
Catalog - All Pages | Nexxus Lighting
... to have instant access to pre-assigned scenes, each scene having a limit of 1000 different steps.In addition to the eight assigned scenes, there are 247 other scenes available for playback. These then are accessible through the next/ previous buttons, or can be set to run sequentially with an accura ...
... to have instant access to pre-assigned scenes, each scene having a limit of 1000 different steps.In addition to the eight assigned scenes, there are 247 other scenes available for playback. These then are accessible through the next/ previous buttons, or can be set to run sequentially with an accura ...
LTC5592 - Dual 1.6GHz to 2.7GHz High Dynamic Range
... The LTC®5592 is part of a family of dual-channel high dynamic range, high gain downconverting mixers covering the 600MHz to 4.5GHz RF frequency range. The LTC5592 is optimized for 1.6GHz to 2.7GHz RF applications. The LO frequency must fall within the 1.5GHz to 2.5GHz range for optimum performance. ...
... The LTC®5592 is part of a family of dual-channel high dynamic range, high gain downconverting mixers covering the 600MHz to 4.5GHz RF frequency range. The LTC5592 is optimized for 1.6GHz to 2.7GHz RF applications. The LO frequency must fall within the 1.5GHz to 2.5GHz range for optimum performance. ...
Page: 1 User`s Manual Page: 1 VERSION 1.1.07.02.2012
... Added IP Octet changes; Added IP recommended address; Added FAQ page; added Wire Gage Charts ...
... Added IP Octet changes; Added IP recommended address; Added FAQ page; added Wire Gage Charts ...
User`s Manual - Metaphase Technologies
... Added IP Octet changes; Added IP recommended address; Added FAQ page; added Wire Gage Charts ...
... Added IP Octet changes; Added IP recommended address; Added FAQ page; added Wire Gage Charts ...
Two-Electrode Spark Gap Preamble
... before the voltage limit is no longer reached; the compromise between life and discharge ratings can be varied over a wide range for any given type. ...
... before the voltage limit is no longer reached; the compromise between life and discharge ratings can be varied over a wide range for any given type. ...
9.6V, 1600mAh Ni-MH Battery Pack and Charger
... Selecting a robot platform on which to implement the circuitry and components is necessary for a successful project. The base will have to accommodate the implementation of the different subsystems. Sensor mounting should be relatively easy to install on the platform. The PCB or breadboard must fit ...
... Selecting a robot platform on which to implement the circuitry and components is necessary for a successful project. The base will have to accommodate the implementation of the different subsystems. Sensor mounting should be relatively easy to install on the platform. The PCB or breadboard must fit ...
DESCRIPTION FEATURES ULTRA-PRECISION DIFFERENTIAL
... The information furnished by Micrel in this data sheet is believed to be accurate and reliable. However, no responsibility is assumed by Micrel for its use. Micrel reserves the right to change circuitry and specifications at any time without notification to the customer. Micrel Products are not desi ...
... The information furnished by Micrel in this data sheet is believed to be accurate and reliable. However, no responsibility is assumed by Micrel for its use. Micrel reserves the right to change circuitry and specifications at any time without notification to the customer. Micrel Products are not desi ...
BDTIC www.BDTIC.com/infineon XMC – 32-bit Industrial Microcontrollers One Microcontroller Platform. Countless Solutions.
... XMC family members, based on common peripherals and architectures. This enables countless scalable solutions. For all XMC family members, the free-of-charge development environment DAVE™ greatly supports the software development process. This unique and revolutionary software platform simplifies and ...
... XMC family members, based on common peripherals and architectures. This enables countless scalable solutions. For all XMC family members, the free-of-charge development environment DAVE™ greatly supports the software development process. This unique and revolutionary software platform simplifies and ...
section 16
... incorporating true pump control system logic, and pump terminology embedded within the controller and displayed on the programming operator interface. iQpump shall have a complete integrated pumping macro with its pump specific parameters allowing the operator to setup specific control values for a ...
... incorporating true pump control system logic, and pump terminology embedded within the controller and displayed on the programming operator interface. iQpump shall have a complete integrated pumping macro with its pump specific parameters allowing the operator to setup specific control values for a ...
Lecture 18
... • A nonideal return path will slow the edge rate by filtering out high-frequency components • If the current divergence path is long enough, a nonideal return path will cause signal integrity problems at the receiver • Nonideal return paths will increase current loop area and exacerbate EMI • Nonide ...
