• Peristaltic Pump, Flow Rate 380 mL/min, Maximum 2 Channels -BT100-3J

This precise Peristaltic Pump (BT100-3J) upgraded from BT100-2J model,  can generate adjustable flow rates in the range of 200 nL/min - 380 mL/min. The pump can be controlled through  the control panel, an external control interface  or a RS485 interface, and the running parameters are saved automatically.

Key Features

  • Compatible pump heads: YZ1515X, YZ2515X, YZII15YZII25, DG-1, and DG-2
  • Prime key for fast filling and dispensing
  • Adjust speed manually or automatically through an analog interface
  • Memory function: Store running parameters automatically
  • Membrane keypad, easy to operate
  • Great performance but at low price
  • Indoor use only

Typical Applications

  • Precision liquid handling or delivery
  • Bio-lab applications
  • Suitable for laboratory and industrial application


BT100-2J Peristaltic Pump Operation




Model NumberBT100-3J
Rotational Rate0.1 - 100 rpm, reversible
Rotational Rate Precision0.1 rpm
Rotational Rate ControlMembrane keyboard
Display3-digit LED displays current rpm 
External ControlStart/stop, cw/ccw control  and speed control 0-5 V, 0-10 V, 4-20 mA and 0-10KHz 
Communication InterfaceRS485
Power Supply90 - 260 VAC, 50/60 Hz
Power Consumption30 W
Operation TemperatureTemperature 0 - 40 °C
Humidity<80%
Dimensions (L × W × H)
232 × 142 × 149 (mm)
Pump Weight2.3 kg
IP rating
IP 31


Pump Head Selection 

Pump HeadTubingMax. Flow Rate (ml/min)Weight (kg) 
YZ1515x, YZII1513# 14# 19# 16# 25# 17# 18#3802.7
YZ2515x, YZII2515# 24#2702.7
DG-1(1 or 2), 1 or 2 channels,  6 rollersID≤ 3.17 mm, WT 0.8-1 mm48 (single channel)2.5-2.6
DG-1(1 or 2), 1 or 2 channels,  10 rollersID ≤3.17 mm, WT 0.8-1 mm 32 (single channel)2.5-2.6
DG15-2413# 14#,  ID ≤ 3.17 mm, WT 0.8-1.0 mm 300 (single channel)3.1
DG15-2813# 14# , ID ≤3.17 mm, WT 0.8-1.0 mm75 (single channel)3.0

Pump Model Used in Recent Literature

[1] Lin, Yuxin, et al. "Mechanistic study on the ferric chloride-based rapid cultivation and enhancement of aerobic granular sludge." Environmental Technology  (2022): 1-31.
[2] Zhao, Yiyi, et al. "Nitrogen recovery through fermentative dissimilatory nitrate reduction to ammonium (DNRA): Carbon source comparison and metabolic pathway." Chemical Engineering Journal (2022): 135938.
[3] Huang, Wen‐Can, et al. "A Biodegradable Multifunctional Film as a Tissue Adhesive for Instant Hemostasis and Wound Closure." Macromolecular Rapid Communications (2022): 2200031.
[4] Zuo, Zhiqiang, et al. "Recovery of ammonium nitrate solution from urine wastewater via novel free nitrous acid (FNA)-mediated two-stage processes." Chemical Engineering Journal (2022): 135826.
[5] Pancaldi, Lucio, et al. "Locomotion of Sensor‐Integrated Soft Robotic Devices Inside Sub‐Millimeter Arteries with Impaired Flow Conditions." Advanced Intelligent Systems (2022): 2100247.
[6] Yuan, Mingpu, et al. "Ultrasound‐assisted slug‐flow tubular crystallization for preparation of fine ibuprofen crystals." Chemical Engineering & Technology (2022).
[7] Yin, Wanxin, et al. "High-precision prediction of unionized hydrogen sulfide generation based on limited datasets and its impact on anaerobic digestion of sulfate-rich wastewater." Journal of Cleaner Production 341 (2022): 130875.
[8] Jiang, Lei, et al. "Denitrification performance and mechanism of denitrification biofilm reactor based on carbon-nitrate counter-diffusional." Bioresource Technology 348 (2022): 126804.
[9] Shen, Xiaoyun, et al. "The Invasive Potential of Hepatoma Cells Induced by Radiotherapy is Related to the Activation of Stellate Cells and Could be Inhibited by EGCG Through the TLR4 Signaling Pathway." Radiation research (2022).
[10] Beler-Baykal, B., Mustafa N. Taher, and M. Altinbas. "A first attempt for using of combined sorption and anaerobic processes for handling source separated human urine." Journal of Environmental Management 306 (2022): 114501.
[11] Kong, Minjian, et al. "The dynamic changes in autophagy activity and its role in lung injury after deep hypothermic circulatory arrest." Journal of Cellular and Molecular Medicine (2022).

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Peristaltic Pump, Flow Rate 380 mL/min, Maximum 2 Channels -BT100-3J

  • Brand: Longer
  • Product Code: BT100-3J
  • Availability: In Stock
  • $390.00


Available Options


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Tags: Microfluidic, Metering Pump, Sample Preparation, Peristaltic Pump, Dispensing and filling