| Part Number | Manufacturer | Composite Price | Description | Compare |
|---|---|---|---|---|
| SN74LVCH16374ADLR | Texas Instruments | $0.6046 | Bus Driver, LVC/LCX/Z Series, 16-Func, 8-Bit, True Output, CMOS, PDSO48 | SN74LVC16374DLR vs SN74LVCH16374ADLR |
| SN74LVC16374ADL | Texas Instruments | $0.7672 | Bus Driver, LVC/LCX/Z Series, 16-Func, 8-Bit, True Output, CMOS, PDSO48 | SN74LVC16374DLR vs SN74LVC16374ADL |
| 74LVCH16374ADL,112 | Nexperia | Check for Price | Bus Driver, LVC/LCX/Z Series, 2-Func, 8-Bit, True Output, CMOS, PDSO48 | SN74LVC16374DLR vs 74LVCH16374ADL,112 |
| PI74LCX16374V | Pericom Semiconductor Corporation | Check for Price | Bus Driver, LVC/LCX/Z Series, 2-Func, 8-Bit, True Output, CMOS, PDSO48 | SN74LVC16374DLR vs PI74LCX16374V |
| VC16541ADL | NXP Semiconductors | Check for Price | Bus Driver, LVC/LCX/Z Series, 2-Func, 8-Bit, True Output, CMOS, PDSO48 | SN74LVC16374DLR vs VC16541ADL |
| SN74LVC16374DLRG4 | Texas Instruments | Check for Price | Bus Driver, LVC/LCX/Z Series, 2-Func, 8-Bit, True Output, CMOS, PDSO48 | SN74LVC16374DLR vs SN74LVC16374DLRG4 |
| SN74LVC16541DLR | Texas Instruments | Check for Price | Bus Driver, LVC/LCX/Z Series, 2-Func, 8-Bit, True Output, CMOS, PDSO48 | SN74LVC16374DLR vs SN74LVC16541DLR |
| 74LVCH16374ADL | Nexperia | Check for Price | Bus Driver, LVC/LCX/Z Series, 2-Func, 8-Bit, True Output, CMOS, PDSO48 | SN74LVC16374DLR vs 74LVCH16374ADL |
| 74LVCH16541ADL | Nexperia | Check for Price | Bus Driver, LVC/LCX/Z Series, 2-Func, 8-Bit, True Output, CMOS, PDSO48 | SN74LVC16374DLR vs 74LVCH16541ADL |
| SN74LVC16374ADLG4 | Texas Instruments | Check for Price | Bus Driver, LVC/LCX/Z Series, 2-Func, 8-Bit, True Output, CMOS, PDSO48 | SN74LVC16374DLR vs SN74LVC16374ADLG4 |
Part Details for SN74LVC16374DLR by Texas Instruments
Results Overview of SN74LVC16374DLR by Texas Instruments
- Distributor Offerings: (8 listings)
- Number of FFF Equivalents: (10 replacements)
- Tariff Estimator: (Available) NEW
- Number of Functional Equivalents: (10 options)
- CAD Models: (Available)
- Part Data Attributes: (Available)
- Reference Designs: (Not Available)
Tip: Data for a part may vary between manufacturers. You can filter for manufacturers on the top of the page next to the part image and part number.
SN74LVC16374DLR Information
SN74LVC16374DLR by Texas Instruments is a Bus Driver/Transceiver.
Bus Driver/Transceivers are under the broader part category of Logic Components.
Digital logic governs the behavior of signals in electronic circuits, enabling complex decisions based on simple binary inputs (yes/no). Logic components perform operations from these signals. Read more about Logic Components on our Logic part category page.
Price & Stock for SN74LVC16374DLR
| Part # | Distributor | Description | Stock | Price | Buy | |
|---|---|---|---|---|---|---|
|
DISTI #
86285880
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Verical | Flip Flop D-Type Bus Interface Pos-Edge 3-ST 2-Element 48-Pin SSOP T/R RoHS: Compliant Min Qty: 371 Package Multiple: 1 Date Code: 0601 | Americas - 5000 |
|
$0.6276 / $1.0123 | Buy Now |
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DISTI #
86291826
|
Verical | Flip Flop D-Type Bus Interface Pos-Edge 3-ST 2-Element 48-Pin SSOP T/R RoHS: Compliant Min Qty: 371 Package Multiple: 1 Date Code: 0501 | Americas - 3000 |
|
$0.6276 / $1.0123 | Buy Now |
|
DISTI #
86291674
|
Verical | Flip Flop D-Type Bus Interface Pos-Edge 3-ST 2-Element 48-Pin SSOP T/R RoHS: Compliant Min Qty: 371 Package Multiple: 1 Date Code: 1001 | Americas - 3000 |
|
$0.6276 / $1.0123 | Buy Now |
|
DISTI #
86286404
|
Verical | Flip Flop D-Type Bus Interface Pos-Edge 3-ST 2-Element 48-Pin SSOP T/R RoHS: Compliant Min Qty: 371 Package Multiple: 1 Date Code: 0301 | Americas - 1000 |
|
$0.6276 / $1.0123 | Buy Now |
|
DISTI #
86289799
|
Verical | Flip Flop D-Type Bus Interface Pos-Edge 3-ST 2-Element 48-Pin SSOP T/R RoHS: Compliant Min Qty: 371 Package Multiple: 1 Date Code: 1101 | Americas - 1000 |
|
$0.6276 / $1.0123 | Buy Now |
|
DISTI #
595-SN74LVC16374DLR
|
Mouser Electronics | Flip Flops 16bit w/Tri-St Out A 595-SN74LVC16374DL A 595-SN74LVC16374DL RoHS: Compliant | 656 |
|
$0.6530 / $1.3600 | Buy Now |
|
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Rochester Electronics | Flip Flop Positive Edge 2 Element 3.3V 48-SOP T/R RoHS: Compliant Status: Active Min Qty: 1 | 13000 |
|
$0.5021 / $0.8098 | Buy Now |
|
DISTI #
SN74LVC16374DLR
|
TME | IC: digital, non-inverting,D flip-flop, Ch: 16, IN: 8, CMOS,TTL, LVC Min Qty: 1000 | 0 |
|
$0.6440 | RFQ |
US Tariff Estimator: SN74LVC16374DLR by Texas Instruments
Calculations from this tool are estimations only for imports into the United States. Please refer to the distributor or manufacturer and reference official US government sources and authorities to verify any final purchase costs.
