Analog Devices Inc. AD834ARZ-RL
- Part Number:
- AD834ARZ-RL
- Manufacturer:
- Analog Devices Inc.
- Ventron No:
- 3195412-AD834ARZ-RL
- Description:
- IC MULTIPIER WIDEBAND 8SOIC
- Datasheet:
- AD834ARZ-RL
Analog Devices Inc. AD834ARZ-RL technical specifications, attributes, parameters and parts with similar specifications to Analog Devices Inc. AD834ARZ-RL.
- Contact PlatingTin
- MountSurface Mount
- Package / Case8-SOIC (0.154, 3.90mm Width)
- Number of Pins8
- PackagingTape & Reel (TR)
- JESD-609 Codee3
- Part StatusObsolete
- Moisture Sensitivity Level (MSL)1 (Unlimited)
- Number of Terminations8
- ECCN CodeEAR99
- Max Operating Temperature85°C
- Min Operating Temperature-40°C
- SubcategoryAnalog Computational Functions
- TechnologyBIPOLAR
- Terminal PositionDUAL
- Terminal FormGULL WING
- Peak Reflow Temperature (Cel)260
- Supply Voltage5V
- Terminal Pitch1.27mm
- Base Part NumberAD834
- FunctionAnalog Multiplier
- Operating Supply Voltage9V
- Supply Voltage-Max (Vsup)9V
- Power Supplies-5V
- Temperature GradeINDUSTRIAL
- Supply Voltage-Min (Vsup)4V
- Nominal Supply Current35mA
- Number of Bits4
- Bandwidth500MHz
- Neg Supply Voltage-Nom (Vsup)-5V
- Max Frequency500MHz
- High Level Output Current4mA
- Low Level Output Current4mA
- Positive Input Voltage-Max1V
- Negative Input Voltage-Max-1V
- Number of Bits/Stages4-Quadrant
- Height Seated (Max)1.75mm
- Width3.9mm
- Radiation HardeningNo
- RoHS StatusROHS3 Compliant
- Lead FreeContains Lead
AD834ARZ-RL Overview
Packing materials Tape & Reel (TR) are used.Consequently, it is embedded in the 8-SOIC (0.154, 3.90mm Width) package to ensure cost-effectiveness.There is a tendency to use 4-Quadrant bits per stage.A voltage of 5V is used as the supply voltage for this device.This device is supplied with a nominally negative voltage of -5V.An RF signal modulated at 500MHz occupies the frequency range of 500MHz.To prevent signals from reflecting off the end of the transmission line, there are 8 terminations.Electronic parts with a number of similarities can be found under its base part number AD834.It is a type of 8-pin electronic component famous for its high quality and superior performance in the industry.In the subcategory Analog Computational Functions, it belongs to the category of electronic devices.In order to mount it on the PCB, Surface Mount is used.Ideally, the electronic device should operate at a temperature of 85°C.Electronic devices should be operated at a minimum temperature of -40°C.Reflow temperature limit 260 is determined by the component whose tolerance for high temperatures is the lowest.4 bits information can be stored.Depending on the supply voltage 9V, it is capable of operating.In normal operation, the maximum supply voltage is maintained at 9V.For failure prevention, the frequency should not exceed 500MHz.
AD834ARZ-RL Features
Supplied in the 8-SOIC (0.154, 3.90mm Width) package
Bandwidth of 500MHz
Operating supply voltage of 9V
AD834ARZ-RL Applications
There are a lot of Analog Devices Inc. AD834ARZ-RL Analog Multipliers & Dividers applications.
Radiation thermometry transducers
Comparator
pH (acidity)
Automation control systems
Proportional counter tubes
Power transmission
High input resistance broadband
Scintillation detectors
Band-pass filter
High gain DC amplifier
Packing materials Tape & Reel (TR) are used.Consequently, it is embedded in the 8-SOIC (0.154, 3.90mm Width) package to ensure cost-effectiveness.There is a tendency to use 4-Quadrant bits per stage.A voltage of 5V is used as the supply voltage for this device.This device is supplied with a nominally negative voltage of -5V.An RF signal modulated at 500MHz occupies the frequency range of 500MHz.To prevent signals from reflecting off the end of the transmission line, there are 8 terminations.Electronic parts with a number of similarities can be found under its base part number AD834.It is a type of 8-pin electronic component famous for its high quality and superior performance in the industry.In the subcategory Analog Computational Functions, it belongs to the category of electronic devices.In order to mount it on the PCB, Surface Mount is used.Ideally, the electronic device should operate at a temperature of 85°C.Electronic devices should be operated at a minimum temperature of -40°C.Reflow temperature limit 260 is determined by the component whose tolerance for high temperatures is the lowest.4 bits information can be stored.Depending on the supply voltage 9V, it is capable of operating.In normal operation, the maximum supply voltage is maintained at 9V.For failure prevention, the frequency should not exceed 500MHz.