... • A nonideal return path will slow the edge rate by filtering out high-frequency components • If the current divergence path is long enough, a nonideal return path will cause signal integrity problems at the receiver • Nonideal return paths will increase current loop area and exacerbate EMI • Nonide ...
Calibration of the Tektronix TDS 2014 Digital Oscilloscope
... 8-bit ADC resolution and four separate input channels. The oscilloscope has ten horizontal divisions along the y-axis and ten vertical divisions along the x-axis. Note that only eight of the ten horizontal divisions are visible on the display. The oscilloscope has a vertical position setting which a ...
... 8-bit ADC resolution and four separate input channels. The oscilloscope has ten horizontal divisions along the y-axis and ten vertical divisions along the x-axis. Note that only eight of the ten horizontal divisions are visible on the display. The oscilloscope has a vertical position setting which a ...
Effect of Series Active Voltage Conditioners on Modernized Grid
... is derived accordingly. Operation of AVC is characterized by very fast response (around half a cycle) compared with other voltage regulation techniques e.g. OLTCs (up to 10 minutes) which enables them to act during short time transient voltage abnormalities. Remote system faults, motor starting, loa ...
... is derived accordingly. Operation of AVC is characterized by very fast response (around half a cycle) compared with other voltage regulation techniques e.g. OLTCs (up to 10 minutes) which enables them to act during short time transient voltage abnormalities. Remote system faults, motor starting, loa ...
RF2367
... turns off the Part. Lower threshold for device operation is approximately 1.2V. External RF bypassing is required. The trace length between the pin and the bypass capacitors should be minimized. The ground side of the bypass capacitors should connect immediately to ground plane. Nominal current for ...
... turns off the Part. Lower threshold for device operation is approximately 1.2V. External RF bypassing is required. The trace length between the pin and the bypass capacitors should be minimized. The ground side of the bypass capacitors should connect immediately to ground plane. Nominal current for ...
MAX5550 Dual, 10-Bit, Programmable, 30mA High-Output-Current DAC General Description
... for PIN diode biasing applications. Outputs can also be paralleled for high-current applications (up to 60mA typ). Operating from a single +2.7V to +5.25V supply, the MAX5550 typically consumes 1.5mA per DAC in normal operation and less than 1µA (max) in shutdown mode. The MAX5550 also features low ...
... for PIN diode biasing applications. Outputs can also be paralleled for high-current applications (up to 60mA typ). Operating from a single +2.7V to +5.25V supply, the MAX5550 typically consumes 1.5mA per DAC in normal operation and less than 1µA (max) in shutdown mode. The MAX5550 also features low ...
Pulse-width modulation
Pulse-width modulation (PWM), or pulse-duration modulation (PDM), is a modulation technique used to encode a message into a pulsing signal. Although this modulation technique can be used to encode information for transmission, its main use is to allow the control of the power supplied to electrical devices, especially to inertial loads such as motors. In addition, PWM is one of the two principal algorithms used in photovoltaic solar battery chargers, the other being MPPT.The average value of voltage (and current) fed to the load is controlled by turning the switch between supply and load on and off at a fast rate. The longer the switch is on compared to the off periods, the higher the total power supplied to the load.The PWM switching frequency has to be much higher than what would affect the load (the device that uses the power), which is to say that the resultant waveform perceived by the load must be as smooth as possible. Typically switching has to be done several times a minute in an electric stove, 120 Hz in a lamp dimmer, from few kilohertz (kHz) to tens of kHz for a motor drive and well into the tens or hundreds of kHz in audio amplifiers and computer power supplies.The term duty cycle describes the proportion of 'on' time to the regular interval or 'period' of time; a low duty cycle corresponds to low power, because the power is off for most of the time. Duty cycle is expressed in percent, 100% being fully on.The main advantage of PWM is that power loss in the switching devices is very low. When a switch is off there is practically no current, and when it is on and power is being transferred to the load, there is almost no voltage drop across the switch. Power loss, being the product of voltage and current, is thus in both cases close to zero. PWM also works well with digital controls, which, because of their on/off nature, can easily set the needed duty cycle.PWM has also been used in certain communication systems where its duty cycle has been used to convey information over a communications channel.