K6K1016V1C-JC15, K6K4016C1C-TC12, K6L0908C2A Selling Leads, Datasheet
MFG:SEC Package Cooled:SOJ D/C:N/A
K6K1016V1C-JC15, K6K4016C1C-TC12, K6L0908C2A Datasheet download
Part Number: K6K1016V1C-JC15
MFG: SEC
Package Cooled: SOJ
D/C: N/A
MFG:SEC Package Cooled:SOJ D/C:N/A
K6K1016V1C-JC15, K6K4016C1C-TC12, K6L0908C2A Datasheet download
MFG: SEC
Package Cooled: SOJ
D/C: N/A
Want to post a buying lead? If you are not a member yet, please select the specific/related part number first and then fill the quantity and your contact details in the "Request for Quotation Form" on the left, and then click "Send RFQ".Your buying lead can then be posted, and the reliable suppliers will quote via our online message system or other channels soon.
TOP
PDF/DataSheet Download
Datasheet:
File Size: KB
Manufacturer:
Download : Click here to Download
PDF/DataSheet Download
Datasheet:
File Size: KB
Manufacturer:
Download : Click here to Download
PDF/DataSheet Download
Datasheet: K6L0908C2A
File Size: 147170 KB
Manufacturer: SAMSUNG [Samsung semiconductor]
Download : Click here to Download
The K6L0908C2A families are fabricated by SAMSUNG's advanced CMOS process technology. The families support various operating temperature ranges and have various package types for user flexibility of system design. The families also support low data retention voltage for battery back-up operation with low data retention current.
Item | Symbol | Ratings | Unit | Remark |
Voltage on any pin relative to Vss | VIN,VOUT | -0.5 to 7.0 | V | - |
Voltage on Vcc supply relative to Vss | VCC | -0.5 to 7.0 | V | - |
Power Dissipation | PD | 1.0 | W | - |
Storage temperature | TSTG | -65 to 150 | °C | - |
Operating Temperature | TA | 0 to 70 | °C | K6L0908C2A-C |
-40 to 85 | °C | K6L0908C2A-I | ||
Soldering temperature and time | TSOLDER | 260°C, 10sec(Lead Only) | - | - |
1. Stresses greater than those listed under "Absolute Maximum Ratings" may cause permanent damage to the device. Functional operation should be restricted to recommended operating condition. Exposure to absolute maximum rating conditions for extended periods may affect reliability.