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ZM-R7220A Infrared Soldering Station ZM R7220A infrared SMD rework station is an intelligent infrared soldering station with real-time temperature monitoring, optical alignment system, rapid heating, and cooling. As an ir soldering station manufacturer, Zhuomao promises to provide high-quality infrared BGA machines. Significantly, Zhuomao's infrared soldering station price is reasonable. Plus, Seamark ZM-R7220A infrared smd rework station is also called zm r6200c in the past. Functions of R7220A Infrared Soldering Station (ZM R6200) 01 Real-time Temperature Monitoring Real-time temperature display, with automatic curve analysis function. 02 Optical Alignment System High-definition CCD (2m pixels) digital imaging, automatic optical zoom system, manual control and laser red-dot alignment. 03 Rapid heating and cooling The IR preheating zone is heated by a medium wave ceramic infrared heating plate, a multi-functional movable PCB fixing bracket, and a BGA bottom support frame. Laminar integrated cooling fan. As one of the top infrared soldering station suppliers in China, Seamark ZM is famous for its rich technical force, complete detection means, reliable product quality, and full service. If you want to know the BGA repair machine and to get a perfect infrared soldering station price for your factory, please contact Seamark ZM first. Specification Of R7220A IR Infrared BGA Rework Station (ZM R6200C) Power Supply AC220V±10% 50/60HZ Power 5.65KW(Max), Top heater(1.45KW) Bottom heater (1.2KW), IR Preheater (2.7KW),Other(0.3KW) PCB Size 412*370mm(Max);6*6mm(Min) BGA Chip Size 60*60mm(Max);2*2mm(Min) IR Heater Size 285*375mm Temperature Sensor 1 pcs Operation Method 7" HD touchscreen Control System Autonomous heating control system V2ï¼?software copyrightï¼? Display System 15" SD industrial display (720P front screen) Alignment System 2 Million Pixel SD digital imaging system, automatic optical zoom with laser red-dot indicator Vacuum Adsorption Automatic Alignment Accuracy ±0.02mm Temperature Control K-type thermocouple closed-loop control with accuracy up to ±3 Feeding Device No Positioning V-groove with universal fixture Dimensions L685*W633*H850mm Weight 76KG Difference Between A Hot Air Rework Station And An IR Infrared BGA Rework Station The main difference between a hot air rework station and an IR BGA Rework China Station is the way they heat the board. A hot air rework station uses heated air to transfer heat from the tool-to-board interface and into the solder balls, whereas an IR BGA Rework Station uses infrared light to heat up just enough of each ball so that it melts.
ZM-R5860 Hot Air BGA Rework Station ZM R5860C Hot Air BGA Rework Station is a kind of rework station provided by Zhuomao, which has three temperature zone Independently control, convection hot air heating, lower temperature zone height-adjustable, high-precision autonomous control system, high-precision K-type thermocouple with accuracy up to ± 3, dynamic APR multi-loop closed-loop control selective reflow process. Imported high power constant current integrated cooling fan. As one of the most reputable BGA Rework Station suppliers, Seamark ZM provides the best BGA Rework Station with good quality. If you want to know seamark ZM R5860 price, please contact us now! Functions of Zhuomao ZMR5860 Smart BGA Rework Equipment 01 Temperature Curve Setting High-definition touch screen operation, real-time display and, editing of temperature curves, each group of temperature curves can be set to 8 segments, 100 groups of temperature curves can be stored, with temperature self-organizing function. 02 Laser Red-dot Positioning Guide Laser indicator for PCB and component positioning. 03 Vacuum Adsorption The external vacuum suction pen is convenient for taking BGA. Specification Of Seamark Zhuomao BGA Rework Station Power Supply AC220V±10% 50/60HZ Power 5.0KW(Max), Top heater(0.8KW) Bottom heater (1.2KW), IR Preheater (2.7KW),Other(0.3KW) PCB Size 410*370mm(Max); 10*10mm(Min) BGA Chip Size 40*40mm(Max); 10*10mm(Min) IR Heater Size 375*285mm Temperature Sensor 1 pcs Operation Method 7" HD touch screen Control System Autonomous heating control system V1 software copyright Alignment System Laser dot Vacuum Adsorption Manual Temperature Control K-type thermocouple closed-loop control with accuracy up to ±3 Positioning V-groove with universal fixture Dimensions L635*W620*H655mm Weight 43.5KG Principle And Operation Mode Of Seamark ZM R5860 BGA Machine The Seamark ZM R5860 BGA Machine is a rework station used for soldering and desoldering ball grid array (BGA) components on printed circuit boards(PCBs).BGA components are a type of surface-mount packaging used for integrated circuits. Seamark Zhuomao ZM R5860 BGA Machine is based on the hot air rework technique. lt uses precisely controlled hot air to melt the solderballs of the BGA component allowing it to be removed or replaced without damaging the PCB or the component itself. The machine also uses a vision alignment system to accurately align the BGA component with the PCB. The Seamark ZM R5860 BGA Machine allows for precise control over the temperature and airflow, ensuring a reliable and high-quality soldering/desoldering process. lt is suitable for use with a wide range of BGA components and PCBs. The operation mode of the Seamark ZMR5860 BGA Machine involves several steps: Preheating: The PCB is preheated to a suitable temperature to prevent thermal shock to the board when the hot air is applied.
