Part | RoHS | Manufacturer | Amplifier Type | Temperature Grade | Terminal Form | No. of Terminals | Package Code | Package Shape | Total Dose (V) | Package Body Material | Maximum Negative Supply Voltage Limit | Surface Mount | Maximum Analog Input Voltage | No. of Functions | Technology | Screening Level | Maximum Supply Current | Maximum Droop Rate | Nominal Negative Supply Voltage (Vsup) | Packing Method | Nominal Supply Voltage / Vsup (V) | Power Supplies (V) | Package Style (Meter) | Package Equivalence Code | Sub-Category | Maximum Supply Voltage Limit | Terminal Pitch | Maximum Operating Temperature | Minimum Analog Input Voltage | Nominal Acquisition Time | Minimum Operating Temperature | Terminal Finish | Sample-and-Hold/Track-and-Hold | Terminal Position | JESD-30 Code | Moisture Sensitivity Level (MSL) | Maximum Seated Height | Width | Qualification | Maximum Acquisition Time | JESD-609 Code | Maximum Time At Peak Reflow Temperature (s) | Peak Reflow Temperature (C) | Length |
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|
Analog Devices |
Sample And Hold Circuit |
Industrial |
No Lead |
15 |
DIE |
Rectangular |
0 V |
Yes |
7.5 V |
4 |
CMOS |
0.025 V/s |
0 V |
12 V |
Uncased Chip |
Sample and Hold Circuits |
17 V |
85 °C (185 °F) |
-7.5 V |
3.6 µs |
-40 °C (-40 °F) |
Sample and Hold (S&H) |
Upper |
R-XUUC-N15 |
No |
11 µs |
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Analog Devices |
Sample And Hold Circuit |
No Lead |
7 |
DIE |
Rectangular |
-18 V |
Yes |
10.5 V |
1 |
BIPOLAR |
0.5 V/s |
-15 V |
15 V |
Uncased Chip |
18 V |
-10.5 V |
3.5 µs |
Tin Lead |
Sample and Hold (S&H) |
Upper |
R-XUUC-N7 |
No |
e0 |
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Analog Devices |
Sample And Hold Circuit |
No Lead |
7 |
DIE |
Rectangular |
-18 V |
Yes |
10.5 V |
1 |
BIPOLAR |
0.5 V/s |
-15 V |
15 V |
Uncased Chip |
18 V |
-10.5 V |
3.5 µs |
Tin Lead |
Sample and Hold (S&H) |
Upper |
R-XUUC-N7 |
No |
e0 |
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Analog Devices |
Sample And Hold Circuit |
No Lead |
7 |
DIE |
Rectangular |
-18 V |
Yes |
11 V |
1 |
BIPOLAR |
0.2 V/s |
-15 V |
15 V |
Uncased Chip |
18 V |
-11 V |
3.5 µs |
Tin Lead |
Sample and Hold (S&H) |
Upper |
R-XUUC-N7 |
No |
e0 |
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|
Analog Devices |
Sample And Hold Circuit |
Military |
No Lead |
14 |
DIE |
Rectangular |
-18 V |
Yes |
1 |
10 mA |
1 V/s |
-12 V |
12 V |
±12/±15 V |
Uncased Chip |
DIE OR CHIP |
Sample and Hold Circuits |
18 V |
125 °C (257 °F) |
-55 °C (-67 °F) |
Sample and Hold (S&H) |
Upper |
R-XUUC-N14 |
No |
5 µs |
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|
Analog Devices |
Sample And Hold Circuit |
Other |
No Lead |
14 |
DIE |
Rectangular |
-18 V |
Yes |
1 |
10 mA |
1 V/s |
-12 V |
12 V |
±12/±15 V |
Uncased Chip |
DIE OR CHIP |
Sample and Hold Circuits |
18 V |
85 °C (185 °F) |
-25 °C (-13 °F) |
Sample and Hold (S&H) |
Upper |
R-XUUC-N14 |
No |
5 µs |
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Analog Devices |
Sample And Hold Circuit |
No Lead |
7 |
DIE |
Rectangular |
-18 V |
Yes |
11 V |
1 |
BIPOLAR |
0.2 V/s |
-15 V |
15 V |
Uncased Chip |
18 V |
-11 V |
3.5 µs |
Tin Lead |
Sample and Hold (S&H) |
Upper |
R-XUUC-N7 |
No |
e0 |
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|
Analog Devices |
Sample And Hold Circuit |
No Lead |
16 |
DIE |
Rectangular |
-17 V |
Yes |
17 V |
8 |
CMOS |
8 mA |
0.04 V/s |
12 V |
Uncased Chip |
Sample and Hold Circuits |
17 V |
-17 V |
Sample and Hold (S&H) |
Upper |
R-XUUC-N16 |
No |
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|
Analog Devices |
Sample And Hold Circuit |
No Lead |
16 |
DIE |
-17 V |
Yes |
17 V |
8 |
CMOS |
8 mA |
0.02 V/s |
-5 V |
5 V |
Uncased Chip |
Sample and Hold Circuits |
17 V |
-17 V |
9 µs |
Sample and Hold (S&H) |
Upper |
X-XUUC-N16 |
No |
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Analog Devices |
Sample And Hold Circuit |
No Lead |
16 |
DIE |
-17 V |
Yes |
17 V |
4 |
CMOS |
7 mA |
0.025 V/s |
12 V |
Uncased Chip |
17 V |
-17 V |
Tin Lead |
Sample and Hold (S&H) |
Upper |
X-XUUC-N16 |
No |
e0 |
Sample and hold (S/H) ICs, also known as track-and-hold amplifiers, are electronic circuits that capture and store an analog voltage signal at a specific moment in time. The S/H IC holds the input voltage for a short period and outputs a constant voltage that represents the input voltage at the time of sampling.
S/H ICs are commonly used in applications that require the measurement or processing of analog signals, such as in analog-to-digital converters (ADCs), digital signal processors (DSPs), and communication systems.
In an ADC system, the S/H IC is used to capture the analog input voltage signal and hold it steady while the ADC converts it to a digital signal. This allows the ADC to accurately sample the analog signal at a specific time and convert it to a digital value.
S/H ICs typically have a fast acquisition time and low droop rate, which means that they can quickly capture and hold the input signal with minimal voltage drop over time. Some S/H ICs can also provide a high input impedance and low output impedance, which helps to minimize loading effects and improve signal integrity.