SuperBot 2

Part No.: MPXT-SuperBot2
Automated IC Programmer

Product Description

Description

Fully Automated IC Programming System — up to 16 sockets

16-socket automated IC programming system ideal for medium to high-volume production

The SuperBOT 2 is an affordable, reliable automated IC programming system featuring tray, tube, and tape I/O, plus ink or laser marking. It accommodates most IC devices—such as NOR Flash, microcontrollers (MCUs), and NAND—and currently supports 106,000+ devices with 500+ adapters for common and uncommon package types. If you’re looking for a budget-friendly system with consistent, high performance, SuperBOT 2 is a clear choice.
 

Standard Features

Model SuperBOT 2
Units per hour (UPH) 1,200
Nozzles Single
Tray Single manual tray
Programmer SuperPro® 7500N
Sockets 16
Adapters 4
Vision Check Dual camera
Tape input Dual
Operating system Windows™
Computer Built-in industrial PC

 

Devices & Packages

  • Supports: NAND, eMMC, NOR Flash, and other device memories
  • Packages: WLCSP, SOT, BGA, TSSOP, PLCC, QFN/SOIC, etc.
  • Chip size range: 2 mm – 25 mm

Optional Accessories

  • Tray tower (up to 20 trays), tape in/out, tube in/out, and laser or ink marking.

Features

 

High Throughput

SuperBot 2 is based on a high performance servo system that can program up to 1200 UPH (units per hour) (for devices with programming time less than 36 sec) and is suitable for both small and large capacity devices. Throughput is up to 30 times higher than SuperBot 1, especially higher for large capacity devices like eMMC, NAND/NOR FLASH, SPI FLASH. It can be operated 24x7 and can provide throughput of 864,000 UPM (units per month). One person can supervise many SuperBOT machines and once they are programmed they can usually be left to operate by themselves.
 

High Performance Programmers

SuperBot 2 is equipped with four SuperPro 7500N high speed universal programmers. Depending on the device programmed, each SuperPro 7500N can have up to 4 sockets with a total of up to 16 sockets in the system. Most programmers in the market use technology which is up to 10 years old. The best current hardware technology is to use a high speed MCU chip built inside the programmer. SuperPro 7500N programmers employ a very high-speed MCU chip producing not only reliable programming algorithms but also increasing programming speed. Utilization of ARM11 32bit MCU combined with an internal Linux operating system makes them the most advanced and versatile programmers in the industry.
 

LAN Operation

Most volume programming applications need programmers to be operated remotely and this can be achieved by on SuperBOT programmers. Programmers can be connected to a local network and be remotely controlled by any computer on the network via LAN (100M) port. LAN port enables remote project loading, quality monitoring, volume control, file security. Technical department can remote control programming operations and processes, including downloading project file, command execution, project settings, and obtain real time information to achieve production goals. Remote network management provides the most protection for intellectual property. Project data and files are never shared with operators because files are remotely loaded by authorized engineers.
 

The Most Durable and Reliable Systems in the Industry

China is the hub of the world Electronics manufacturing and Xeltek automated programmers are widely installed at most major Electronic manufacturing plants with multiple installations at many locations. Most companies run production 24 hours/day and 7 days/week programming millions of devices per year. Xeltek automated programmers have been refined to run non-stop, withstand harsh and battle-ground like environment.
 

Largest Device Support

Located in Silicon Valley, we keep good relationships with many major IC companies that are important for us to continuously support new devices. Xeltek currently supports more than 100,000 devices, which is the largest device library in the programming industry.  can be added within a week - average lead time from other manufacturers is over two months.
 

Better Yield

Our semiconductor manufacturer approved algorithms, precision and clean signals guarantee high programming yield. Algorithms are performed with state machine architecture constructed with FPGA to achieve an ultrahigh programming speed. Along with the lo w voltage components selection, they program devices down to 1.2 volts.
 

Lowest Cost Automated Programming System in Market

SuperBot automated programmers are the most affordable and high value systems in the industry. High volume and extensive production experience enables the programmers to be the most competitive in terms of quality, price, and value in the programming industry.
 

Powerful and Intelligent Software

User-friendly software with graphical interface cuts learning curve. Setup data saved for next operation. Software also includes resourceful log table, convenient production and quality tracking, authorization, flexible stopping strategy for bad socket or module.
 

Chip Size

Devices between 2x2mm to 30x30mm can be programmed. SuperBot 2 supports the SOT23 package which measures only 2x3mm. We do not know of any other manufacturer who supports such a small package type and this is a testimony that SuperBot 2 excels in its accuracy and precision.
 

Short change-over time

I/O devices and socket adapters are easily interchangeable and socket positioning can be performed automatically. Auto Tray and Tape-out can be permanently attached to SuperBot eliminating changeover time when moving from tape-out to auto tray. Tape-in feeder changeover time is below 10 minutes and laser marker changeover time between tray to tape is under 15 minutes.
 