AD834ARZ-RL Features
Supplied in the 8-SOIC (0.154, 3.90mm Width) package
Bandwidth of 500MHz
Operating supply voltage of 9V
AD834ARZ-RL Applications
There are a lot of Analog Devices Inc. AD834ARZ-RL Analog Multipliers & Dividers applications.
Radiation thermometry transducers
Comparator
pH (acidity)
Automation control systems
Proportional counter tubes
Power transmission
High input resistance broadband
Scintillation detectors
Band-pass filter
High gain DC amplifier
AD834ARZ-RL More Descriptions
Analog Multiplier 4-Bit 500MHz 8-Pin SOIC N T/R
Multipliers / Dividers IC 500 MHz Four-Quadrant
The AD834 is a monolithic, laser-trimmed four-quadrant analog multiplier intended for use in high frequency applications, with a transconductance bandwidth (RL = 50 O) in excess of 500 MHz from either of the differential voltage inputs. In multiplier modes, the typical total full-scale error is 0.5%, dependent on the application mode and the external circuitry. Performance is relatively insensitive to temperature and supply variations due to the use of stable biasing based on a band gap reference generator and other design features. To preserve the full bandwidth potential of the high speed bipolar process used to fabricate the AD834, the outputs appear as a differential pair of currents at open collectors. To provide a single-ended ground referenced voltage output, some form of external current-to-voltage conversion is needed. This may take the form of a wideband transformer, balun, or active circuitry such as an op amp. In some applications (such as power measurement), the subsequent signal processing may not need to have high bandwidth. The transfer function is accurately trimmed such that when X = Y = ±1 V, the differential output is ±4 mA. This absolute calibration allows the outputs of two or more AD834 devices to be summed with precisely equal weighting, independent of the accuracy of the load circuit. The AD834J, available in 8-lead PDIP and plastic SOIC packages, is specified over the commercial temperature range of 0°C to 70°C. The AD834A is also available in 8-lead CERDIP and plastic SOIC packages operating over the industrial temperature range of-40°C to 85°C. The AD834SQ/883B, available in an 8-lead CERDIP, operates over the military temperature range of -55°C to 125°C. S-grade chips are also available. Two application notes featuring the AD834 (AN-212 and AN-216) can be found at www.analog.com. For additional applications circuits, consult the AD811 data sheet.
Multipliers / Dividers IC 500 MHz Four-Quadrant
The AD834 is a monolithic, laser-trimmed four-quadrant analog multiplier intended for use in high frequency applications, with a transconductance bandwidth (RL = 50 O) in excess of 500 MHz from either of the differential voltage inputs. In multiplier modes, the typical total full-scale error is 0.5%, dependent on the application mode and the external circuitry. Performance is relatively insensitive to temperature and supply variations due to the use of stable biasing based on a band gap reference generator and other design features. To preserve the full bandwidth potential of the high speed bipolar process used to fabricate the AD834, the outputs appear as a differential pair of currents at open collectors. To provide a single-ended ground referenced voltage output, some form of external current-to-voltage conversion is needed. This may take the form of a wideband transformer, balun, or active circuitry such as an op amp. In some applications (such as power measurement), the subsequent signal processing may not need to have high bandwidth. The transfer function is accurately trimmed such that when X = Y = ±1 V, the differential output is ±4 mA. This absolute calibration allows the outputs of two or more AD834 devices to be summed with precisely equal weighting, independent of the accuracy of the load circuit. The AD834J, available in 8-lead PDIP and plastic SOIC packages, is specified over the commercial temperature range of 0°C to 70°C. The AD834A is also available in 8-lead CERDIP and plastic SOIC packages operating over the industrial temperature range of-40°C to 85°C. The AD834SQ/883B, available in an 8-lead CERDIP, operates over the military temperature range of -55°C to 125°C. S-grade chips are also available. Two application notes featuring the AD834 (AN-212 and AN-216) can be found at www.analog.com. For additional applications circuits, consult the AD811 data sheet.
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