Siemens BAT 114-099R Data Sheet
Summary
The BAT114-099R is a high-barrier quad Schottky diode designed for demanding RF applications such as double balanced mixers, phase detectors, and modulators. This technical manual provides essential specifications, including detailed maximum ratings, thermal resistance data, and comprehensive electrical characteristics. It details the device's performance across various currents (I<0xE2><0x82><0x90>) and temperatures, ensuring optimal integration into high-frequency electronic designs. This resource is critical for electronics engineers and designers requiring precision components for advanced RF circuit development.
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Silicon Crossover Ring Quad Schottky Diode BAT 114-099R
Features High barrier diode for double balanced mixers, phase detectors and modulators
ESD: Electro Static Discharge sensitive device, observe handling precautions!
Type Marking Ordering Code Pin Configuration Package1)
(taped)
BAT 114-099R 14s Q62702-A1006 SOT-143
1) Dimensions see chapter Package Outlines
Maximum Ratings (per diode) Parameter Symbol Limit Values Unit Forward current IF m A Operation temperature − 55 to + 150 °C Storage temperature Tstg − 55 to + 150 °C Power dissipation, TS ≤ 70 °C Ptot m W
Semiconductor Group 02.96
Page Summary Contents For Siemens BAT 114-099R Data Sheet
Manual Details
| Brand | Siemens |
|---|---|
| Pages | 3 |
| File Size | 48.00 KB |
| Published | June 02, 2026 |
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Frequently Asked Questions
What operating temperature range can the BAT114-099R handle?
The diode operates from -55 to +150 °C and is specified for storage up to the same range.
How much power dissipation is allowed for the diode?
Maximum power dissipation P must be 100 mW, provided the case temperature (T) does not exceed 70 °C.
What precautions should be taken when handling this component?
Since it is an ESD sensitive device, observe appropriate handling precautions.
What is the forward voltage at various current levels?
At a forward current (I) of 1 mA, the typical forward voltage (V_F) is -0.58 V; at 10 mA, it is -0.68 V.