AD8330-EVALZ

AD8330-EVALZ
Mfr. #:
AD8330-EVALZ
Manufacturer:
Analog Devices Inc.
Description:
Amplifier IC Development Tools AD8330 EVAL BRD
Lifecycle:
New from this manufacturer.
Datasheet:
AD8330-EVALZ Datasheet
Delivery:
DHL FedEx Ups TNT EMS
Payment:
T/T Paypal Visa MoneyGram Western Union
ECAD Model:
More Information:
AD8330-EVALZ more Information AD8330-EVALZ Product Details
Product Attribute
Attribute Value
Manufacturer:
Analog Devices Inc.
Product Category:
Amplifier IC Development Tools
RoHS:
Y
Product:
Evaluation Boards
Type:
Variable Gain Amplifiers
Tool Is For Evaluation Of:
AD8330
Operating Supply Voltage:
5 V
Packaging:
Bulk
Description/Function:
DC to 150 MHz variable gain amplifier
Series:
AD8330
Brand:
Analog Devices
For Use With:
AD8330
Maximum Operating Temperature:
+ 85 C
Minimum Operating Temperature:
- 40 C
Operating Supply Current:
20 mA
Product Type:
Amplifier IC Development Tools
Factory Pack Quantity:
1
Subcategory:
Development Tools
Unit Weight:
4.615986 oz
Tags
AD8330, AD833, AD83, AD8
Service Guarantees

We guarantee 100% customer satisfaction.

Quality Guarantees

We provide 90-360 days warranty.

If the items you received were not in perfect quality, we would be responsible for your refund or replacement, but the items must be returned in their original condition.
Our experienced sales team and tech support team back our services to satisfy all our customers.

we buy and manage excess electronic components, including excess inventory identified for disposal.
Email us if you have excess stock to sell.

Email: info@omo-ic.com

Step1: Vacuum Packaging with PL
Step1:
Vacuum Packaging with PL
Step2: Anti-Static Bag
Step2:
Anti-Static Bag
Step3: Packaging Boxes
Step3:
Packaging Boxes
***roFlash
Evaluation Board For AD8330 Variable Gain Amplifier
***ark
Variable Gain Amplifier Eval. Board; Supported Families:AD8330 Family; Development Tool Type:Hardware - Eval/Demo Board; Supported Devices:AD8330 Device Type
***log Devices
The AD8330 is a wideband variable gain amplifier for applications requiring a fully differential signal path, low noise, well-defined gain, and moderately low distortion, from dc to 150 MHz. The input pins can also be driven from a single-ended source. The peak differential input is ±2 V, allowing sine wave operation at 1 V rms with generous headroom. The output pins can drive single-sided loads essentially rail-to-rail. The differential output resistance is 150 Ω. The output swing is a linear function of the voltage applied to the VMAG pin that internally defaults to 0.5 V, providing a peak output of ±2 V. This can be raised to 10 V p-p, limited by the supply voltage. The basic gain function is linear-in-dB, controlled by the voltage applied to Pin VDBS. The gain ranges from 0 dB to 50 dB for control voltages between 0 V and 1.5 V—a slope of 30 mV/dB. The gain linearity is typically within ±0.1 dB. By changing the logic level on Pin MODE, the gain decreases over the same range, with an opposite slope. A second gain control port is provided at the VMAG pin and allows the user to vary the numeric gain from a factor of 0.03 to 10. All the parameters of the AD8330 have low sensitivities to temperature and supply voltages. Using VMAG, the basic 0 dB to 50 dB range can be repositioned to any value from 20 dB higher (that is, 20 dB to 70 dB) to at least 30 dB lower (that is, –30 dB to +20 dB) to suit the application, thereby providing an unprecedented gain range of over 100 dB. A unique aspect of the AD8330 is that its bandwidth and pulse response are essentially constant for all gains, over both the basic 50 dB linear-in-dB range, but also when using the linearin-magnitude function. The exceptional stability of the HF response over the gain range is of particular value in those VGA applications where it is essential to maintain accurate gain lawconformance at high frequencies. An external capacitor at Pin OFST sets the high-pass corner of an offset reduction loop, whose frequency can be as low as 5 Hz. When this pin is grounded, the signal path becomes dc-coupled. When used to drive an ADC, an external common-mode control voltage at Pin CNTR can be driven to within 0.5 V of either ground or VS to accommodate a wide variety of requirements. By default, the two outputs are positioned at the midpoint of the supply, VS/2. Other features, such as two levels of power-down (fully off and a hibernate mode), further extend the practical value of this exceptionally versatile VGA. The AD8330 is available in 16-lead LFCSP and 16-lead QSOP packages and is specified for operation from −40°C to +85°C. Applications Pre-ADC signal conditioning 75 Ω cable driving adjust AGC amplifiers
Part # Mfg. Description Stock Price
AD8330-EVALZ
DISTI # V99:2348_06214407
Analog Devices IncAD8330 Special Purpose Amplifier Evaluation Board
RoHS: Compliant
1
  • 1:$117.1800
AD8330-EVALZ
DISTI # V36:1790_06214407
Analog Devices IncAD8330 Special Purpose Amplifier Evaluation Board
RoHS: Compliant
0
    AD8330-EVALZ
    DISTI # AD8330-EVALZ-ND
    Analog Devices IncBOARD EVAL FOR AD8330
    RoHS: Compliant
    Min Qty: 1
    Container: Box
    3In Stock
    • 1:$109.2400
    AD8330-EVALZ
    DISTI # 25553304
    Analog Devices IncAD8330 Special Purpose Amplifier Evaluation Board
    RoHS: Compliant
    1
    • 1:$125.9685
    AD8330-EVALZ
    DISTI # 584-AD8330-EVALZ
    Analog Devices IncAmplifier IC Development Tools AD8330 EVAL BRD
    RoHS: Compliant
    4
    • 1:$108.1600
    AD8330-EVALZ
    DISTI # 8031190
    Analog Devices IncANALOG DEVICES AD8330-EVALZ, EA5
    • 1:£100.8700
    Image Part # Description
    AD8330ARQZ

