MICROCHIP MCP33151D-05-E/MN
| Produttore | |
| Cod. Prod. | MCP33151D-05-E/MN |
| Cod. LCSC | C635138 |
| Imballo | TDFN-10(3x3) |
| Numero Cliente | |
| Attr. chiave | SPI 1.7V~1.9V TDFN-10(3x3) Analog to Digital Converters (ADC) RoHS |
| Scheda Tecnica | MICROCHIP MCP33151D-05-E/MN |
| Conformità RoHS | 2 documenti disponibili |
| Parti alternative | 10 |
Specifiche del Prodotto
| Tipo | Descrizione | |
|---|---|---|
| Categoria | Integrated Circuits (ICs)/Data Acquisition/Analog to Digital Converters (ADC) | |
| Produttore | MICROCHIP | |
| Imballo | TDFN-10(3x3) | |
| Operating Temperature | -40℃~+125℃ | |
| Interface | SPI | |
| Quiescent Current (Iq) | 1.5uA | |
| Voltage - Supply | 1.7V~1.9V | |
| Number of Channels | 1 | |
| Integral non - linearity | 0.27LSB | |
| Voltage Reference | External | |
| Clock/Oscillator | Built-in | |
| Clock Frequency | - | |
| Features | Bipolar input;Auto calibration | |
| Resolution(Bits) | 500kHz;14 | |
| S/N Ratio | 83.9dB | |
| ADC architecture | SAR | |
| Programmable Gain | Not supported |
| Tipo | Descrizione | |
|---|---|---|
| Categoria | Integrated Circuits (ICs)/Data Acquisition/Analog to Digital Converters (ADC) | |
| Produttore | MICROCHIP | |
| Imballo | TDFN-10(3x3) | |
| Operating Temperature | -40℃~+125℃ | |
| Interface | SPI | |
| Quiescent Current (Iq) | 1.5uA | |
| Voltage - Supply | 1.7V~1.9V | |
| Number of Channels | 1 | |
| Integral non - linearity | 0.27LSB |
| Tipo | Descrizione | |
|---|---|---|
| Voltage Reference | External | |
| Clock/Oscillator | Built-in | |
| Clock Frequency | - | |
| Features | Bipolar input;Auto calibration | |
| Resolution(Bits) | 500kHz;14 | |
| S/N Ratio | 83.9dB | |
| ADC architecture | SAR | |
| Programmable Gain | Not supported |
Descrizione
The MCP33151D/41D-10 and MCP33151D/41D-05 are fully-differential, 14-bit and 12-bit, single-channel, 1 Msps and 500 kSPS ADC family devices, respectively, featuring low power consumption and high performance, using a successive approximation register (SAR) architecture. The device operates with an external voltage reference (VREF) from AVDD to 5.1V, which supports a wide range of input full-scale range from -VREF to +VREF. The reference voltage setting is independent of the analog supply voltage (AVDD). The conversion output is available through an easy-to-use simple SPI-compatible 3-wire interface. The device requires a 1.8V analog supply voltage (AVDD) and a 1.7V to 5.5V digital I/O interface supply voltage (DVIO). The wide digital I/O interface supply (DVIO) range (1.7 - 5.5V) allows the device to interface with most host devices (Master) available in the current industry such as the PIC32 microcontrollers, without using external voltage level shifters. Once all supply voltages are connected, the device will power-up and perform an automatic calibration to minimize offset, gain and linearity errors. The automatic calibration takes place approximately 40 ms following power-up, and it is necessary to ensure that all power supplies are fully settled and stable after this time. The device performance stays stable across the specified temperature range. However, when extreme changes in the operating environment, such as in the reference voltage, are made with respect to the initial conditions, the user may send a recalibrate command anytime to initiate another self-calibration and restore optimum performance. When the initial power-up sequence is completed, the device enters a low-current input acquisition mode (also referred to as ‘Standby mode’), where sampling capacitors are connected to the input pins. During Standby, most of the internal analog circuitry is shutdown in order to reduce current consumption. Typically, the device consumes approximately 1.5 μA during Standby. A new conversion is started on the rising edge of CNVST. When the conversion is complete and the host lowers CNVST, the output data is presented on SDO, and the device enters Standby to begin acquiring the next input sample. The user can clock out the ADC output data using the SPI-compatible serial clock during Standby. The ADC system clock is generated by the internal on-chip clock, therefore the conversion is performed independent of the SPI serial clock (SCLK). This device can be used for various high-speed and high-accuracy analog-to-digital data conversion applications, where design simplicity, low power, and no output latency are needed. The device is AEC-Q100 qualified for automotive applications and operates over the extended temperature range of -40°C to +125°C. The available package options are Pb-free small 3 mm x 3 mm TDFN-10 and MSOP-10.
