NTE4016B & NTE4016BT Integrated Circuit CMOS, Quad Analog Switch/Quad Multiplexer

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1 NTE4016B & NTE4016BT Integrated Circuit CMOS, Quad Analog Switch/Quad Multiplexer Description: The NTE4016B (14 Lead DIP) and NTE4016BT (SOIC 14) quad bilateral switches are constructed with MOS P channel and N channel enhancement mode devices in a single monolithic structure. Each device consists of four independent switches capable of controlling either digital or analog signals. The quad bilateral switch is used in signal gating, chopper, modulator demodulator and CMOS logic implementation. Features: Diode Protection on All Inputs Supply Voltage Range = 3.0 Vdc to 18Vdc Linearized Transfer Characteristics Low Noise 12nV/ Cycle, f 1.0kHz typical This Device Has Inputs and Outputs Which Do Not Have ESD Protection. Antistatic Precautions Must Be Taken. Absolute Maximum Ratings: (Voltages referenced to V SS, Note 1) DC Supply Voltage, to +18.0V Input Voltage (DC or Transient), V in to to +0.5V Output Voltage (DC or Transient), V out to to +0.5V Input Current (DC or Transient, Per Pin), I in... ±10mA Switch Through Current, I SW... ±25mA Power Dissipation (Per Package), P D mW Temperature Derating (from +65 to +125 C) mW/ C Ambient Temperature Range, T A to +125 C Storage Temperature Range, T stg to +150 C Lead Temperature (During Soldering, 8sec max), T L C Note 1. Maximum Ratings are those values beyond which damage to the device may occur.

2 Electrical Characteristics: (Voltages referenced to V SS, Note 2, Note 3) 55 C +25 C +125 C Symbol Vdc Min Max Min Typ Max Min Max Unit Input Voltage V IL Vdc Vdc Vdc V IH Vdc Vdc Vdc Input Control Current I in 15 ±0.1 ± ±0.1 ±0.1 μadc Input Capacitance C in Control 5.0 pf Switch Input 5.0 pf Switch Output 5.0 pf Feed Through 0.2 pf Quiescent Current I DD μadc (Per Package, Note 4) μadc μadc ON Resistance R ON (V C =, R L = 10kΩ) (V in = +5.0Vdc) Ohms (V in = 5.0Vdc) V SS = 5.0Vdc Ohms (V in = ±5.0Vdc) Ohms (V in = +7.5Vdc) Ohms (V in = 7.5Vdc) V SS = 7.5Vdc Ohms (V in = ±0.25Vdc) Ohms (V in = +10Vdc) Ohms (V in = +0.25Vdc) V SS = 0Vdc Ohms (V in = +5.6Vdc) Ohms (V in = +15Vdc) Ohms (V in = +0.25Vdc) V SS = 0Vdc Ohms (V in = +9.3Vdc) Ohms Δ ON Resistance Between any 2 circuits in a common package (V C = ) (V in = ±5.0Vdc, V SS = 5.0Vdc) ΔR ON Ohms (V in = ±7.5.Vdc, V SS = 7.5Vdc) Ohms Input/Output Leakage Current (V C = V SS ) (V in = +7.5Vdc, V out = 7.5Vdc) 7.5 ±0.1 ± ±0.1 ±0.1 μadc (V in = 7.5Vdc, V out = +7.5Vdc) 7.5 ±0.1 ± ±0.1 ±0.1 μadc Note 2. All unused inputs must be returned to or V SS. Note 4. For voltage drops across the switch (ΔV switch ) > 600mV ( > 300mV at high temperature), excessive current may be drawn; i.e., the current out of th switch may contain both and switch input components. The reliability of the device will be unaffected unless the Maximum Ratings are exceeded (See first page of this data sheet.).

3 Electrical Characteristics: (C L = 50pF, T A = +25 C, Note 3, Note 5) Propagation Delay Time (V SS = 0Vdc) V in to V out (V C =, R L = 10kΩ) Control to Output V in 10Vdc, R L = 10kΩ) Crosstalk, Control to Output (V SS = 0Vdc) (V C =, R in = 10kΩ, R out = 10kΩ, f = 1.0kHz) Crosstalk Between any Two Switches (V SS = 0Vdc) (R L = 1.0kΩ, f = 1.0kHz, Symbol Vdc Min Typ Max Unit t PLH ns t PHL ns ns t PHZ. T PLZ, t PZH, t PZL ns ns ns mv mv mv db Crosstalk = 20log 10 Noise Voltage (V SS = 0Vdc) (V C =, f = 100Hz) V out nv/ Cycle nv/ Cycle nv/ Cycle (V C =, f = 100kHz) nv/ Cycle Second Harmonic Distortion (V SS = 5.0Vdc) (V in = 1.77Vdc, RMS Centered Q 0.0Vdc, R L = 10kΩ, f = 1.0kHz) nv/ Cycle nv/ Cycle % Insertion Loss (V C =, V in = 1.77Vdc, V SS = 5.0Vdc, (RMS centered = 0.0Vdc, f = 1.0Mhz) 5.0 I loss = 20log 10 V out1 (R L = 1.0kΩ) 2.3 db (R L = 10kΩ) 0.2 db (R L = 100kΩ) 0.1 db (R L = 1.0MΩ) 0.05 db Bandwidth ( 3.0dB) (V C =, V in = 1.77Vdc, V SS = 5.0Vdc, (RMS centered = 0.0Vdc) 5.0 (R L = 1.0kΩ) 54 MHz (R L = 10kΩ) 40 MHz (R L = 100kΩ) 38 MHz (R L = 1.0MΩ) 37 MHz Note 5. The formulas given are for the typical characteristics only at +25 C.

4 Electrical Characteristics (Cont d): (C L = 50pF, T A = +25 C, Note 3, Note 5) Symbol OFF Channel Feedthrough Attenuation (V SS = 5.0Vdc) 5.0 Vdc Min Typ Max Unit V (V C = V SS, 20log out1 10 = 50dB) (R L = 1.0kΩ) 1250 khz (R L = 10kΩ) 140 khz (R L = 100kΩ) 18 khz (R L = 1.0MΩ) 2.0 khz Note 5. The formulas given are for the typical characteristics only at +25 C. Pin Connection Diagram Block Diagram In 1 1 Out 1 2 Out 2 3 In Control 1 Cont D In/Out D Control 1 In 1 Control 2 In Out 1 Out 2 Control 2 Control 3 V SS Out/In D 9 Out/In C 8 In/Out C Control 3 In 3 Control 4 In Out 3 Out 4 = Pin14 V SS = Pin7 Control Switch 0 = V SS Off 1 = On Pin Connection Diagram (1/4 of Device Shown) Out Control Logic Diagram Restrictions V SS V in V SS V out In

5 NTE4016B (15.24).200 (5.08) Max.300 (7.62).100 (2.45).099 (2.5) Min.785 (19.95) Max NTE4016BT.340 (8.64) (3.91).198 (5.03).050 (1.27) 016 (.406).236 (5.99).006 (.152) 061 (1.53) NOTE: Pin1 on Beveled Edge

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