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Supplier: Richardson RFPD
Description: The PE128300 is dual-channel TDD up-down converter designed for 5G FR2 n257, n258 and n261 frequency bands. In transmit mode, the input to a channel is applied to IF_I and IF_Q 50 Ohm impedance ports. The signal passes through circuits which adjust the relative amplitude and phase of
- Input Frequency Range: 24,250 to 29,500 MHz
- Features: Other, Upconverter / Downconverter
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Supplier: Renesas Electronics Corporation
Description: mixers, a quadrature carrier NCO, digital filters, a resampling filter, a Cartesian-to-polar coordinate converter and an AGC loop.brbr The HSP50216 accepts four channels of 16-bit real digitized IF samples which are mixed with local quadrature sinusoids. Each channel carrier NCO
- Features: Downconverter
- Form Factor: IC Chip
- Applications: Mobile / Wireless Systems
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Supplier: HydroLynx Systems, Inc.
Description: The Model 5096QI Quadrature Interface translates quadrature encoder outputs into the standard Model 5096 data transmitter digital port input Form “C” increments and down/up status lines. Designed to operate at very low current, the Model 5096QI draws less than 300 mA (typical)
- Inputs: Encoder Input
- Features: Encoder and Resolver Signal Conditioners, Other, Other Output
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Supplier: Laurel Electronics LLC
Description: units, such as ft, cm or degrees. The A & B quadrature signals are 90° out of phase, and their phase relationship determines whether up counts (+) or down counts (-) are counted. The meter totalizes the counts and then scales the total in software for display and control. A zero index
- Number of Digits: 6
- Voltage Range: 2.5 to 10 volts
- Width: 118.872 mm
- Height: 62.23 mm
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Supplier: Laurel Electronics LLC
Description: quadrature accepts A & B quadrature encoder signals to provide an analog output that tracks position, length, angle, or rate. The A & B quadrature signals are 90° out of phase, and their phase relationship determines whether up counts (+) or down counts (-) are produced.
- Operating Temperature: -40 to 158 F
- Direction: Bi-directional Counter
- Output / Interface: Current, Ethernet, Voltage
- Mounting: DIN Rail Mount
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Supplier: Laurel Electronics LLC
Description: and RS232/RS485 output transmitter for quadrature accepts A & B quadrature encoder signals to provide an analog output that tracks position, length, angle, or rate. The A & B quadrature signals are 90° out of phase, and their phase relationship determines whether up counts (+)
- Operating Temperature: -40 to 158 F
- Direction: Bi-directional Counter
- Output / Interface: Current, Serial, Voltage
- Mounting: DIN Rail Mount
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Supplier: Renesas Electronics Corporation
Description: to Polar coordinate conversion.brbr The 14-bit sampled IF input is down converted to baseband by digital mixers and a quadrature NCO, as shown in the Block Diagram. A decimating (4 to 32) fifth order Cascaded Integrator-Comb (CIC) filter can be applied to the data before it is
- Features: Downconverter
- Form Factor: IC Chip
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Supplier: Richardson RFPD
Description: baseband. Other auxiliary functions such as analog-to-digital converters (ADCs), digital-to-analog converters (DACs), and general-purpose input/outputs (GPIOs) that provide an array of digital control options are also integrated. The ADRV9026 is powered directly from 1.0 V, 1.3 V, and
- Package Type: BGA
- Features: Other
- Device Type: Transceiver
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Supplier: Allied Electronics, Inc.
Description: 600 Series Encoder, 30 Ma Current Rating, 5 VDC (Nom.) Voltage Rating The series 600 controls are manually operated, rotary, optical encoders that output two square waves in quadrature at a rate of 128 pulses per channel per revolution as a standard with other resolutions down to 60
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Supplier: Microchip Technology, Inc.
Description: Module with Complementary or Independent Output modes Edge and Center Aligned modes Multiple duty cycle generators Dedicated time base with 4 modes Programmable output polarity Dead time control for Complementary mode Manual output control Trigger for synchronized A/D conversions Quadrature
- Clock Speed: 120 MHz
- Internal RAM Size: 2 KB
- Internal ROM Size: 48 KB
- Number of Timers: 5
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Supplier: Microchip Technology, Inc.
Description: resolution (@ 40 MIPS) = 39.1 kHz for Edge-Aligned mode, 19.55 kHz for Center-Aligned mode Quadrature Encoder Interface module: - Phase A, Phase B and index pulse input - 16-bit up/down position counter - Count direction status - Position Measurement (x2 and x4) mode - Programmable
- Clock Speed: 80 MHz
- Internal RAM Size: 8 KB
- Internal ROM Size: 64 KB
- Number of Timers: 9
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Supplier: Microchip Technology, Inc.
Description: Center-Aligned mode PWM frequency for 11-bit resolution (@ 40 MIPS) = 39.1 kHz for Edge-Aligned mode, 19.55 kHz for Center-Aligned mode 2-Quadrature Encoder Interface modules Phase A, Phase B, and index pulse input and 16-bit up/down position counter
- Pin Count: 28
- Clock Speed: 40 MHz
- MIPS: 40
- Operating Temperature: -40 to 150 C
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Supplier: Microchip Technology, Inc.
Description: (@ 40 MIPS) = 39.1 kHz for Edge-Aligned mode, 19.55 kHz for Center-Aligned mode Quadrature Encoder Interface module:- Phase A, Phase B and index pulse input- 16-bit up/down position counter- Count direction status- Position Measurement (x2 and x4) mode- Programmable digital noise
- Clock Speed: 80 MHz
- Internal RAM Size: 16 KB
- Internal ROM Size: 128 KB
- Number of Timers: 9
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Supplier: ValueTronics International, Inc.
Description: ps Resolution) Delay Control 28 Bits Ch 1/Ch 2 Variable Level Digital Data Output Up to 3.7 Vp-pSingle-ended Output into 50 Ω 300 ps Tr/Tf (20 to 80%) at 0 to 1 V Up to 32 M Point Record Length For Longer Data Streams Down to 800 ps Resolution Edge Timing Shift Control Real-time Sequencing
- Minimum Frequency Range: 250 MHz
- Maximum Frequency Range: 250 MHz
- Device Type: Generator
- Generator Type: Signal
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precision external temperature sensor. Timer resources include three general-purpose 16-bit timers and one advanced-control 16-bit timer. Each general-purpose timer can provide input capture, output compare, PWM generation, pulse counting, and quadrature (read more)
Browse Microcontrollers (MCU) Datasheets for ERSAELECTRONICS PTE. LTD.
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Quadrature down converter die photo is shown in Fig. 9.
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The block diagram of the unit is shown in Fig. 6a with the single-channel quadrature down converter in Fig. 6b.
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The quadrature down converter " of the receiver (top) and the quadrature up converter" of the transmitter (bottom) are seen in the middle of Fig. 1.
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Quadrature Down Converter The quadrature down-converter consists of two Gilbert multipliers, buffered by an open collector linearized cross-quad circuit.
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Quadrature down converter with gain and phase imbalance.
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Of course there are two of these filters in the DDC and we still have to account for the two multiplies per input sample in the quadrature down converter .
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