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ZSSC4151AE2W
Integrated Device Technology Inc
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1 | VFQFPN-24, Reel | ZSSC4151AE2W |
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ZSSC4169DE4W
Renesas Electronics
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1 | The ZSSC4169 is a member of IDT's ZSSC416x family of CMOS integrated circuits for highly accurate amplification and sensor-specific correction of differential bridge sensor signals. Featuring a maximum pre-amplification in the range of 150 to 200, the ZSSC4169 is adjustable to nearly all resistive bridges as well as voltage source sensor types. Digital compensation of offset, sensitivity, temperature drift, and nonlinearity is accomplished with a 16-bit RISC microcontroller. Calibration coefficients and con | ZSSC4169DE4W |
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ZSSC4151CE1D
Renesas Electronics
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1 | The ZSSC4151 is a CMOS integrated circuit for highly accurate amplification and sensor-specific correction of resistive bridge sensor signals. Digital compensation of sensor offset, sensitivity, temperature drift, and non-linearity is accomplished via an internal 16-bit RISC microcontroller running a correction algorithm, with calibration coefficients stored in an integrated EEPROM. The ZSSC4151 is adjustable to nearly all resistive bridge sensor types. Measured values are provided at the analog voltage out | ZSSC4151CE1D |
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ZSSC4169DE1B
Renesas Electronics
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1 | The ZSSC4169 is a member of IDT's ZSSC416x family of CMOS integrated circuits for highly accurate amplification and sensor-specific correction of differential bridge sensor signals. Featuring a maximum pre-amplification in the range of 150 to 200, the ZSSC4169 is adjustable to nearly all resistive bridges as well as voltage source sensor types. Digital compensation of offset, sensitivity, temperature drift, and nonlinearity is accomplished with a 16-bit RISC microcontroller. Calibration coefficients and con | ZSSC4169DE1B |
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ZSSC4162BE2R
Renesas Electronics
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1 | The ZSSC4162 is a member of IDT's ZSSC416x family of CMOS integrated circuits for highly accurate amplification and sensor-specific correction of differential bridge sensor signals. The ZSSC4162 is designed for single full or half bridge sensor signals and features extended temperature measurement options. With a maximum analog pre-amplification in the range of 150 to 200, this product is adjustable to nearly all resistive bridges. Digital compensation of offset, sensitivity, temperature drift, and nonlinea | ZSSC4162BE2R |
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ZSSC4171BE2
Integrated Device Technology Inc
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1 | Analog Circuit, 1 Func, CMOS, QFN-24 | ZSSC4171BE2 |
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ZSSC4151
Integrated Device Technology Inc
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1 | Analog Circuit | ZSSC4151 |
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ZSSC4175DE4R
Integrated Device Technology Inc
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1 | VFQFPN-24, Reel | ZSSC4175DE4R |
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ZSSC4151CE1D
Integrated Device Technology Inc
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1 | WAFER-0, WFP | ZSSC4151CE1D |
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ZSSC4151CE5R
Renesas Electronics
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1 | The ZSSC4151 is a CMOS integrated circuit for highly accurate amplification and sensor-specific correction of resistive bridge sensor signals. Digital compensation of sensor offset, sensitivity, temperature drift, and non-linearity is accomplished via an internal 16-bit RISC microcontroller running a correction algorithm, with calibration coefficients stored in an integrated EEPROM. The ZSSC4151 is adjustable to nearly all resistive bridge sensor types. Measured values are provided at the analog voltage out | ZSSC4151CE5R |
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ZSSC4165BE2R
Renesas Electronics
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1 | The ZSSC4165 is a member of Renesas' family of CMOS integrated circuits for highly accurate amplification and sensor-specific correction of differential bridge sensor element signals.Featuring a maximum analog pre-amplification of up to 200, the ZSSC4165 is configurable to nearly all resistive bridges. Digital compensation of offset, sensitivity, temperature drift, and nonlinearity are accomplished via a 16-bit RISC microcontroller. Calibration coefficients and configuration data are stored in the ZSSC4165 | ZSSC4165BE2R |
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ZSSC4162DE4R
Renesas Electronics
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1 | The ZSSC4162 is a member of IDT's ZSSC416x family of CMOS integrated circuits for highly accurate amplification and sensor-specific correction of differential bridge sensor signals. The ZSSC4162 is designed for single full or half bridge sensor signals and features extended temperature measurement options. With a maximum analog pre-amplification in the range of 150 to 200, this product is adjustable to nearly all resistive bridges. Digital compensation of offset, sensitivity, temperature drift, and nonlinea | ZSSC4162DE4R |
