SUPERPRO 501S Xeltek, SUPERPRO 501S Datasheet - Page 60

PROGRAMMER UNIVERSAL 48-PIN

SUPERPRO 501S

Manufacturer Part Number
SUPERPRO 501S
Description
PROGRAMMER UNIVERSAL 48-PIN
Manufacturer
Xeltek
Series
SuperPro 501Sr
Type
Universal, Stand Aloner
Datasheet

Specifications of SUPERPRO 501S

Contents
Programmer with 48-Pin DIP Socket, AC Adapter, Software CD, USB Cable, Users Manual
Ic Product Type
Programmer, Universal
Ic Interface Type
USB
No. Of Devices Supported
22488
Kit Contents
SuperPro 501S Programmer, AC Adapter, CD
Rohs Compliant
Yes
For Use With/related Products
E/EPROM, FLASH, PLD, Micros and more listed on Device Sheet, 21,000+ Devices Supported
For Use With
415-1029 - SOCKET ADAPTER FOR SDIP42415-1028 - SOCKET ADAPTER FOR TQFP32415-1027 - SOCKET ADAPTER FOR TSOP56415-1025 - SOCKET ADAPTER FOR SOIC20415-1024 - SOCKET ADAPTER FOR TSOP40415-1023 - SOCKET ADAPTER FOR SOP44415-1022 - SOCKET ADAPTER FOR TSOP56415-1019 - SOCKET ADAPTER FOR SOIC16/SOIC8415-1018 - SOCKET ADAPTER FOR SOIC28415-1015 - SOCKET ADAPTER FOR PLCC28415-1014 - SOCKET ADAPTER FOR PLCC20415-1013 - SOCKET ADAPTER FOR PLCC32415-1017 - SOCKET ADAPTER FOR PLCC44
Lead Free Status / RoHS Status
Lead free by exemption / RoHS compliant by exemption
Other names
415-1046
SP501S
Superpro
Verify compares the content of the buffer with that of the chip.
Read reads the content of the chip into the buffer. Open the Buffer Edit dialog
box to view the content. 
Notes: The system cannot read the content of encrypted chips. 
Blank_check checks if the device is in blank state, which is dependent on the
data manual. If filling the blank data buffer is selected when the devices are
selected, the programmer will fill all the HEX/ASCII buffer data with FF or 00
(Hex), and the fuse buffer with 1 or 0 after the device is selected. An encrypted
chip may be displayed as a blank chip. 
Notes: If there is any discrepancy, verification ceases and the system displays
®
5000 User’s Guide
the system displays an error message and ceases the programming.
The second mode does not perform verification during programming.
The process continues even if an error occurs. Upon completion, the
system displays a successful programming message. However, the
message only indicates successful completion of programming. You
must perform the verify function to ensure accuracy.
The system cannot read PLD devices since the test vector is not in
the chip.
If a chip includes ConfigWord, the system reads the ConfigWord data
and saves it to the ConfigWord buffer.
a failure message. For most memory chips and SCM chips, the failure
message includes address and data. For PLD devices, the message
displayed depends on the programming reference. Only the chips
that pass verification can be recognized as the chips being
programmed correctly.
Some chips do not provide the cell to cell check function. Instead, these
chips provide only the accumulation check function similar to the
VerifyCRC.
A few chips do not provide the accumulation check function. The system
performs the check automatically in the programming process.
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