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Supplier: Hamamatsu Corporation USA
Description: The S11638 is a CMOS linear image sensor that achieves high sensitivity by adding an amplifier to each pixel. It has a long photosensitive area (effective photosensitive area length: 28.672 mm) consisting of 2048 pixels, each with a pixel size of 14 Ã-14
- Array Type: Linear Array
Supplier: American Microsemiconductor, Inc.
Description: Amplifiers: Wideband: UHF & VHF
- Package Type: Other
- Device Type: Video / Wideband Amplifiers
Supplier: Shinyei Corporation of America
Description: The D3RF is a high performace digital fiber amplifier.
Description: Current, Not Rail to Rail, ic power operational amplifier chips
- Package Type: SOIC
- RoHS Compliant: Yes
- Device Type: Operational Amplifiers, Power Operational Amplifiers
Supplier: TMP Pro Distribution
Description: M-Class amplifiers offer three modes of operation: Stereo (4-ohm), 70V Mono, and Dual Mono (4-ohm). Mono mode turns the input section into a 2 channel mixer. Two modular bays are provided for optional input types. Also features selectable LF roll-off, insert connections, Sleep Mode, clip limiting
- Type: Amplifier
Supplier: Visual Sound, Inc.
Description: Electro-Voice The Electro-Voice® PA2250T is from the PA series of professional commercial audio amplifiers. The direct-path airflow design significantly reduces heat buildup and allows for more reliable operation in slim, two-rack space chassis. The superior audio performance of the PA2250T
Supplier: Solid Signal
Description: PCTs miniature MA2 drop amplifier series has improved performance and ultra-low noise amplification of broadband signals for subscriber drop installations.The MA2 series provides better performance, enhanced shielding protection, and IEEE B3 6kV, 3000 amp combination wave surge withstand on all
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PERFORMANCE CONTROLS, INC.®
Custom MRI Gradient Power Amplifiers
Gradient Amplifiers provide power to generate the variable (gradient) magnetic field component for the MRI process. The fidelity, repeatability, stability and bandwidth of the gradient amplifier, along with power available are key parameters affecting the quality of the MRI image. Here are some key points about PCI gradient amplifiers and related services. Certified to meet UL-60601 and EN-60601 -1 -2 safety standards. Operating voltages are among the highest available for gradient amplifier... (read more)
Browse Power Amplifiers Datasheets for PERFORMANCE CONTROLS, INC.®
PI (Physik Instrumente) L.P.
Piezo Mirror Controller Image Resolution Enhancing
piezo drives. They are used to steer or stabilize beams or enhance image resolution. Applications range from optical commumication, astronomy and super-resolution microscopy to nano-lithography. More on Steering Mirrors. Tripod and Quadra-Pod Differential Drive Versions. The controllers can drive parallel-kinematics (highest performance mechanics, where all piezo actuators are connected to the same moving platform) steering mirror designs. With the tripod design (for S-325 Z/Tip/Tilt mirrors... (read more)
Browse Datasheets for PI (Physik Instrumente) L.P.