SN74LVC16374DLR CAD Models
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SN74LVC16374DLR Part Data Attributes
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SN74LVC16374DLR
Texas Instruments
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Datasheet
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SN74LVC16374DLR
Texas Instruments
Bus Driver, LVC/LCX/Z Series, 16-Func, 8-Bit, True Output, CMOS, PDSO48
|
| Pbfree Code | Yes | |
| Rohs Code | Yes | |
| Part Life Cycle Code | Active | |
| Part Package Code | SSOP | |
| Package Description | Ssop-48 | |
| Pin Count | 48 | |
| ECCN Code | EAR99 | |
| HTS Code | 8542.39.00.90 | |
| Control Type | Independent Control | |
| Count Direction | Unidirectional | |
| Family | Lvc/Lcx/Z | |
| JESD-30 Code | R-PDSO-G48 | |
| JESD-609 Code | e4 | |
| Length | 15.875 Mm | |
| Load Capacitance (CL) | 50 Pf | |
| Logic IC Type | Bus Driver | |
| Max Frequency@Nom-Sup | 100000000 Hz | |
| Max I(ol) | 0.024 A | |
| Moisture Sensitivity Level | 1 | |
| Number of Bits | 8 | |
| Number of Functions | 16 | |
| Number of Ports | 2 | |
| Number of Terminals | 48 | |
| Operating Temperature-Max | 85 °C | |
| Operating Temperature-Min | -40 °C | |
| Output Characteristics | 3-State | |
| Output Polarity | True | |
| Package Body Material | Plastic/Epoxy | |
| Package Code | SSOP | |
| Package Equivalence Code | SSOP48,.4 | |
| Package Shape | Rectangular | |
| Package Style | Small Outline, Shrink Pitch | |
| Packing Method | Tr | |
| Peak Reflow Temperature (Cel) | 260 | |
| Power Supply Current-Max (ICC) | 0.04 Ma | |
| Prop. Delay@Nom-Sup | 7.5 Ns | |
| Propagation Delay (tpd) | 8.5 Ns | |
| Qualification Status | Not Qualified | |
| Seated Height-Max | 2.79 Mm | |
| Supply Voltage-Max (Vsup) | 3.6 V | |
| Supply Voltage-Min (Vsup) | 2.7 V | |
| Supply Voltage-Nom (Vsup) | 3.3 V | |
| Surface Mount | Yes | |
| Technology | Cmos | |
| Temperature Grade | Industrial | |
| Terminal Finish | Nickel/Palladium/Gold (Ni/Pd/Au) | |
| Terminal Form | Gull Wing | |
| Terminal Pitch | 0.635 Mm | |
| Terminal Position | Dual | |
| Time@Peak Reflow Temperature-Max (s) | 30 | |
| Trigger Type | Positive Edge | |
| Width | 7.49 Mm |
Alternate Parts for SN74LVC16374DLR
This table gives cross-reference parts and alternative options found for SN74LVC16374DLR. The Form Fit Function (FFF) tab will give you the options that are more likely to serve as direct pin-to-pin alternates or drop-in parts. The Functional Equivalents tab will give you options that are likely to match the same function of SN74LVC16374DLR, but it may not fit your design. Always verify details of parts you are evaluating, as these parts are offered as suggestions for what you are looking for and are not guaranteed.
SN74LVC16374DLR Frequently Asked Questions (FAQ)
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The maximum operating frequency of the SN74LVC16374DLR is 100 MHz, but it can vary depending on the system design and capacitive load.
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To ensure signal integrity, use proper PCB layout techniques, such as impedance matching, signal routing, and decoupling capacitors. Additionally, consider using series termination resistors and/or parallel termination resistors to reduce signal reflections.
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Yes, the SN74LVC16374DLR can operate in a 3.3V system. The recommended power supply voltage is 3.3V ± 0.3V, and the device can tolerate a maximum voltage of 3.6V.
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To ensure proper operation, power up the VCC pin before applying any input signals, and power down the VCC pin after removing all input signals. Additionally, consider using power sequencing controllers or voltage supervisors to manage power-up and power-down sequences.
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Use a solid ground plane and a separate power plane for VCC. Route the VCC and GND pins as close as possible to the device, and use multiple vias to connect to the power and ground planes. Avoid routing signals under the device, and keep the power and ground pins away from noisy signals.