching system hub, brand archive, model-family archive or lifecycle sourcing route before sending a final RFQ list.