VRE306AS

Apex Microtechnology
137-VRE306AS
VRE306AS

Mfr.:

Description:
Voltage References ref +6.0V, 0.6ppm, 0/70C

ECAD Model:
Download the free Library Loader to convert this file for your ECAD Tool. Learn more about the ECAD Model.

Availability

Stock:
Non-Stocked
Factory Lead Time:
18 Weeks Estimated factory production time.
Minimum: 1   Multiples: 1
Unit Price:
-,-- €
Ext. Price:
-,-- €
Est. Tariff:
This Product Ships FREE

Pricing (EUR)

Qty. Unit Price
Ext. Price
132,40 € 132,40 €
112,05 € 1.120,50 €
106,98 € 2.674,50 €
106,94 € 10.694,00 €
250 Quote

Product Attribute Attribute Value Select Attribute
Apex Microtechnology
Product Category: Voltage References
RoHS:  
Tube
Brand: Apex Microtechnology
Product Type: Voltage References
Factory Pack Quantity: 1
Subcategory: PMIC - Power Management ICs
Unit Weight: 783 mg
Products found:
To show similar products, select at least one checkbox
Select at least one checkbox above to show similar products in this category.
Attributes selected: 0

This functionality requires JavaScript to be enabled.

USHTS:
8542390090
ECCN:
EAR99

VRE306 +6V Low Noise Precision Voltage Reference

Apex Microtechnology VRE306 +6V Low Noise Precision Voltage Reference is a low-cost, Zener-based precision voltage reference. The VRE306 has an ultrastable +6V output with ±0.6mV (.01%) initial accuracy. Accuracy improvement is possible by a multipoint laser compensation technique. Other significant improvements include warm-up drift, line regulation, and long-term stability. This makes this VRE ideal for upgrading systems that use lower-performance references. Temperature coefficients are as low as 0.6ppm/°C over the full industrial (0°C to +70°C) temperature range. The Apex Microtechnology VRE306 is housed in a surface mount 8-pin package.

Precision Reference Devices

Apex Microtechnology Precision Reference Devices provide ultrastable sine wave outputs and a temperature coefficient over the full military temperature range. Accuracy improvement of the Apex Microtechnology Precision Reference devices is possible through a unique proprietary multipoint laser compensation technique. Significant improvements have been made in other performance parameters, including warm-up drift, line regulation, and long-term stability.