    Mfr.#: AD8330ARQZ

    OMO.#: OMO-AD8330ARQZ

    Special Purpose Amplifiers DC to 150 MHz Variable Gain IC
    AD8330ACPZ-R7

    Mfr.#: AD8330ACPZ-R7

    OMO.#: OMO-AD8330ACPZ-R7

    Special Purpose Amplifiers DC to 150 MHz Variable Gain IC
    AD8330ACPZ-R2

    Mfr.#: AD8330ACPZ-R2

    OMO.#: OMO-AD8330ACPZ-R2

    Special Purpose Amplifiers DC to 150 MHz Variable Gain IC
    AD8330ARQZ-R7

    Mfr.#: AD8330ARQZ-R7

    OMO.#: OMO-AD8330ARQZ-R7

    Special Purpose Amplifiers DC to 150 MHz Variable Gain IC
    640456-7

    Mfr.#: 640456-7

    OMO.#: OMO-640456-7

    Headers & Wire Housings FRICTION LCK HDR 7P Straight Post tin
    CLEV6630BM

    Mfr.#: CLEV6630BM

    OMO.#: OMO-CLEV6630BM

    RF Development Tools CLRC663 <i>plus</i> NFC Frontend Development Board for Access Management Applications
    AFE7222EVM

    Mfr.#: AFE7222EVM

    OMO.#: OMO-AFE7222EVM

    RF Development Tools AFE7222EVM
    142-0701-801

    Mfr.#: 142-0701-801

    OMO.#: OMO-142-0701-801

    RF Connectors / Coaxial Connectors PC END MT JCK GLD .062" BOARD THICK
    BBB01-SC-505

    Mfr.#: BBB01-SC-505

    OMO.#: OMO-BBB01-SC-505

    Single Board Computers Beaglebone Black Rev C
    AD8330ACPZ-R7

    Mfr.#: AD8330ACPZ-R7

    OMO.#: OMO-AD8330ACPZ-R7-ANALOG-DEVICES-INC-ADI

    Differential Amplifiers DC to 150 MHz Variable Gain IC
    Availability
    Stock:
    Available
    On Order:
    2000
    Enter Quantity:
    Current price of AD8330-EVALZ is for reference only, if you want to get best price, please submit a inquiry or direct email to our sales team sales@omo-ic.com
    Start with
    Newest Products
    • PicoTLynx™ Series Non-Isolated DC/DC Power Convert
      POL converter is capable of continuous full-load operation under extreme conditions up to 85°C and no air flow from ABB.
    • NovaSensor NPC-100/120 Series
      Amphenol’s NovaSensor NPC-100 and NPC-120 series pressure sensor is specifically designed for use in disposable medical applications.
    • GE-1935/GE-2102/GE-2103 Inline Flow-Through Fluid
      Amphenol's GE-1935, GE-2102, and GE-2103 fluid temperature sensors monitor the temperature of a fluid that passes through them.
    • Compare AD8330-EVALZ
      AD8330EVALZ vs AD8330ACPR2 vs AD8330ACPREEL7
    • Laser Cut Parts
      3M laser cut products are engineered to meet precise performance specifications and are provided in the exact sizes needed for the manufacturing of electronics.
    • Label Materials
      3M's label stock performs in a variety of demanding situations including high/low temperatures, UV exposure, water contact, heavy abrasion, and repeated use.
    Top