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LS318_SOT-23 Datasheet(PDF) 1 Page - Micross Components |
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LS318_SOT-23 Datasheet(HTML) 1 Page - Micross Components |
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1 / 1 page Click To Buy Information furnished by Linear Integrated Systems and Micross Components is believed to be accurate and reliable. However, no responsibility is assumed for its use; nor for any infringement of patents or other rights of third parties which may result from its use. No license is granted by implication or otherwise under any patent or patent rights of Linear Integrated Systems. FEATURES LOG CONFORMANCE ∆re = 1Ω TYP. ABSOLUTE MAXIMUM RATINGS 1 @ 25°C (unless otherwise noted) Maximum Temperatures Storage Temperature ‐65°C to +200°C Operating Junction Temperature ‐55°C to +150°C Maximum Power Dissipation Continuous Power Dissipation (One side) 250mW Continuous Power Dissipation (Both sides) 500mW Linear Derating factor (One side) 2.3mW/°C Linear Derating factor (Both sides) 4.3mW/°C Maximum Currents Collector Current 10mA MATCHING CHARACTERISTICS @ 25°C (unless otherwise stated) SYMBOL CHARACTERISTIC MIN TYP MAX UNITS CONDITIONS |VBE1 – VBE2 | Base Emitter Voltage Differential ‐‐ 0.4 1 mV IC = 10µA, VCE = 5V ∆|(VBE1 – VBE2)| / ∆T Base Emitter Voltage Differential Change with Temperature ‐‐ 1 5 µV/°C IC = 10µA, VCE = 5V TA = ‐55°C to +125°C |IB1 – IB2 | Base Current Differential ‐‐ ‐‐ 10 nA IC = 10µA, VCE = 5V |∆ (IB1 – IB2)|/°C Base Current Differential Change with Temperature ‐‐ ‐‐ 0.5 nA/°C IC = 10µA, VCE = 5V TA = ‐55°C to +125°C hFE1 /hFE2 DC Current Gain Differential ‐‐ 5 ‐‐ % IC = 10µA, VCE = 5V ELECTRICAL CHARACTERISTICS @ 25°C (unless otherwise noted) SYMBOL CHARACTERISTICS MIN. TYP. MAX. UNITS CONDITIONS ∆re Log Conformance ‐‐ ‐‐ 1.5 Ω IC = 10‐100‐1000µA, VCE = 5V BVCBO Collector to Base Voltage 25 ‐‐ ‐‐ V IC = 10µA, IE = 0 BVCEO Collector to Emitter Voltage 25 ‐‐ ‐‐ V IC = 10µA, IB = 0 BVEBO Emitter‐Base Breakdown Voltage 6.2 ‐‐ ‐‐ V IE = 10µA, IC = 0 2 BVCCO Collector to Collector Voltage 45 ‐‐ ‐‐ V IC = 10µA, IE = 0 hFE DC Current Gain 150 ‐‐ 600 IC = 10µA, VCE = 5V 150 ‐‐ 600 IC = 100µA, VCE = 5V 150 ‐‐ ‐‐ IC = 1mA, VCE = 5V VCE(SAT) Collector Saturation Voltage ‐‐ ‐‐ 0.25 V IC = 1mA, IB = 0.1mA IEBO Emitter Cutoff Current ‐‐ ‐‐ 0.2 nA IC = 0, VEB = 3V ICBO Collector Cutoff Current ‐‐ ‐‐ 0.2 nA IE = 0, VCB = 20V COBO Output Capacitance ‐‐ ‐‐ 2 pF IE = 0, VCB = 3V CC1C2 Collector to Collector Capacitance ‐‐ ‐‐ 2 pF VCC = 0V IC1C2 Collector to Collector Leakage Current ‐‐ ‐‐ 0.5 nA VCC = ±45V fT Current Gain Bandwidth Product 200 ‐‐ ‐‐ MHz IC = 1mA, VCE = 5V NF Narrow Band Noise Figure ‐‐ ‐‐ 3 dB IC = 100µA, VCE = 5V, BW=200Hz, RG= 10KΩ, f = 1KHz Notes: 1. Absolute Maximum ratings are limiting values above which serviceability may be impaired 2. The reverse base‐to‐emitter voltage must never exceed 6.2 volts; the reverse base‐to‐emitter current must never exceed 10µA. LS318 MONOLITHIC DUAL NPN TRANSISTOR LS318 Features: Tight matching Low Output Capacitance The LS318 is a monolithic pair of NPN transistors mounted in a single SOT-23 package. The monolithic dual chip design reduces parasitics and is ideal for use in logging applications. See LS358 for PNP. The 6 Pin SOT-23 provides ease of manufacturing, and a lower cost assembly option. (See Packaging Information). Linear Systems Log Conformance Monolithic Dual NPN Available Packages: LS318 in SOT-23 LS318 available as bare die Please contact Micross for full package and die dimensions: Email: chipcomponents@micross.com Web: www.micross.com/distribution.aspx SOT-23 (Top View) |
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