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LTC2635CUD-HZ10#PBF - 16-QFN EP

LTC2635CUD-HZ10#PBF

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Analog Devices

QUAD 12-/10-/8-BIT I2C VOUTDACS WITH 10PPM/°C REFERENCE

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LTC2635CUD-HZ10#PBF - 16-QFN EP

LTC2635CUD-HZ10#PBF

Active
Analog Devices

QUAD 12-/10-/8-BIT I2C VOUTDACS WITH 10PPM/°C REFERENCE

Deep-Dive with AI

Technical Specifications

Parameters and characteristics for this part

SpecificationLTC2635CUD-HZ10#PBF
Data InterfaceI2C
Differential OutputFalse
INL/DNL (LSB)0.2 LSB, 0.5 LSB
Mounting TypeSurface Mount
Number of Bits [custom]10
Number of D/A Converters4
Operating Temperature [Max]70 °C
Operating Temperature [Min]0 °C
Output TypeVoltage - Buffered
Package / Case16-WFQFN Exposed Pad
Reference TypeExternal, Internal
Settling Time4.3 µs
Supplier Device Package16-QFN (3x3)
Voltage - Supply, Analog5 V
Voltage - Supply, Digital5 V

LTC2635 Series

Quad 12-/10-/8-Bit I2C VOUTDACs with 10ppm/°C Reference

PartSettling TimeOperating Temperature [Max]Operating Temperature [Min]Supplier Device PackageVoltage - Supply, Analog [Min]Voltage - Supply, Analog [Max]Number of D/A ConvertersData InterfaceDifferential OutputReference TypePackage / CaseVoltage - Supply, Digital [Max]Voltage - Supply, Digital [Min]Number of Bits [custom]INL/DNL (LSB)Mounting TypeOutput TypeNumber of BitsVoltage - Supply, DigitalVoltage - Supply, AnalogPackage / Case
4.1 µs
125 °C
-40 °C
16-QFN (3x3)
2.7 V
5.5 V
4
I2C
External
Internal
16-WFQFN Exposed Pad
5.5 V
2.7 V
10
0.2 LSB
0.5 LSB
Surface Mount
Voltage - Buffered
Analog Devices
5 µs
125 °C
-40 °C
16-QFN (3x3)
4
I2C
External
Internal
16-WFQFN Exposed Pad
Surface Mount
Voltage - Buffered
12 bits
5 V
5 V
Analog Devices
3.5 µs
70 °C
0 °C
10-MSOP-EP
2.7 V
5.5 V
4
I2C
External
Internal
10-MSOP
10-TFSOP
Exposed Pad
5.5 V
2.7 V
0.05 LSB
0.5 LSB
Surface Mount
Voltage - Buffered
8
0.118 in
3 Lead
4.3 µs
125 °C
-40 °C
16-QFN (3x3)
4
I2C
External
Internal
16-WFQFN Exposed Pad
10
0.2 LSB
0.5 LSB
Surface Mount
Voltage - Buffered
5 V
5 V
Analog Devices
4.3 µs
70 °C
0 °C
16-QFN (3x3)
4
I2C
External
Internal
16-WFQFN Exposed Pad
10
0.2 LSB
0.5 LSB
Surface Mount
Voltage - Buffered
5 V
5 V
Analog Devices
4.3 µs
70 °C
0 °C
16-QFN (3x3)
4
I2C
External
Internal
16-WFQFN Exposed Pad
10
0.2 LSB
0.5 LSB
Surface Mount
Voltage - Buffered
5 V
5 V
Analog Devices
3.5 µs
125 °C
-40 °C
16-QFN (3x3)
2.7 V
5.5 V
4
I2C
External
Internal
16-WFQFN Exposed Pad
5.5 V
2.7 V
0.05 LSB
0.5 LSB
Surface Mount
Voltage - Buffered
8
Analog Devices
4.3 µs
125 °C
-40 °C
16-QFN (3x3)
4
I2C
External
Internal
16-WFQFN Exposed Pad
10
0.2 LSB
0.5 LSB
Surface Mount
Voltage - Buffered
5 V
5 V
5 µs
125 °C
-40 °C
10-MSOP-EP
4
I2C
External
Internal
10-MSOP
10-TFSOP
Exposed Pad
Surface Mount
Voltage - Buffered
12 bits
5 V
5 V
0.118 in
3 Lead
4.4 µs
70 °C
0 °C
10-MSOP-EP
2.7 V
5.5 V
4
I2C
External
Internal
10-MSOP
10-TFSOP
Exposed Pad
5.5 V
2.7 V
Surface Mount
Voltage - Buffered
12 bits
0.118 in
3 Lead

Pricing

Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly

DistributorPackageQuantity$
DigikeyTube 1$ 10.53
10$ 7.34

Description

General part information

LTC2635 Series

The LTC2635 is a family of quad 12-, 10-, and 8-bit voltage-output DACs with an integrated, high-accuracy, low-drift reference in a 16-pin QFN or a 10-lead MSOP package. It has rail-to-rail output buffers and is guaranteed monotonic. The LTC2635-L has a full-scale output of 2.5V, and operates from a single 2.7V to 5.5V supply. The LTC2635-H has a full-scale output of 4.096V, and operates from a 4.5V to 5.5V supply. Each DAC can also operate with an external reference, which sets the fullscale output to the external reference voltage.These DACs communicate via a 2-wire I2C-compatible serial interface. The LTC2635 operates in both the standard mode (clock rate of 100kHz) and the fast mode (clock rate of 400kHz). The LTC2635 incorporates a power-on reset circuit. Options are available for reset to zero-scale, reset to mid-scale in internal reference mode, reset to mid-scale in external reference mode, or reset with all DAC outputs in a high-impedance state after power-up.ApplicationsMobile CommunicationsProcess Control and Industrial AutomationPower Supply MarginingPortable EquipmentAutomotive