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THS7002CPWPTI/BBN/a10avai70-MHz High-Speed Programmable-Gain Amplifier, Dual
THS7002IPWPTIN/a255avai70-MHz High-Speed Programmable-Gain Amplifier, Dual
THS7002IPWPTI/BBN/a10avai70-MHz High-Speed Programmable-Gain Amplifier, Dual


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THS7002CPWP-THS7002IPWP
70-MHz High-Speed Programmable-Gain Amplifier, Dual
− Accessible Output Pin for External
Filtering
− Voltage Feedback, G min = −1, 2
− 100 MHz Bandwidth (−3 dB)
− 70 MHz Bandwidth (−3 dB)
− 175 V/µs Slew Rate
Wide Supply Range ±4.5 V to ±16 V PowerPAD Package for Enhanced
Thermal Performance


description

The THS7001 (single) and THS7002 (dual) are high-speed programmable-gain amplifiers, ideal for applications
where load impedance can often vary. Each channel on this device consists of a separate low-noise input
preamp and a programmable gain amplifier (PGA). The preamp is a voltage-feedback amplifier offering a low
1.7-nV/√Hz voltage noise with a 100-MHz (−3 dB) bandwidth. The output pin of the preamp is accessible so that
filters can be easily added to the amplifier.
The 3-bit digitally-controlled PGA provides a −22-dB to 20-dB attenuation/gain range with a 6-dB step
resolution. In addition, the PGA provides both high and low output clamp protection to prevent the output signal
from swinging outside the common-mode input range of an analog-to-digital converter. The PGA provides a
wide 70-MHz (−3 dB) bandwidth, which remains relatively constant over the entire gain/attenuation range.
Independent shutdown control is also provided for power conservation and multiplexing. These devices operate
over a wide ±4.5-V to ±16-V supply voltage range.
PREAMP VCC+
PREAMP IN+
PREAMP IN−
PREAMP VCC−
PREAMP
OUT PGA IN− G2G1G0
PGA REFSHDN PGA
VCC+
GNDPGA
VCC−
CLAMP+ (VH)
CLAMP− (VL)
PGA OUT
Figure 1. THS7001 Block Diagram

Please be aware that an important notice concerning availability, standard warranty, and use in critical applications of
Texas Instruments semiconductor products and disclaimers thereto appears at the end of this data sheet.
CAUTION: The THS7001 and THS7002 provides ESD protection circuitry. However, permanent damage can still occur if this
device is subjected to high-energy electrostatic discharges. Proper ESD precautions are recommended to avoid any performance
degradation or loss of functionality.
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