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Thermal Print Heads

For Barcode and Label Printers

BHP4434FS

FEATURES

High-speed type with five-stage LATCH heat history control [FS type]

New-BP protective layer with excellent abrasion resistance is used.

APPLICATIONS

• Barcode and label printers

• Bank ATMs

• Amusements

Ticket-vending machines

• POS terminals

PRODUCT SPECIFICATIONS

HEATING ELEMENT SPECIFICATIONS

Number of heating elements

(dots)

832

Dot density

(dots/mm)

8

(DPI)

203

 

Length of heating element array

(mm)

104

(effective)

 

 

Heating element average resistance

()

800

Glaze type

 

Partial glaze

DRIVE CONDITIONS

Applied platen diameter

(mm)

ø20max.

Paper-feed speed

(mm/sec)

200max.

Data transfer frequency

(MHz)

8max.

Driver power supply

(V)

4.5 to 5.5

SHAPES AND DIMENSIONS

 

 

120

104(Effective printing width)

4

Thermistor

(14)

8.5

(38)

2max.

6.0

 

5.0

20

 

ø

 

(3) (10)

Connector HIF3F-40PA-2.54DS(71)(HIROSE)

3

 

depth

 

 

 

 

3 Effective depth 3

M3 Effective depth 3

3 Effective

 

 

(Heater line)

29.5

 

7

11

 

 

56

(3)

 

 

4

(112)

 

Dimensions in mm

• All specifications are subject to change without notice.

001-01 / 20090428 / eg21_bhp4434fs

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TDK BHP4434FS specifications Thermal Print Heads For Barcode and Label Printers

BHP4434FS specifications

The TDK BHP4434FS is a highly regarded component in the realm of electronic devices, known for its remarkable features, advanced technologies, and unique characteristics that set it apart in today's competitive market.

Primarily designed for use in demanding environments, the BHP4434FS encapsulates TDK's commitment to delivering reliability and performance. One of its standout features is its high power handling capability, which is essential for applications involving significant power fluctuations. This quality allows the component to maintain stability and efficiency even under extreme operational conditions, making it suitable for various industrial applications.

Another distinguishing characteristic of the TDK BHP4434FS is its compact design, which facilitates integration into space-constrained environments. The small form factor does not compromise its performance or functionality, allowing engineers to incorporate it into a range of electronic systems without the need for extensive modifications.

The TDK BHP4434FS also employs state-of-the-art magnetic technologies, which contribute to its excellent inductance stability and low core loss. This is particularly advantageous in power electronics, where efficiency is critical. The component features a ferrite core design that minimizes eddy current losses, thus enhancing overall energy efficiency and improving thermal performance.

In addition, the BHP4434FS boasts an impressive temperature range, allowing it to operate reliably in both high and low-temperature environments. This wide operating range is crucial for applications exposed to varying thermal conditions, ensuring that the component maintains its functionality without degradation over time.

Moreover, the BHP4434FS has been engineered for minimal electromagnetic interference (EMI), which is a critical consideration in maintaining the integrity of electronic circuits. Its design minimizes both radiated and conducted emissions, making it an ideal choice for sensitive applications such as telecommunications and data processing.

Finally, TDK's emphasis on quality assurance and rigorous testing ensures that the BHP4434FS meets industry standards for performance and durability. This dedication to quality not only enhances the reliability of the component but also instills confidence in engineers and manufacturers relying on TDK products for their innovations.

In summary, the TDK BHP4434FS is a robust and versatile component characterized by high power handling, compact design, advanced magnetic technologies, wide temperature range, and low electromagnetic interference. These features make it an excellent choice for a wide array of electronic applications, reflecting TDK's commitment to excellence in performance and reliability.