Hot Selling IC
Logo
Enter a Part Number:
ADM7160ACPZN3.3-R7 picture
Best Price NOW
Manufacturer / Brand: AD
Details: Ultralow Noise, 200 mA, Linear Regulator IC
Series: ADM7160
Quantity Available: Over 65370 pieces

Datasheet for ADM7160ACPZN3.3-R7:

ADM7160ACPZN3.3-R7 datasheet
Price for ADM7160ACPZN3.3-R7
Product Parameters
  • Manufacturer Part Number : ADM7160ACPZN3.3-R7
  • Manufacturer : AD
  • Description : Ultralow Noise, 200 mA, Linear Regulator IC
  • Series : ADM7160
  • Reference Price : USD 0.352
  • Our Price : We have a better price, contact us by email
  • Product Type : LDO Linear Regulators
  • Function : Positive Linear Regulators (LDO)
  • Current Suggest : Recommended for New Designs
  • Status : Production
  • ROHS Status : ROHS Compliant (Lead Free)
  • Package Type : 6-Lead LFCSP (2mm x 2mm w/ EP)
  • Pins : 6
  • MFG Package Case : CP-6-3
  • Part Type : REEL
  • Standard Packing Type : Reel
  • Standard Packing Quantity : 3000
  • Working Temperature : -40 to 125C
  • Other Part Number : ADM7160ACPZN3.3-R7
  • Shipping methods : DHL FEDEX UPS TNT
  • Delivery Time : Ship within 1 day.
  • Manufacturer Production time : 6-8 weeks (Normally have stocks)
  • Weight : 0.001KG

Contact us to check the best price and real time inventory quantity for ADM7160ACPZN3.3-R7. If you need any more information about ADM7160ACPZN3.3-R7, you can also send us by email. Our email is [email protected], we will reply you in 12 hours.

Request Quotation for ADM7160ACPZN3.3-R7
Part Number (*) Quantity (*) Target Price ($)
Your Contact Information
Company(*) Country(*)
Name(*) Email(*)
Message:
ATTN: You can send us by email: [email protected] (We will reply quickly)
Related IC Components
Features and Benefits of ADM7160ACPZN3.3-R7
  • PSRR performance of 54 dB at 100 kHz
  • Ultralow noise independent of VOUT
    3 μV rms, 0.1 Hz to 10 Hz
    9.5 μV rms, 0.1 Hz to 100 kHz
    9 µV rms, 10Hz to 100KHz
    17 µV rms, 10Hz to 1MHz
  • Low dropout voltage:
    150 mV at 200 mA load
  • Maximum output current: 200 mA
  • Input voltage range: 2.2 V to 5.5 V
  • Low quiescent and shutdown current
  • Initial accuracy: ±1%
  • Accuracy over line, load, and temperature: −2.5%/+1.5%
  • 5-lead TSOT package and
  • 6-lead LFCSP package
Product Detailed Description for ADM7160ACPZN3.3-R7

The ADM7160 is an ultralow noise, low dropout linear regulator that operates from 2.2 V to 5.5 V and provides up to 200 mA of output current. The low 150 mV dropout voltage at 200 mA load improves efficiency and allows operation over a wide input voltage range.

Using an innovative circuit topology, the ADM7160 achieves ultralow noise performance without the need for a bypass capacitor, making it ideal for noise-sensitive analog front end and RF applications. The ADM7160 also achieves ultralow noise performance without compromising PSRR or transient line and load performance.

Current-limit and thermal overload protection circuits prevent damage under adverse conditions. The ADM7160 also includes an internal pull-down resistor on the EN input.

The ADM7160 is specifically designed for stable operation with tiny 1 μF, ±30% ceramic input and output capacitors to meet the requirements of high performance, space constrained applications.

The ADM7160 is available in tiny 5-lead TSOT and 6-lead LFCSP packages with 16 fixed output voltage options, ranging from 1.1 V to 3.3 V. The LFCSP offers a very compact solution that provides excellent thermal performance for applications that require up to 200 mA of output current in a small, low profile footprint.

APPLICATIONS

  • ADC/DAC power supplies
  • RF, VCO, and PLL power supplies
  • Post dc-to-dc regulation
Lifecycle information of ADM7160ACPZN3.3-R7

This product has been released to the market. The data sheet contains all final specifications and operating conditions. For new designs, ADI recommends utilization of these products.

ADM7160ACPZN3.3-R7 More photos
  • QUALITY GUARANTEE
  • FAST DELIVERY
  • BEST PRICE
  • Stocking Distributor for All series AD IC
    Copyright © 2001-2020 BYCHIPS Limited
    bychips.com