SUPERPRO 5000 Xeltek, SUPERPRO 5000 Datasheet - Page 42

PROGRAMMER UNIV STANDALONE W/USB

SUPERPRO 5000

Manufacturer Part Number
SUPERPRO 5000
Description
PROGRAMMER UNIV STANDALONE W/USB
Manufacturer
Xeltek
Series
SuperPro 5000r
Type
Universal, Stand Aloner
Datasheet

Specifications of SUPERPRO 5000

Contents
Programmer, Power Supply Adapter, Software, Cables and Documentation
Ic Product Type
Programmer, Universal
Ic Interface Type
USB
No. Of Devices Supported
41848
Kit Contents
Programmer W/ A DIP48 Adapter, AC Adapter, Software CD, USB2.0 Cable, And User's Manual
Rohs Compliant
Yes
For Use With/related Products
E/EPROM, FLASH, PLD, Micros and more listed on Device Sheet. 44,000+ Devices Supported.
For Use With
415-1037 - SOCKET ADAPTER 32PLCC SUPERPRO5K415-1045 - SOCKET ADAPTER 84PLCC SUPERPRO5K415-1044 - SOCKET ADAPTER 28SOIC SUPERPRO5K415-1043 - SOCKET ADAPTER 28SSOP SUPERPRO5K415-1042 - SOCKET ADAPTER 56TSOP SUPERPRO5K415-1041 - SOCKET ADAPTER 40TSOP SUPERPRO5K415-1040 - SOCKET ADAPTER 16SOP SUPERPRO5K415-1039 - SOCKET ADAPTER 48TSOP SUPERPRO5K415-1038 - SOCKET ADAPTER 44PLCC SUPERPRO5K
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
415-1036
EXAMPLE: The device MACRONIX MX29F200B TSOP48 is a 16‐bit flash device.
Auto Increment
The AutoInc view of the Operation Option screen is illustrated below.
Auto Increment provides two methods of generating the serial numbers: Auto
Increment and User Defined. This function is not available in stand‐alone mode.
Superpro
Note: The serial number is the content required by some applications that must
be written in a certain area for every chip. This information includes the
product sequence number and the MAC address.
®
5000 User’s Guide
Its programmable zone starts at the address 0 and ends at the
address 1FFFF (hexadecimal system).
The buffer size in bytes is (1FFFF+1) * 2 = 40000 (hexadecimal
system).
Because it is a 16‐bit (2 bytes) device, the buffer size is twice as large
as the device size.
To program only the second part of the device, enter 10000 as the
start address and leave the end address unchanged. This correlates
the programming data to the buffer data between the address
10000*2 = 200000 and 40000.
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