Socket Cost and Investment

Cost recovery in short period with low investment in the beginning as socket adapters are universal for up to 144 pin chips. For most of competitor programmers, user has to invest on device specific socket adapters for chips greater than 48 pins thus increasing cost in long term.
 

Specifications


Motion System

  • Motion System
    • High Precision Servo System
  • Resolution
    • X axis: ±0.02mm; Y axis: ±0.02mm; Z axis: ±0.02mm; θaxis: ±0.1°
  • Stroke
    • X axis: 1000mm; Y axis: 500mm; Z axis: 40mm
  • Pick & Place Header Accuracy
    • ±0.07mm
  • Operable Chip Size
    • Minimum: 2x2mm; Maximoum: 25x25mm
  • Maximum Throughput
    • 1200 Units per hour (UPH)

Vision System

  • Camera
    • Downward CCD camera for sockets / pick & place spots positioning. 512×512 pixels
  • Field of View
    • 30x30mm

Electrical & Hardware Specifications

  • Devices Supported
    • EPROM, Paged EPROM, Parallel and Serial EEPROM, FPGA Configuration PROM, FLASH memory (NOR & NAND), BPROM, NVRAM, SPLD, CPLD, EPLD, Firmware HUB, Microcontroller, MCU, etc.
  • Package
    • DIP, SDIP, PLCC, JLCC, SOIC, QFP, TQFP, PQFP, VQFP, TSOP, SOP, TSOPII, PSOP, TSSOP, SON, EBGA, FBGA, VFBGA, uBGA, CSP, SCSP etc.
  • Power Supply
    • Electrical Spec. of the AC adapter: AC input 90V to 250V, 50/60Hz, DC output AC 220V; Power: 2KW
  • Power Consumption
    • 1.5KVA
  • Air
    • Clean, pressure: 0.6MPa, consumption: 30 liter/min
  • Size
    • Main Machine: 820(L)×640(W)×1550(H) mm
    • Auto Tray: 1100(L)×380(W)×1300(H) mm
    • Tape-Out: 1100(L)×380(W)×1300(H)
  • Weight
    • Main machine: 248 Kg
  • PC Interface
    • USB 2.0, LAN
  • Shipping Dimension
    • Main Machine: 900(L)×800(W)×1410(H) mm
    • Auto Tray: 1170(L)×620(W)×1350(H) mm
    • Tape-Out: 130(L)×600(W)×11660(H) mm
  • Shipping Weight
    • Main machine: 260 Kg
    • Auto Tray: 140 Kg
    • Tape Out: 140 Kg

I/O

Manual Tray (Standard equipped)

Standard I/O device of the machine. Operator will replace the programmed tray from the SuperBot machine manually after the full tray is programmed. Customer does not need to buy any other accessory while using this option.

 

Auto Tray Device

This device is an extension of the fixed tray. It includes tray-in and tray-out and users can put 20 trays into the device. When the machine is running, users can add trays or take out trays without stopping the machine. The auto tray device can also be installed outside of the whole machine and trays can be automatically changed without the need to open the upper cover, which saves tray changeover space and avoid human error during tray changeover. The auto tray device can stack up to 20 JEDEC trays. 

 

Tape-In Device

Electric Tape in feeder. Tape width between 8 and 32mm applicable. Tape-in device can be configured as per the chip to be programmed. For SOIC and TSOP packages customer will need 2-3 types of different tape in the devices depending on the width of chips to be programmed. 

 

Tape-Out Device

Connects to a SuperBOT for fully automatic operation. 8-32 mm tape widths can be used with the device. Output reel is sealed with heated tape. 

 

Tube-In

Moves chips in the machine. Chip guider for different chip width (optional). IO is multi feed and upto 8 tubes can be operated at once (optional). Tube IO pages should also be updated accordingly.

 

Tube-Out

Moves chips out of the machine. Chip guider for different chip width (optional). IO is multi feed and upto 8 tubes can be operated at once (optional). Tube IO pages should also be updated accordingly. 

 

Laser Marker

System An optional attachment to the tape-out or the auto tray device for high speed marking. It marks up to 4 characters on the passed chips. 

 

Tape Ink-Marker

Add-on item for tape out machine. On completion of programming the chip can be automatically marked with a point using ink (optional). 
 

Tray Ink Marker

Add-on item for auto tray machine. On completion of the programming the chip can be automatically marked with a point using ink (optional). 

Note:

1. Prices and specifications are subject to change without notice.
2. EOL products will not be notified separately.
3. Product images are for reference only. Actual products may vary depending on the version or specifications.
4. Product information, specifications, and availability are subject to confirmation at the time of order.