Caratteristiche
- Sample Rate (Throughput):
- MCP33151D/41D-10: 1 Msps
- MCP33151D/41D-05: 500 kSPS
- 14/12-Bit Resolution with No Missing Codes
- No Latency Output
- Wide Operating Voltage Range:
- Analog supply voltage (AVDD): 1.8V
- Digital input/output interface voltage (DVIO): 1.7 - 5.5V
- External reference voltage (VREF): AVDD - 5.1 V
- Differential Input Operation
- Input full-scale range: -VREF to +VREF
- Ultra Low Current Consumption (typical):
- During input acquisition (standby): ~1.5 μA
- During conversion:
- MCP33151D/41D-10: ~0.66 mA
- MCP33151D/41D-05: ~0.33 mA
- SPI-Compatible Serial Communication:
- SCLK clock rate: up to 100 MHz
- 3-wire with optional BUSY indicator
- ADC Self-Calibration for Offset, Gain, and Linearity Errors:
- During power-up (automatic)
- On-Demand via user’s command during normal operation
- Built In Data Accumulator
- Integrate up to 1024 consecutive converted samples
- Increase ENOB up to 18.5 bits by automatically averaging conversion results
- AEC-Q100 Qualified:
- Temperature grade 1: -40°C to +125°C
- Package Options: MSOP-10 and TDFN-10
Applicazioni
- High-Precision Data Acquisition
- Medical Instruments
- Test Equipment
- Electric Vehicle Battery Management Systems
- Motor Control Applications
- Switch-Mode Power Supply Applications
- Battery-Powered Equipment
| Qtà | Pr. unit.(Solo per riferimento) | Importo totale |
|---|---|---|
| 1+ | $ 6.5116 | $ 6.51 |
| 200+ | $ 2.5213 | $ 504.26 |
| 500+ | $ 2.4317 | $ 1215.85 |
| 1,000+ | $ 2.3884 | $ 2388.40 |
Package Standard120/Full Tube | ||
Specifiche del Prodotto
| Tipo | Descrizione | |
|---|---|---|
| Categoria | Integrated Circuits (ICs)/Data Acquisition/Analog to Digital Converters (ADC) | |
| Produttore | MICROCHIP | |
| Imballo | TDFN-10(3x3) | |
| Operating Temperature | -40℃~+125℃ | |
| Interface | SPI | |
| Quiescent Current (Iq) | 1.5uA | |
| Voltage - Supply | 1.7V~1.9V | |
| Number of Channels | 1 | |
| Integral non - linearity | 0.27LSB | |
| Voltage Reference | External | |
| Clock/Oscillator | Built-in | |
| Clock Frequency | - | |
| Features | Bipolar input;Auto calibration | |
| Resolution(Bits) | 500kHz;14 | |
| S/N Ratio | 83.9dB | |
| ADC architecture | SAR | |
| Programmable Gain | Not supported |
| Tipo | Descrizione | |
|---|---|---|
| Categoria | Integrated Circuits (ICs)/Data Acquisition/Analog to Digital Converters (ADC) | |
| Produttore | MICROCHIP | |
| Imballo | TDFN-10(3x3) | |
| Operating Temperature | -40℃~+125℃ | |
| Interface | SPI | |
| Quiescent Current (Iq) | 1.5uA | |
| Voltage - Supply | 1.7V~1.9V | |
| Number of Channels | 1 | |
| Integral non - linearity | 0.27LSB |
| Tipo | Descrizione | |
|---|---|---|
| Voltage Reference | External | |
| Clock/Oscillator | Built-in | |
| Clock Frequency | - | |
| Features | Bipolar input;Auto calibration | |
| Resolution(Bits) | 500kHz;14 | |
| S/N Ratio | 83.9dB | |
| ADC architecture | SAR | |
| Programmable Gain | Not supported |
Descrizione
The MCP33151D/41D-10 and MCP33151D/41D-05 are fully-differential, 14-bit and 12-bit, single-channel, 1 Msps and 500 kSPS ADC family devices, respectively, featuring low power consumption and high performance, using a successive approximation register (SAR) architecture. The device operates with an external voltage reference (VREF) from AVDD to 5.1V, which supports a wide range of input full-scale range from -VREF to +VREF. The reference voltage setting is independent of the analog supply voltage (AVDD). The conversion output is available through an easy-to-use simple SPI-compatible 3-wire interface. The device requires a 1.8V analog supply voltage (AVDD) and a 1.7V to 5.5V digital I/O interface supply voltage (DVIO). The wide digital I/O interface supply (DVIO) range (1.7 - 5.5V) allows the device to interface with most host devices (Master) available in the current industry such as the PIC32 microcontrollers, without using external voltage level shifters. Once all supply voltages are connected, the device will power-up and perform an automatic calibration to minimize offset, gain and linearity errors. The automatic calibration takes place approximately 40 ms following power-up, and it is necessary to ensure that all power supplies are fully settled and stable after this time. The device performance stays stable across the specified temperature range. However, when extreme changes in the operating environment, such as in the reference voltage, are made with respect to the initial conditions, the user may send a recalibrate command anytime to initiate another self-calibration and restore optimum performance. When the initial power-up sequence is completed, the device enters a low-current input acquisition mode (also referred to as ‘Standby mode’), where sampling capacitors are connected to the input pins. During Standby, most of the internal analog circuitry is shutdown in order to reduce current consumption. Typically, the device consumes approximately 1.5 μA during Standby. A new conversion is started on the rising edge of CNVST. When the conversion is complete and the host lowers CNVST, the output data is presented on SDO, and the device enters Standby to begin acquiring the next input sample. The user can clock out the ADC output data using the SPI-compatible serial clock during Standby. The ADC system clock is generated by the internal on-chip clock, therefore the conversion is performed independent of the SPI serial clock (SCLK). This device can be used for various high-speed and high-accuracy analog-to-digital data conversion applications, where design simplicity, low power, and no output latency are needed. The device is AEC-Q100 qualified for automotive applications and operates over the extended temperature range of -40°C to +125°C. The available package options are Pb-free small 3 mm x 3 mm TDFN-10 and MSOP-10.
