LM6511
LM6511 is 180 ns 3V Comparator manufactured by National Semiconductor.
Description
The LM6511 voltage parator is ideal for analog-digital interface circuitry when only a +3V or +3.3V supply is available. The open-collector output permits signal patibility with a wide variety of digital families: +5V CMOS, +3V CMOS, TTL and so on. Supply voltage may range from 2.7V to 36V between supply voltage leads. The LM6511 operates with little power consumption (Pdiss < 9.45 m W at V+ = +2.7V and V- = 0V). This voltage parator offers many features that are available in traditional sub-microsecond parators: output sync strobe, inputs and output may be isolated from system ground, and wire-ORing. Also, the LM6511 uses the industry-standard, single parator pinout configuration.
Features
(Typical unless otherwise noted) n Operates at +2.7V, +3V, +3.3V, +5V n Low Power consumption < 9.45 m W @ V+ = 2.7V (max) n Fast Response Time of 180 ns
Applications n Portable Equipment n Cellular Phones n Digital Level Shifting
Connection Diagram
8-Pin SO
DS011888-1
Ordering Information
Package 8-Pin Small Outline Industrial Temperature Range
- 40˚C to +85˚C LM6511IM NSC Package Drawing M08A
© 1999 National Semiconductor Corporation
DS011888
.national.
Absolute Maximum Ratings (Note 1)
If Military/Aerospace specified devices are required, please contact the National Semiconductor Sales Office/ Distributors for availability and specifications. Supply Voltage Output to Negative Supply Voltage Ground to Negative Supply Voltage Differential Input Voltage Input Voltage Storage Temperature Range Soldering Information: SO Package (Vapor Phase in 60 sec) SO Package (Infrared in 15 sec)
- 0.3 to +36V 50V 30V ± 30V (Note 2)
- 65˚C to +150˚C
Power Dissipation Output Short Circuit Duration Junction Temperature ESD Rating (C = +100 p F, R = 1.5 kΩ)
500 m W 10s 150˚C 300V
Operating Ratings (Note 1)
Supply Voltage Temperature Range Thermal Resistance (θJA) SO Package 2.5V to 30V
- 40˚C ≤ TJ ≤ +85˚C 170˚C/W
215˚C 220˚C
DC Electrical Characteristics
Unless otherwise...