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MODE Datasheet, PDF

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Searched Keyword : 'MODE' - Total: 54 (1/3) Pages
ManufacturerPart #DatasheetDescription
Company Logo Img
ATMEL Corporation
AT25F4096 Datasheet pdf image
358Kb/19P
Byte Mode and 256-byte Page Mode for Program Operations
TS80C251G2D Datasheet pdf image
58Kb/3P
Power-down Mode Current Out of Specification in ROMless Mode
AT25F1024A Datasheet pdf image
623Kb/20P
Byte Mode and 256-byte Page Mode for Program Operations
TS83C251G2D Datasheet pdf image
58Kb/3P
Power-down Mode Current Out of Specification in ROMless Mode
AT25F512 Datasheet pdf image
268Kb/18P
Byte Mode and 256-byte Page Mode for Program Operations
AT25F1024 Datasheet pdf image
268Kb/18P
Byte Mode and 256-byte Page Mode for Program Operations
TS87C251G2D Datasheet pdf image
58Kb/3P
Power-down Mode Current Out of Specification in ROMless Mode
AT25F2048 Datasheet pdf image
495Kb/19P
Byte Mode and 256-byte Page Mode for Program Operations
AT42QT5320 Datasheet pdf image
115Kb/8P
Patented charge-transfer (transverse mode)
AT89C5130A-M Datasheet pdf image
1Mb/188P
Maximum Core Frequency 48 MHz in X1 Mode, 24 MHz in X2 Mode
AT42QT5480 Datasheet pdf image
235Kb/10P
Patented charge-transfer (transverse mode)
AT89C5131A-L Datasheet pdf image
1Mb/186P
Maximum Core Frequency 48 MHz in X1 Mode, 24 MHz in X2 Mode
AT89C5131A-M Datasheet pdf image
1Mb/188P
Maximum Core Frequency 48 MHz in X1 Mode, 24 MHz in X2 Mode
AO4603 Datasheet pdf image
144Kb/7P
Complementary Enhancement Mode Field Effect Transistor
AT91RM9200 Datasheet pdf image
9Mb/701P
Low Power: On VDDCORE 24.4 mA in Normal Mode, 520 關A in Standby Mode
AT88SC0104C Datasheet pdf image
1Mb/58P
CryptoMemory Specification For Standard Mode of Operation
AT42QT4120 Datasheet pdf image
99Kb/6P
Patented spread-spectrum charge-transfer (transverse mode)
ATA6612 Datasheet pdf image
6Mb/364P
Very Low Current Consumption in Sleep Mode
TSS901E Datasheet pdf image
442Kb/31P
Little or big endian mode is configurable
T89C51RC2 Datasheet pdf image
50Kb/3P
SBV and BSB Protection in ISP Mode

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What is MODE


Mode is a term that has many uses in electronic components.

Different modes exist depending on how the electronic component works.

For example, here is a description of the modes of some electronic components.

Modes of a Bipolar Junction Transistor (BJT): BJTs generally operate in three modes: active mode, saturation mode, and blocking mode.

In aggressive mode, a voltage is applied across the base-collector combination and current flows, while in saturation mode, a near-maximum voltage is applied across the base-collector combination, resulting in maximum current.

In shutdown mode, very little voltage is applied across the primary-collector coupling, so no current flows.

Modes of a Metal-Oxide-Semiconductor Field-Effect Transistor (MOSFET): MOSFETs typically operate in three modes: channel decay mode, saturation mode, and shutoff mode.

In channel decay mode, the gate voltage is used to attenuate the channel voltage, and in saturation mode, the gate voltage sufficiently expands the channel to allow current to flow.

In blocking mode, the gate voltage prevents any current from flowing through the channel.

Modes of Light-Emitting Diodes (LEDs): LEDs normally operate in an aggressive mode, emitting light when a voltage is applied.

In electronic components, mode is one of the important terms to describe how that component works.

*This information is for general informational purposes only, we will not be liable for any loss or damage caused by the above information.


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