Caratteristiche
- Sample Rate (Throughput):
- MCP33151D/41D-10: 1 Msps
- MCP33151D/41D-05: 500 kSPS
- 14/12-Bit Resolution with No Missing Codes
- No Latency Output
- Wide Operating Voltage Range:
- Analog supply voltage (AVDD): 1.8V
- Digital input/output interface voltage (DVIO): 1.7 - 5.5V
- External reference voltage (VREF): AVDD - 5.1 V
- Differential Input Operation
- Input full-scale range: -VREF to +VREF
- Ultra Low Current Consumption (typical):
- During input acquisition (standby): ~1.5 μA
- During conversion:
- MCP33151D/41D-10: ~0.66 mA
- MCP33151D/41D-05: ~0.33 mA
- SPI-Compatible Serial Communication:
- SCLK clock rate: up to 100 MHz
- 3-wire with optional BUSY indicator
- ADC Self-Calibration for Offset, Gain, and Linearity Errors:
- During power-up (automatic)
- On-Demand via user’s command during normal operation
- Built In Data Accumulator
- Integrate up to 1024 consecutive converted samples
- Increase ENOB up to 18.5 bits by automatically averaging conversion results
- AEC-Q100 Qualified:
- Temperature grade 1: -40°C to +125°C
- Package Options: MSOP-10 and TDFN-10
Applicazioni
- High-Precision Data Acquisition
- Medical Instruments
- Test Equipment
- Electric Vehicle Battery Management Systems
- Motor Control Applications
- Switch-Mode Power Supply Applications
- Battery-Powered Equipment
Conformità & Codici di Esportazione
| Tipo | Dettagli |
|---|---|
| RoHS | ROHS3 Compliant |
| ECCN | EAR99 |
| CNHTS | 8542399000 |
| USHTS | 8542390001 |
| TARIC | 8542399000 |
| CAHTS | 8542390000 |
| BRHTS | 85423999 |
| INHTS | 85423900 |
| MXHTS | 8542.39.99 |
| Tipo | Dettagli |
|---|---|
| RoHS | ROHS3 Compliant |
| ECCN | EAR99 |
| CNHTS | 8542399000 |
| USHTS | 8542390001 |
| TARIC | 8542399000 |
| Tipo | Dettagli |
|---|---|
| CAHTS | 8542390000 |
| BRHTS | 85423999 |
| INHTS | 85423900 |
| MXHTS | 8542.39.99 |
Parti alternative
| MPN | Produttore | Imballaggio | Disponibilità | Prezzo unitario | ||
|---|---|---|---|---|---|---|
| MCP33151D-05T-E/MN | MICROCHIP | TDFN-10-EP(3x3) | 0 | $ 1.6963 | ||
| MCP33151D-10T-E/MN | MICROCHIP | TDFN-10-EP(3x3) | 0 | $ 2.2936 | ||
| MCP33151D-10-E/MN | MICROCHIP | TDFN-10-EP(3x3) | 0 | $ 2.2936 | ||
| MCP33151-05-E/MN | MICROCHIP | TDFN-10(3x3) | 0 | $ 3.7383 | ||
| MCP33151-05T-E/MN | MICROCHIP | TDFN-10-EP(3x3) | 0 | $ 1.6963 | ||
| MCP33151-10T-E/MN | MICROCHIP | TDFN-10-EP(3x3) | 0 | $ 2.2936 | ||
| MCP33151-10-E/MN | MICROCHIP | TDFN-10-EP(3x3) | 0 | $ 0.4631 | ||
| MCP33121-05T-E/MN | MICROCHIP | TDFN-10(3x3) | 0 | $ 4.1504 | ||
| MCP33121-05-E/MN | MICROCHIP | TDFN-10(3x3) | 0 | $ 3.8171 | ||
| MCP33121-10T-E/MN | MICROCHIP | TDFN-10-EP(3x3) | 0 | $ 5.1043 |

