Skip to product information
1 of 2

Robocraze

CD4070 - Quad 2-Input Exclusive-OR (XOR) Gate IC

CD4070 - Quad 2-Input Exclusive-OR (XOR) Gate IC

Regular price Rs. 19
Regular price Rs. 24 Sale price Rs. 19
Sale Sold out 21% off Best Price Guaranteed
You save Rs. 5 | Free Shipping on Orders Above ₹ 499/-
Incl. GST (No Hidden Charges)
Currently, people are actively viewing.

BEST COUPON FOR YOU

FLAT ₹ 100/- OFF RC100

When you shop for ₹ 2500 or more.Applicable on Checkout.

*Coupons are not applicable on Original Boards and Kits

Submit your Bulk Enquiry Here
  • Has a wide supply voltage of up to 20V
  • Symmetrical Output Characteristics
  • Max input current 1µA at 18V over full Military Temperature Range
  • Capable of driving x2 low power TTL loads or x1 LSTTL load (Fan out of 2 driving 74L or 1 driving 74LS)
  • Has equal source and sink current capabilities
  • Low Power TTL compatible
  • Specified at 5V, 10V & 15V
  • Noise Margin (Over Full Package Temperature Range) -:1V at VDD = 5V; 2V at VDD = 10V; 2.5V at VDD = 15V
  • Operating Temperature Range: -55 to 125 °C
  • Lead Temperature (TL) (Soldering, 10 seconds): 260°C
Trust Badge 1 Trust Badge 2 Trust Badge 3

CD4070 - Quad 2-Input Exclusive-OR (XOR) Gate IC

The CD4070 IC contains four independent Exclusive OR gates inside a single package. It is oftentimes referred to as a quad package 2-Input XOR gate IC. All four gates share the same power rail and each gate has two input lines and one output line. This IC gives the system designer a way to directly implement the Exclusive-OR Boolean function. The CD4070 makes use of complementary MOS (CMOS) transistors to achieve a broad power supply operating range, low power consumption, and a high noise margin. The IC operates at 5V, 10V, 15V, and even 20V. When operating at 5V the maximum low-level input voltage is 0.5 and the minimum high-level input voltage is 4.5.

check out : CD4078 - 8 Input NOR Gate IC

Pinout:

Pinout Of CD4070 IC

Pin Name Pin # Type Description
VDD 14 Power Supply Voltage (+3 to +15V)
GND 7 Power Ground (0V)
A1 to A4 1, 5, 8, 12 Input Inputs A of the four XOR gates
B1 to B4 2, 6, 9, 13 Input Inputs B of the four XOR gates
Q1 to Q4 3, 4, 10, 11 Output Outputs from the four XOR gates

Package Includes:

Selected qty of IC - CD4070

Specifications:

LOGIC Circuit XOR
Voltage Rating  3V to 15V
Propagation Delay (tpd) 280ns
Noise immunity 0.45 VDD
Inputs 2

Shipping & Returns

  • All orders confirmed before 3 pm IST are shipped on the
    same day, barring rare pickup delays on holidays or disturbances
  • Delivery time in Metro cities is 1-3 days, Others it is
    3-7 days. It varies based on location, reliant on courier services
  • Return window: 7 days from receipt unless stated
    otherwise. No refunds/replacements after
  • Returns only for non-working/damaged products are accepted
  • Initiate return requests to our customer service team via Support ticket or contact us at +91-8123057137
  • Refunds are processed within 3-4 working days post inspection and approval.

For more details, please check our Shipping and Return Policy

View full details
Trust Badge 1 Trust Badge 2 Trust Badge 3

Found a better price?

Let us know!
We'll try to match the price for you

  • ⚡ Dispatched within 24 hours

  • 💰 Earn RC Coins on every purchase

  • 🚚 Free shipping on orders above Rs 500/-

  • 🛠️ Dedicated Technical Support Team

1 of 4

ADDITIONAL RESOURCES

1.How To Use the CD4070?

  • As with all ICs in the 4000 series, a power supply voltage of 3 to 15V is required. Some versions of the chip support up to 20V. For exact values, consult the datasheet for your version of the chip. To use any of the XOR gates on the chip, connect the VDD pin to the positive supply terminal and the GND pin to the negative supply terminal. The A and B pins are the inputs to the four XOR gates in the IC. The Q pins are the XOR gate outputs.

2.What is an XOR gate?

  • An XOR gate (Exclusive-OR gate) is a type of digital logic gate that produces a HIGH (or 1) output signal only when the two input signals are different. In other words, if the input signals are identical, the output is LOW (or 0).