iii. system organisation for hand gesture recognition
... VI for Hand gesture recognition system First of all a VISA serial configure Port is created which initializes the serial port specified by VISA resource name to the specified settings. Visa resource name specifies the resource to be opened. The Visa resource named “Communication Port” here specifies ...
... VI for Hand gesture recognition system First of all a VISA serial configure Port is created which initializes the serial port specified by VISA resource name to the specified settings. Visa resource name specifies the resource to be opened. The Visa resource named “Communication Port” here specifies ...
LT1031 - Precision 10 Volt Reference
... Note 2: Output voltage is measured immediately after turn-on. Changes due to chip warm-up are typically less than 0.005%. Note 3: Temperature coefficient is measured by dividing the change in output voltage over the temperature range by the change in temperature. Separate tests are done for hot and ...
... Note 2: Output voltage is measured immediately after turn-on. Changes due to chip warm-up are typically less than 0.005%. Note 3: Temperature coefficient is measured by dividing the change in output voltage over the temperature range by the change in temperature. Separate tests are done for hot and ...
DU-35CL 4-20mA Process Loop 3 1/2 Digit with 0.56” LEDs
... Span input to produce the desired Digital Display Span output. Signal Span is defined as the total change of signal input that would be required for a specific change of the Digital Display. The largest Signal Span that can be specified with a 4 to 20mA input is 16mA. A 4mA Signal Span proportionate ...
... Span input to produce the desired Digital Display Span output. Signal Span is defined as the total change of signal input that would be required for a specific change of the Digital Display. The largest Signal Span that can be specified with a 4 to 20mA input is 16mA. A 4mA Signal Span proportionate ...
12V or Adjustable, High-Efficiency, Low I , Step-Up DC-DC Controller Q
... high switching frequency (up to 300kHz) allows surface-mount magnetics of 5mm height and 9mm diameter. It accepts input voltages from 2V to 16.5V. The output voltage is preset at 12V, or can be adjusted using two resistors. The MAX1771 optimizes efficiency at low input voltages and reduces noise by ...
... high switching frequency (up to 300kHz) allows surface-mount magnetics of 5mm height and 9mm diameter. It accepts input voltages from 2V to 16.5V. The output voltage is preset at 12V, or can be adjusted using two resistors. The MAX1771 optimizes efficiency at low input voltages and reduces noise by ...
Low voltage CMOS single 2-input or gate with 5V tolerant input
... power and low noise applications. The internal circuit is composed of 3 stages including buffer ...
... power and low noise applications. The internal circuit is composed of 3 stages including buffer ...
AD9742 数据手册DataSheet 下载
... The AD97421 is a 12-bit resolution, wideband, third generation member of the TxDAC series of high performance, low power CMOS digital-to-analog converters (DACs). The TxDAC family, consisting of pin-compatible 8-, 10-, 12-, and 14-bit DACs, is specifically optimized for the transmit signal path of c ...
... The AD97421 is a 12-bit resolution, wideband, third generation member of the TxDAC series of high performance, low power CMOS digital-to-analog converters (DACs). The TxDAC family, consisting of pin-compatible 8-, 10-, 12-, and 14-bit DACs, is specifically optimized for the transmit signal path of c ...
AD5520: 英文产品数据手册下载
... The AD5520 is a single-channel, per pin parametric measurement unit (PPMU) for use in semiconductor automatic test equipment. The part is also suited for use as a source measurement unit for instrumentation applications. It contains programmable modes to force a pin voltage and measure the correspon ...
... The AD5520 is a single-channel, per pin parametric measurement unit (PPMU) for use in semiconductor automatic test equipment. The part is also suited for use as a source measurement unit for instrumentation applications. It contains programmable modes to force a pin voltage and measure the correspon ...
Delphi Series E48SH, 120W Eighth Brick Family DC/DC Power
... where the module is used, in combination with the module, to ensure that under a single fault, hazardous voltage does not appear at the module’s output. ...
... where the module is used, in combination with the module, to ensure that under a single fault, hazardous voltage does not appear at the module’s output. ...
MAX4173TESA
... Recommended Component Values The MAX4173 senses a wide variety of currents with different sense resistor values. Table 1 lists common resistor values for typical operation of the MAX4173. Choosing RSENSE To measure lower currents more accurately, use a high value for RSENSE . The high value develops ...
... Recommended Component Values The MAX4173 senses a wide variety of currents with different sense resistor values. Table 1 lists common resistor values for typical operation of the MAX4173. Choosing RSENSE To measure lower currents more accurately, use a high value for RSENSE . The high value develops ...
Features •
... Conversion to the ATU18 series of ULC provides a significant reduction of the operating power when compared to the original PLD or FPGA. The ATU18 series has a very low standby consumption, less than 0.145 nA/gate typically at commercial temperature. Operating consumption is a strict function of clo ...
... Conversion to the ATU18 series of ULC provides a significant reduction of the operating power when compared to the original PLD or FPGA. The ATU18 series has a very low standby consumption, less than 0.145 nA/gate typically at commercial temperature. Operating consumption is a strict function of clo ...
Single Output , 0.8-3.3V 10 Amp DC/DC’s in SMT Packages
... As a rule of thumb however, we recommend to use a normal-blow or slowblow fuse with a typical value of about twice the maximum input current, calculated at low line with the converters minimum efficiency. ...
... As a rule of thumb however, we recommend to use a normal-blow or slowblow fuse with a typical value of about twice the maximum input current, calculated at low line with the converters minimum efficiency. ...