PERFORMANCE CONTROLS, INC.®
MRI Gradient Amplifiers
Gradient Amplifiers provide power to generate the variable (gradient) magnetic field component for the MRI process. The fidelity, repeatability, stability and bandwidth of the gradient amplifier, along with power available are key parameters affecting the quality of the MRI image. Here are some key points about the PERFORMANCE CONTROLS, INC. ® gradient amplifiers and related services. Certified to meet UL-60601 and EN-60601 -1 -2 safety standards. Operating voltages are among the highest... (read more)
Browse Medical Equipment and Supplies Datasheets for PERFORMANCE CONTROLS, INC.®
PERFORMANCE CONTROLS, INC.®
Custom PWM Power Amplifiers
field component for the MRI process. The fidelity, repeatability, stability and bandwidth of the gradient amplifier, along with power available are key parameters affecting the quality of the MRI image. Here are some key points about PCI gradient amplifiers and related services. Certified to meet UL-60601 and EN-60601 -1 -2 safety standards. Operating voltages are among the highest available for gradient amplifier applications: 1000 – 1400 VDC, 600 A peak (600 – 840 kVA); 400 –... (read more)
Browse Servo Drives Datasheets for PERFORMANCE CONTROLS, INC.®
Conduct Research Top
Four Keys to Maximixing Digital Image Capture
Area cameras are often used to capture images of stationary objects or objects that move in more than one dimension. The image is provided to the camera as a series of lines composing a frame, and the camera generates a separate signal indicating the start and end of the frame. Common applications
A CMOS Active Pixel Image Sensor with In-pixel CDS for High-Speed Cameras (.pdf)
This paper presents a high-speed CMOS image sensor whose frame rate exceeds 2000 frames/s. The pixel includes a photodiode, a charge-transfer amplifier, and circuitry for correlated double sampling (CDS) and global electronic shuttering. Reset noise, which is a major random noise factor, is reduced
Medical Device Link .
of the amplifier, responding to even very modest signals. Figure 2. High-frequency resonances in amplifier circuits result in an out-of-band response. (click image to enlarge). Low-level amplifiers are also susceptible to rectification. All amplifiers have some degree of nonlinearity, usually
Design and Development of Medical Electronic Instrumentation
is not available in Image not available for. Color: Image not available. To view this video download Flash Player. See 1 customer image Share your own customer images Search inside this book. Buy New OOOOOO OOOO OOOOO $132.72 Quantity: 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18
View to the Future: CCD and CMOS Sensors Today and Tomorrow
Digital image sensors are well established in private and professional applications. But which sensor type works best, CCD or CMOS? This question enlightens passionate discussions. A more detailed analysis reveals that these sensors share many common characteristics. Both CMOS and CCD can
Phase Conjugate Laser Optics - Preface
of the Month. Phase Conjugate Laser Optics and over one million other books are available for Amazon Kindle. Learn more. Sorry, this item is not available in Image not available for. Color: Image not available. To view this video download Flash Player. Share your own customer images
Technical Article: Understanding Mismatch Effects In Power Combining Circuits (.pdf)
These guidelines help to analyze the real-world effects of amplitude and phase variations when combining signals in power amplifiers and image-rejection mixers.
Development and Application of a MHz Frame Rate
measurements are not simultaneously available with high accuracy due to the combined constraints imposed by high sensitivity digital image sensors and limited pulse repetition rates of solid-state lasers, respectively. In this work we describe the development of a MHz repetition rate, high resolution
Engineering Web Search: Image Amplifier Top
Superheterodyne receiver - Wikipedia, the free encyclopedia
Â Â (Redirected from Image frequency) Jump to: navigation, search 2.3 Intermediate frequency amplifier 2.4 Bandpass filter
Image noise - Wikipedia, the free encyclopedia
The standard model of amplifier noise is additive, Gaussian, independent at each pixel and independent of the signal intensity, caused primarily by
TOSHIBA Semiconductor & Storage Products Company
CMOS Area Image Sensors Linear Image Sensors Shock Sensor Amplifier ICs Communications Equipment ICs
Low FPN High Gain Capacitive Transimpedance Amplifier for Low...
Low FPN High Gain Capacitive Transimpedance Amplifier for Low Noise CMOS Image Sensors
Image Sensors Reference Materials
Home > Technical Library > Imaging and Video Equipment > Image Sensors
The single nanotube serves, at once, as all major components of a radio: antenna, tuner, amplifier, and demodulator.
And it is not limited to SPM at all, it provides generic multidimensional image and data movie processing.
APPLICATION NOTE Revision 2.0 MTD/PS-0890 March 4, 2010 KODAK SOLID STATE IMAGE SENSORS TERMINOLOGY TABLE OF CONTENTS Introduction