Plant Capacity- 8000 barrels/day Major Equipment- Flare Stack, RTRP Pipe, Duplex SS Pipe, Reciprocating Pump, Filter Feed Pump, Chemical Injection Skid, Flare Seal Vessel, Separator Vessel, Surge Vessel, Drain Vessel, 440V Switchboard, Diesel Generator, Distribution Board, Cables, Local Control Stations, Motor Operated Valves (Actuators), MOV Local Isolator, 440V Motors, 110V DC Supply Unit Process Description- The Water Injection Pilot is required to study the performance of Dharif Reservoir under water flood. The pilot will be located in Dharif field. The source water well will be located approximately 1.5 Km from the pilot plant. The pilot plant will mainly comprise of variable speed electro-submersible pump unit installed in source well (by others), 2 phase water / gas separator, drain vessels booster pumps, surge vessel, HP injection pumps, filtration plant for water quality maintenance, chemical injection skids for scale, corrosion oxygen and biocide control as well as for filtration aids, water transmission lines, guard filters, associated piping, instrumentation and controls, power generation auxiliaries and other utilities including air assisted flare system. The submersible pump installed in the source well will bring up the 4th sand reservoir aquifer water at about 375 psig pressure and flow it to the pilot plant, where water will pass through a 2 phase water / gas separator, filtration package (deep bed media filters), surge vessel and guard filter before the injection well head. The filtration system shall eliminate the particles higher than 1 micron before it is flowed into injection pump units. The pumping facility will be suitable to pump out water at flow rate up to 8000 BWPD at pressure ranging from 3000 psig to 6000 psig at the injection well head. Booster pumps will take suction from the 2 phase separator and pump the water through the filters to the Break tank from where the HP injection pumps will pump it to the injector well. The water pumped by the HP pumping facilities will then flow through a 4" dia. flow line to the injection well, Flow and pressure variation is achieved by the variable speed drive controller of the HP Injection pumps.
Offline Inspection Machine for Stacking Battery Seamark offline stacking battery industrial x ray inspection equipment, which is suitable for inspection of various stacking process-type batteries. Seamark has 1 model XB5200 as such kind of machine. it is suitable for the inspection of stacking (blade) process-type cells in the lithium battery industry and adopts TDI line scanning technology and expandable inspection functions such as plate fold and tab fold. Offline inspection machine is typically used to make random inspections. It adopts a Hamamatsu X-ray tube and advanced FPD, which can help the operator to get a good effect image of the samples and help the operator to make the correct judgment. It is widely used in some labs and small battery manufacturing enterprises. Stacking Offline Inspection Machine Types XB5200-Stacking Battery Inspection Semi Auto Series XB5200, suitable for the inspection of stacking (blade) process-type batteries. What Types Of Defects Can The Stacking Offline Inspection Machine Detect? Angle Overhang This refers to misalignments or protrusions in the angles of the battery components. The inspection machine can identify irregularities in the alignment, ensuring the components are properly positioned. Large Area Folds Large folds in the battery material can impact the battery's structural integrity and performance. The machine is designed to identify these folds, ensuring the battery's surface is smooth and defect-free. Tab Creases Tabs are critical components in batteries, connecting different layers. Creases or deformities in these tabs can lead to electrical issues. The inspection machine can detect tab creases, ensuring the tabs are in optimal condition for proper electrical connections. How Does Stacking Offline X-Ray Inspection Machine Work? Stacking Offline Inspection Machine X-ray tubes and detectors are the core components of offline X-ray battery inspection machines. The machine provides images of the internal structure with the help of the X-ray tube and detector. FPD receives and converts the X-ray signal to an industrial computer, then the software will process the received signal through an algorithm and output the X-ray image. Offline X-ray inspection machines do not need to be used with other devices, and its easy to place and operate. FAQs of Stacking Offline Inspection Machine Is the Offline Inspection Machine suitable for small-scale as well as large-scale production? The offline inspection is suitable for random inspection. So it depends on the requirements of different battery production enterprises.