Need more?
Quantity | Price |
---|---|
1+ | $0.415 |
10+ | $0.415 |
25+ | $0.415 |
50+ | $0.415 |
Product Information
Product Overview
NX3DV2567HR,115 is a four-pole double-throw analogue switch (4PDT) optimized for switching WLAN-SIM supply, data and control signals. It has one digital select input (S) and four switches each with two independent input/outputs (nY0 and nY1) and a common input/output (nZ). Schmitt trigger action at S makes the circuit tolerant to slower input rise and fall times across the entire VCC range from 1.4V to 4.3V. A low input voltage threshold allows pin S to be driven by lower level logic signals without significant increase in supply current ICC. This makes it possible for the NX3DV2567 to switch 4.3V signals with a 1.8V digital controller, eliminating the need for logic level translation. The NX3DV2567 allows signals with amplitude up to VCC to be transmitted from nZ to nY0 or nY1; or from nY0 or nY1 to nZ. Applications include cell phone, PDA, digital camera, printer and notebook, LCD monitor, TV and set-top box.
- Very low ON resistance for supply path (0.5ohm (typ) at VCC = 1.8V, 0.45ohm (typical) at VCC = 2.7V)
- Low ON resistance for data path (7ohm (typical) at VCC = 1.8V, 6ohm (typical) at VCC = 2.7V)
- Low ON capacitance for data path
- Wide -3db bandwidth of >160MHz
- Break-before-make switching, high noise immunity
- ESD protection, CMOS low-power consumption
- Latch-up performance exceeds 100mA per JESD 78B Class II Level A
- 1.8V control logic at VCC = 3.6V Control input accepts voltages above supply voltage
- Very low supply current, even when input is below VC High current handling capability
- HXQFN16U package, -40°C to +125°C temperature range
Technical Specifications
Analog Switch
1.4V to 4.3V
1.4V to 4.3V
16Pins
6ohm
4PDT
-
-40°C
-
MSL 1 - Unlimited
Single Supply
10.5ohm
HXQFN
1Channels
10.5ohm
-
Surface Mount
125°C
-
To Be Advised
Technical Docs (1)
Alternatives for NX3DV2567HR,115
1 Product Found
Legislation and Environmental
RoHS
RoHS
Product Compliance Certificate