AD8065 AnaDev, SOT-23 145MHz RRIO.pdf
... 0.6 fA/√Hz (f = 10 kHz) Wide supply voltage range: 5 V to 24 V Single-supply and rail-to-rail output Low offset voltage 1.5 mV max High common-mode rejection ratio: −100 dB ...
... 0.6 fA/√Hz (f = 10 kHz) Wide supply voltage range: 5 V to 24 V Single-supply and rail-to-rail output Low offset voltage 1.5 mV max High common-mode rejection ratio: −100 dB ...
TLV27L1 TLV27L2 FAMILY OF MICROPOWER RAIL-TO-RAIL OUTPUT OPERATIONAL AMPLIFIERS
... terminal. As this distance increases, the inductance in the connecting trace makes the capacitor less effective. The designer should strive for distances of less than 0.1 inches between the device power terminals and the ceramic capacitors. ...
... terminal. As this distance increases, the inductance in the connecting trace makes the capacitor less effective. The designer should strive for distances of less than 0.1 inches between the device power terminals and the ceramic capacitors. ...
FEATURES DESCRIPTION D
... Input Voltage Range (Single Supply) . . . . . . . −0.5V to +VS + 0.3V Storage Temperature Range: D, DBV . . . . . . . . . −65°C to +125°C Lead Temperature (soldering, 10s) . . . . . . . . . . . . . . . . . . . . +300°C Junction Temperature (TJ) . . . . . . . . . . . . . . . . . . . . . . . . . . . + ...
... Input Voltage Range (Single Supply) . . . . . . . −0.5V to +VS + 0.3V Storage Temperature Range: D, DBV . . . . . . . . . −65°C to +125°C Lead Temperature (soldering, 10s) . . . . . . . . . . . . . . . . . . . . +300°C Junction Temperature (TJ) . . . . . . . . . . . . . . . . . . . . . . . . . . . + ...
AD7685 数据手册DataSheet下载
... The AD7685 is a 16-bit, charge redistribution successive approximation, analog-to-digital converter (ADC) that operates from a single power supply, VDD, between 2.3 V to 5.5 V. It contains a low power, high speed, 16-bit sampling ADC with no missing codes, an internal conversion clock, and a versati ...
... The AD7685 is a 16-bit, charge redistribution successive approximation, analog-to-digital converter (ADC) that operates from a single power supply, VDD, between 2.3 V to 5.5 V. It contains a low power, high speed, 16-bit sampling ADC with no missing codes, an internal conversion clock, and a versati ...
ADS8201 数据资料 dataSheet 下载
... converter linearity to not meet its stated specifications. To minimize noise, use low bandwidth input signals with low-pass filters. Care should also be taken to ensure that the output impedance of the sources driving the +IN and –IN inputs are matched. If this matching is not observed, the two inpu ...
... converter linearity to not meet its stated specifications. To minimize noise, use low bandwidth input signals with low-pass filters. Care should also be taken to ensure that the output impedance of the sources driving the +IN and –IN inputs are matched. If this matching is not observed, the two inpu ...
An Excessive Current Subtraction Technique to Improve
... which go into the input node of charge amplifier. The value of subtraction current is same with current when touch screen is not touched. As a result, charge amplifier output is only proportional to variation of mutual capacitor, which make dynamic rage is increased. Also, Transmitter (Tx) driving s ...
... which go into the input node of charge amplifier. The value of subtraction current is same with current when touch screen is not touched. As a result, charge amplifier output is only proportional to variation of mutual capacitor, which make dynamic rage is increased. Also, Transmitter (Tx) driving s ...
Analog-to-digital converter
An analog-to-digital converter (ADC, A/D, or A to D) is a device that converts a continuous physical quantity (usually voltage) to a digital number that represents the quantity's amplitude.The conversion involves quantization of the input, so it necessarily introduces a small amount of error. Furthermore, instead of continuously performing the conversion, an ADC does the conversion periodically, sampling the input. The result is a sequence of digital values that have been converted from a continuous-time and continuous-amplitude analog signal to a discrete-time and discrete-amplitude digital signal.An ADC is defined by its bandwidth (the range of frequencies it can measure) and its signal to noise ratio (how accurately it can measure a signal relative to the noise it introduces). The actual bandwidth of an ADC is characterized primarily by its sampling rate, and to a lesser extent by how it handles errors such as aliasing. The dynamic range of an ADC is influenced by many factors, including the resolution (the number of output levels it can quantize a signal to), linearity and accuracy (how well the quantization levels match the true analog signal) and jitter (small timing errors that introduce additional noise). The dynamic range of an ADC is often summarized in terms of its effective number of bits (ENOB), the number of bits of each measure it returns that are on average not noise. An ideal ADC has an ENOB equal to its resolution. ADCs are chosen to match the bandwidth and required signal to noise ratio of the signal to be quantized. If an ADC operates at a sampling rate greater than twice the bandwidth of the signal, then perfect reconstruction is possible given an ideal ADC and neglecting quantization error. The presence of quantization error limits the dynamic range of even an ideal ADC, however, if the dynamic range of the ADC exceeds that of the input signal, its effects may be neglected resulting in an essentially perfect digital representation of the input signal.An ADC may also provide an isolated measurement such as an electronic device that converts an input analog voltage or current to a digital number proportional to the magnitude of the voltage or current. However, some non-electronic or only partially electronic devices, such as rotary encoders, can also be considered ADCs. The digital output may use different coding schemes. Typically the digital output will be a two's complement binary number that is proportional to the input, but there are other possibilities. An encoder, for example, might output a Gray code.The inverse operation is performed by a digital-to-analog converter (DAC).