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ZSSC4151AE2V
Integrated Device Technology Inc
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1 | VFQFPN-24, Tray | ZSSC4151AE2V |
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ZSSC4161BE2R
Integrated Device Technology Inc
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1 | VFQFPN-24, Reel | ZSSC4161BE2R |
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ZSSC4165BE2
Integrated Device Technology Inc
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1 | Analog Circuit, 1 Func, CMOS, QFN-24 | ZSSC4165BE2 |
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ZSSC4175BE2R
Integrated Device Technology Inc
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1 | VFQFPN-24, Reel | ZSSC4175BE2R |
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ZSSC4162BE2R
Integrated Device Technology Inc
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1 | VFQFPN-24, Reel | ZSSC4162BE2R |
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ZSSC4169DE5R
Renesas Electronics
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1 | The ZSSC4169 is a member of IDT's ZSSC416x family of CMOS integrated circuits for highly accurate amplification and sensor-specific correction of differential bridge sensor signals. Featuring a maximum pre-amplification in the range of 150 to 200, the ZSSC4169 is adjustable to nearly all resistive bridges as well as voltage source sensor types. Digital compensation of offset, sensitivity, temperature drift, and nonlinearity is accomplished with a 16-bit RISC microcontroller. Calibration coefficients and con | ZSSC4169DE5R |
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ZSSC4171BE2R
Renesas Electronics
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1 | The ZSSC4171 is a member of IDT's ZSSC417x family of CMOS integrated circuits for highly accurate amplification and sensor-specific correction of voltage source sensor signals; e.g., thermocouple signals. The ZSSC4171 is designed for single thermocouple signals. Digital compensation of offset, sensitivity, temperature drift, and nonlinearity is accomplished with a 16-bit RISC microcontroller. Calibration coefficients and configuration data are stored in an integrated non-volatile memory (NVM), which is reli | ZSSC4171BE2R |
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ZSSC4151CE5T
Integrated Device Technology Inc
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1 | TSSOP-16, Tube | ZSSC4151CE5T |
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ZSSC4165BE2W
Integrated Device Technology Inc
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1 | VFQFPN-24, Reel | ZSSC4165BE2W |
0
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ZSSC4161BE2W
Renesas Electronics
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1 | The ZSSC4161 is a member of IDT's ZSSC416x family of CMOS integrated circuits for highly accurate amplification and sensor-specific correction of differential resistive bridge sensor signals. The ZSSC4161 is designed for single full or half bridge sensor signals. Featuring a maximum analog pre-amplification in the range of 150 to 200, this product is adjustable to nearly all resistive bridges. Digital compensation of offset, sensitivity, temperature drift, and nonlinearity is accomplished with a 16-bit RISC | ZSSC4161BE2W |
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ZSSC4151CE1C
Renesas Electronics
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1 | The ZSSC4151 is a CMOS integrated circuit for highly accurate amplification and sensor-specific correction of resistive bridge sensor signals. Digital compensation of sensor offset, sensitivity, temperature drift, and non-linearity is accomplished via an internal 16-bit RISC microcontroller running a correction algorithm, with calibration coefficients stored in an integrated EEPROM. The ZSSC4151 is adjustable to nearly all resistive bridge sensor types. Measured values are provided at the analog voltage out | ZSSC4151CE1C |
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ZSSC4151CE6R
Renesas Electronics
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1 | The ZSSC4151 is a CMOS integrated circuit for highly accurate amplification and sensor-specific correction of resistive bridge sensor signals. Digital compensation of sensor offset, sensitivity, temperature drift, and non-linearity is accomplished via an internal 16-bit RISC microcontroller running a correction algorithm, with calibration coefficients stored in an integrated EEPROM. The ZSSC4151 is adjustable to nearly all resistive bridge sensor types. Measured values are provided at the analog voltage out | ZSSC4151CE6R |
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ZSSC4171BE2W
Renesas Electronics
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1 | The ZSSC4171 is a member of IDT's ZSSC417x family of CMOS integrated circuits for highly accurate amplification and sensor-specific correction of voltage source sensor signals; e.g., thermocouple signals. The ZSSC4171 is designed for single thermocouple signals. Digital compensation of offset, sensitivity, temperature drift, and nonlinearity is accomplished with a 16-bit RISC microcontroller. Calibration coefficients and configuration data are stored in an integrated non-volatile memory (NVM), which is reli | ZSSC4171BE2W |
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