DescriptionThe LM385-2.5V (2.5V output) are bipolar, two-terminal, bandgap voltage references that offer precision performance without premium price. These devices do not require thin-film resistors,greatly lowering manufacturing complexity and cost.A 30ppm/ output temperature coefficient and a 15...
LM385B-2.5V: DescriptionThe LM385-2.5V (2.5V output) are bipolar, two-terminal, bandgap voltage references that offer precision performance without premium price. These devices do not require thin-film resistors...
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The LM385-2.5V (2.5V output) are bipolar, two-terminal, bandgap voltage references that offer precision performance without premium price. These devices do not require thin-film resistors,greatly lowering manufacturing complexity and cost.A 30ppm/ output temperature coefficient and a 15mA to 20mA operating current range make these voltage references especially attractive for multimeter, data acquisition and telecommunications applications.
Features of the LM385B-2.5V are:(1)output tolerance:1% or 2%; (2)output voltage option:LM285/385-1.2V:1.235V,LM285/385-2.5V:2.5V; (3)wide operating current range:LM285/385-1.2V:15mA to 20mA,LM285/385-2.5V:20mA to 20mA; (4)temperature coefficient:30ppm/; (5)dynamic impedance:0.6W; (6)TO-92-3 plastic package; (7)8-pin plastic narrow body (SOIC) package.
The absolute maximum ratings of the LM385B-2.5V can be summarized as:(1)forward current:+10mA;(2)storage temperature range:-65 to +150;(3)reverse current:30mA;(4)operating temperature range:40 to +85;(5)lead temperature (soldering, 10 sec):300;(6)power dissipation:limited by forward/reverse current.The information given herein, including the specifications and dimensions, is subject to change without prior notice to improve product characteristics. Before ordering, purchasers are advised to contact the Sensitron Semiconductor sales department for the latest version of the datasheet(s).In cases where extremely high reliability is required (such as use in nuclear power control, aerospace and aviation, traffic equipment,medical equipment, and safety equipment), safety should be ensured by using semiconductor devices that feature assured safety or by means of users' fail-safe precautions or other arrangement.In no event shall Sensitron Semiconductor be liable for any damages that may result from an accident or any other cause during operation of the user's units according to the datasheet(s). Sensitron Semiconductor assumes no responsibility for any intellectual property claims or any other problems that may result from applications of information, products or circuits described in the datasheets.
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