| Mfr. #: | LT1999MPMS8-10#PBF |
|---|---|
| Manufacturer: | Analog Devices Inc. |
| Description: | Current Sense Amplifiers High Voltage, Bidirectional Current Sense Amplifier |
| Lifecycle: | New from this manufacturer. |
| Datasheet: | LT1999MPMS8-10#PBF Datasheet |


This product is manufactured by Analog Devices Inc.. This product is equipped with 1 Channel for efficient performance. This product has a 120 dB of 50 dB, ensuring reliable signal acquisition. This product has an 137 uA of 5 uA for precise signal processing. Supply Voltage - Max: 5.5 V Supply Voltage - Min: 4.5 V The minimum operating temperature of this product is - 55 C. The product can operate at a maximum temperature of + 150 C. The product can operate at a maximum temperature of SMD/SMT. MSOP-8 package/case type is utilized by this product. Tube packaging for easy dispensing The accuracy of this product is 0.5 %. The amplifier type is High Voltage , Bidirectional Amplifier. Current Sense Amplifiers Analog Devices is a trusted brand for quality electronics This product does not have a No Shutdown feature, ensuring continuous operation. Bandwidth at -3 dB is 2 MHz DC1698A-A, DC1698A-B, DC1698A-C is a versatile development platform for hardware and software 0.2 % is 0.2%. Current Sense Amplifiers product type This product has a 77 dB of 50 dB, providing reliable power supply noise rejection. 2.5 us settling time 50 of 100 Amplifier ICs as subcategory

Image shown is a representation only. Exact specifications should be obtained from the product data sheet.

LT1999MPMS8-10#PBF Specifications
A: What is the Manufacturer of the product?
Q: The Manufacturer of the product is Analog Devices Inc..
A: At what frequency does the Number of Channels?
Q: The product Number of Channels is 1 Channel.
A: Is the cutoff frequency of the product CMRR - Common Mode Rejection Ratio?
Q: Yes, the product's CMRR - Common Mode Rejection Ratio is indeed 120 dB
A: At what frequency does the Ib - Input Bias Current?
Q: The product Ib - Input Bias Current is 137 uA.
A: At what frequency does the Supply Voltage - Max?
Q: The product Supply Voltage - Max is 5.5 V.
A: At what frequency does the Supply Voltage - Min?
Q: The product Supply Voltage - Min is 4.5 V.
A: At what frequency does the Minimum Operating Temperature?
Q: The product Minimum Operating Temperature is - 55 C.
A: What is the Maximum Operating Temperature of the product?
Q: The Maximum Operating Temperature of the product is + 150 C.
A: What is the Mounting Style of the product?
Q: The Mounting Style of the product is SMD/SMT.
A: Is the cutoff frequency of the product Package / Case?
Q: Yes, the product's Package / Case is indeed MSOP-8
A: At what frequency does the Packaging?
Q: The product Packaging is Tube.
A: Is the cutoff frequency of the product Accuracy?
Q: Yes, the product's Accuracy is indeed 0.5 %
A: What is the Amplifier Type of the product?
Q: The Amplifier Type of the product is High Voltage , Bidirectional Amplifier.
A: At what frequency does the Product?
Q: The product Product is Current Sense Amplifiers.
A: What is the Brand of the product?
Q: The Brand of the product is Analog Devices.
A: At what frequency does the Shutdown?
Q: The product Shutdown is No Shutdown.
A: Is the cutoff frequency of the product 3 dB Bandwidth?
Q: Yes, the product's 3 dB Bandwidth is indeed 2 MHz
A: At what frequency does the Development Kit?
Q: The product Development Kit is DC1698A-A, DC1698A-B, DC1698A-C.
A: At what frequency does the Gain Error?
Q: The product Gain Error is 0.2 %.
A: What is the Product Type of the product?
Q: The Product Type of the product is Current Sense Amplifiers.
A: Is the cutoff frequency of the product PSRR - Power Supply Rejection Ratio?
Q: Yes, the product's PSRR - Power Supply Rejection Ratio is indeed 77 dB
A: At what frequency does the Settling Time?
Q: The product Settling Time is 2.5 us.
A: Is the cutoff frequency of the product Factory Pack Quantity?
Q: Yes, the product's Factory Pack Quantity is indeed 50
A: At what frequency does the Subcategory?
Q: The product Subcategory is Amplifier ICs.